Hamamatsu C11165-01 For ccd image sensor Datasheet

Driver circuit for CCD linear image sensor
C11165-01
For CCD image sensor
(S11155/S11156-2048-01)
The C11165-01 is a driver circuit designed for HAMAMATSU CCD image sensor S11155/S11156-2048-01. The C11165-01 can
be used in spectrometers when combined with the S11155/S11156-2048-01.
The C11165-01 holds a CCD driver circuit, analog video signal processing circuit (16-bit A/D converter), timing generator,
control circuit and power supply. The C11165-01 converts analog video signals from a CCD into digital signals and outputs
them. The USB connector (USB 2.0) provided as a standard feature easily connects to a PC for the C11165-01 control and
data acquisition. The C11165-01 also has a BNC connector for external trigger input and pulse output. The C11165-01 is
compact, lightweight and very easy to handle.
Application software (DCam-USB) that comes with the C11165-01 allows easy operation from a PC running on Windows 7
(32-bit, 64-bit). A function library (DCamUSB.DLL) included with the application software helps you to develop your own
software. This software is available with DLL to help you develop your own software programs under various developmental
environments.
Features
Applications
Built-in 16-bit A/D converter
Spectrometer
Adjustable offset
Control and data aquisition of CCD image sensor
(S11155/S11156-2048-01)
Adjustable gain
Interface of computer: USB 2.0
Power supply: DC+5 V
The table below shows CCD linear image sensors applicable for the C11165-01.
Since the C11165-01 does not include CCD image sensors, so select the desired sensor and order it separately.
Type no.
Number of pixels
Number of effective pixels
S11155-2048-01
S11156-2048-01
2068 × 1
2048 × 1
Pixel size
(μm)
14 × 500
14 × 1000
Image size
[mm (H) × mm (V)]
28.672 × 0.500
28.672 × 1.000
Structure
Parameter
Output type
A/D conversion resolution
Interface
Specification
Digital
16
USB 2.0
www.hamamatsu.com
Unit
bit
-
1
Driver circuit for CCD linear image sensor
C11165-01
Absolute maximum ratings
Parameter
Supply voltage
Input signal voltage
Operating temperature*2
Storage temperature*2
Symbol
Vi
Topr
Tstg
Condition
Ta=25 °C
Ta=25 °C
Value
0 to +6.0
0 to Vdd
0 to +50
-20 to +70
Unit
V
V
°C
°C
Note: Exceeding the absolute maximum ratings even momentarily may cause a drop in product quality. Always be sure to use the
product within the absolute maximum ratings.
*1: Trigger input
*2: No condensation
Electrical characteristics (Ta=25 °C)
Parameter
Readout frequency*3
Line rate*4
Conversion gain
High level
Trigger output
voltage
Low level
High level
Trigger input
voltage
Low level
Current consumption
Integration time*5
Symbol
fop
Gc
Condition
Gain 1
-
Vp=+5 V
-
Vp=+5 V
Ic
Tinteg
fop=6 MHz
Min.
3.8
12
Typ.
6
3
3.5
900
-
Max.
2.86
0.6
5
1.5
1000
16 777 215
Unit
MHz
kHz
e-/ADU
V
V
mA
clock
*3: Fixed
*4: This is the theoretical value of the line rate that is determined by the internal operation timing of the driver circuit and is different from
the line rate defined by the sensor specifications. This value differs from the line rate in a series of processes that acquire data from
the circuit to a PC via the USB 2.0 port on the PC.
*5: 1 clock = 1/6 MHz ≈ 0.167 μs
Electrical and optical characteristics (Ta=25 °C)
Parameter
Readout noise
Dynamic range
Operating voltage*6
Symbol
Nr
DR
-
Min.
4.5
Typ.
15
4000
5
Max.
5.5
Unit
ADU
V
*6: Accessory AC adapter for external power supply
2
Driver circuit for CCD linear image sensor
C11165-01
Functions
Parameter
Suspend mode (LED-off)
Operation Standby mode (LED-white)
mode display Data transfer mode
(LED-green, aqua, blue)
Internal synchronous mode
(“INT” mode)
Specification
The power supply is turned off.
It is a standby state, in which the data acquisition is possible.
In this mode, the driver circuit sends the data to PC.
Data is acquired on the basis of the trigger timing generated by application software.
Data is acquired in synchronization with the external trigger signal input from the
External synchronous mode 1
Synchronous*7
BNC connector. In synchronization with an edge of the external trigger signal, data is
(“EXT.EDGE” mode)
mode
accumulated for the set integration time and is then output.
Data is acquired in synchronization with the external trigger signal input from the BNC
External synchronous mode 2
connector. Data is accumulated for a period equal to the pulse width of the external
(“EXT.LEVEL” mode)
trigger signal and is then output.
The gain value can be varied in the range of “1 to 3” with the step of 1. Default value is
Gain adjustment
"1".
The offset value can be varied in the range of “-255 to 255” with the step of 1. Default
Offset adjustment
value is "10".
Input
Acquires data in synchronization with trigger pulse input to the BNC connector
External
Sets the timing for the pulse signal output from the pulse output BNC connector of the
signal
Output
driver circuit
MPP mode
The REGH/REGL signal goes Low during integration.
MPP
operation Non-MPP mode
The REGH/REGL signal is constantly fixed to High.
Electronic ON mode
Performs integration only during the set period in one line period
shutter ON/
OFF mode
Constantly performs integration in one line period
OFF function
*7: External synchronous mode 2 ("EXT. LEVEL" mode) cannot be used when the electronic shutter is OFF.
Block diagram
OD, OG, SS, RD, IG1H,
IG2H, ARD, ISH, RD, STG
ARG, TG, SG, RG, P1H,
P2H, REGL, REGH
OS
CCD linear image sensor
S11155-2048-01
S11156-2048-01
Power supply circuit
Bias circuit
Clock driver
Buffer
Clock timing control circuit
AFE
(A/D converter)
CPU
USB controller
+5 V
Trigger IN
Trigger OUT
USB
C11165-01
KACCC0690EA
3
Driver circuit for CCD linear image sensor
C11165-01
Timing chart
Internal synchronous mode (“INT” mode)
Non-MPP operation
Trigger in (software)
Exposure time
Exposure signal*
REGH/REGL
ARG
TG
P1H/P2H
Data acquisition time
A/D conversion
Line readout time
Data transfer time
Data transfer
Total transfer time
* Internal signal
KACC
KACCC0528EB
MPP operation
Trigger in (software)
Exposure time
Exposure signal*
REGH/REGL
ARG
TG
P1H/P2H
Data acquisition time
A/D conversion
Line readout time
Data transfer time
Data transfer
Total transfer time
* Internal signal
KACCC0529EB
4
Driver circuit for CCD linear image sensor
C11165-01
External synchronous mode 1 (“EXT.EDGE” mode)
Non-MPP operation
Trigger in (from BNC)
Exposure time
Exposure signal*
REGH/REGL
ARG
TG
P1H/P2H
Data acquisition time
A/D conversion
Line readout time
Data transfer time
Data transfer
Total transfer time
* Internal signal
KACCC0530EB
MPP operation
Trigger in (from BNC)
Exposure time
Exposure signal*
REGH/REGL
ARG
TG
P1H/P2H
Data acquisition time
A/D conversion
Line readout time
Data transfer time
Data transfer
Total transfer time
* Internal signal
KACCC0531EB
5
Driver circuit for CCD linear image sensor
C11165-01
External synchronous mode 2 (“EXT.LEVEL” mode)
Non-MPP operation
Trigger in (from BNC)
Exposure time
Exposure signal*
REGH/REGL
ARG
TG
P1H/P2H
Data acquisition time
A/D conversion
Line readout time
Data transfer time
Data transfer
Total transfer time
* Internal signal
KACCC0532EB
MPP operation
Trigger in (from BNC)
Exposure time
Exposure signal*
REGH/REGL
ARG
TG
P1H/P2H
Data acquisition time
A/D conversion
Line readout time
Data transfer time
Data transfer
Total transfer time
* Internal signal
KAC
KACCC0533EB
6
Driver circuit for CCD linear image sensor
C11165-01
BNC connector
for pulse output
(4 ×) 3.2 ± 0.1
4.2 ± 0.5
35 ± 0.5
BNC connector
for external
trigger input
CCD linear image sensor
S11155/S11156-2048-01
(sold separately)
USB connector
70 ± 0.1
5.0 ± 0.2
80 ± 0.3
5.0 ± 0.2
Dimensional outline (unit: mm)
DC jack
(conforms to EIAJ RC-5320A
voltage classification 2)
Component side
5.0 ± 0.2
5.0 ± 0.2
1.6 ± 0.19
80 ± 0.3
13 ± 0.5
(45)
Values in parentheses indicate
reference value.
Weight: 65 g approx. (excluding sensor)
(35)
80 ± 0.3
Mount position of
CCD image sensor
Sensor mounting side
(29.5)
Index mark
KACCA0291EB
Connection examples
Refer to the following diagram to connect hardware peripherals.
Laser
External trigger
output
External trigger
input
Mechanical shutter
Pulse generator
USB 2.0
DC +5 V
C11165-01
PC
KACCC0527EC
7
Driver circuit for CCD linear image sensor
C11165-01
Accessories
· CD-ROM (includes C11165-01 instruction manual, application software, SDK)
· USB cable
· AC adapter
Related information
www.hamamatsu.com/sp/ssd/doc_en.html
Precautions
∙ Notice
Technical information
∙ Resistive gate type CCD linear image sensors with electronic shutter/Technical information
Information described in this material is current as of July 2014.
Product specifications are subject to change without prior notice due to improvements or other reasons. This document has been carefully prepared and the
information contained is believed to be accurate. In rare cases, however, there may be inaccuracies such as text errors. Before using these products, always
contact us for the delivery specification sheet to check the latest specifications.
Type numbers of products listed in the delivery specification sheets or supplied as samples may have a suffix "(X)" which means preliminary specifications or
a suffix "(Z)" which means developmental specifications.
The product warranty is valid for one year after delivery and is limited to product repair or replacement for defects discovered and reported to us within that
one year period. However, even if within the warranty period we accept absolutely no liability for any loss caused by natural disasters or improper product
use.
Copying or reprinting the contents described in this material in whole or in part is prohibited without our prior permission.
www.hamamatsu.com
HAMAMATSU PHOTONICS K.K., Solid State Division
1126-1 Ichino-cho, Higashi-ku, Hamamatsu City, 435-8558 Japan, Telephone: (81) 53-434-3311, Fax: (81) 53-434-5184
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Italy: Hamamatsu Photonics Italia S.r.l.: Strada della Moia, 1 int. 6, 20020 Arese (Milano), Italy, Telephone: (39) 02-93581733, Fax: (39) 02-93581741
China: Hamamatsu Photonics (China) Co., Ltd.: B1201, Jiaming Center, No.27 Dongsanhuan Beilu, Chaoyang District, Beijing 100020, China, Telephone: (86) 10-6586-6006, Fax: (86) 10-6586-2866
Cat. No. KACC1178E04 Jul. 2013 DN
8
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