Kramer Electronics TV Cables VS 4X4 User Manual

KRAMER ELECTRONICS, Ltd.  
USER MANUAL  
Vertical Interval Switcher  
Model:  
VS-4X4YC  
IMPORTANT: Before proceeding, please read paragraph entitled  
"Unpacking and Contents"  
KRAMER ELECTRONICS, LTD.  
P/N: 2900-002005  
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1.  
INTRODUCTION  
Congratulations on your purchase of this Kramer switcher. Since 1981 Kramer has been dedicated to  
the development and manufacture of high quality video/audio equipment. The Kramer industrial line  
has become an integral part of many of the best video/audio production and presentation facilities  
around the world. In recent years, Kramer has redesigned and upgraded most of the industrial line,  
making the best even better. Kramer’s line of professional video electronics is one of the most versatile  
and complete available, and is a true leader in terms of quality, workmanship, price/performance ratio  
and innovation. In addition to the Kramer line of high quality video switchers, such as the one you have  
just purchased, Kramer also offers a full line of high quality industrial and broadcast distribution  
amplifiers, processors, interfaces, controllers and computer-related products. Kramer welcomes your  
inquiries for Kramer equipment or custom-manufactured products, engineering, private labeling and  
OEM manufacturing per your specifications. This manual includes configuration, operation and option  
information for the VS-4x4YC.  
1.1 A Word on Video/Audio Switchers  
A video/audio switcher switches between several sources (inputs) and one or more acceptors (outputs).  
A switcher that allows several inputs to be connected to several outputs simultaneously is called a  
matrix switcher. Switchers may be of the electronic or mechanical type. Most matrices, with many  
cross points, are of the active electronic type. Vertical interval switching is needed when recording or  
transmitting a video program involving several video sources, as in live broadcast, to ensure clean,  
undisturbed picture transitions. Frequently used in video, vertical interval switching ensures that the  
transition from one video source to another (such as switching between two genlocked cameras) is  
smooth and without interference. The switching and changeover is done during the blanked vertical  
interval period, when the transition is hidden. Switchers can be controlled by touch buttons on the front  
panel or by a PC, via the switcher's built-in communication ports, which may be RS-232 or RS-  
485/422. Each of these latter options is a way of remotely controlling a video/audio device (switcher,  
SEG, etc.) using a PC with a serial port, or another device that uses a similar communication protocol.  
Finally, the wide bandwidth of the video signal permits Kramer switchers to be used in the most  
demanding of applications. Switchers can be interconnected and cascaded to multiply inputs or  
connected in parallel to multiply outputs. Several machines may be operated simultaneously via PC  
control or looped through.  
1.2 Factors Affecting Quality of Results  
There are many factors affecting the quality of results when signals are transmitted from a source to  
an acceptor:  
Connection cables - Low quality cables are susceptible to interference; they degrade signal quality  
due to poor matching and cause elevated noise levels. They should therefore be of the best quality.  
Sockets and connectors of the sources and acceptors - So often ignored, they should be of highest  
quality, since "Zero Ohm" connection resistance is the target. Sockets and connectors also must  
match the required impedance (75ohms in video). Cheap, low quality connectors tend to rust, thus  
causing breaks in the signal path.  
Amplifying circuitry - Must have quality performance when the desired end result is high linearity,  
low distortion and low noise operation.  
Distance between sources and acceptors - Plays a major role in the result. For long distances (over  
15 meters) between sources and acceptors, special measures should be taken in order to avoid cable  
losses. These include using higher quality cables or adding line amplifiers.  
Interference from neighboring electrical appliances - These can have an adverse effect on signal  
quality. Balanced audio lines are less prone to interference, but unbalanced audio and video lines  
should be installed far from any mains power cables, electric motors, transmitters, etc. even when  
the cables are shielded.  
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2.  
SPECIFICATIONS  
VS-4x4YC  
4x4 Composite Video - Y/C - Audio Stereo Vertical Interval Matrix  
Function  
Inputs  
4 video, 1Vpp/75 Composite on BNCs,  
4 Y/C - Y=1Vpp/75 , C=0.3Vpp/ 75 Ω  
4 stereo audio1Vpp/ 50kon RCAs.  
4 video, 1Vpp/75 Composite on BNCs,  
Outputs  
4 Y/C - Y=1Vpp/75 , C=0.3Vpp/ 75 Ω  
4 stereo audio1Vpp/ 100on RCAs.  
>65 dB  
Video S/N Ratio  
Audio S/N Ratio  
Video Bandwidth  
Audio Bandwidth  
Audio THD  
>75 dB  
>50MHz (-3dB)  
10-100000 Hz (-3dB)  
<0.1%  
0.15%  
Differential Gain  
Differential Phase  
Video Crosstalk  
Audio Crosstalk  
Switch System  
Switch Time  
0.1Deg  
-47dB (Luma)  
-53 dB  
During vertical interval  
< 1frame  
1 DB-9 connector for RS-232, or touch switches  
2.9 kg. (6.4 lbs.) approx  
Control Type  
Weight  
19 " x 7 " x 1U; 48 cm x 17.78 x 4.5cm  
230 VAC 50/60 Hz (115VAC U.S.A), 10.3 VA.  
Dimensions  
(W x D x H)  
Power Source  
3.  
4.  
HOW DO I GET STARTED?  
The fastest way to get started is to take your time and do everything right the first time. Taking 15  
minutes to read this manual may save you a few hours later. You don’t even have to read the whole  
manual. If the section doesn’t apply to you, you don’t have to spend your time reading it.  
UNPACKING AND CONTENTS  
The items contained in your Kramer VS switcher package are listed below. Please save the original box  
and packaging materials for possible future transportation and shipment of the video switcher.  
The VS-4x4YC Matrix  
AC power cable  
User Manual  
DB-9 to DB-25 or DB-9 to DB-9 Serial (Null Modem) Adapter  
PC-Control Software  
A Concise Directory of KRAMER Products  
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4.1 Optional Accessories  
The following accessories, which are available from Kramer, can enhance implementation of your  
switcher. For information regarding cables and additional accessories, contact your Kramer dealer.  
BNC "Y" Connector - Used for looping purposes and splits the incoming signal to connect an  
additional machine.  
FC-10D - (Composite-YC Comb Filter/Transcoder) can be serially connected to the switcher for  
video format conversion between two popular video formats - composite video and YC (Super-  
Video). The decoding from composite to Y/C is done digitally using an adaptive comb filter and  
DSP techniques to minimize dot-crawl and cross-color. A built-in vertical enhancer circuit reduces  
noise and dot-crawl on the Y signal. In addition, the FC-10D provides an independent Y/C to  
Composite route, for simultaneous bi-directional operation. The Kramer FC-10D is very small, and  
is fed from an external 12VDC supply, thus ideal for fieldwork.  
FC-4041C - (Genlock RGB/Component to Composite Video/YC Encoder) can be serially connected  
to the switcher for video format conversion. It is full broadcast, state-of-the-art, designed for studio  
and other demanding applications. The FC-4041C encodes RGBS or Y, R-Y and B-Y signals to  
composite video and Super-Video signals. All inputs are looped through with termination switches,  
allowing parallel connection to other RGBS / Component acceptors. The FC-4041C allows the user,  
via front panel switches, to select whether the Sync is separate or riding on Green. The user can also  
select whether to convert RGBS or Component (Y, R-Y, B-Y) signals to Composite and Y/C. The  
outputs are DC coupled and Black-Level clamped.  
VM-19N - (RGB Decoder) can be serially connected to the switcher for video format conversion. It  
is an industrial level decoder, which converts both composite video and super-Video to their RGB  
components.  
VM-1411 (Video/Balanced Stereo Audio Distribution Amplifier) can be serially connected between  
the switcher and the acceptors for video and audio distribution. It is a full broadcast, state-of-the-art  
machine, designed for studio and other applications. The VM-1411 has two inputs, video and audio,  
each splitting to 5 outputs. The user may select 2 x 1:5 or 1:10 operation via front panel control  
switches. Several VM-1411 units may be chained through the looping inputs. Output signals are  
(user selectable) DC or AC coupled for highest flexibility. Audio outputs are buffered and isolated  
from each other, allowing Hi-Fi Balanced audio distribution.  
SP-11 - (Video/Audio Processor) can be serially connected between the video/audio source and the  
switcher for video and audio control/correction. The machine provides camera control and  
luminance/white balance correction. The SP-11 is also capable of performing composite to Y/C  
conversion and bi-directional transcoding. The machine allows full control over the video signal:  
video gain down to full fade, log or linear definition control, log or linear contrast control, color  
saturation control, black level control, red, green and blue controls and a screen splitter control for  
“before-after” comparison. The input switch control is "audio-follow-video".  
VIDEO TESTER - A new, unique, patented, indispensable tool for the video professional, the  
Video Tester is used to test a video path leading to/from an amplifier. By pressing only one touch  
switch it can trace missing signals, distinguish between good and jittery (VCR sourced) signals, and  
identify the presence of good signals. Whenever a video signal is missing, because of bad  
connections, cable breaks or faulty sources, the Video Tester is all you need.  
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5.  
KRAMER VS-4X4YC MATRIX  
This section shows you all of the controls and connections of your switcher. Understanding all of the  
controls and connections helps you realize its full power. The switcher described in this manual is  
equipped with an RS-232 connector (for PC control) and the connector wiring is described later on.  
The Kramer VS-4x4YC is a high performance 4x4 vertical interval matrix switcher for composite  
and/or s-Video and stereo audio signals. It is a true matrix, allowing the user to route any input to any  
or all outputs simultaneously. Since the VS-4x4YC switches during the vertical interval, transitions  
are glitch-free when sources share a common reference sync.  
The VS-4x4YC provides composite video and s-Video connectors allowing it to be used for either  
format. Mixing formats is possible but composite video sources need to be routed to composite video  
outputs and, likewise, s-Video sources must be routed to s-Video outputs. It is very important to note  
that the VS-4x4YC does not perform any signal format conversion.  
The VS-4x4YC can be controlled by front panel buttons or RS-232 serial commands. For applications  
requiring remote control via a Windows-based personal computer, K-Switch software is provided at  
no additional cost. The machine is easy to use, dependable, rugged, and fits in one vertical space of a  
standard 19” rack.  
6.  
SOLUTIONS PROVIDED WITH THE VS-4X4YC  
Video recording and playback frequently involve the use of several devices, such as: video cassette  
recorders, video disc players, cameras, video monitors, video processors, Special Effects Generators,  
live or satellite feeds or any combination of the above.  
Hooking up a complex setup of several devices can result in a maze of wires, which is difficult to  
manage, cumbersome and possibly dangerous.  
The VS-4x4YC Vertical Interval Switcher offers an innovative solution to many of the problems  
arising from switching, editing and signal distribution.  
The VS-4x4YC Vertical Interval Switcher is simple-to-operate having four Super/Composite video  
and four stereo audio inputs; and four Super/Composite video and four stereo audio outputs. This  
allows you to simultaneously connect four sources and four acceptors.  
7.  
8.  
THE VS-4X4YC CAN BE USED AS:  
a. Fully buffered and amplified matrix switching system.  
b. Four output Super/Composite video and stereo-audio distribution amplifier.  
c. Production, routing and program/preview switcher.  
In the VS-4x4YC, video signals are switched by means of digital control pulses during the vertical  
interval and are microprocessor controlled.  
A QUICK REFERENCE GUIDE:  
The following description provides information about the controls and display on the front panel of the  
VS-4x4YC and the connections on the back panel.  
Front Panel:  
Power  
This is the main VS-4x4YC Power ON/OFF switch.  
Output/input Selectors  
There are eight switches on the front panel of the VS-4x4YC for input and output selection. These  
switches electronically control the connection of any of four input sources to any of the four output  
acceptors. When depressed, as will be explained later, the status read-out will show the connection.  
Two more switches marked as "ALL" and "OFF" appear on the front panel, their function will be  
explained later.  
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The "video sync signals" of input position "1" are used by the VS-4x4YC as the basic reference for the  
timing of the vertical interval switching.  
Back Panel:  
Video Inputs  
A variety of Super-Video / Composite input sources may be used such as videocassette recorders and  
cameras.  
Audio Inputs  
Up to four stereo-audio input sources can be connected to the VS-4x4YC. Audio sources can be the  
audio section of the video equipment used, or another audio source such as a tape recorder.  
Video Outputs  
Up to four super-Video / composite output acceptors can be hooked up to these connectors. A variety  
of acceptors may be utilized such as videocassette recorders or video monitors.  
Audio Outputs  
Up to four stereo-audio acceptors can be hooked up to these connectors. Audio acceptors may be the  
audio section of videocassette recorders, tape recorders or audio amplifiers.  
The VS-4x4YC may be utilized for die duplication, switching and editing of just stereo-audio sources.  
In this situation, you would utilize the audio outputs only.  
AC Power Socket  
Connect the appropriate cable to the AC power socket and plug it into a proper AC receptacle. (117  
Volts AC, U.S.A.: 230 Volts AC, Europe.)  
RS-232 Connector Socket  
This socket connects via an appropriate adapter, or, as illustrated in the figure at the end of this manual  
to a PC serial port for RS-232 controlled switching.  
9.  
INSTALLATION  
9.1 Rack Mounting  
The VS-4x4YC may be rack mounted in a standard 19” (1U) EIA rack assembly and includes rack  
“ears” at the ends of the front panel. The device does not require any specific spacing above or below  
the unit for ventilation. To rack mount the matrix, simply place the unit’s rack ears against the rack  
rails of the rack, and insert standard screws through each of the four corner holes in the rack ears.  
10. CONNECTING TO VIDEO DEVICES  
Video sources (such as cameras and VCRs) and output devices (such as monitors, projectors or  
recorders) may be connected to the switcher through the connectors located on the back of the unit.  
Please keep in mind that the input signal format must match that of the output signal format. (Example:  
If the input is composite video, then the output is composite video.) For signal formats that use more  
than one interconnecting cable between devices, the cables should be of equal length.  
11. CONNECTING TO AUDIO DEVICES  
Audio sources and output devices (such as amplifiers or recorders) may be connected to the VS-4x4YC  
switcher through the RCA type connectors located on the back of the unit. The VS-4x4YC supports  
unbalanced stereo audio signal types.  
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12. USING the VS-4X4YC  
12.1 Turning on the Matrix  
The matrix should only be turned on after all connections are completed, and all source devices have  
been turned on. Do not attempt to connect or disconnect any video, audio or control signals to the  
switcher while it is turned on. Pressing the toggle switch on the far-left front panel to the up position .  
turns on the matrix. In the up position, the toggle switch glows.  
12.2 Using the Front Panel Controls  
The front panels of Kramer switchers and matrices are designed to be simple to operate, and  
accomplish the basic function of selecting an input source and output device.  
12.2.1 Keystrokes  
1.  
Press the appropriate output key followed by the appropriate input key in order to switch an  
input to an output.  
2.  
3.  
Press "ALL" followed by the appropriate input key to connect an input to all the outputs.  
Press "ALL" followed by the appropriate output key to connect all the outputs according to the  
way the selected one is connected.  
4.  
5.  
Pressing "OFF" instead of an input key will disconnect an output.  
Any of the above instructions may be executed by pressing the two keys simultaneously rather  
than pressing them consecutively. When using two keys, the display will flash the appropriate  
output(s) while waiting for the second keystroke (if the second key is not pressed within a  
period of one minute, the pending operation is canceled).  
6.  
Pressing input keys 1, 2 and 3 simultaneously will reset the machine.  
12.3 DIP SWITCH Settings  
1.  
2.  
If only one machine is used in the system, it must be set up as the master.  
If more than one machine is used, setup one as file master, and the others as slaves, each slave  
having its own unique "slave number" - except for file case where machines are hooked up in  
parallel (see below).  
3.  
4.  
The VS-4x4YC only reads the dip-switch setting on initialization, so if the switch settings are  
changed while the machine is on, the machine must be turned off and then on again, (or input  
keys 1, 2 and 3 pressed together) in order that the new switch settings are realized.  
If several machines are to be used "in parallel" to switch together, e.g. when using 4 machines  
together to make a 4X4 RGBS switcher, then all the parallel machines should be set up to have  
the same slave number.  
5.  
6.  
If the VS-4x4YC is to be used as a VIS-4x4, then dip-switch 2 should be OFF. Note that when  
simulating a VIS-4x4, the "OFF" key is not relevant, and is ignored.  
The dip-switch settings are as follows:  
1
2*  
3
4
5
6
7
8
UNIT 1 (master)  
UNIT 2 (slave 1)  
UNIT 3 (slave 2)  
UNIT 4 (slave 3)  
UNIT 5 (slave 4)  
UNIT 6 (slave 5)  
UNIT 7 (slave 6)  
UNIT 8 (slave 7)  
*See note 5 above.  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
ON  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
ON  
ON  
ON  
ON  
OFF  
OFF  
ON  
ON  
OFF  
OFF  
ON  
ON  
OFF  
ON  
OFF  
ON  
OFF  
ON  
OFF  
ON*  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
OFF  
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13. RS-232 CONTROL  
1.  
2.  
3.  
To control the VS-4x4YC using RS-232, connect the "9 pin to 9 pin adapter" (provided with the  
machine) to the 9 pin serial port of the PC. Use a flat cable to connect from the 9 pin of the VS-  
4x4YC to the 9 pin of the adapter. (The adapter is a nu11-modem plug and 9-pin to 9-pin  
converter - see diagram below).  
The DOS based PC program may be downloaded from the Internet at the Kramer Website /  
Technical support section. The website address is: www.kramerelectronics.com .The program  
allows control and monitoring of the VS-4x4YC via an IBM compatible PC. Please read the  
readme.txt file before installation.  
The Windows™ based program – the K-SWITCH - that comes with the machine is fully  
described in the K-SWITCH manual. Please follow the instructions carefully. If needed, you  
may download the latest version of the program from the website above.  
The protocol used for contro1ling the VS-4x4YC may be found in the appendix.  
If several machines are used (in a master / slave setup, or if they are connected in parallel to  
switch together), then the machines should be daisy-chained via their 9 pin interface sockets  
using a flat-cable.  
4.  
5.  
13.1 Protocol used for RS-232 Communication  
Communication with the VS-4x4YC is defined using 2 bytes of information. Data transfer is at 9600  
baud, with no parity, 8 data bits and one stop bit.  
MSB  
1st byte  
LSB  
MSB  
2nd byte  
LSB  
N7N6 N5 N4 N3 N2 N1 N0)  
N15N14N13N12N11N10N9N8  
Where N7-0 (continue bit).  
N6N5N4N3 = 1000 (transmitted by the machine to the PC, but not necessary when transmitting to the  
machine).  
N2N1N0 is the binary value of the machine being addressed (or of the machine sending its data)  
minus one, e.g., N2N1N0=000 to address machine #1 (the master); N2N1N0=101 to address machine  
#6.  
N15 = 1 (continue bit).  
N14 = 0 for all communication to and from the PC.  
N13 is high if N12N11N10N9N8 is an op code. The op codes are defined as:  
N12N11N10N9N8 = 00001 instructs a machine to send its present status.  
N12N11N10N9N8 = 00010 success code (change in status was performed).  
N12N11N10N9N8 = 00011 non-success (change in status not was performed).  
N.B.: - Success/non-success codes, (according to the validity of the request), are returned from the  
machine, which was instructed to change its status.  
N13 is low when a change in the machine's status is made (via the front panel switches), or when a  
change in the status is requested (by R5-232). N13 is also low when the machine sends its present  
status (when answering to op code 00001, and when the machine is turned on). When N13 is low, the  
value of N12N11N10N9N8 corresponds to the status (or the required change in status) of the machine,  
as described below:  
OUT1 OUT2 OUT3 OUT4 ALL  
From Inputs  
From Input2  
From Input 3  
From Input 4 13  
OFF 17  
1
5
9
2
6
3 0  
14  
18  
3
7
11  
15  
19  
4
8
12  
16  
20  
21  
22  
23  
24  
25  
For example, to connect input 4 to output 2, N12N11N10N9N8 should be set up as 01110 (=14). To  
connect input 3 to all the outputs, N12N11N10N9N8 = 10111(=23). To disconnect output 1,  
N12N11N10N9N5 = 10010 (=17). Similarly, if the front panel switches were pressed to connect input  
2 to output 3, then N12N11N10N9N8 would be transmitted as 00111 (=7).  
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14. TAKING CARE OF YOUR MATRIX  
Do not locate your matrix in an environment where it is susceptible to dust or moisture. Both of these  
may damage the electronics, and cause erratic operation or failure. Do not locate your switcher where  
temperature and humidity may be excessive. Doing so may also damage the electronics, and cause  
erratic operation or failure of your switcher. Do not clean your switcher with abrasives or strong  
cleaners. Doing so may remove or damage the finish, or may allow moisture to build up. Take care not  
to allow dust or particles to build up inside unused or open connectors.  
15. TROUBLESHOOTING  
NOTES  
1. Please note that if the output signal is disturbed or interrupted  
by very strong external electromagnetic interference, it should  
return and stabilize when such interference ends. If not, turn  
the power switch off and on again to reset the machine.  
2. If the following recommended actions still do not result in  
satisfactory operation, please consult your KRAMER Dealer.  
15.1 Power and Indicators  
Problem  
Remedy  
No power  
1. Confirm that the rocker switch is in the “ON” position, and that the lamp  
is illuminated.  
2. Confirm that power connections are secured at the amplifier and at the  
receptacle. Make sure the receptacle is active, outputting the proper  
mains voltage.  
3. If there is still no power, check the fuse. Remove power cord from the  
AC outlet and from the machine and then, using a flat head screwdriver,  
remove the fuse holder located directly below the power connector.  
Confirm that the fuse is good by looking at the wire connected to the  
ends of the fuse. If the wire is broken, replace the fuse with another.  
15.2 Video Signal  
Problem  
Remedy  
No video at the output  
device, regardless of  
input selected.  
1. Confirm that your sources and output device are powered on and  
connected properly. Video signals connected to the input of your  
switcher should be of an identical signal format at the output of your  
source. Video signals at the output of your switcher should be of an  
identical signal format as at the input of your display or recorder.  
2. Confirm that any other switchers in the signal path have the proper input  
and/or output selected.  
3. Use the Video Tester to test the video path leading to/from your switcher  
(see section 4.1 " Video Tester")  
Video level is too high  
or too dim.  
1. Verify that the video line is well matched through 75ohm impedance,  
otherwise it results in a video level that is too high or too dim when  
looping is performed and the termination switches are not in proper  
position.  
2. Confirm that the connecting cables are of high quality, properly built and  
terminated with 75ohm BNC connectors. Check level controls located on  
your source input device or output display or recorder.  
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Problem  
Remedy  
Noise bars “roll” up  
or down in the output  
image  
Hum bars (ground loop) are caused by a difference in the ground potential  
of any two or more devices connected to your signal path. This difference is  
compensated by passing that voltage difference through any available  
interconnection, including your video cables.  
or:  
WARNING!  
Do not disconnect the ground from any piece  
of video equipment in your signal path!  
Low frequency hum  
in the output signal  
Check the following to remove hum bars:  
1. Confirm that all interconnected equipment is connected to the same  
phase of power, if possible.  
2. Remove equipment connected to that phase that may introduce noise,  
such as motors, generators, etc.  
3. Disconnect all interconnect cables and reconnect them one at a time until  
the ground loop reappears. Disconnect the affected cable and replace, or  
insert an isolation transformer in the signal path.  
15.3 Audio Signal  
Problem  
Remedy  
No audio at the output  
device, regardless of  
input selected  
1. Confirm that your sources and output device are powered on and  
connected properly. Audio signals connected to the input of your  
switcher should be properly wired to the output of your source. Audio  
signals connected to output of your switcher should be properly wired  
to the input of your switcher or recorder.  
2. Confirm that any other switchers in the signal path have the proper  
input and/or output selected.  
Audio level is too low  
1.  
Confirm that the connecting cables are of high quality and properly  
built. Take special care in noting the wiring configuration of balanced  
to unbalanced cables.  
2. Check level controls located on your source input device or output  
display or recorder.  
15.4 Control  
Problem  
Remedy  
No control of switcher  
from PC software  
1. Confirm the wiring of the connecting cable. Cable length should not  
exceed 25 feet.  
2. Confirm that all DIP switches on the switcher have been set properly.  
Keep in mind that if you are only controlling one switcher on a specific  
port, that switcher must be assigned the ID of “1”.  
3. Confirm that the baud rate of your computer COM port is set to the  
same as that of your switcher (9600-Baud). Confirm that the proper  
COM port is selected in the control software.  
4. Confirm that bi-directional communication is enabled on all switchers.  
With custom software, do not send multiple commands at the same  
time. The switcher must complete one command before receiving  
another.  
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LIMITED WARRANTY  
Kramer Electronics (hereafter Kramer) warrants this product free from defects in material and workmanship  
under the following terms.  
HOW LONG IS THE WARRANTY  
Labor and parts are warranted for three years from the date of the first customer purchase.  
WHO IS PROTECTED  
Only the first purchase customer may enforce this warranty.  
WHAT IS COVERED AND WHAT IS NOT COVERED  
Except as below, this warranty covers all defects in material or workmanship in this product. The following are  
not covered by the warranty:  
1) Any product which is not distributed by Kramer, or which is not purchased from an authorized Kramer  
dealer. If you are uncertain as to whether a dealer is authorized, please contact Kramer at one of the agents  
listed in the web site www.kramerelectronics.com.  
2) Any product, on which the serial number has been defaced, modified or removed.  
3) Damage, deterioration or malfunction resulting from:  
a) Accident, misuse, abuse, neglect, fire, water, lightning or other acts of nature.  
b) Product modification, or failure to follow instructions supplied with the product.  
c) Repair or attempted repair by anyone not authorized by Kramer.  
d) Any shipment of the product (claims must be presented to the carrier).  
e) Removal or installation of the product.  
f) Any other cause, which does not relate to a product defect.  
g) Cartons, equipment enclosures, cables or accessories used in conjunction with the product.  
WHAT WE WILL PAY FOR AND WHAT WE WILL NOT PAY FOR  
We will pay labor and material expenses for covered items. We will not pay for the following:  
1) Removal or installations charges.  
2) Costs of initial technical adjustments (set-up), including adjustment of user controls or programming. These  
costs are the responsibility of the Kramer dealer from whom the product was purchased.  
3) Shipping charges.  
HOW YOU CAN GET WARRANTY SERVICE  
1) To obtain service on you product, you must take or ship it prepaid to any authorized Kramer service center.  
2) Whenever warranty service is required, the original dated invoice (or a copy) must be presented as proof of  
warranty coverage, and should be included in any shipment of the product. Please also include in any mailing  
a contact name, company, address, and a description of the problem(s).  
3) For the name of the nearest Kramer authorized service center, consult your authorized dealer.  
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LIMITATION OF IMPLIED WARRANTIES  
All implied warranties, including warranties of merchantability and fitness for a particular purpose, are limited in  
duration to the length of this warranty.  
EXCLUSION OF DAMAGES  
Kramer’s liability for any defective products is limited to the repair or replacement of the product at our option.  
Kramer shall not be liable for:  
1) Damage to other property caused by defects in this product, damages based upon inconvenience, loss of use  
of the product, loss of time, commercial loss; or:  
2) Any other damages, whether incidental, consequential or otherwise. Some countries may not allow  
limitations on how long an implied warranty lasts and/or do not allow the exclusion or limitation of  
incidental or consequential damages, so the above limitations and exclusions may not apply to you.  
This warranty gives you specific legal rights, and you may also have other rights, which vary from place to place.  
NOTE: All products returned to Kramer for service must have prior approval. This may be obtained from your  
dealer.  
NOTICE  
This equipment has been tested to determine compliance with the requirements of:  
EN-50081:  
"Electromagnetic compatibility (EMC);  
generic emission standard.  
Part 1: Residential, commercial and light industry"  
EN-50082:  
"Electromagnetic compatibility (EMC) generic immunity standard. Part 1:  
Residential, commercial and light industry environment".  
CFR-47  
FCC Rules and Regulations:  
Part 15- “Radio frequency devices:  
Subpart B- Unintentional radiators”  
CAUTION!  
Servicing the machines can only be done by an authorized Kramer technician. Any user who  
makes changes or modifications to the unit without the expressed approval of the manufacturer  
will void user authority to operate the equipment.  
Use the supplied DC power supply to feed power to the machine.  
Please use recommended interconnect cables to connect the machine to other components.  
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The list of Kramer distributors appears on our web site:  
From the web site it is also possible to e-mail factory headquarters.  
We welcome your questions, comments and feedback.  
KRAMER ELECTRONICS, LTD.  
3 Am VeOlamo Street. Jerusalem 95463, Israel Tel: (972-2)-654-4000. Fax: (972-2)-653-5369  
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