Canon Scanner XRD9827REF User Manual

XRD9827REF  
USER MANUAL  
CANNON CIS 36-BIT COLOR  
SINGLE LINE SCANNER  
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EXAR Corporation 48720 Kato Road, Fremont, CA 94538 Phone (510)-668-7000, Fax (510)-668-7030  
PRELIMINARY  
8-BIT DATA  
FIFO  
SRAM  
PARALLEL  
PORT DB25  
CONNECTOR  
CIS OUTPUT  
XRD9827  
6-BIT BUS NIBBLE  
DATA  
CIS REFERENCE  
VOLTAGE  
INTEL 486 Compatible  
FIFO  
SRAM  
8-BIT DATA  
XRD9827 CONTROL SIGNALS  
MACH435 CPLD  
PARALLEL PORT CONTROL  
CIS CONTROL SIGNALS  
Figure 1. Block Diagram of XRD9827REF  
The XRD9827 is a complete linear CIS or CCD sensor signal processor on a single monolithic chip. The  
XRD9827 includes a high speed 12-Bit ADC, a 6-Bit Programmable Gain Amplifier with gain adjustment  
of 1 to 10 and an 8-Bit programmable input referred offset calibration range of 800 mV. The XRD9827  
also provides the necessary biasing voltage for the CANON CIS, eliminating the use of external  
components (two diodes and two resistors). See the XRD9827EVAL User Manual / PCB board for  
evaluating the XRD9827 CIS / CCD signal processor chip. A simplified functional block diagram of  
XRD9827 is shown below for your reference.  
3
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EXAR Corporation 48720 Kato Road, Fremont, CA 94538 Phone (510)-668-7000, Fax (510)-668-7030  
PRELIMINARY  
P M A C L  
Figure 2. Simplified Functional Block Diagram of XRD9827  
OPERATIONAL PROCEDURE  
The routine listed below will first calibrate the photo response of the CIS using the XRD9827 by optimize  
its offset and gain. After calibration, the XRD9827REF can be used to scan any color target to show CIS  
non-color corrected response. (Color correction is typically done in the digital ASIC.)  
4
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PRELIMINARY  
How to Run the XRD9827REF Demonstration  
1. Make sure the computer is powered off and the AC power adapter is disconnected from a wall outlet  
2. Connect the parallel port cable to the printer port of the computer  
3. Connect the AC power adapter into a wall outlet  
4. Turn on the computer and activate Windows 95  
Loading EXAR Software  
5. Load the diskette labeled SenseIt 1.0 Disk # 1 into the floppy drive  
6. Select the Start menu in the program manager and choose RUN  
7. Inside the small pop-up window, type: A:\setup  
8. Follow the instructions to finish software installation  
Parallel Port Configurations  
9. Confirm the parallel port address as follows:  
I.  
II.  
Select the Start Menu, choose Settings, then choose Control Panel  
From the Control Panel window which pops up, double-click on System  
In the System Properties window, select Device Manager  
From the Device Manager window, double-click on Ports (COM & LPT)  
Double-click on Printer Port (LPT1). If you can not find it, please goto Step 10  
From the pop-up window, select Resources  
III.  
IV.  
V.  
VI.  
VII.  
VIII.  
IX.  
X.  
Verify the Input/Output Range is set to 0378 - 037F  
If the range is not correct, clear the Use Automatic Settings check box by clicking it  
Choose correct address which is 0378 by default and click OK  
Re-start the computer as advised  
10. If you do not have a Printer Port configured on your computer, please follow the steps listed below:  
I.  
II.  
III.  
From the Control Panel window which pops up, double-click on Add New Hardware  
From the pop-up window, click the Next > button  
Select ‘No’ when prompted for ‘Do you want Windows to search for your new  
hardware?’, then click the Next > button  
IV.  
V.  
Choose Ports (COM & LPT), then click the Next > button  
Choose Printer Port, then click the Next > button  
VI.  
Make a note of the Input/Output Range of Printer Port of your computer and click OK.  
You will use these values later when configure the SenseIt software  
Re-start the computer as advised  
VII.  
Offset Adjustment With a Black Target  
11. Set the dip switches located on the side panel of the scanner to [110 01000000] as shown in Figure 3  
and push the Serial Port button which is located on the front panel of the demo system. This will reset the  
XRD9827.  
5
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PRELIMINARY  
S S S D D D D D D D D  
2 1 0 7 6 5 4 3 2 1 0  
1
0
Figure 3. Dip Switches Set to Value [110 01000000] to Reset XRD9827  
12. Select the Start Menu, choose Programs, then choose SenseIt icon  
13. A window will pop up as shown below. The upper window shows the plot of captured data and the  
lower window shows the histogram of data. Figure 4 shows the pop-up window when SenseIt is first  
started.  
6
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EXAR Corporation 48720 Kato Road, Fremont, CA 94538 Phone (510)-668-7000, Fax (510)-668-7030  
PRELIMINARY  
Figure 4. SenseIt Software Window Before Scanning  
14. Select SETUP from the pull-down menu and choose I/O ADDRESS. In the window that pops up, type  
in the Input/Output Range of Printer Port of your computer. The default setting is 378H.  
15. Pick the black target out from the kit and put it on a flat area. Place the XRD9827REF on top of the  
black target with the CIS sensor facing downwards. From the CAPTURE menu select SNAP SHOT (or  
simply press CTRL and B buttons simultaneously) for a single line scan of the black target with the dip  
switches set to [000 00000000]. A typical result of a black target scan is shown below:  
7
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Figure 5. Non-calibrated Black Target Scan  
16. Set the dip switches to [110 00010000] to tie VDCREF and VDCEXT pin together internally. Push the  
Serial Port button. The XRD9827 will subtract whatever voltage appears on VDCEXT (pin 16) from the  
input and thus perform a global offset adjustment. A typical result of the global offset adjustment is shown  
below. Please notice that the black code value has moved down.  
8
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Figure 6. Black Target Scan After Global Offset Adjust Using the 9827 Internal  
Bandgap Reference Voltage  
17. Then, set the dip switches to [111 00010000] and push the Serial Port button again. By doing this, a  
1.24V reference voltage provided by an internal bandgap is applied to the VDCEXT pin. VDCEXT is  
connected to VREF pin (Pin 5) of the CANON CIS, this voltage is used by the CIS as a biasing voltage.  
Moreover, a 12K built-in resistor of the XRD9827 serves as a pull-down for the output of the CIS. By  
interfacing the XRD9827 with a CANON CIS, a designer can save two biasing diodes and two resistors  
and thus reduce cost.  
9
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PRELIMINARY  
XRD9827  
VDD  
1.24V  
BANDGAP  
VRT  
12K  
PIN 19  
(RED)  
M
U
X
C
I
S
RL  
PIN 16  
(VDCEXT)  
2.2uF  
VRB  
Figure 7. Simplified Block Diagram Showing Global Offset Adjustment by XRD9827 Using  
Internal Bandgap and CIS Using VDCEXT for Biasing  
18. Set the dip switches to [001 01010000] to select the internal offset DAC for fine offset adjustment.  
Push the Serial Port button. From the CAPTURE menu select SNAP SHOT. The offset should now move  
the output of the CIS to almost zero scale. The other way to do a SNAP SHOT is by pressing CTRL and B  
button at the same time. Please refer to data sheet for offset adjustment. A typical result of the fine offset  
adjustment is shown below.  
10  
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PRELIMINARY  
Figure 8. Black Target Scan After Global and Fine Adjustment  
11  
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EXAR Corporation 48720 Kato Road, Fremont, CA 94538 Phone (510)-668-7000, Fax (510)-668-7030  
PRELIMINARY  
XRD9827  
VDD  
VRT  
PIN 19  
(RED)  
C
I
S
M
U
X
RL  
8-BIT  
OFFSET  
DAC  
VRB  
Figure 9. Simplified Block Diagram Showing Fine Offset Adjustment by XRD9827  
19. Switch the black target to the enclosed white target. From the CAPTURE menu select SNAP SHOT  
for a single line scan of the white target. A typical result of a white target is shown below.  
12  
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PRELIMINARY  
Figure 10. White Target Scan Without Gain Adjustment  
20. Set the dip switches to [000 00001000] to select the desired gain. Push the Serial Port button. From  
the CAPTURE menu select SNAP SHOT. The gain should move the output of the CIS to almost full scale.  
Please refer to data sheet for further gain adjustment and optimal values of dip switches for your scanner.  
A typical result of the white target with gain adjustment is shown below.  
13  
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Figure 11. White Target Scan After Gain Adjustment  
14  
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PRELIMINARY  
XRD9827  
VDD  
VRT  
PIN 19  
(RED)  
C
I
S
M
U
X
RL  
PGA  
VRB  
6-BIT GAIN  
REGISTER  
Figure 12. Simplified Block Diagram Showing Gain Adjustment by XRD9827  
21. Once the XRD9827 has been fully calibrated, any target can be scanned. For example: Scan a gray  
scale to demonstrate the stair step response or a color target for color responsitivity.  
15  
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PRELIMINARY  
Figure 13. Gray-scale Target Scan  
22. To demonstrate the noise component is contributed from the CIS, we hooked up a DC reference to the  
scanner and the results are shown below in Table 1.  
REFERENCE DC (V)  
STANDARD DEVIATION  
SYSTEM SNR (dB) W/O CIS  
NOISE COMPONENT  
2.0  
2.5  
3.0  
3.5  
2.144328  
3.48261  
2.399188  
1.983461  
62.6117  
58.3988  
61.6356  
63.28842  
Table 1. Signal-to-Noise Ratio of the XRD9827REF with DC Source as Input (No CIS Noise  
Component)  
As we can see from Table 1, the SNR falls into the range of 58 dB to 63 dB when a DC reference is used  
as input to the XRD9827REF. The system alone gives a 9 1/2 to 10 bit performance. The largest noise  
source we saw in previous scans came from the CIS. A typical plot of the DC reference is shown in Figure  
14.  
16  
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Figure 14. Plot of 3.5V DC Source as Input to the XRD9827REF  
Important:  
1.  
2.  
3.  
If at any time an unexpected result is shown or the demo system seems to not working, please pull  
the AC adapter out from the wall outlet to cycle power. Start the procedures again from Step 11.  
Keep the scanner away from other electrical equipment, power cords, light dimmers, etc., as stray  
electrical fields can end up in the digitized data.  
Switch off all unnesscessary light sources and place the scanner flat on the image, this can prevent  
stray light from entering the sensor and disrupt the scan.  
17  
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PRELIMINARY  
DVDD  
C1  
C2  
U1  
0.1uF  
0.01uF  
AVDD  
15  
1
VREF+  
DVDD  
DGND  
AVDD  
AGND  
C3  
C4  
10  
20  
14  
DGND  
C5  
C6  
1uF  
0.1uF  
0.1uF  
0.01uF  
CISOUT  
AGND  
AGND  
TP1  
2
1
19  
18  
17  
9
8
7
6
5
4
3
2
DB7/LD  
g
t
RED  
GRN  
BLU  
DB7/LD  
DB6/SDATA  
DB5/SCLK  
DB4  
DB6/SDATA  
DB5/SCLK  
DB4  
AGND  
DB3  
DB3  
DB2  
DB1  
DB0  
DB2  
DB1  
DB0  
16  
11  
12  
ADCCLK  
SYNC  
VDCEXT ADCCLK  
CLAMP  
VDCEXT  
13  
SYNCH  
XRD9827  
AVDD  
U2  
POWER SUPPLY  
CIRCUITS  
LM7805-5  
1
3
IN  
OUT  
C8  
C9  
0.1uF  
DVDD  
0.22uF  
R3  
JP1  
GO TO LED ON THE  
CASE OF SCANNER  
1
2
L2  
J1  
1K  
L1  
OPEN  
HEADER 2  
AGND  
10uH  
DGND  
DGND  
C32  
POWERJACK  
OPEN  
C10  
H:\PROJECT\ORCADWIN\9827\9827REFB.DSN  
C11  
0.47uF  
0.22uF  
DVDD  
Title  
DGND  
XRD9827 REFERENCE BOARD  
1
3
IN  
OUT  
Size  
B
Document Number  
Rev  
B
U3  
LM7805-5  
XRD9827REF  
Date:  
Thursday, July 23, 1998  
Sheet  
1
of  
3
18  
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EXAR Corporation 48720 Kato Road, Fremont, CA 94538 Phone (510)-668-7000, Fax (510)-668-7030  
PRELIMINARY  
DVDD  
U4  
MACH435  
82  
83  
IO63  
I2  
IO0  
SYNC  
R4  
33 81  
80  
3
R5  
R6  
R7  
33  
33  
33  
DB5/SCLK  
DB6/SDATA  
DB7/LD  
IO62  
IO61  
IO60  
IO59  
IO58  
IO57  
IO56  
IO55  
IO54  
IO53  
IO52  
IO51  
IO50  
IO49  
IO48  
CLK3  
CLK2  
IO47  
IO46  
IO45  
IO44  
IO43  
IO42  
IO41  
IO40  
IO39  
IO38  
IO37  
IO36  
IO35  
IO34  
IO33  
IO32  
I1  
WCLK2  
4
IO1  
79  
5
IO2  
DVDD  
78  
6
STROBE  
IO3  
77  
7
IO4  
S1  
1
2
3
4
5
6
7
8
9
24  
23  
22  
21  
20  
19  
18  
17  
16  
15  
14  
13  
76  
8
S2  
IO5  
R8  
R9  
2.2K  
2.2K  
2.2K  
2.2K  
2.2K  
2.2K  
2.2K  
2.2K  
2.2K  
2.2K  
2.2K  
S2  
S1  
S0  
D7  
D6  
D5  
D4  
D3  
D2  
D1  
D0  
75  
9
AUTOFD  
IO6  
R10  
R11  
R12  
R13  
R14  
R15  
R16  
R17  
R18  
73  
10  
12  
13  
14  
15  
16  
17  
18  
19  
20  
23  
24  
25  
26  
27  
28  
29  
30  
31  
IO7  
72  
IO8  
71  
IO9  
10  
11  
12  
70  
IO10  
IO11  
IO12  
IO13  
IO14  
IO15  
CLK0  
CLK1  
IO16  
IO17  
IO18  
IO19  
IO20  
IO21  
IO22  
IO23  
IO24  
IO25  
IO26  
IO27  
IO28  
IO29  
IO30  
IO31  
69  
D5  
D1  
D4  
D2  
D0  
SW DIP-12  
R19  
R20  
33 68  
67  
DGND  
RCLK  
ACK  
RST  
DVDD  
Oscillator  
U5  
33 66  
65  
MACH435  
4
3
1
2
V+  
OUT  
NC  
62  
GND  
61  
D7  
R21  
33 60  
59  
C12  
1uF  
C13  
0.1uF  
SP  
DVDD  
WCLK1  
58  
WEN  
C14  
10uF  
C15 C16  
0.1uF 0.1uF  
C17  
C18  
C19  
C20  
57  
DGND  
0.01uF 0.01uF 0.01uF 0.01uF  
D3  
S1  
56  
55  
DGND  
54  
52  
DVDD  
51  
33 R22  
34  
33  
CISCLK  
BLED  
50  
JP2  
1
2
3
49  
35  
SP_PB  
48  
36  
HEADER 3  
47  
37  
DGND  
D6  
S0  
46  
38  
RLED  
GLED  
R23  
33 45  
41  
39  
ADCCLK  
40  
H:\PROJECT\ORCADWIN\9827\9827REFB.DSN  
Title  
XRD9827 REFERENCE BOARD  
Size  
B
Document Number  
Rev  
B
XRD9827REF  
DGND  
Date:  
Thursday, July 23, 1998  
Sheet  
2
of  
3
19  
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EXAR Corporation 48720 Kato Road, Fremont, CA 94538 Phone (510)-668-7000, Fax (510)-668-7030  
PRELIMINARY  
U6  
DVDD  
30  
31  
32  
1
2
3
4
5
6
25  
D8  
D7  
D6  
D5  
D4  
D3  
D2  
D1  
D0  
DVDD  
29  
28  
27  
26  
RS*  
WEN1*  
WCLK  
DVDD  
DGND  
WCLK2  
WEN2*  
24  
23  
22  
21  
20  
19  
18  
17  
16  
LSB  
Q8  
Q7  
Q6  
Q5  
Q4  
Q3  
Q2  
Q1  
Q0  
O7  
O6  
O5  
O4  
O3  
O2  
O1  
O0  
7
8
10  
11  
12  
13  
STROBE  
AUTOFD  
PAF*  
PAE*  
REN1*  
RCLK  
REN2*  
OE*  
J2  
STROBE  
O0  
O1  
O2  
O3  
O4  
O5  
O6  
O7  
AUTOFD  
INIT  
1
2
3
4
5
6
7
8
9
14  
15  
16  
17  
18  
19  
20  
21  
22  
14  
15  
DB0  
DB1  
DB2  
EF*  
FF*  
9
GND  
DB3  
DB4  
CY7C4261  
U7A  
74HC04  
RCLK  
DB5/SCLK  
DB6/SDATA  
DB7/LD  
10 23  
11 24  
12 25  
13  
U8  
30  
31  
32  
1
2
3
4
5
6
25  
D8  
D7  
D6  
D5  
D4  
D3  
D2  
D1  
D0  
DVDD  
DB25  
29  
28  
27  
26  
DGND  
RST  
WEN  
WCLK1  
RS*  
WEN1*  
WCLK  
ACK  
WEN2*  
DGND  
DVDD  
24  
23  
22  
21  
20  
19  
18  
17  
16  
MSB  
Q8  
Q7  
Q6  
Q5  
Q4  
Q3  
Q2  
Q1  
Q0  
O7  
O6  
O5  
O4  
O3  
O2  
O1  
O0  
7
8
10  
11  
12  
13  
PAF*  
PAE*  
REN1*  
RCLK  
REN2*  
OE*  
C21  
0.1uF  
C22  
0.1uF  
14  
15  
EF*  
FF*  
9
O[7..0]  
GND  
DGND  
AVDD  
CY7C4261  
DGND  
DVDD  
AVDD  
CISOUT  
VDCEXT  
C23  
10uF  
C24  
1uF  
C25  
0.1uF  
C26  
0.01uF  
C27  
0.01uF  
U7B  
R24  
3
5
4
6
SPN  
JP3  
R25  
OPEN  
1
2
3
300  
AGND  
74HC04  
U7C  
JP4  
1
CISOUT  
MODE  
GND (ANALOG)  
VCC  
VREF  
SP  
CISCLK  
LED ANODE  
BLED  
GLED  
RLED  
JUMPER  
SP  
R26  
2
SP  
CISCLK  
RLED  
GLED  
BLED  
CISCLK  
RLED  
GLED  
BLED  
CISCLKN  
R27  
3
OPEN  
4
300  
5
74HC04  
U7D  
BGND  
6
7
R28  
8
9
8
2
Q1  
NPN_TO18  
R33  
R324  
R31  
100  
100  
100  
9
10  
11  
12  
10K  
74HC04  
U7E  
GGND  
GND (FRAME)  
C28  
100uF  
C30  
47uF  
C33 HEADER 12 TO CIS  
DGND  
AGND  
R29  
11  
10  
12  
2
Q2  
C29  
0.1uF  
NPN_TO18  
RGND  
47uF  
DVDD  
10K  
74HC04  
U7F  
14  
13  
7
DGND  
H:\PROJECT\ORCADWIN\9827\9827REFB.DSN  
AGND  
R30  
2
Q3  
NPN_TO18  
C31  
0.1uF  
10K  
Title  
74HC04  
XRD9827 REFERENCE BOARD  
Size  
B
Document Number  
Rev  
B
DGND  
XRD9827REF  
DGND  
Date:  
Thursday, July 23, 1998  
Sheet  
3
of  
3
20  
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