3M Personal Safety Division
3MTM Sound Examiner SE-400 SeriesSound Level Meters with Intrinsically Safe models
Sound Examiner
SE-400 Series Sound Level Meter
User Manual
SE-401/SE-402
non-IS models
SE-401/SE-402
Intrinsically Safe models
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Dangers, Warnings, Cautions & Battery non-IS models
ii
3MTM Sound Examiner SE-400 non-IS Models Sound Level Meter
Dangers, Warnings, Cautions & Battery
Danger!
Failure to observe the following procedures may result in serious personal injury
•
•
Not for use in explosive or hazardous locations. This product is not intrinsically safe.
Contains built-in lithium polymer battery. Do not incinerate or dispose of in fire. Do not disassemble, alter, or re-construct.
Warning!
Failure to observe the following procedures could damage the instrument
•
•
•
•
•
Read the manual before operation.
Do not store in temperatures outside -20°C to 60°C (-13°F 140°F).
Do not immerse in liquids.
Condensation may damage your instrument.
Substitution of components may impair the accuracy of the instrument. Repair should be performed by authorized service
personnel only.
Caution!
General
•
•
•
•
The battery in this instrument has limited shelf-life, even if never used.
A non-condensing environment is required for proper measurements.
Do not charge battery outside the range of 0°C to 40°C (32°F to 104°F).
Battery run-time may be reduced when operating at lower than 0°C (32°F) temperatures.
Intended Use:
The SE-400 Series non-IS models are intended to measure sound pressure levels in air. Consult your company’s safety
professional for local standards, or call 3M at 1-800-243-4630.
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Sound Examiner Intrinsically Safe Models: user warnings, safety markings, and standard information
iii
Sound Examiner SE-401 and SE-402 Intrinsically Safe/Sécurité Intrinsèque Models: user warnings, safety markings, and standards information
WARNING: To prevent ignition of flammable or combustible atmospheres, there are no serviceable parts. Repair and battery
replacement must be done by authorized service personnel only.
Avertissement: Pour éviter l'inflammation d'atmosphères inflammables ou combustibles, il n'y a pas de pièces réparables.
Réparation et remplacement de la batterie doivent être effectués par le personnel de service autorisé.
WARNING: Substitution of components may impair intrinsic safety. Do not open.
Avertissement: La substitution de composants peut compromettre la Sécurité Intrinsèque.
WARNING: Contains built-in lithium polymer battery. Do not incinerate or dispose of in fire. Do not disassemble, alter, or re-
construct.
Avertissement: Contient la batterie intégrée au lithium polymère. Ne pas incinérer ou jeter au feu. Ne pas démonter, modifier
ou re-construire.
WARNING: To reduce the risk of explosion, recharge the battery outside of the hazardous locations.
Avertissement: Afin de prévenir l’inflammation d’atmosphères dangereuses, ne changer les batteries que dans des
emplacements désignés non dangereux.
Safety Standards
•
•
CE mark 0539 , SE-401 IS model and SE-402 IS model
UL 913, Ed.7, 2011-09-23: Standard for Intrinsically Safe Apparatus and Associated Apparatus for Use in Class I, II, III, Division 1,
Hazardous (Classified) Locations
•
•
•
•
•
•
•
CSA C22.2 No. 157-92, (R2013): Intrinsically Safe and Non-Incendive Equipment for Use in Hazardous Locations
EN 60079-0 (2009): Explosive atmospheres. Equipment. General requirements
EN 60079-11 (2012): Explosive atmospheres – Part 11: Equipment protection by intrinsic safety
EN 60079-26 (2007): Explosive atmospheres – Part 26: : Equipment with equipment protection level (EPL) Ga
IEC 60079-0 Ed.5 (2007): Explosive atmospheres - Part 0: Equipment - General requirements
IEC 60079-11 Ed. 6: (2012): Explosive atmospheres - Part 11: Equipment protection by intrinsic safety
IEC 60079-26 Ed. 2: (2009): Explosive atmospheres - Part 26: Equipment with equipment protection level (EPL) Ga
Safety Markings
Manufacturer
3M Company
Equipment/model
SE-401 Intrinsically Safe Class1/Type 1 model
SE-402 Intrinsically Safe Class 2/Type 2 model
Hazardous Locations Class
Certificate number
II 1 G Ex ia IIB T4 (DEMKO 13 ATEX 1210031X)
Ambient temperature range: -20ºC to +50ºC
IECEx UL 13.0006X, Class I, Division 1, Groups C and D;
Exi is defined as Intrinsically Safe and Sécruité Intrinsèque
Maximum charge input voltage Um=5.5V
Maximum input current Ii = 500ma
3M Authorized Service
Contact 3M
•
1060 Corporate Center Drive
Oconomowoc, WI 53066
See User Manual for additional details.
(Part number: 053-777 RevB; 11/13)
073-300 RevA
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Table of Contents
TABLE OF CONTENTS
Introduction ............................................................................................................................................................................................................... 1
Models and options ............................................................................................................................................................................................... 1
Display and keypad............................................................................................................................................................................................... 1
Diagram and functionality...................................................................................................................................................................................... 2
USB........................................................................................................................................................................................................................ 3
3MTM Detection Management Software (DMS) ...................................................................................................................................................... 3
Getting Started.......................................................................................................................................................................................................... 4
Turning on.................................................................................................................................................................................................................. 5
Softkeys................................................................................................................................................................................................................. 5
Screen indicators................................................................................................................................................................................................... 5
Measurement/Start screen....................................................................................................................................................................................... 6
Navigating.............................................................................................................................................................................................................. 6
Turning off ................................................................................................................................................................................................................. 6
Charging................................................................................................................................................................................................................ 7
Response time and frequency weighting settings................................................................................................................................................. 8
Opening the setup screen for instrument configuration........................................................................................................................................ 9
Meter settings......................................................................................................................................................................................................10
SE-400 Series information details.......................................................................................................................................................................11
Time and date setting..........................................................................................................................................................................................12
Security: locking and unlocking run/setup..........................................................................................................................................................14
Memory and space..................................................................................................................................................................................................15
Deleting files and viewing memory......................................................................................................................................................................15
Resetting the SE-400 Series ..................................................................................................................................................................................15
Calibrate, measure, run, and saved results .........................................................................................................................................................16
Overview of running a session............................................................................................................................................................................16
Sound Examiner SE-400 Series
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Table of Contents
Calibrate...................................................................................................................................................................................................................16
Performing a Calibration......................................................................................................................................................................................16
Measure....................................................................................................................................................................................................................19
Logged Data........................................................................................................................................................................................................19
Windscreen..........................................................................................................................................................................................................19
Positioning and tripod mount...............................................................................................................................................................................20
Measurements and displayed parameters..........................................................................................................................................................20
Run, stop, and view results .................................................................................................................................................................................21
Download and view logged data ...........................................................................................................................................................................22
DMS & downloaded measurements....................................................................................................................................................................23
SoundPatrol feature................................................................................................................................................................................................25
Connecting the printer and settings ....................................................................................................................................................................25
Printing and reports .............................................................................................................................................................................................27
Microphone preamp................................................................................................................................................................................................28
Attaching the preamp ..........................................................................................................................................................................................28
Connecting an extension cable...........................................................................................................................................................................28
Standards/Directives ..............................................................................................................................................................................................30
Acoustical Characteristics.....................................................................................................................................................................................30
Microphones........................................................................................................................................................................................................30
Measurements .........................................................................................................................................................................................................31
Calibration............................................................................................................................................................................................................31
Mechanical Characteristics....................................................................................................................................................................................31
Physical Characteristics ......................................................................................................................................................................................31
Environmental Characteristics..............................................................................................................................................................................31
User Interface Characteristics...............................................................................................................................................................................32
Power/Electrical Characteristics ...........................................................................................................................................................................32
Ports and connections ...........................................................................................................................................................................................32
SE-400 Series models and part numbers.............................................................................................................................................................33
Accessories (sold separately) .............................................................................................................................................................................33
Glossary of Terms...................................................................................................................................................................................................34
Customer service....................................................................................................................................................................................................39
Contacting 3M Instrumentation ...........................................................................................................................................................................39
International customers.......................................................................................................................................................................................39
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Table of Contents
Calibration ...............................................................................................................................................................................................................39
Warranty...................................................................................................................................................................................................................39
Data Addendum: SE-400 Series measuring to IEC 61672-1..............................................................................................................................40
Figures:
Figure 1-1: SE-400 Screen components ................................................................................................................................................................... 2
Figure 1-2: Connector and ports................................................................................................................................................................................ 3
Figure 1-3: Acoustic data and DMS charting example............................................................................................................................................. 3
Figure 2-1: Identify SE-400 Series equipment........................................................................................................................................................... 4
Figure 2-2: Measurement screen................................................................................................................................................................................ 6
Figure 2-3: Charging state ......................................................................................................................................................................................... 7
Figure 3-1: Response time and frequency weighting................................................................................................................................................ 8
Figure 3-2: Opening the Setup screen....................................................................................................................................................................... 9
Figure 3-3: Choosing meter settings........................................................................................................................................................................10
Figure 3-4: Choosing meter settings........................................................................................................................................................................10
Figure 3-5: Unit Information screen.........................................................................................................................................................................11
Figure 3-6: Time and Date Setup screen ................................................................................................................................................................12
Figure 3-7: Auto-Run screen....................................................................................................................................................................................13
Figure 3-8: Auto-Run screen....................................................................................................................................................................................13
Figure 3-9: Secure run and measurement screen...................................................................................................................................................14
Figure 3-10: Deleting sessions/files and viewing memory ......................................................................................................................................15
Figure 4-1: SE-400 Series and calibrating...............................................................................................................................................................17
Figure 4-2: Calibration softkey selection .................................................................................................................................................................17
Figure 4-3: Calibration screen..................................................................................................................................................................................18
Figure 4-4: CAL screen............................................................................................................................................................................................18
Figure 4-5: Example of logged data in DMS............................................................................................................................................................19
Figure 4-6: SE-400 Series with windscreen ............................................................................................................................................................19
Figure 4-7: Measurement positioning and tripod mount..........................................................................................................................................20
Figure 4-8: Main/multi- measurement screen in Run mode....................................................................................................................................21
Figure 4-9: Single measurement screen in stop mode............................................................................................................................................21
Figure 4-10: Session directory screen.....................................................................................................................................................................22
Figure 4-11: Saved sessions ...................................................................................................................................................................................22
Figure 4-12: Reviewing Session Data .....................................................................................................................................................................23
Figure 4-13: Sample Sound Examiner data report..................................................................................................................................................23
Figure 4-14: Downloading files from DMS to SE-400 Series ..................................................................................................................................24
Figure 4-15: Baud rate setup and print icon............................................................................................................................................................25
Figure 4-16: Print Setup screen...............................................................................................................................................................................26
Figure 4-17: Example of extension cable and preamp............................................................................................................................................28
Figure 4-18: SE-400 Series with extension cable and preamp attachment............................................................................................................28
Tables:
Table 1-1: Sound Examiner SE-400 models explained............................................................................................................................................. 1
Table 1-2: Keypad keys identified............................................................................................................................................................................... 2
Table 2-1: Softkeys explained..................................................................................................................................................................................... 5
Table 3-1: Meter settings explained.........................................................................................................................................................................11
Sound Examiner SE-400 Series
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CHAPTER
1
Introduction
Models and options
1
Introduction
The 3MTM Sound Examiner SE-400 Series are sound level meters used to measure noise over time with robust
logging capabilities, selective measurement values, and with a variety of end-user applications including
occupational noise measurements and assessment of environmental noise levels.
Models and options
There are five models offered in the Sound Examiner Series including intrinsically safe (IS) and non-intrinsically safe
models. The differences between models are accounted for by three primary characteristics: intrinsic safety,
accuracy of measurement, and remote microphone measurement capability. The table below summarizes the
differences between the models.
Sound Examiner
Models/Series
SE-402 IS
*
*
*
*
*
SE-401 IS
*
*
SE-401 Non-IS
*
*
*
*
*
SE-402 Non-IS
*
*
*
*
*
*
*
*
SE-402R Non-IS
*
Table 1-1: Sound Examiner SE-400 IS and non-IS models explained
Sound Examiner SE-400 Series overview
Display and keypad
The keypad is used to run and stop your sessions, view your measurement values, select specific set up
parameters, and power on and off the sound level meter.
Sound Examiner SE-400 Series
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Sound Examiner SE-400 Series overview
Diagram and functionality
Diagram and functionality
The following diagram for SE-400 series explains the features on the keypad and the display’s screen
indicators.
Keypad
Description
1. Softkeys
There are four softkeys which are used as
additional menu options when working with specific
screens (e.g., measurement screen).
2. Backlight key
3. Up Arrow key
4. Left Arrow key
Used to illuminate the background of the display
screen. (i.e., low lighting environment, nighttime
session.)
Used to toggle through menu/setup options and
scrolls through the values on the measurement
screen.
Used to navigate through menus and setup
parameters.
5. Run/Stop key
Used to run and stop a logged session.
6. Right Arrow key
Used to navigate through menus and setup
parameters.
7. Enter key
Used to select menus and confirm setup parameter
changes.
1
2
8. Down Arrow key
Used to toggle through menu/setup options and
scrolls through the values on the measurement
screen.
5
6
9. On/Off/Esc key
Used to power on, power off and/or escape or
move back one screen.
7
3
4
8
9
Table 1-2: Keypad keys identified
Screen components identified
The SE-400 Series has four screen components identified below.
Screen indicators
Main screen
Time & Date/error messages
Softkey menus
A: Settings, B: Fast/Slow Time Response
C: A, C, or Z Frequency Weighting
D: SoundPatrol feature provides printing capability (non-IS models only)
A
B
C
D
Figure 1-1: SE-400 Series Screen
Sound Examiner SE-400 Series
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Connectors/Ports
USB
Connectors/Ports
The Hardware connector ports are identified below. Note: the SE-400 IS models are equipped with USB
connector only.
AC/DC output
(SE-400 non-IS
model only.)
USB connector
for charging
I/O and serial
printing connector
(SE-400 non-IS
model only.)
Figure 1-2: Connector and ports
USB
A USB cable is shipped with each Sound Examiner. One end fits the mini port in the instrument. The
other end fits a standard USB connector on a personal computer.
A USB connection to a computer allows files to be transferred, settings to be downloaded to the
instrument, and post-session analysis to be performed with the DMS software. It is also used to charge
the internal battery of the SE-400 Series.
3MTM Detection Management Software (DMS)
DMS is a software application from 3M that is used for a variety of Sound Examiner functions including
the ability to display and manipulate data after it is downloaded to the computer from the instrument.
Additionally, DMS is used to download measurement data for advanced graphing, charting, and reporting
analysis.
Figure 1-3: Acoustic data and DMS charting example
Sound Examiner SE-400 Series
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CHAPTER
4
Getting Started
Checking the equipment
2
Getting Started
This chapter provides the basic information you need to “get up and go” essentially right out of the box,
including receiving your first glimpses of sound pressure level (SPL).
Checking the equipment
If your instrument was sent in a storage case, you will want to remove the packaging and acquaint
yourself with the equipment, so you can quickly get started. The items below are included in a “standard”
Sound Examiner SE-400 Series kit with a calibrator.
SE-400 IS model
SE-400 non-IS
Microphone
Removable Preamp
(when equipped on
model SE-402R)
AcoustiCal with adapter
Windscreen
USB cable
USB power cord
with universal
plug adapters
SE-400 Series
User Manual
DMS software
•
Optional feature
Figure 2-1: Identify SE-400 Series equipment
Sound Examiner SE-400 Series
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Turning on
Softkeys
Turning on
To turn on the SE-400 Series, press the
key until the start screen appears. Note: the warm-up is 10 seconds.
Softkeys
The softkey menus provide additional/extension menus on the display and may be available in the measurement, setup, and
calibration screens. See Table 2-1 for details.
Softkeys
Explanation
Setup icon – The setup icon is used to access the main menu options including: unit information, settings,
calibration, memory, time-date, communications, and security (for secure run and secure setup modes).
Fast or Slow Response Time - The response time setting determines how quickly the unit responds to fluctuating
noise. Typically, noise is not constant. If you were to try to read the sound level without a response time, the readings
would fluctuate so much that determining the actual level would be extremely difficult. While the terms slow and fast
have very specific meanings (time constraints), they work very much as you would expect. The fast response would
result in a more fluctuating sound level reading than would the slow response.
FS
A, C, or Z Frequency Weighting - These are frequency filters that approximate the equal loudness response of
human hearing at low, medium, and high SPL’s. A frequency weighting is the most commonly used filter defined in
the international standard IEC 61672:2003. Common applications of A weighting include industrial noise applications
and community noise regulations. The A frequency weighted filter makes the sound level meter respond closer to the
way the human ear responds to noise at lower levels. It attenuates the low frequency noise below several hundred
Hertz as well as the high frequency above six thousand Hertz. C frequency weighting is intended to represent how
the ear responds to very high levels. Z weighting is a type of flat response.
ACZ
Printer icon - is used for an add-on feature, referred to as the SoundPatrol (available on SE-400 Non-IS models
only.) This feature enables one to print to a hand-held printer while measuring or after a run (or session). Note: this
may be used for noise enforcement situations.
CAL – Cal, or Calibration screen, is used for calibrating the SE-400 Series.
CAL
LOCK – Shortcut to the secure modes screen. Enables and disables secure and setup modes.
LOCK
Up Arrow indicator: Used in the calibration screen to increase the calibration value.
Down arrow indicator: Used in the calibration screen to decrease the calibration value.
Table 2-1: Softkeys explained
Screen indicators
The screen indicators, located at the top of the display, are a notification tool to alert the user of operational functions. See Table
2-2 for details.
Indicators
Explanation
Secure/Lock indicator - appears if security for run or setup is enabled.
Overload indicator – appears whenever the level measurement exceeds the range of the instrument.
UnderRange indicator– appears whenever a level measurement is below the range of the instrument.
Run indicator- appears when a session is running (measuring integrating measurements.)
Stop indicator- appears when the current session is stopped.
OL
UR
Run Time: displays the current elapsed logged session run time in hours, minutes, and seconds.
00:00:00
/
Battery charge status- blinks when the battery is low and needs charging. The battery icon shows the
status/level of the internal battery. A full battery indicates the SE-400 Series is fully charged where as a non-
shaded battery icon indicates the battery power is low. When charging, the battery icon will appear as a
scrolling, shaded battery charge icon.
Table 2-2: Screen indicators
Sound Examiner SE-400 Series
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Measurement/Start screen
Measurement screen views
Measurement/Start screen
When powering on, the measurement screen displays six measurements which include: SPL, Max, Min, Peak, Leq,
and L (sound exposure level). The sound pressure level (SPL) measurement is continuously updated while the
AE
remaining measurements are updated during a log session. The sound exposure level is displayed as a summary
value. Please see Measurements, Chapter 4, for more details.
Measurement screen views
There are two different measurement views:
•
•
•
A multi-measurement screen displays 5 measurements. Press
measurements.
A single measurement displays one measurement in larger font. Press
through the measurements.
/
arrow to scroll through
arrow to scroll
/
To toggle between the two types of screens, press
key.
Stop icon
Sound Pressure Level
• Noted as LAS, A-weighted and slow response
Figure 2-2: Measurement screen displaying multiple measurements
Navigating
Navigating:
single
measurement
screen
•To navigate through the menus and data screens, press the
/
arrows
/
arrows, or press one of the softkeys
.
• The Enter
• The On/Off Esc
key is used to select menus and toggle through settings.
key is also used as a navigational tool to move back one level. If you press
ESC repeatedly, you will return to the start screen.
Turning off
To turn off the SE-400 Series, ensure the meter is stopped.
Note: The stop indicator will be at the top of the measurement screen.)
1. Press and hold the
key until the measurement screen disappears.
•
The SE-400 Series will countdown from 3 seconds prior to turning off.
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Turning off
Charging
Charging
The SE-400 Series is charged using the supplied USB charger or a personal computer’s USB port. A fully
depleted battery will require approximately 8 hours to fully charge when using the external battery charger.
Note: 3M recommends charging using the supplied USB charger. Some computers are unable to supply
the required power to charge the SE-400. In such a case, the SE-400 will display the following warning:
"Low USB power to charge".
When charging, the battery indicator will scroll, shading in the indicator. When the battery is fully charged, the
battery indicator will stop scrolling. (See Figure below.)
Charging states
•
A fully charged
battery state indicates approximately 18 hours of run-time without a backlight for the
non-IS models and 9 hours for IS models.
•
•
A low battery state will display a blinking non-shaded battery icon
A charging battery state will appear as if the battery icon
.
capacity is increasing.
Battery indicator:
Charging state: the battery
indicator scrolls until the
battery is fully charged.
Figure 2-3: Charging state for SE-400 Series
Sound Examiner SE-400 Series
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CHAPTER
8
Setup/instrument configuration
Response time and frequency weighting settings
3
Setup/instrument configuration
The SE-400 Series is shipped with default setup parameters. These customizable parameters include the
following:
•
•
•
•
•
•
•
Time response and frequency weighting
Auto-Run: time date setting
Response time and frequency weighting settings
Sound level measurements are performed typically with A frequency weighting, a slow time response and a 3
dB exchange rate. The time response and frequency weightings may be changed via the softkeys on any
measurement screen when in stop mode.
1. To change the frequency weighting, repeatedly press the corresponding softkey to toggle and select A, C,
or Z.
2. To change the response time, press the corresponding softkey to select either F (Fast) or S (Slow).
Response time and frequency weighting
Printer icon – only available on SE-400 non-IS
versions with SoundPatrol feature added
Figure 3-1: Response time and frequency weighting
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Setup/instrument configuration
Opening the setup screen for instrument configuration
Opening the setup screen for instrument configuration
The settings can be accessed or changed when in stop mode by selecting the
corresponding softkey (see A below). The Setup screen appears. (See “B” below).
icon via the
A. Start screen /Measurement screen
Setup icon:
Press the softkey to
open the menu.
Softkey:
Press to select the corresponding
setup menu.
B-2: Setup screen (IS models)
B-1: Setup screen (non –IS models)
Figure 3-2: Opening the Setup screen
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Setup/instrument configuration
Meter settings
Meter settings
The Meter Settings screen is used to select general instrument parameters including the log interval,
exchange rate, language, contrast, and peak weighting. Table 3-1 outlines the meter/general settings on the
SE-400 Series.
Setting up meter parameters
1. From the setup screen, press
/
keys to select Settings and press
key.
Settings (selected)
Figure 3-3: Choosing meter settings
2. To select one of the meter settings, press
/
keys. Once selected, press
key.
• This moves the selection to the changeable /value field.)
3. To change the log rate, exchange rate, peak weighting, language, and/or contrast, press
/
keys. Press
key to save the selection. Repeat as necessary or escape to abort.
Shading denotes the setting/parameter is
selected (e.g., Log interval)
Exchange Rate setting (3, 4, or 5 dB)
Figure 3-4: Choosing meter settings
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Setup/instrument configuration
SE-400 Series information details
4. Once the settings are selected, press
key to return to a measurement screen.
Meter settings
Log Interval
Explanations
The logging interval is the logging rate between the logging events. For example, 30 second
logging rate will measure/log and save in 30 second increments. The selectable parameters
include: 5 seconds, 15 seconds, 30 seconds, 60 seconds, 5 minutes, 15 minutes, 30 minutes,
and 60 minutes.
Exchange Rate
Peak Weighting
The exchange rate is also known as the Doubling Rate, and refers to how the sound energy is
averaged over time. The optional exchange rate settings are 3, 4, or 5 dB. (Refer to Figure 3-4
for more information.)
The peak weighting parameters are selectable as A, C or Z weighting.
Note: peak weighting may be different than SPL weighting. (Please refer to the Glossary
for more information.)
Language
Contrast
The language setting has eight different selections including:
•
English, French, Spanish, Italian, Portuguese, German, Chinese (Simplified), Korean.
The contrast setting is used to increase or decrease the darkness/lightness of the display.
Contrast settings include:
•
1 to 10 settings in which 10 equates to the darkest display setting and 1 equates to the
lightest display setting.
Table 3-1: Meter settings explained
SE-400 Series information details
In the Unit Information screen, the instrument model, serial number, the hardware, software, and secondary
software revision numbers are identified. (Note: for information on models/features please refer to Table 1-1.)
Unit Information screen
1. From the setup screen, select Unit Info by pressing the
/
keys and press
key.
Instrument and model identified
Figure 3-5: Unit Information screen
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Setup/instrument configuration
Time and date setting
Time and date setting
The Time-Date is used to set-up the current time and date parameters. These settings are used in many of
the charts and graphs in the software and when viewing calibration history and/or time-history measurements
on the instrument.
Setting the Time and Date parameters
1. From the setup screen, select Time-Date by pressing the
/
keys and press
key to select and press
arrows to change the values. To move to the next field press
key.
2. To change the Time or Date fields, press the
/
key.
arrows.
3. Press
4. Press
/
/
key to save or escape to abort.
•
Repeat steps 2 through 4 to change Time and/or Date.
5. To exit the screen, press
key. (This will return to the previous screen. To return to the start screen,
press
key a second time.)
Time and Date fields
Day field
It will automatically display based on
the date field.
Figure 3-6: Time and Date Setup screen
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Setup/instrument configuration
Auto-Run and setting timed run
Auto-Run and setting timed run
With a Timed Run mode, you program the instrument’s duration (or timed run) and then manually start your
study. The Auto-Run will end when the duration expires.
Setting the Timed Run
1. From the setup screen, select Auto-Run by pressing the
/
keys and press
key.
2. Auto-Run will appear. To select disabled or timed run field, press the
key.
To activate, change the disabled field to
Timed Run following steps above.
Figure 3-7: Auto-Run screen
3. To select timed run, press
/
keys until it appears and press
key. The duration field will
appear. (See Figure 3-8 below.)
•
Note: to turn off this feature repeat this step until disabled appears.
4. To enter in a time, press
key to move the time field. Using the
/
keys, change the time
and press
key while repeating this to move to the hours, minutes and seconds field.
5. Press
key to save and press
key twice to return to the measurement screen.
•
Note: Remember to manually press Run key to begin the Timed Run.
Timed run is set for 8 hours and 30 minutes
Figure 3-8: Auto-Run screen
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Setup/instrument configuration
Security: locking and unlocking run/setup
Security: locking and unlocking run/setup
You can prevent people from inadvertently terminating a session or changing settings with the security/lock
feature enabled. Once the code is entered, the security feature will prevent someone from stopping a run
and/or changing the setup parameters.
A 4-digit pin code is used to enable and disable (or change) the security/lock setting.
Note: to unlock (or change), a default lock key may be used if the lock code is not available/forgotten.
The default code is 9157.
Lock/unlock: secure run
When in secure run mode, a lock symbol
will appear in the screen indicator section. The end-user
cannot stop the session unless one unlocks the SE-400 Series.
Note: if stop is pressed during secure run, the screen will display the following alert message, “In secure
run mode”. To unlock, type in the 4-digit code and press the enter key.
Lock/unlock secure setup
•
When in secure setup mode, a lock symbol appears in the screen indicator section. To unlock, type
in the 4-digit code and press the enter key.
Secure run mode and secure setup mode (locking & unlocking)
1. From the setup screen, select Security by pressing the
2. To enter a code, press the keys to select a value. Press
field. Repeat as necessary until the 4-digit code is entered.
3. Press key to save the code or key to abort.
4. To exit the screen, press key.
/
keys and press
key.
/
/
keys to move to the next
5. To unlock, press the lock softkey or navigate to the security menu selection from the setup screen.
Secure Run
4 – digit lock code will
prevent changes when
in run.
Lock icon
Message appears if
stop is pressed during
secure run
Figure 3-9: Secure run and measurement screen
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Memory and space
Deleting files and viewing memory
Memory and space
Deleting files and viewing memory
In the Memory screen, you have the option of deleting all sessions from the memory. It also displays the
number of sessions in memory, used space, and the remaining memory space (called “free space”).
Viewing memory and/or deleting files
1. From the setup screen, select Memory by pressing
/
keys.
2. Delete all sessions will be shaded. Press
key and a Confirm pop-up screen will appear.
3. Press
key to select Yes and press
key to delete files.
•
To cancel, either press
key when No is shaded or press
key.
4. To exit the screen, press
key. (This will return to the previous screen.) To return to a
key a second time.)
measurement/main screen, press
Delete all sessions
Figure 3-10: Deleting sessions/files and viewing memory
Resetting the SE-400 Series
At times, you may need to reset the instrument if it is unresponsive during run or stop modes.
1. To reset, press and hold
key for about 8-10 seconds and the instrument will power off.
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Calibrate, measure, run, and saved results
Overview of running a session
CHAPTER
4
Calibrate, measure, run, and saved results
This chapter provides you with the tools used to perform a field test and review the data results. It also details
how to work with the SoundPatrol feature and a brief overview of DMS setup, downloading, and viewing data
in charts and graphs.
Overview of running a session
The list below is a brief overview of the steps for running a sound level session.
Operation/Field Testing
1. Turn on the Sound Examiner.
a. LAS: the current Sound Pressure Level is displayed.
b. Clear memory (if needed by using the memory menu from the setup screen).
2. Adjust your settings to fit the specifications for your session (if applicable).
3. Calibrate the SE-400 Series.
4. Position the instrument in the field at a 0 degree angle towards the noise source. (Connect
appropriate external devices if applicable.)
5. For integrated/time history measurements, press the Run/Stop key to start the session.
Press Run/Stop key to stop the session.
6. Review your measurement results on the Sound Examiner display or review the data in
Detection Management Software (DMS).
Calibrate
It is recommended to calibrate your Sound Examiner SE-400 Series before and after a run to ensure highly
accurate measurement results. The SE-400 microphone is sensitive to humidity and pressure changes.
Calibrating the instrument prior to taking measurements assures the instrument is accurate for the current
environment. Performing a calibration after a log session (post-cal) verifies that environmental conditions
have not significantly changed during the log session.
Note: Performing calibrations also ensures the microphone is operating correctly and not damaged (i.e.,
torn or contaminated diaphragm.
You can calibrate the instrument in the field with reference to the output of a calibrated sound source. 3M
offers a line of acoustic calibrators that are available for performing calibration of the Sound Examiner such as
TM
the 3M AcousticCal AC-300 Calibrator and the QC10/20 calibrator.
Performing a Calibration
Before beginning your calibration, confirm/check the calibrator has sufficient battery power to perform the
calibration. Also, you will want to insert the calibrator adapter into the upper cavity of the calibrator.
1. Ensure the SE-400 Series is turned On, stopped, and not logging.
2. Attach the calibrator and calibrator adapter to the SE-400 Series. Set the calibrator to 1000 Hz and 114 dB
(if it is selectable).
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Calibrate
Performing a Calibration
3. Turn on the Calibrator by pressing the
key.
AcoustiCal AC-300 Calibrator
• Select 1000Hz and 114 dB
Microphone
Place calibrator
over microphone
Cal Adapter
Insert into cavity of the
AC-300
Figure 4-1: SE-400 Series and calibrating
4. From the main measurement screen, press the corresponding softkey for the
5. Press the Cal softkey or select Calibration.
menu.
Calibration
CAL softkey
Press corresponding softkey
Figure 4-2: Calibration softkey selection
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Calibrate
Performing a Calibration
6. In the calibration screen, either press the CAL softkey or press the
key.
Note: the calibration screen details the last calibration and is saved into the memory of the instrument.
If you download your data to DMS (software), the calibration history is saved to the session and is
viewable/printable in the software.
Opening CAL screen (to perform calibration)
Either press the
key or press the Cal softkey
Figure 4-3: Calibration screen
7. In the calibration screen, press the corresponding
specific dB level (noted on the calibrator).
softkeys or press
/
to adjust to the
Calibrating
Match the dB level from the calibrator to the SE-
400 Series by pressing either the corresponding
softkeys or the up/down arrow keys
Figure 4-4: CAL screen
8. Press the
9. Press the
key to save the changes or escape to abort.
key twice to return to the main measurement screen.
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Measure
Logged Data
Measure
Logged Data
Logged measurements compute the peak, maximum, minimum, sound exposure, and average values over a run-time at
the user selected logged interval.
When in a run (or a session), logged data is automatically stored in the instruments memory. The summary data is viewable
on the display of the instrument while the logged data is viewable in DMS. Below is an example of DMS’ logged data chart.
•Peak values over the run-time
•Maximum values over the run-time
Figure 4-5: Example of logged data in DMS
Windscreen
The SE-400 Series features a removable windscreen, which is primarily used to help reduce noise effects
from wind with minimal effects on the readings. It is recommended to place and use the windscreen over the
microphone at all times to help protect the microphone.
Windscreen
The windscreen is placed over the microphone
Figure 4-6: SE-400 Series with windscreen
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Measure
Positioning and tripod mount
Positioning and tripod mount
For area monitoring and general sound level sessions, hand-held measurements are conducted by positioning
the microphone directly at the noise source.
To perform stationary sound level measurements, a tripod may be used by connecting the SE-400 Series to
the tripod mount while positioning it at a 0-degree incidence angle.
Figure 4-7: Measurement positioning and tripod mount
Measurements and displayed parameters
The measurements and labels which appear on the display will change based on the selected frequency
weighting and response time. For example, A-weighting and Slow Response will display the following labels:
LASmx, LASmn, LASeq, and L . The frequency weighting and response time are customizable within DMS
AE
(software). The selectable measurements are explained below. (Please see Glossary of Terms in Appendix
B for more information).
Measurement/
Parameters
Explanations
SPL/L
Sound pressure level – is the basic measurement of noise loudness, expressed in decibels. SPL
AS
measured with A-weighting and slow time response is displayed as “LAS” or “SPL”.
LASMX
Maximum sound pressure level with A-weighting and slow response. (Displayed when in run or
stop modes.)
LA
PK
Peak sound pressure level with A-weighting. (Displayed when in run or stop modes.)
LASEQ
Average sound pressure level with 3,4, or 5 dB exchange rate. (Displayed when in run or stop
modes.)
LASMIN
LAE
Minimum SPL with C-weighting and slow response. (Displayed when in run or stop modes.)
Sound Exposure Level (SEL) or Level Exposure (LE) – The sound exposure level averages the
sampled sound over a one second period. Assuming the sampled run time to be greater than one
second, SEL is the equivalent one-second noise that would be equal in energy to the noise that was
sampled. SEL is typically measured using a 3dB exchange rate without a threshold. (LAE is not used
by OSHA.)
Table 4-1: Measurement notations
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Measure
Run, stop, and view results
Run, stop, and view results
The run/stop key is used to run and stop integrating measurements, which is saved as a session. The
viewable measurement screens include the multi-measurement screen (which is the default screen) and the
single measurement screen. When the SE-400 Series is in stop mode, it will display the summary data until
the instrument is powered off or the run key is pressed.
1. To start a session, press the
current duration of your session.
key. The Run icon will appear with a run-time clock indicating the
Run-time clock
Run icon
Response Time/Frequency Weighting softkey menus
Parameters can be changed in stop mode. They cannot
be changed when in run mode.
Figure 4-8: Main/multi- measurement screen in Run mode
2. To stop a session, press the
key. The Stop icon will appear.
Note: the duration of the session is indicated by the run-time clock.
3. To view a single large measurement, press the key. To view different measurement parameters,
press the arrow keys.
/
Single Measurement screen
Figure 4-9: Single measurement screen in stop mode
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Measure
Viewing past sessions
Viewing past sessions
The SE-400 will automatically save and store all of the run/stops performed on the instrument, which is also
known as session data. You may view past sessions using the Memory menu from the Setup screen. Once
selected, it will display summary data (such as LASmx, LASmn, LZpk, LASeq, LAE), session name, date, and
run-time. The steps below explain how to review the session data.
1. From the measurement screen, press the
2. From the setup screen, press
softkey.
/
keys to select Memory and press
key.
key.
3. With Session Directory selected (indicated by the black shaded bar), press
Select to view summary data from past
runs/sessions.
Figure 4-10: Session directory screen
arrow keys to select a specific session and press
4. Press
/
key to view data.
Note: the SE-400 series runs are stored as, “S0000xx.ses and will display with the most recent at
the top of the page.
Press enter key to view the summary data.
Figure 4-11: Saved sessions
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Download and view logged data
Viewing past sessions
5. When selected, the session summary screen appears as indicated in Figure 4-12.
Note: to return to the previous screen, press the
key.
Session name, Date of run, and
overall Runtime.
Summary data
Sound Examiner has the ability to
print when connected to a printer.
Figure 4-12: Reviewing Session Data
Download and view logged data
If you will be using DMS to view your data (or measurements), this section will guide you through
communicating between the Sound Examiner SE-400 Series and DMS which will enable you to view time
history data in logged data charts and tables with reporting and storage capabilities as displayed below.
Note: please reference the online DMS help for more information.
Figure 4-13: Sample Sound Examiner data report
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Download and view logged data
DMS & downloaded measurements
DMS & downloaded measurements
When you download the data via the the instrument download panel, the data is stored and viewable via the data finder
page with advanced charting, tables, and reporting capability. The information is stored in customizable bar charts and/or
tables with measurements/parameters displayed on the top navigational bar.
Viewing data in DMS
2. DMS Welcome page and instrument communication
1. SE-400 Series and communicating with DMS
A. Turn On SE-400 Series
A. Click on
button (see A below).
B. Plin USB cable from SE-400 Series to the computer
A
3. SE-400 Series and Downloading
4. Viewing your data
A. Select the SLM family and the Sound Examiner from the
A. In the Data Finder page, you can view the parameters in
this page. To further analyze and/or print either double-
Instrument window.
click on a session/study or select
buttons.
(See A to view an example of logged data and table data).
or
B. Click
button(See A)
• Note: the downloaded files are listed by file name, size, and
date under the instrument download section. See B.
A
B
A
Figure 4-14: Downloading files from DMS to SE-400 Series
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SoundPatrol feature (non-IS models only)
Connecting the printer and settings
SoundPatrol feature (non-IS models only)
In some applications, the SoundPatrol feature is used for noise enforcement
assessment with the capability to print to a cabled hand-held portable printer.
If purchased, the feature operates by pressing the print icon from one of the
measurement or calibration screens.
Connecting the printer and settings
The portable thermal printer and the SP-Fuji cable, 057-342, is used to communicate between the SE-400
Series and the portable thermal printer. Before using the printer for the first time, set the dip switches (located
on side next to RS232C port) using the settings listed below:
Dip Switch
1
Function
Interface Selection
Switch Setting
Off (wireless)
On (wired interface)
On
Off/On
Off/On
2
3
4
Communication mode
Reserve
Start selection
The Baud Rate settings may be changed to: 4800, 9600, 19200, 115200 via the setup screen.
Please follow below to connect the printer and view/change the baud rate setting.
Connecting the printer and adjusting/viewing the baud rate for the SoundPatrol feature
1. Connect the SP Fuji cable, 057-341, by inserting it into the serial port on the bottom of the SE-400 non-IS
models.
2. Turn on the portable printer by depressing and holding the power button for about 1 second. A green
LED blinks when the printer is ready.
• Note: refer to the portable thermal printer manual to power on (with either AC/DC power
adapter or insert Li-ion battery.)
3. To set/view the baud rate, open the Communications screen by pressing
key from the setup
screen. (Skip steps 3 – 5 if not applicable.)
4. Press
key to move to the editable field and press
/
keys to select a setting.
5. Press
key to save the changes. Press
key to return to the setup screen. Press a second
time to view the measurement screen.
Baud rate
settings
4800, 9600,
19200, 115200
Printer icon
Press to print
SoundPatrol reports
Figure 4-15: Baud rate setup and print icon
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SoundPatrol feature (non-IS models only)
Print setup for summary reports
Print setup for summary reports
With the SoundPatrol feature (SE-400 Non-IS models only), you have the option to change the measurements
and other parameters to appear on the summary data report. The two options include printing a specific
parameter or omitting a parameter from the report.
Changing the summary report print settings
1. From the setup menu, press
/
keys to select Print Settings and press
key.
2. To select a parameter to change, press
second column.
/
keys and then press
key to move to the
3. To change to Print or Omit, press
/ press
key to save and return to the first column.
To change the parameters appearing in the
summary report, choose print to designate the
parameters to appear on the report or omit to
exclude them.
Figure 4-16: Print Setup screen
4. Repeat steps 2 and 3 to change what appears on the hand-held print report. To return to the
measurement screen, press key twice.
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SoundPatrol feature (non-IS models only)
Printing and reports
Printing and reports
The SoundPatrol features (non-IS models only) an easy to access print icon
located on the
measurements and calibration screens, which is used for report printing when connected to the handheld
printer (sold as an option). The following three reports are explained below.
SoundPatrol Reports and Samples
1-Second Continuous Data Report:
Description
The 1-second continuous data report provides a printout of 1- second
measurements of the sound pressure level values and the average
(Leq) values at the appropriate time response (fast/slow) and frequency
weighting (A, C, or Z).
TResponse = SLOW
Time, SPL, Leq, Weight = C
2, 68.0, 67.4
3, 69.0, 68.0,
4, 70.1, 68.4,
5, 71.3, 69.2
6, 71.2, 69.8,
7, 68.1, 69.8,
3M SE-400 R.10D
S/N: SEK06BETA06
• To print the 1-second continuous data report, power on the SE-400
Series and press the
in run mode, press the
key while the printer is connected. Once
softkey from the measurement screen
and the connected hand-held printer will print the report. At any
time, press icon to end the printing. The handheld printer will
stop the 1-second report.
The summary data report displays the time response and the summary
data parameters including the maximum sound pressure level (SPL),
the average SPL (Leq), the minimum SPL, the runtime, date, time,
location, and a by field (for an optional signature). These parameters
may be changed via the print setup menu. (See Print setup section
above.)
Summary Data Report:
TResponse = SLOW
SPLmax = 78.8 dBA
Leq = 71.5 dBA
LAE = 84.9 dBA
SPLmin = 64.4 dBA
Runtime = 00:00:17
Date: 15-Mar-2012
Time: 9:21:54
Location:__________________
By: ______________________
Note: this report will print after the 1-second continuous data report
has finished printing (or is stopped).
• To print the summary data report, press
while the printer is connected. Press the
key on the SE-400
softkey. Press
on the SE-400 and the summary data report will appear after the 1-
second continuous report.
The calibration report displays the time response setting, the calibration
date and time, the previous SPL (noted as old), the reference level
value, and the new calibrated level.
Calibration Report:
3M SE-400 R.10D
S/N: SEK06BETA06
TResponse = SLOW
CALIBRATION DATE:
• To print the calibration report, press the
softkey from the
14:21:05
15-MAR-12
calibration screen while connected to the printer. To access from a
CALIBRATION INFO:
Old SPL = 113.8 dBA
Ref Level = 114.0 dBA
New SPL = 114.0 dBA
measurement screen, press the
CAL softkey.
icon and then press the
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Microphone preamp
Attaching the preamp
Microphone preamp
The removable preamplifier (model SE-402R non-IS when equipped) can be used for remote distance
monitoring. An extension cable is connected between the SE-402R model and the preamplifier. (The cable
may be purchased separately, see Accessories in Appendix A).
Attaching the preamp
1. Place the preamp connector over the mating connector at the top of the instrument. Gently press
down while rotating the preamp until the preamp connector drops slightly in place.
2. Rotate the preamp ring until secure.
Connecting an extension cable
Optional Extension cables are available from 3M. They are typically used to make remote measurements by
distancing the microphone from the instruments body.
1. To connect the microphone to the extension cable, first remove the preamp from the SE-400 and
familiarize yourself with the extension cable ends.
Extension cable with connector pins (see A) connects
to the top of the SE-400 .
Extension cable pins with white molding (see B)
connects to preamp
C
B
A
Preamp pins (aligns to extension cable pins) see C.
Figure 4-17: Example of extension cable and preamp
2. Insert the extension cable’s pins (see B above) into the preamp, noting it will snap into place when the pins
are aligned correctly. Next, twist the black nut (on the preamp) counter-clockwise unit it fits securely.
3. Insert the opposite end of the extension cable to the top of the SE-400 and twist the silver ring until it is
fastened down.
Figure 4-18: SE-402R with extension cable and preamp attachment (when equipped)
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Sound Examiner (non-IS models) and logging rates
Connecting an extension cable
Sound Examiner (non-IS models) and logging rates
When logging is enabled, the following parameters are logged: LMAX, LMIN, Peak, and L ata specific logged
L
EQ
interval. The SE-400 non-IS models will log approximately 57,600 records per parameter in 60 seconds at 40
days with a 2MB card.
Below is a table outlining different logged intervals with the number of days it will log.
Logging Rates (seconds or minutes)
5 sec.
Days
3
Logged Records
57,600
15 sec.
30 sec.
60 sec.
5 min.
15 min.
30 min.
60 min.
10
20
40
200
599
2,070
4,140
57,600
57,600
57,600
57,600
57,600
57,600
57,600
Sound Examiner SE-400 Series
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APPENDIX
30
Appendix A
A
Specifications
Standards/Directives
•
•
IEC 61672-1 (2002) - Electroacoustics, Sound Level Meters, and Part 1: Specifications.
IEC 61010-1 (2010) (2002): Safety Requirements for Electrical Equipment for Measurement, Control and
Laboratory use – Part 1: General Requirements. (Revision/Edition 3).
IEC 61000-4-2 (2008): Electromagnetic Compatibility (EMC) – Part 4-2: Testing and Measurement
Techniques – Electrostatic Discharge Immunity Test.
IEC 61000-4-3 (2008): Electromagnetic Compatibility (EMC) – Part 4-3: Testing and Measurement
Techniques – Radiated, Radio-Frequency, Electromagnetic Field Immunity Test.
ANSI S1.4-1983 (R2006) - American National Standard, Specification for Sound Level Meters.
ANSI S1.43-1997 (R2007) - American National Standard, Specifications for Integrating Averaging Sound
Level Meters.
•
•
•
•
•
•
CE mark 0539 , SE-401 IS model and SE-402 IS model
UL listed E87792, SE-401 IS model and SE-402 IS model
Acoustical Characteristics
Microphones
•
•
Supports Class/Type 1 and Class/Type 2 microphones
BK4936 (or equivalent) – Free-field, Class/Type 1 Microphone, (standard), ½” diameter (1.3cm),
Electret
•
QE7052 (or equivalent) – Free-field, Class/Type 2 Microphone, (standard), low cost ½” diameter
(1.3 cm), Electret
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Appendix A
Measurements
Parameters
Frequency Weighting
L , LMAX, LMIN, L , L /LAVG, L , Elapsed Time
A, C, Z
AS
PK EQ
E
Peak Frequency Weighting
Response Time
Range
A, C, Z
Fast and Slow
110 dB total dynamic measurement range
Overall measurement range 30 to 140 dBA (single range)
143 dB (sampled peak)
Max Peak Level
Exchange Rates
Status Indicators
3, 4, 5 dB
Run, stop, battery status, OL (overload), UR (under-range),
Run-Time, locked status
Calibration
Calibration method
Manual user adjustment with external calibrator. Calibration history will
display date/time of calibration.
Mechanical Characteristics
Physical Characteristics
Size
11.2” (L) X 2.8” (W) X 1.3” (H) (with preamp & microphone);
28.4. cm (L) X 7.1 cm (W) X 3.3 cm (H)
Weight
410 g/14.5oz (SE-401 IS model including preamp and microphone)
410 g/14.5oz (SE-402 IS model including preamp and microphone)
367.5g/12.96oz (SE-401 model including preamp and microphone)
380.5g/13.42oz (SE-402 model including pre-amp and microphone)
Stainless fiber filled ABS Polycarbonate with light grey front and dark
grey backing.
Housing
Tripod Mount
Standard photographic mount on backside accepts ¼” – 20 screw
threads
Ingress Protection
Drop Protection
IP65
Minimum 2 meter onto concrete, 2 times on each face. Microphone
damage acceptable, no other loss of function, data or power.
Environmental Characteristics
Operating Temperature
(per IEC61672)
-10° C to 50° C (14° F to 122° F)
Humidity
0 to 90% RH, non-condensing
Storage Temperature
Battery Charge Temperature
Atmospheric Pressure
-20° C to 60° C (-4° F to 140° F)
0°C to 40°C (32°F to 104°F)
Operating: 80 to 110 kPa; Storage: 50 to 150 kPa
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Appendix A
User Interface Characteristics
TM
Logged data
Stored logged data includes: LMAX, LMIN, L , L . Use 3M Detection
PK eq
Management Software (DMS) to interpret data files.
Summary data
Stored session summary data includes: LMAX, LMIN, L , L , L (Level exposure)
and user settings. Use 3M Detection Management Software (DMS) to
interpret data files.
PK eq
E
TM
Logged rates
Display languages
5, 15, 30, 60 seconds and 5, 15, 30, 60 minutes
English, Spanish, German, French, Italian, Portuguese, Simplified Chinese,
Korean, and Czech
User Interface
12 Keypad Keys: Run/Stop, On/Off/Esc, Enter, Backlight, 4 arrowed keys (up,
down, right, left), 4 Softkeys
Keypad type
Display
Elastomeric
Transflective 128 x 128 pixel resolution with LED backlighting
Display update rate: 1 x second
Display resolution: 0.1 dB
Backlight
Modes include: low intensity, high intensity and off (SE-400 Non-IS models).
Modes include: dim, bright, and off (SE-400 IS models).
Power/Electrical Characteristics
Battery for SE-401 and
SE-402 Non-IS models
Lithium Polymer (2500 mAHr), rechargeable.
Run-Time: 18 hours minimum (excluding the backlight).
Battery for SE-401 and
SE-402 IS models
Lithium Polymer Pack/Nominal 3.7V/1500 mAH, rechargeable. (3M
manufactured, p/n: 073-709).
Run-Time: 8 hours minimum (excluding backlight).
3 years or 500 cycles (service replaceable)
USB cable is provided with instrument.
Battery Life
Battery Charge
Battery charge time: 8 hours (approximately)for non-IS models
2MB;( 34 days at 1-minute logging)
USB Interface
Internal memory
Communications
External DC Power Input High power USB port 500mA or external USB charger
Standard microphones
• Class/Type 1 Precision BK4936 microphone
• Class/Type 2 General QE7052 microphone
Removable preamp directly accepts ½” (13.2 mm) microphone
Preamplifier
Remote Cable
Up to 15 meters (50 feet) of cable with negligible signal loss
Ports and connections
AC/DC Output
I/O connector
USB
3.5 mm stereo (tip-AC, center ring, ring-Gnd)
RS-232
Conforms to USB 2.0, mini-USB connector
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33
Appendix A
SE-400 Series models and part numbers
3M ID
70-0716-0794-2
Sound Examiner SE-400 Kit Description
3MTMSound Examiner SE-402 non-IS Includes meter with Class/Type 2 Microphone, USB cable, external power cord with USB, windscreen, calibrator
adapter, carry case, and user manual.
70-0716-0795-9
70-0716-2114-1
70-0716-2113-3
70-0716-2216-4
70-0716-2217-2
70-0716-0796-7
70-0716-0793-4
3MTM Sound Examiner SE-401 non-IS, Includes meter with Class/Type 1 Microphone, Remote Option, USB cable, external power cord with USB,
windscreen, calibrator adapter, carry case, and user manual.
3MTM Sound Examiner SE-402-10 non-IS kit includes meter with Class/Type 2 Microphone, AC-300 Calibrator, USB cable, external power cord with USB,
windscreen, calibrator adapter, carry case, and user manual.
3MTM Sound Examiner SE-401 non-IS -AC3 kit includes meter with Class/Type 2 Microphone, 3MTM AcoustiCal AC-300 Calibrator, Class/Type 1
Microphone, Remote Option, USB cable, external power cord with USB, windscreen, calibrator adapter, carry case, and user manual.
3M™ Sound Examiner Kit SE-402-R non-IS with removable preamp kit includes meter with Class/Type 2 Microphone, 53-575 USB cable, meter, with
removable preamp, 53-321 USB power supply, 59-344 WS-7 windscreen , 56-990 calibrator adapter and 53-711 carrying case, and user manual.
3M™ Sound Examiner SE-402-R-10 non-IS kit with removable preamp and QC-10 calibrator kit includes meter with Class/Type 2 Microphone, with
removable preamp, AC-300 calibrator, USB cable, external power cord with USB, windscreen, calibrator adapter, carry case, and user manual.
3MTMSound Examiner SE-402 Intrinsically Safe model, Includes meter with Class/Type 2 Microphone, USB cable, external power cord with USB,
windscreen, calibrator adapter, carry case, and user manual.
3MTMSound Examiner SE-401 Intrinsically Safe model, Includes meter with Class/Type 1 Microphone, USB cable, external power cord with USB,
windscreen, calibrator adapter, carry case, and user manual.
Accessories (sold separately)
3M ID
Part Number
Description
70-0715-8115-4
70-0716-0829-6
70-0715-7972-9
70-0715-8374-7
056-990
Calibrator Adapter for 0.50” (or 1.3 cm) diameter microphone for QC-10/20 or AcoustiCal AC-300 adapter (one included)
3MTM AcoustiCal Calibrator for Class/Type 1 Microphones (114 dB at 250 Hz and 1000 Hz)
QC-10 Sound Calibrator for Class/Type 2 Microphones with single output (114 dB at 1000 Hz)
Tripod (approximately 46” or 117 cm)
059-045
059-899
70-0715-8212-9
Extension Cable ICM-2 Microphone Cable
(2 feet/61 cm)
70-0715-8208-7
70-0715-8209-5
059-733
059-734
Extension Cable ICM-10 Microphone Cable (10 feet/3 m)
Extension Cable ICM-50 Microphone Cable (50 feet/15.24 m)
70-0716-2099-4
70-0715-8175-8
70-0715-8234-3
70-0715-8135-2
70-0715-7994-3
053-321
053-575
053-711
External USB power cable with international AC plugs
USB cable (one included)
Carrying case (one included)
059-344 (WS-7) Windscreen (one included)
N/A
(SPDP-Printer)
057-342
057-343
053-764
057-258
N/A
Thermal printer, type FTP628, rechargeable Li-ion battery (1850 mAh) with belt clip, AC adapter/charger, printer cable, and a roll of
thermal paper.
70-0716-2098-6
70-0716-2097-8
Fujitsu Cable for SoundPatrol SE-400 thermal portable printer
Cable open ended tinned wires for SoundPatrol SE-400 user printer
Assembly 3.5 mm patch cable
70-0715-8344-0
70-0716-0821-3
70-0715-8290-5
Thermal paper: Five roll pack for use with the SPDP-Printer
3MTM Detection Management Software (DMS) (one included)
QE7052 Free-field, Class/Type 2 Microphone, (standard), low cost ½” diameter (.52”)
056-317
70-0715-8300-2
34-8708-6285-0
059-523
N/A
BK4936 - Free-field, Class/Type 1 Microphone, (standard), ½” diameter (.52”)
3MTM Sound Examiner SE-400 Series User Manual (one included)
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34
Appendix B
APPENDIX
B
Glossary of Terms
dB
Sound Level Meters use the decibel as the unit of measure known as Sound Pressure Level (SPL). SPL uses the
ratio between a reference level of 20 microPascals (.00002 Pascals) and the level being measured.
SPL = 20 log (measured level/reference level)
Example: the SPL for 1 Pascal is 20 log (1 Pascal/.00002 Pascal) = 94 dB. 20 microPascals (.00002 Pascals) is
considered the average threshold of hearing.
A whisper is about 20 dB. A normal conversation is typically from 60 to 70 dB, and a noisy factory from 90 to 100
dB. Loud thunder is approximately 110 dB, and 120 dB borders on the threshold of pain.
Dynamic range
The range of input amplitudes on any given range setting over which the instrument can produce a meaningful
response. The bottom of the dynamic range is the instrument’s Noise Floor for that range setting, and the top of the
dynamic range is the maximum input signal that will not overload the instrument on that range setting.
Exchange Rate (ER)
Also known as the Doubling Rate, this refers to how the sound energy is averaged over time. Using the decibel
scale, every time the sound energy doubles, the measured level increases by 3 dB. This is the 3 dB Exchange Rate
that most of the world uses. For every increase of 3 dB in the time weighted average, the measured dose would
double.
Some organizations such as OSHA in the U.S. have argued that the human ear self compensates for changing
noise levels and they felt that the 3 dB Exchange Rate should be changed to more closely match the response of
the human ear. OSHA currently uses a 5 dB Exchange Rate which would mean that the reported dose would double
with every 5 dB increase in the time weighted average. The Exchange Rate affects the integrated reading L
,
AVG
Dose, and TWA but does not affect the instantaneous sound level. (Please refer to www.osha.gov for more
information.)
LAVG
Average sound level measured over the run time. This becomes a bit confusing when thresholds are used. Any
sound below the threshold is not included in this average. Remember that sound is measured in the logarithmic
scale of decibels therefore the average can not be computed by simply adding the levels and dividing by the number
of samples. When averaging decibels, short durations of high levels can significantly contribute to the average level.
Example: Assume the threshold is set to 80 dB and the Exchange Rate is 5 dB (the settings of OSHA’s Hearing
Conservation Amendment). Consider taking a one hour noise measurement in an office where the A- weighted
sound level was typically between 50 dB and 70 dB. If the sound level never exceeded the 80 dB threshold during
the one hour period, then the LAVG would indicate a reading of zero. If 80 dB was exceeded for only a few seconds
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35
Appendix B
due to a telephone ringing near the instrument, then only those seconds will contribute to the LAVG resulting in a level
perhaps around 40 dB (notably lower than the actual levels in the environment).
Lavg = ER log2 RTIME 2LS ⁄ ER dt – log2 (RTIME) dB
∫
0
LEQ
The true equivalent sound level measured over the run time. The term L is functionally the same as LAVG except
EQ
that it is only used when the Exchange Rate is set to 3 dB and the threshold is set to none.
LE
The sound exposure level averages the sampled sound over a one second period. Assuming the
sampled run time to be greater than one second, level exposure is the equivalent noise that would be equal in
energy to the noise that was sampled. SEL is typically measured using a 3dB exchange rate without a threshold. (LAE is not used
by OSHA.)
LMn
Minimum SPL. Lowest SPL measured over a time interval.
LMx
Maximum SPL. Highest SPL measured over a time interval.
Logging
In sound studies, the saving of measurements at fixed intervals during a study, where each measurement is
determined from data processed in the previous logging interval.
LPk
Peak SPL. This is the highest instantaneous value obtained during a study or a session. A peak SPL measurement
is affected by the frequency response setting but not by the time response setting of the meter.
Noise
Unwanted sound.
Noise Floor
The signal magnitude at the bottom of the instrument’s linear range. Input signals below the noise floor cannot be
differentiated from the internal noise of the instrument.
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36
Appendix B
Overload (OL)
An overload will occur whenever the input signal exceeds the dynamic range of the instrument.
Pascal (Pa)
Unit of pressure equal to 1 Newton per square meter.
Reference pressure
The sound pressure at the threshold of human hearing, as measured under standard conditions. This generally
accepted magnitude of this pressure is 2 .00002 Pascals .
Response time (Fast “F”, Slow “S”)
Selectable time response settings used in the Sound Examiner measurements. The response time is a standardized
exponential time weighting of the input signal according to fast (F) or slow (S) time response relationships. Time
response can be described with a time constant. The time constants for fast and slow responses are 0.125 s, 1.0 s.
Burst duration, t (seconds)
Figure B-2: Slow response to a tone burst
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37
Appendix B
Burst duration, t (milliseconds)
Figure B-3: Fast response to a tone burst
SPL/LAS
Sound pressure level. A ratio of one sound pressure to a reference pressure. Because of the enormous dynamic
range of the human ear, the ratio is calculated logarithmically by the formula below, where L is the reference
r
pressure.
L
Lr
SPL = 2 0l o g
d B
----
Threshold
An SPL value that defines a lower level of acceptable values. Only SPL samples that exceed the threshold are used
in some calculations.
Upper Limit (UL)
The total time during a study that the SPL exceeds the Upper Limit meter setting.
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Appendix B
Weighting (A, C, Z)
SPL measurements are commonly weighted (scaled) in relation to their frequency components in order to provide
a consistent basis for comparison to other measurements of the same type. The three Sound Examiner curves
are plotted in Figure B-5.
Figure B-5: All frequency weightings plotted together
Windscreen
A covering for a microphone that reduces disturbances caused by wind and direct contact with other surfaces.
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APPENDIX
39
Appendix C
C
Customer service
Contacting 3M Instrumentation
Should your 3M equipment need to be returned for repair or for recalibration, please contact the
service department at the following number or access the online form via the website. For technical
issues, please contact Technical Support.
Service Department and Technical Support: 1 (800) 245-0779.
Fax: 1 (262) 567-4047. Office hours are 8:00 a.m. to 5:00 p.m. United States Central.
•
•
International customers
Contact your local, factory-authorized distributor from whom the product was purchased. You can
obtain the name and contact information of your local factory-authorized distributor from 3M by using
the e-mail, telephone, or fax information given under “Contacting 3M” above.
Calibration
The Sound Examiner and 3M field calibrator devices should be examined regularly by the factory. An
annual calibration is recommended. (Please see Service Department above.)
Warranty
3M warrants our instruments to be free from defects in materials and workmanship for one year under
normal conditions of use and service. For United States customers, we will replace or repair (our
option) defective instruments at no charge, excluding batteries, abuse, misuse, alterations, physical
damage, or instruments previously repaired by other than 3M. Microphones, sensors, printers, and
chart recorders may have shorter or longer warranty periods. This warranty states our total obligation
in place of any other warranties expressed or implied. Our warranty does not include any liability or
obligation directly resulting from any defective instrument or product or any associated damages,
injuries, or property loss, including loss of use or measurement data.
For warranty outside the United States, a minimum of one year warranty applies subject to the same
limitation and exceptions as above with service provided or arranged through the authorized 3M
distributor or our 3M European Service Laboratory. Foreign purchasers should contact the local 3M
authorized sales agent for detail.
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Data Addendum
40
Data Addendum: SE-400 Series measuring to IEC 61672-1
About this data addendum
This data addendum presents submission information for testing the 3MTM Sound Examiner SE-400 Series sound level meter
to the IEC61672-1 standard. The SE-400 Series is a data logging sound level meter.
Note: The nominal microphone sensitivity is -28 dB.
Linear operating range (sections: 5.5.10, 5.5.11, 9.2.7e, 9.3e, 9.3f)
The starting level for measuring level linearity is 114 dB at all frequencies. Calibration point is 114 dB at 400 mV @ 1 kHz.
Type/Class 1 and Type/Class 2
Equivalent input
voltage
Capacitance
Resistance
0.400 VRMS
12 pF
>1G
Linear operating range with SPL A-Weighting and LEQ A-Weighting (sections: 5.5.10, 5.5.11, 9.2.7e, 9.3e, 9.3f)
Note: Reference level 114 dB, Cal Point: 400mVrms = 114 dB @ 1 kHz
Frequency
SPL A-Weighting
LEQ A-Weighting
Linear Operating Range (dB)
Linear Operating Range (dB)
31.5
75
34
33
37
42
140
140
140
140
140
75
34
33
37
42
140
140
140
140
140
1000
4000
8000
12500
Linear operating range with SPL C-Weighting and LEQ C-Weighting (sections: 5.5.10, 5.5.11, 9.2.7e, 9.3e, 9.3f)
Note: Reference level 114 dB, Cal Point: 400mVrms = 114 dB @ 1 kHz
Frequency
SPLC-Weighting
LEQ C-Weighting
Linear Operating Range (dB)
Linear Operating Range (dB)
31.5
43
38
39
42
47
140
140
140
140
140
43
38
39
42
47
140
140
140
140
140
1000
4000
8000
12500
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Data Addendum
41
Linear operating range with SPL Z-Weighting and LEQ Z-Weighting (sections: 5.5.10, 5.5.11, 9.2.7e, 9.3e, 9.3f)
Note: Reference level 114 dB, Cal Point: 400mVrms = 114 dB @ 1 kHz
Frequency
SPL Z-Weighting
LEQ Z-Weighting
Linear Operating Range (dB)
Linear Operating Range (dB)
31.5
44
44
44
44
44
140
140
140
140
140
44
44
44
44
44
140
140
140
140
140
1000
4000
8000
12500
Electrical signal input (sections: 5.1.15, 9.3)
The equivalent input voltages for Type/Class 1 and Type/Class 2 at 1 kHz are listed below.
Maximum input level (sections: 5.1.16, 9.3i)
The maximum acoustic input level is 150 dB. The maximum level at the electrical input is 11 VAC.
Self generated noise levels (sections: 5.6.1 5.6.2 5.6.3, 9.3)
Level of self-generated noise in decibels (dB). Applies to time average and both fast and slow time weighting.
To measure 12 pF 50 Ohm connect a standard 50 Ohm terminator to the 073-738,12 pF 50 Ohm input adapter, to the
preamp input.
Microphone
QE4936
A-Weighting
26.1
C-Weighting
29.6
Z-Weighting
34.9
QE7052
28.3
30.8
35.4
12 pF 50 Ohm input adapter
25.6
29.3
34.9
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Data Addendum
42
Peak C Level Range
The nominal peak C level range is 55 dB to143 dB.
Effects of background noise (sections: 5.6.4, 5.6.5, 9.2.5d)
Background noise can cause considerable error in measurement when its intensity is close to that of a particular sound source of interest. When it is not possible
to eliminate or reduce the background noise, use the curve shown in Figure 4 to correct for the effect of the background noise on the measurement. For
example, if the background noise is 45 dB and the sound of interest measures 51 dB, the difference between measurement and background noise is 6 dB. From
Figure 4, for a 6 dB difference, 1.3 dB should be subtracted from the measurement. The correct measurement is therefore 51 dB- 1.3 dB= 49.7 dB.
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Data Addendum
43
Frequency weighting (sections: 5.1.10, 5.4.12)
A-Weighting Nominal
The graph below is the nominal A weighting frequency response
C-Weighting Nominal
The graph below is the nominal C weighting frequency response
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Data Addendum
44
Z-Weighting Nominal
The graph below is the nominal Z weighting frequency response
A-Weighting Typical
The graph below is the frequency typical A weighting frequency response
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Data Addendum
45
C-Weighting Typical
The graph below is the frequency weighting Typical C weighting frequency response.
The graph below is the Typical Z weighting frequency response
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Data Addendum
46
Nominal BK4936 microphone frequency response, diffraction and reflection corrections (section: 5.2.8)
Note: Add correction to electrical frequency response.
Nominal Frequency Hz
Nominal corrections in dB
Nominal Frequency Hz
Nominal corrections in dB
63
0.6
0.4
0.3
0.4
0.2
0.2
0.3
0.1
0.2
0.2
0.2
0.0
0.0
0.0
0.0
-0.1
0.0
-0.2
-0.2
-0.1
0.0
-0.2
-0.2
-0.1
0.0
0.1
0.0
0.0
3162
3350
-0.3
-0.3
80
100
3548
3758
3981
4217
4467
4732
5012
5309
5623
5957
6310
6683
7079
7499
7943
8414
8913
9441
10000
10593
11220
11885
12589
13335
14125
14962
15849
-0.1
0.0
125
160
0.2
200
0.0
250
-0.2
-0.1
-0.1
0.0
315
400
500
630
-0.2
-0.2
-0.1
0.0
800
1000
1059
1122
1189
1259
1334
1413
1496
1585
1679
1778
1884
1995
2113
2239
2371
-0.4
0.0
0.0
-0.2
-0.1
-0.1
-0.1
-0.1
-0.4
0.0
-0.1
-0.1
-0.4
-0.5
-0.7
2512
2661
-0.2
-0.1
2818
2985
-0.1
-0.2
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Data Addendum
47
Nominal BK4936 microphone frequency response, diffraction and reflection with windscreen corrections (section:
5.2.8)
Note: Add correction to electrical frequency response.
Nominal
Nominal
Frequency Hz
Frequency Hz
Nominal corrections in dB
Nominal corrections in dB
63
0.6
0.4
0.3
0.4
0.2
0.2
0.3
0.2
0.3
0.2
0.3
0.0
0.0
0.1
0.1
0.1
0.2
-0.1
0.1
0.1
0.2
0.1
0.2
0.2
0.3
0.4
0.3
0.3
0.2
0.3
0.3
0.2
3162
3350
3548
3758
3981
4217
4467
4732
5012
5309
5623
5957
6310
6683
7079
7499
7943
8414
8913
9441
10000
10593
11220
11885
12589
13335
14125
14962
15849
0.1
0.2
80
100
0.2
125
0.3
160
0.4
200
0.2
250
-0.1
-0.1
-0.1
0.0
315
400
500
630
-0.2
-0.2
-0.1
0.0
800
1000
1059
1122
1189
1259
1334
1413
1496
1585
1679
1778
1884
1995
2113
2239
2371
2512
2661
2818
2985
-0.4
0.0
0.0
-0.3
-0.3
-0.3
-0.3
-0.2
-0.4
-0.2
-0.3
-0.5
-0.9
-1.0
-1.2
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Data Addendum
48
Nominal BK4936 microphone frequency response, diffraction and reflection with random incidence corrector (RICR)
corrections (section: 5.2.8)
Note: Add correction to electrical frequency response.
Nominal
Nominal
Frequency Hz
Frequency Hz
Nominal corrections in dB
Nominal corrections in dB
63
0.7
0.5
0.4
0.5
0.3
0.3
0.4
0.2
0.3
0.2
0.3
0.1
0.0
0.0
0.1
0.1
0.3
0.2
0.1
0.1
0.2
0.3
0.3
0.2
0.3
0.5
0.5
0.4
0.3
0.4
0.4
2985
3162
3350
3548
3758
3981
4217
4467
4732
5012
5309
5623
5957
6310
6683
7079
7499
7943
8414
8913
9441
10000
10593
11220
11885
12589
13335
14125
14962
0.3
0.3
0.6
0.7
0.8
1.0
0.9
0.8
1.0
1.1
1.4
1.4
1.5
1.8
2.1
2.1
2.6
2.8
3.0
3.3
3.6
3.7
4.0
3.8
4.0
4.0
3.6
2.8
2.3
80
100
125
160
200
250
315
400
500
630
800
1000
1059
1122
1189
1259
1334
1413
1496
1585
1679
1778
1884
1995
2113
2239
2371
2512
2661
2818
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Data Addendum
49
Nominal BK4936 microphone frequency response, diffraction and reflection with RICR and windscreen corrections
(section: 5.2.8)
Note: Add correction to electrical frequency response.
Nominal
Frequency Hz
Nominal corrections in dB
Nominal
Frequency Hz
63
0.6
0.4
0.3
0.4
0.2
0.2
0.3
0.2
0.2
0.2
0.2
0.0
0.0
0.0
0.1
0.1
0.2
0.1
0.2
0.2
0.3
0.3
0.4
0.4
0.5
0.6
0.6
0.6
0.5
0.7
0.7
Nominal corrections in dB
80
2985
3162
3350
3548
3758
3981
4217
4467
4732
5012
5309
5623
5957
6310
6683
7079
7499
7943
8414
8913
9441
10000
10593
11220
11885
12589
13335
14125
14962
15849
0.6
0.7
0.8
1.0
1.1
1.3
1.2
1.1
1.2
1.3
1.6
1.6
1.8
2.0
2.4
2.3
2.9
3.2
3.1
3.4
3.6
3.7
3.8
3.6
3.3
3.0
2.2
1.3
0.9
0.0
100
125
160
200
250
315
400
500
630
800
1000
1059
1122
1189
1259
1334
1413
1496
1585
1679
1778
1884
1995
2113
2239
2371
2512
2661
2818
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Data Addendum
50
Nominal BK4936 microphone frequency response, diffraction and reflection with remote preamp corrections
(section: 5.2.8)
Note: Add correction to electrical frequency response.
Nominal
Frequency Hz
Nominal
Frequency Hz
Nominal corrections in dB
Nominal corrections in dB
2985
-0.1
-0.2
-0.2
-0.3
-0.2
-0.2
-0.3
-0.4
-0.3
-0.1
0.0
63
0.5
0.3
0.2
0.3
0.1
0.1
0.2
0.1
0.2
0.1
0.2
0.0
0.0
0.1
0.1
0.1
0.2
0.0
0.0
-0.1
-0.1
-0.2
-0.1
-0.2
-0.2
-0.2
-0.1
-0.1
-0.1
-0.1
-0.1
3162
80
3350
100
3548
125
3758
160
3981
200
4217
250
4467
315
4732
400
5012
500
5309
630
5623
-0.5
-0.8
-0.6
-0.1
-0.4
-0.4
-0.6
-0.7
0.0
800
5957
1000
1059
1122
1189
1259
1334
1413
1496
1585
1679
1778
1884
1995
2113
2239
2371
2512
2661
2818
6310
6683
7079
7499
7943
8414
8913
9441
-0.4
-0.7
-0.1
-0.4
-0.5
0.1
10000
10593
11220
11885
12589
13335
14125
14962
15849
-0.4
-0.5
-0.4
-0.8
Sound Examiner SE-400 Series
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Data Addendum
51
Nominal BK4936 microphone frequency response, diffraction and reflection with remote preamp and windscreen
corrections (section: 5.2.8)
Note: Add correction to electrical frequency response.
Nominal
Frequency Hz
Nominal
Frequency Hz
Nominal corrections in dB
Nominal corrections in dB
2985
3162
3350
3548
3758
3981
4217
4467
4732
5012
5309
5623
5957
6310
6683
7079
7499
7943
8414
8913
9441
10000
10593
11220
11885
12589
13335
14125
14962
15849
0.3
0.3
0.3
0.3
0.3
0.3
0.2
0.0
0.2
0.3
0.4
-0.1
-0.2
0.2
0.7
0.2
0.3
0.2
0.1
0.5
-0.1
0.0
0.0
-0.8
-1.3
-1.8
-2.5
-2.8
-2.6
-2.9
63
0.4
0.2
0.2
0.2
0.0
0.0
0.1
0.0
0.1
0.0
0.1
-0.1
0.0
0.1
0.1
0.1
0.3
0.1
0.0
0.0
0.0
0.0
0.1
0.0
0.1
0.1
0.2
0.2
0.3
0.3
0.3
80
100
125
160
200
250
315
400
500
630
800
1000
1059
1122
1189
1259
1334
1413
1496
1585
1679
1778
1884
1995
2113
2239
2371
2512
2661
2818
Sound Examiner SE-400 Series
Download from Www.Somanuals.com. All Manuals Search And Download.
Data Addendum
52
Nominal BK4936 microphone frequency response, diffraction and reflection with remote preamp and RICR
corrections
(section: 5.2.8)
Note: Add correction to electrical frequency response.
Nominal
Nominal
Frequency Hz
Nominal corrections in dB
Frequency Hz
Nominal corrections in dB
63
0.4
0.2
0.1
0.2
0.0
0.0
0.1
0.0
0.1
0.0
0.2
0.1
0.0
0.1
0.1
0.2
0.4
0.2
0.1
0.0
-0.1
0.0
-0.1
-0.1
0.1
0.2
0.1
0.2
0.2
2661
2818
2985
3162
3350
3548
3758
3981
4217
4467
4732
5012
5309
5623
5957
6310
6683
7079
7499
7943
8414
8913
9441
10000
10593
11220
11885
12589
13335
14125
14962
15849
0.3
0.2
0.3
0.3
0.4
0.4
0.5
0.6
0.6
0.6
0.8
1.2
1.4
1.0
1.0
1.5
2.2
2.0
2.2
2.4
2.8
3.6
3.1
3.6
4.1
3.7
4.0
4.1
3.5
3.1
2.4
1.7
80
100
125
160
200
250
315
400
500
630
800
1000
1059
1122
1189
1259
1334
1413
1496
1585
1679
1778
1884
1995
2113
2239
2371
2512
Sound Examiner SE-400 Series
Download from Www.Somanuals.com. All Manuals Search And Download.
Data Addendum
53
Nominal BK4936 microphone frequency response, diffraction and reflection with remote preamp RICR, &
windscreen corrections (Section: 5.2.8)
Note: Add correction to electrical frequency response.
Nominal
Frequency Hz
Nominal
Frequency Hz
Nominal corrections in dB
Nominal corrections in dB
3162
3350
3548
3758
3981
4217
4467
4732
5012
5309
5623
5957
6310
6683
7079
7499
7943
8414
8913
9441
10000
10593
11220
11885
12589
13335
14125
14962
15849
0.8
0.8
0.9
1.0
1.0
1.0
1.0
1.2
1.5
1.7
1.3
1.4
2.1
2.7
2.5
2.7
3.0
3.2
3.8
3.2
3.9
4.1
3.4
3.4
2.9
2.1
1.5
0.7
0.1
63
0.3
0.1
0.0
0.1
-0.1
-0.1
0.0
-0.1
0.0
-0.1
0.1
0.0
0.0
0.1
0.2
0.2
0.4
0.3
0.2
0.1
0.0
0.1
0.1
0.1
0.3
0.5
0.4
0.6
0.6
0.7
0.7
0.7
80
100
125
160
200
250
315
400
500
630
800
1000
1059
1122
1189
1259
1334
1413
1496
1585
1679
1778
1884
1995
2113
2239
2371
2512
2661
2818
2985
Sound Examiner SE-400 Series
Download from Www.Somanuals.com. All Manuals Search And Download.
Data Addendum
54
Nominal QE7052 microphone frequency response, diffraction and reflection corrections (section: 5.2.8)
Note: Add correction to electrical frequency response
Nominal
Frequency Hz
Nominal corrections in dB
63
0.6
0.4
0.3
0.4
0.2
0.2
0.3
0.2
0.2
0.2
0.2
0.0
0.0
0.1
0.2
0.3
0.3
0.3
0.9
1.0
1.4
1.1
80
100
125
160
200
250
315
400
500
630
800
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
Sound Examiner SE-400 Series
Download from Www.Somanuals.com. All Manuals Search And Download.
Data Addendum
55
Nominal QE7052 microphone frequency response, diffraction and reflection corrections with windscreen
(section: 5.2.8)
Note: Add correction to electrical frequency response
Nominal
Frequency Hz
Nominal corrections in dB
63
0.5
0.3
0.1
0.2
0.0
0.1
0.2
0.0
0.1
0.0
0.2
0.0
0.0
0.3
0.3
0.5
0.6
0.6
1.1
1.0
1.3
0.7
80
100
125
160
200
250
315
400
500
630
800
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
Sound Examiner SE-400 Series
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Data Addendum
56
Pressure to free field corrections with BK4936 microphone (sections: 5.2.8, 9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
BK4936 microphone
PressureꢀField to
Free Field
Frequency
in Hz
32
Coꢀrꢀctions
ꢀn dB
0.1
40
0.0
50
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
-0.2
-0.1
0.0
63
80
100
125
160
200
250
315
400
0.1
500
0.2
630
0.1
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.0
0.2
0.4
0.5
0.8
1.6
2.1
3.1
3.9
5.3
6.2
8.4
Sound Examiner SE-400 Series
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Data Addendum
57
Pressure to free field corrections with BK4936 microphone and windscreen (sections: 5.2.8, 9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
BK4936 microphone
Pressure Field to
Free Field
Frequency
in Hz
Corrections
in dB
32
40
0.1
0.0
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
-0.2
-0.1
0.0
0.1
0.2
0.1
0.0
0.0
0.0
0.2
0.4
0.5
0.8
1.6
2.1
3.1
3.9
5.3
6.2
8.4
50
63
80
100
125
160
200
250
315
400
500
630
800
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
Sound Examiner SE-400 Series
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Data Addendum
58
Pressure to free field corrections with BK4936 microphone and RICR (sections: 5.2.8, 9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
BK4936 microphone
Pressure Field to
Free Field
Frequency
in Hz
32
Corrections
in dB
0.1
40
0.0
50
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
0.0
63
80
100
125
160
200
250
0.0
315
0.2
400
0.2
500
0.2
630
0.2
800
0.1
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.2
0.4
0.7
1.0
1.5
2.5
3.4
5.0
6.8
9.1
10.3
10.5
Sound Examiner SE-400 Series
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Data Addendum
59
Pressure to free field corrections with BK4936 microphone and RIC and windscreen (sections: 5.2.8, 9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
BK4936 microphone
Pressure Field to
Free Field
Frequency
in Hz
32
Corrections
in dB
0.1
40
0.0
50
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
-0.3
-0.2
-0.1
-0.1
-0.1
0.0
63
80
100
125
160
200
250
315
400
500
630
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
0.0
0.4
0.2
0.7
1.3
1.9
2.5
3.7
5.3
6.9
9.4
9.2
Sound Examiner SE-400 Series
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Data Addendum
60
Pressure to free field corrections with BK4936 microphone and RICR, windscreen, and remote preamp
(sections: 5.2.8, 9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
BK4936 microphone
Pressure Field to
Free Field
Frequency
in Hz
32
Corrections
in dB
0.1
40
0.0
50
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
-0.2
-0.1
0.0
63
80
100
125
160
200
250
315
400
0.1
500
0.2
630
0.1
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.2
0.6
0.9
1.2
1.8
2.8
3.5
5.3
7.1
9.2
9.3
9.1
Sound Examiner SE-400 Series
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Data Addendum
61
Pressure to free field corrections with BK4936 microphone and remote preamp (sections: 5.2.8, 9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
BK4936 microphone
Pressure Field to
Free Field
Frequency
in Hz
32
Corrections
in dB
0.1
40
0.0
50
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
-0.2
-0.1
0.0
63
80
100
125
160
200
250
315
400
0.0
500
0.1
630
0.1
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.2
0.1
0.2
0.6
0.9
1.3
2.1
2.7
3.3
4.8
6.4
8.4
Sound Examiner SE-400 Series
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Data Addendum
62
Pressure to free field corrections with BK4936 microphone and remote preamp and windscreen (sections: 5.2.8,
9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
BK4936 microphone
Pressure Field to
Free Field
Frequency
in Hz
32
Corrections
in dB
0.1
40
0.0
50
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
0.0
63
80
100
125
160
200
250
315
0.0
400
0.0
500
0.1
630
0.0
800
-0.1
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.3
0.2
0.5
0.9
1.4
1.7
2.4
3.1
3.8
5.2
6.2
7.8
Sound Examiner SE-400 Series
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Data Addendum
63
Pressure to free field corrections with BK4936 microphone and remote preamp and windscreen (sections: 5.2.8,
9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
BK4936 microphone
Pressure Field to
Free Field
Frequency
in Hz
32
Corrections
in dB
0.1
40
0.0
50
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
-0.3
-0.1
0.0
63
80
100
125
160
200
250
315
400
0.0
500
0.0
630
0.0
800
0.1
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.4
0.1
0.4
0.9
1.4
2.0
3.4
4.8
6.4
9.0
10.5
10.8
Sound Examiner SE-400 Series
Download from Www.Somanuals.com. All Manuals Search And Download.
Data Addendum
64
Pressure to free field corrections with BK4936 microphone and remote preamp and RICR (sections: 5.2.8, 9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
BK4936 microphone
Pressure Field to
Free Field
Frequency
in Hz
32
Corrections
in dB
0.1
40
0.0
50
-0.1
-0.1
-0.1
-0.1
-0.1
-0.1
-0.3
-0.1
0.0
63
80
100
125
160
200
250
315
400
0.0
500
0.0
630
0.0
800
0.1
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.4
0.1
0.4
0.9
1.4
2.0
3.4
4.8
6.4
9.0
10.5
10.8
Sound Examiner SE-400 Series
Download from Www.Somanuals.com. All Manuals Search And Download.
Data Addendum
65
Pressure to free field corrections with QE7052 microphone (sections: 5.2.8, 9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
QE7052 microphone
Pressure Field to
Free Field
Frequency
in Hz
32
Corrections
in dB
0.1
40
-0.1
0.0
50
63
-0.1
-0.2
-0.3
-0.3
-0.3
0.0
80
100
125
160
200
250
0.1
315
0.1
400
0.1
500
0.1
630
0.1
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.0
0.2
0.4
0.5
0.5
1.3
2.3
4.4
5.0
4.5
5.6
7.9
Sound Examiner SE-400 Series
Download from Www.Somanuals.com. All Manuals Search And Download.
Data Addendum
66
Pressure to free field corrections with QE7052 microphone with windscreen (sections: 5.2.8, 9.2.7d)
Note: add to pressure response to get 0⁰incidence free-field response. B&K 4226 calibrator may be used to determine the
pressure field response.
QE7052 microphone
Pressure Field to
Free Field
Frequency
in Hz
32
Corrections
in dB
0.1
40
-0.1
0.0
50
63
-0.1
-0.2
-0.3
-0.3
-0.3
-0.3
-0.2
-0.1
-0.1
-0.1
0.0
80
100
125
160
200
250
315
400
500
630
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.2
0.3
0.5
0.8
0.9
1.5
2.3
4.3
4.7
3.9
5.2
7.2
Sound Examiner SE-400 Series
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Data Addendum
67
Pressure to random incidence corrections with BK4936 microphone (section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
BK4936 microphone
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.3
40
0.3
50
0.2
63
0.1
80
0.0
100
0.0
125
0.1
160
0.0
200
0.0
250
0.1
315
0.0
400
0.1
500
0.0
630
0.1
800
0.2
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.2
-0.3
0.1
0.2
0.3
0.4
0.8
1.2
1.3
2.2
2.4
3.6
Sound Examiner SE-400 Series
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Data Addendum
68
Pressure to random incidence corrections with BK4936 microphone and windscreen (section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
BK4936 microphone &
windscreen
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.4
40
0.3
50
0.2
63
0.2
80
0.0
100
0.0
125
0.1
160
0.0
200
0.0
250
0.1
315
0.0
400
0.2
500
0.0
630
0.1
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.1
-0.2
0.1
0.4
0.6
0.9
1.1
1.4
1.4
2.2
2.3
3.0
Sound Examiner SE-400 Series
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Data Addendum
69
Pressure to random incidence corrections with BK4936 microphone and RICR (section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
BK4936 microphone & RIC
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.3
40
0.3
50
0.1
63
0.1
80
0.0
100
-0.1
0.0
125
160
-0.1
-0.1
0.0
200
250
315
0.0
400
0.1
500
-0.1
0.1
630
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.2
-0.3
0.0
0.2
0.4
0.9
1.7
2.6
3.7
5.6
6.2
5.7
Sound Examiner SE-400 Series
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Data Addendum
70
Pressure to random incidence corrections with BK4936 microphone, RICR, and windscreen
(section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
BK4936 microphone &
RICR & windscreen
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.3
40
0.2
50
0.1
63
0.1
80
0.1
100
0.0
125
-0.1
0.0
160
200
0.0
250
0.0
315
0.0
400
0.2
500
0.1
630
0.0
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.2
0.2
0.5
0.8
1.1
1.7
2.3
3.2
4.1
5.9
5.2
3.9
Sound Examiner SE-400 Series
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Data Addendum
71
Pressure to random incidence corrections with BK4936 microphone, RICR, windscreen, and remote preamp
(section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
BK4936 microphone, RICR,
windscreen & remote
preamp
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.3
40
0.2
50
0.1
63
0.1
80
0.1
100
0.0
125
-0.1
0.0
160
200
0.0
250
0.0
315
0.0
400
0.2
500
0.1
630
0.0
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.2
0.2
0.5
0.8
1.1
1.7
2.3
3.2
4.1
5.9
5.2
3.9
Sound Examiner SE-400 Series
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Data Addendum
72
Pressure to random incidence corrections with BK4936 microphone & remote preamp
(section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
BK4936 microphone &
remote preamp
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.4
40
0.4
50
0.3
63
0.2
80
0.1
100
0.1
125
0.1
160
0.0
200
0.0
250
0.2
315
0.1
400
0.2
500
0.1
630
0.2
800
0.1
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.4
0.0
0.1
0.3
0.4
0.6
0.9
1.3
1.5
2.2
2.6
3.6
Sound Examiner SE-400 Series
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Data Addendum
73
Pressure to random incidence corrections with BK4936 microphone, remote preamp, and windscreen
(section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
BK4936 microphone ,
remote preamp, &
windscreen
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.3
40
0.3
50
0.2
63
0.1
80
0.0
100
-0.1
0.0
125
160
-0.1
-0.1
0.1
200
250
315
0.0
400
0.1
500
-0.1
0.1
630
800
-0.2
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.4
0.0
0.1
0.6
1.0
1.5
2.1
2.5
3.1
4.6
5.0
7.1
Sound Examiner SE-400 Series
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Data Addendum
74
Pressure to random incidence corrections with BK4936 microphone, remote preamp, and RICR
(section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
BK4936 microphone ,
remote preamp, & RICR
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.5
40
0.5
50
0.4
63
0.3
80
0.2
100
0.1
125
0.2
160
0.1
200
0.1
250
0.3
315
0.2
400
0.3
500
0.1
630
0.2
800
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.3
0.1
0.2
0.4
0.7
1.1
1.8
2.7
3.8
5.6
6.1
5.3
Sound Examiner SE-400 Series
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Data Addendum
75
Pressure to random incidence corrections with QE7052 (section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
QE7052 microphone
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.4
40
0.3
50
0.3
63
0.2
80
0.1
100
0.0
125
0.0
160
-0.1
-0.1
0.0
200
250
315
-0.1
0.0
400
500
-0.2
0.0
630
800
-0.1
0.0
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.1
-0.5
-0.3
-0.3
-0.2
0.2
1.1
2.5
3.0
1.9
2.2
3.3
Sound Examiner SE-400 Series
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Data Addendum
76
Pressure to random incidence corrections with QE7052 microphone and windscreen (section 5.2.7)
Note: added to the pressure response to calculate random incidence response.
QE7052 microphone &
windscreen
Random Incidence
Frequency
in Hz
32
Corrections
in dB
0.4
40
0.3
50
0.3
63
0.2
80
0.1
100
0.0
125
0.0
160
-0.1
-0.1
0.0
200
250
315
-0.1
0.0
400
500
-0.1
-0.1
0.0
630
800
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
0.0
-0.3
0.1
0.3
0.4
0.7
1.5
2.8
2.9
1.5
2.0
2.8
Sound Examiner SE-400 Series
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Data Addendum
77
Windscreen corrections with BK4936 microphone
*Note: add to the windscreen response to calculate the response without the windscreen
Frequency
in Hz
1000
Corrections
in dB
0.0
1250
-0.2
1600
-0.2
2000
-0.3
2500
-0.4
3150
-0.4
4000
-0.2
5000
0.0
6300
0.0
8000
0.0
10000
12500
16000
0.1
0.2
0.5
Windscreen corrections with BK4936 microphone and random incidence corrector ring (RICR)
*Note: add to the windscreen response to calculate the response without the windscreen
Frequency
in Hz
1000
Corrections
in dB
0.0
1250
0.1
1600
-0.1
2000
-0.2
2500
-0.2
3150
-0.3
4000
-0.3
5000
-0.2
6300
-0.3
8000
-0.3
10000
12500
16000
0.0
1.0
1.4
Sound Examiner SE-400 Series
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Data Addendum
78
Windscreen corrections with BK4936 microphone, RICR, and remote preamp
*Note: add to the windscreen response to calculate the response without the windscreen
Frequency
in Hz
1000
Corrections
in dB
0.0
1250
0.0
1600
-0.1
2000
-0.2
2500
-0.4
3150
-0.5
4000
-0.4
5000
-0.4
6300
-0.5
8000
-0.5
10000
12500
16000
-0.4
1.2
1.6
Windscreen corrections with BK4936 microphone and remote preamp
*Note: add to the windscreen response to calculate the response without the windscreen
Frequency
in Hz
1000
Corrections
in dB
0.0
1250
-0.1
1600
-0.2
2000
-0.4
2500
-0.4
3150
-0.5
4000
-0.4
5000
-0.3
6300
-0.4
8000
-0.5
10000
12500
16000
-0.4
0.2
0.6
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Data Addendum
79
Windscreen corrections with QE7052 microphone
*Note: add to the windscreen response to calculate the response without the windscreen
Frequency
in Hz
Corrections
in dB
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.0
-0.2
-0.2
-0.3
-0.4
-0.4
-0.2
0.0
0.0
0.0
0.1
0.2
0.5
Display and Integration (sections: 5.15.5, 5.15.6, 5.15.7, 9.2.5f)
The display update rate is 1 second. The display is updated every second during integration.
Resetting Overload, Under Range, Maximum, and Peak (section 9.2.5 k)
Press the run key to reset. This will reset the measurement data and the indicators. The time to reset is immediate.
Minimum/Maximum integration time (sections: 5.17.1, 5.17.2)
The Minimum/Maximum integration time for measurement time-average levels.
Measurement type
Minimum
Time average levels
1 second
Maximum
99 hours
Reference direction (section: 9.2.5a)
The reference direction is at 0⁰ for both BK4936 and QE7052 microphone. The equivalent random incidence direction is 70⁰.
AC/DC Output Characteristics (section 5.16.1)
AC Output:
Weighting: Z-Weighting
Range of Signal: +/- 2.5 Vp
Output Impedance: 2K Ohm
Recommended load impedance: > 40K Ohms
DC Output:
Weighting: A, C, or Z (as set by user)
Range of Signal: 0 to 3.3Vdc, 1mV = 0.1dB (i.e. 450mV = 45.0dB), Under-range ~ 0Vdc, Overload >= 2.0Vdc
Output Impedance: 1K Ohm
Recommended load impedance: > 20K
Sound Examiner SE-400 Series
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Data Addendum
80
Cable and radio frequency emission (sections: 5.18.1, 5.18.2, 9.3n)
The charging cable is a shielded 1 meter long USB cable.
Battery voltage range and power supply (sections: 5.20.2, 5.20.3, 9.3j)
The charging circuit stops charging when the battery voltage reaches its maximum of 4.1 Volts DC. The unit shuts down
when the minimum battery voltage of 3.4 volts DC is reached. The instrument may be operated with a USB power cable.
Electrostatic discharges (section 6.5.2, 9.2.7 b)
Exposure to electrostatic discharges will not change operating state, change of configuration or corruption or loss of stored
data.
AC power and radio frequency (sections: 6.6.1, 6.6.3, 6.6.4, 9.2.7c, 9.3o)
No effect was observed in any orientation or configuration of the SE-400 SERIES within a 60 Hz 80 A/m magnetic
field. During radio frequency immunity testing, a 3-meter USB cable was connected between the SE-400 Series and
a computer USB port. The SE-400 Series was set to display SPL.
Directional windscreen corrections (section: 7.2)
Note: in dB re:20 uPA
0 Degree
Incidence
Angle
30 Degree
Incidence
Angle
60 Degree
Incidence
Angle
90 Degree
Incidence
Angle
120 Degree
Incidence
Angle
150 Degree
Incidence
Angle
180 Degree
Incidence
Angle
Frequency
in Hz
Random
Field
1000
1250
1600
2000
2500
3150
4000
5000
6300
8000
10000
12500
16000
0.2
0.3
-0.1
-0.3
-0.1
0.1
0.5
1.1
1.1
1.8
3.1
6.1
8.2
0.1
0.1
0.0
-0.2
-0.1
-0.2
-0.2
0.0
0.0
0.1
0.3
0.4
1.0
0.0
0.1
0.0
0.1
-0.1
0.0
-0.2
-0.3
-0.5
-0.3
0.0
0.3
0.1
0.7
1.1
0.0
0.1
0.0
0.0
-0.2
-0.5
0.0
0.0
0.1
-0.1
-0.2
-0.2
-0.3
-0.4
-0.2
-0.1
-0.2
0.0
-0.1
0.0
-0.1
0.0
-0.1
-0.1
-0.2
-0.3
-0.5
-0.3
-0.1
0.1
0.1
-0.2
-0.3
-0.5
-0.4
-0.1
0.6
-0.1
-0.2
-0.4
-0.4
-0.2
0.5
0.0
-0.2
-0.6
-0.7
-0.5
0.0
0.7
1.2
0.8
0.1
-0.9
0.9
1.6
0.8
0.1
0.4
1.8
2.0
1.0
0.9
Sound level meter type (sections: 5.1.4, 5.1.7, 7.3, 9.2.1 a, and 9.2.5b)
Class 1 when using the BK4936 microphone. Class 2 when using the QE7052 microphone. Group X. Model SE-400
Series. This is applicable with all accessory configurations. The configuration for normal mode of operation with
the SE-400 Series is operating the instrument without the remote cable and windscreen. To conform to the
specifications for directional response and frequency weightings, the instrument is mounted in a free-field facility
using strings.
General Information (section 9.3)
The reference sound pressure level is 114 dB. The one range is the reference range. The microphone reference point is the
center of the microphone face.
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Data Addendum
81
Environmental effects (section 6.1.2 and 9.3L)
The typical time intervals needed to stabilize after changes in environmental conditions include:
• For temperature change of 10 ºC (18 ºF) allow at least 5 minutes.
• For relative humidity change of 30% (non-condensing) allow at least 30 minutes.
• For static pressure change of 10 kPa allow at least 5 seconds.
Microphones
The Microphones section includes the Class/Type 2 General QE7052 microphone with accessories and the Class/Type 1
Precision BK4936 microphone with accessories. The listing below details the sections for the directional frequency response
of the microphones with the units side or back facing towards the sound source.
•
•
•
•
•
•
•
QE7052 microphone side facing
QE7052 microphone back facing
QE7052 microphone with windscreen side facing
QE7052 microphone with windscreen back facing
BK4936 microphone side facing
BK4936 microphone back facing
BK4936 microphone with windscreen back facing
BK4936 microphone with windscreen side facing
BK4936 microphone using remote preamp
BK4936 microphone using windscreen & remote preamp
•
•
•
•
•
•
BK4936 microphone with random incidence corrector ring (RICR) side facing
BK4936 microphone with RICR back facing
BK4936 microphone with RICR and windscreen side facing
BK4936 microphone with RICR and windscreen back facing
BK4936 microphone with remote preamp and RICR
BK4936 microphone with remote preamp, RICR, and windscreen
Sound Examiner SE-400 Series
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82 Index
QE7052 microphone back facing
Tolerance: IEC 61672 class 2
Directional frequency response facing back toward sound source (0⁰-30⁰incidence angles)
Directional frequency response facing back toward sound source (0⁰-90⁰ incidence angles)
Sound Examiner SE-400 Series
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83 Index
Directional frequency response facing back toward sound source (0⁰-150⁰ incidence angles)
Directional frequency response facing back toward sound source (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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84 Index
QE7052 microphone side facing
Tolerance: IEC 61672 class 2
Directional frequency response positioned side toward noise source (0⁰-30⁰incidence angles)
Directional frequency positioned side toward noise source (0⁰-90⁰ incidence angles)
Sound Examiner SE-400 Series
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85 Index
Directional frequency response positioned side toward noise source (0⁰-150⁰ incidence angles)
Directional frequency response positioned side toward noise source (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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86 Index
QE7052 microphone with windscreen side facing
Tolerance: IEC 61672 class 2
Directional frequency response positioned side toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned side noise source (0⁰-90⁰ incidence angles)
Sound Examiner SE-400 Series
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87 Index
Directional frequency response positioned side noise source (0⁰-150⁰ incidence angles)
Directional frequency response positioned side noise source (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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88 Index
QE7052 microphone with windscreen back facing
Tolerance: IEC 61672 class 2
Directional frequency response positioned facing side toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned facing toward noise source (0⁰-90⁰ incidence angles)
Sound Examiner SE-400 Series
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89 Index
Directional frequency response positioned facing toward noise source (0⁰-150⁰ incidence angles)
Directional frequency response positioned facing toward noise source (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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90 Index
BK4936 microphone side facing
Tolerance: IEC 61672 class 1
Directional frequency response positioned with side toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned with side toward noise source (0⁰-90⁰ incidence angles)
Sound Examiner SE-400 Series
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91 Index
Directional frequency response positioned using side toward noise source (0⁰-150⁰ incidence angles)
Directional frequency response positioned using side toward noise source (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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92 Index
BK4936 microphone back facing
Tolerance: IEC 61672 class 1
Directional frequency response positioned back-side toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned back-side toward noise source (0⁰-90⁰ incidence angles)
Sound Examiner SE-400 Series
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93 Index
Directional frequency response positioned back-side toward noise source (0⁰-150⁰ incidence angles)
Directional frequency response positioned back-side toward noise source (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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94 Index
BK4936 microphone with windscreen back facing
Tolerance: IEC 61672 class 1
Directional frequency response positioned back-side toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned back-side toward noise source (0⁰-90⁰ incidence angles)
Sound Examiner SE-400 Series
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95 Index
Directional frequency response positioned back-side toward noise source (0⁰-150⁰ incidence angles)
Directional frequency response positioned back-side toward noise source (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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96 Index
BK4936 microphone with windscreen side facing
Tolerance: IEC 61672 class 1
Directional frequency response positioned side toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned side toward noise source (0⁰-90⁰incidence angles)
Sound Examiner SE-400 Series
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97 Index
Directional frequency response positioned side toward noise source (0⁰-150⁰ incidence angles)
Directional frequency response positioned side toward noise source (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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98 Index
BK4936 microphone using remote preamp
Tolerance: IEC 61672 class 1
Directional frequency response positioned with a remote preamp (0⁰-30⁰incidence angles)
Directional frequency response positioned with a remote preamp (0⁰-90⁰ incidence angles)
Sound Examiner SE-400 Series
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99 Index
Directional frequency response positioned with a remote preamp (0⁰-150⁰ incidence angles)
Directional frequency response positioned with a remote preamp (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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100 Index
BK4936 microphone using windscreen & remote preamp
Tolerance: IEC 61672 class 1
Directional frequency response using windscreen & remote preamp (0⁰-30⁰incidence angles)
Directional frequency response using windscreen & remote preamp (0⁰-90⁰ incidence angles)
Sound Examiner SE-400 Series
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101 Index
Directional frequency response using windscreen & remote preamp (0⁰-150⁰ incidence angles)
Directional frequency response using windscreen & remote preamp (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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102 Index
BK4936 microphone with RICR side facing
Tolerance: IEC 61672 class 1
Directional frequency response positioned side toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned side toward noise source (0⁰-90⁰incidence angles)
Sound Examiner SE-400 Series
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103 Index
Directional frequency response positioned side toward noise source (0⁰-150⁰incidence angles)
Directional frequency response positioned side toward noise source (0⁰-180⁰incidence angles)
Sound Examiner SE-400 Series
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104 Index
BK4936 microphone with RICR back facing
Tolerance: IEC 61672 class 1
Directional frequency response positioned back toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned back toward noise source (0⁰-90⁰incidence angles)
Sound Examiner SE-400 Series
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105 Index
Directional frequency response positioned back toward noise source (0⁰-150⁰incidence angles)
Directional frequency response positioned back toward noise source (0⁰-150⁰incidence angles)
Sound Examiner SE-400 Series
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106 Index
BK4936 microphone with RICR and windscreen side facing
Tolerance: IEC 61672 class 1
Directional frequency response positioned side toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned side toward noise source (0⁰-90⁰incidence angles)
Sound Examiner SE-400 Series
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107 Index
Directional frequency response positioned side toward noise source (0⁰-150⁰incidence angles)
Directional frequency response positioned side toward noise source (0⁰-180⁰incidence angles)
Sound Examiner SE-400 Series
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108 Index
BK4936 microphone with RICR and windscreen back facing
Tolerance: IEC 61672 class 1
Directional frequency response positioned back toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned back toward noise source (0⁰-90⁰incidence angles)
Sound Examiner SE-400 Series
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109 Index
Directional frequency response positioned back toward noise source (0⁰-150⁰ incidence angles)
Directional frequency response positioned back toward noise source (0⁰-180⁰ incidence angles)
Sound Examiner SE-400 Series
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110 Index
BK4936 microphone with RICR and remote preamp
Tolerance: IEC 61672 class 1
Directional frequency response positioned toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned toward noise source (0⁰-90⁰incidence angles)
Sound Examiner SE-400 Series
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111 Index
Directional frequency response positioned toward noise source (0⁰-150⁰incidence angles)
Directional frequency response positioned toward noise source (0⁰-180⁰incidence angles)
Sound Examiner SE-400 Series
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112 Index
BK4936 microphone with remote preamp, RICR, and windscreen
Tolerance: IEC 61672 class 1
Directional frequency response positioned toward noise source (0⁰-30⁰incidence angles)
Directional frequency response positioned toward noise source (0⁰-90⁰incidence angles)
Sound Examiner SE-400 Series
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113 Index
Directional frequency response positioned toward noise source (0⁰-150⁰incidence angles)
Directional frequency response positioned toward noise source (0⁰-180⁰incidence angles)
Sound Examiner SE-400 Series
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About Us
3M Detection Solutions is a world class manufacturer of rugged, reliable instrumentation and software systems that
help monitor and evaluate occupational and environmental health and safety hazards, including noise dosimetry,
sound level monitoring, heat stress, indoor air quality and select toxic/combustible gases. The 3M Detection brand of
instrumentation is used by safety and industrial hygiene professionals to help comply with applicable occupational
standards and regulations.
About 3M Personal Safety
3M offers a comprehensive, diverse portfolio of Personal Safety solutions providing respiratory protection, hearing
protection, fall protection, reflective materials for high visibility, protective clothing, protective eyewear, head and
face protection, welding helmets, and other adjacent products and solutions such as tactical safety equipment,
detection, monitoring equipment, active communications equipment and compliance management. In 2012, 3M
celebrated 40 years of safety leadership – recognizing the company’s respiratory and hearing protection solutions
introduced in 1972. Visit www.3M.com/PPESafety or http://m.3m.com/PPESafety for details.
Personal Safety Division
3M Detection Solutions
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All rights reserved.
www.3M.com/detection
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