没有合适的资源?快使用搜索试试~ 我知道了~
温馨提示
索尼图像传感器,页数114也,大小1.71 MByte。 The IMX225LQR is a diagonal 6.09 mm (Type 1/3) CMOS active pixel type solid-state image sensor with a square pixel array and 1.27 M effective pixels. This chip operates with analog 3.3 V, digital 1.2 V, and interface 1.8 V triple power supply, and has low power consumption. High sensitivity, low dark current and no smear are achieved through the adoption of R, G and B primary color mosaic filters. This chip features an electronic shutter with variable charge-integration time.
资源推荐
资源详情
资源评论
1
Rev.0.2
Diagonal 6.09 mm (Type 1/3) CMOS Solid-state Image Sensor with Square Pixel for
Color Cameras
Preliminary
IMX225LQR
Description
The IMX225LQR is a diagonal 6.09 mm (Type 1/3) CMOS active pixel type solid-state image sensor with a square
pixel array and 1.27 M effective pixels. This chip operates with analog 3.3 V, digital 1.2 V, and interface 1.8 V triple
power supply, and has low power consumption. High sensitivity, low dark current and no smear are achieved through
the adoption of R, G and B primary color mosaic filters. This chip features an electronic shutter with variable
charge-integration time.
(Applications: Surveillance cameras)
Features
◆ CMOS active pixel type dots
◆ Built-in timing adjustment circuit, H/V driver and serial communication circuit
◆ Input frequency: 54 MHz / 27 MHz / 74.25 MHz / 37.125 MHz
◆ Number of recommended recording pixels: 1280 (H) × 960 (V) approx. 1.23M pixel
◆ Readout mode
Quad VGA All-pixel scan mode
Horizontal / Vertical 2 × 2 binning mode
Horizontal / Vertical 1 / 2 Subsampling mode
Window cropping mode
720p-HD readout mode
Vertical / Horizontal direction-normal / inverted readout mode
◆ Readout rate
Maximum frame rate in Quad VGA mode: 60 frame / s
◆ Variable-speed shutter function (resolution 1H units)
◆ 10-bit / 12-bit A/D converter
◆ Conversion gain switching (HCG Mode / LCG Mode)
◆ CDS / PGA function
0 dB to 30 dB: Analog Gain 30 dB (step pitch 0.1 dB)
30.1 dB to 72 dB: Analog Gain 30 dB + Digital Gain 0.1 to 42 dB (step pitch 0.1 dB)
◆ Supports I/O switching
CMOS logic parallel SDR output
Low voltage LVDS (150 m Vp-p) serial (1 ch / 2 ch / 4 ch switching) DDR output
CSI-2 serial data output (1 Lane / 2 Lane / 4 Lane, RAW10 / RAW12 output)
◆ Recommended lens F number: 2.8 or more (Close side)
◆ Recommended exit pupil distance: –30 mm to –∞
* “Exmor” is a trademark of Sony Corporation. The “Exmor” is a version of Sony's high performance CMOS image sensor with
high-speed processing, low noise and low power dissipation by using column-parallel A/D conversion.
Sony reserves the right to change products and specifications without prior notice.
This information does not convey any license by any implication or otherwise under any patents or other right.
Application circuits shown, if any, are typical examples illustrating the operation of the devices. Sony cannot assume responsibility for
any problems arising out of the use of these circuits.
IMX225LQR
2
Device Structure
◆ CMOS image sensor
◆ Image size
Type 1/3
◆ Total number of pixels
1312 (H) × 993 (V) approx. 1.30 M pixels
◆ Number of effective pixels
1305 (H) × 977 (V) approx. 1.27 M pixels
◆ Number of active pixels
1297 (H) × 977 (V) approx. 1.27 M pixels
◆ Number of recommended recording pixels
1280 (H) × 960 (V) approx. 1.23 M pixels
◆ Unit cell size
3.75 µm (H) × 3.75 µm (V)
◆ Optical black
Horizontal (H) direction: Front 4 pixels, rear 0 pixels
Vertical (V) direction : Front 16 pixels, rear 0 pixels
◆ Dummy
Horizontal (H) direction: Front 0 pixels, rear 3 pixels
Vertical (V) direction : Front 0 pixels, rear 0 pixels
◆ Substrate material
Silicon
IMX225LQR
3
Absolute Maximum Ratings
Item
Symbol
Min.
Max.
Unit
Remarks
Supply voltage (analog 3.3 V)
AV
DD
-0.3
4.0
V
Supply voltage (interface 1.8 V)
OV
DD
-0.3
3.3
V
Supply voltage (digital 1.2 V)
DV
DD
-0.3
2.0
V
Input voltage
VI
-0.3
OV
DD
+ 0.3
V
Not exceed 3.3 V
Output voltage
VO
-0.3
OV
DD
+ 0.3
V
Not exceed 3.3 V
Operating temperature
Topr
TBD
TBD
˚C
Storage temperature
Tstg
TBD
TBD
˚C
Recommended Operating Conditions
Item
Symbol
Min.
Typ.
Max.
Unit
Supply voltage (analog 3.3 V)
AV
DD
3.15
3.30
3.45
V
Supply voltage (Interface 1.8 V)
OV
DD
1.70
1.80
1.90
V
Supply voltage (digital 1.2 V)
DV
DD
1.10
1.20
1.30
V
IMX225LQR
4
USE RESTRICTION NOTICE
This USE RESTRICTION NOTICE ("Notice") is for customers who are considering or currently using the
image sensor products ("Products") set forth in this specifications book. Sony Corporation ("Sony") may,
at any time, modify this Notice which will be available to you in the latest specifications book for the
Products. You should abide by the latest version of this Notice. If a Sony subsidiary or distributor has its
own use restriction notice on the Products, such a use restriction notice will additionally apply between
you and the subsidiary or distributor. You should consult a sales representative of the subsidiary or
distributor of Sony on such a use restriction notice when you consider using the Products.
Use Restrictions
The Products are intended for incorporation into such general electronic equipment as office products,
communication products, measurement products, and home electronics products in accordance with
the terms and conditions set forth in this specifications book and otherwise notified by Sony from time
to time.
You should not use the Products for critical applications which may pose a life- or injury-threatening
risk or are highly likely to cause significant property damage in the event of failure of the Products. You
should consult your sales representative beforehand when you consider using the Products for such
critical applications. In addition, you should not use the Products in weapon or military equipment.
Sony disclaims and does not assume any liability and damages arising out of misuse, improper use,
modification, use of the Products for the above-mentioned critical applications, weapon and military
equipment, or any deviation from the requirements set forth in this specifications book.
Design for Safety
Sony is making continuous efforts to further improve the quality and reliability of the Products; however,
failure of a certain percentage of the Products is inevitable. Therefore, you should take sufficient care
to ensure the safe design of your products such as component redundancy, anti-conflagration features,
and features to prevent mis-operation in order to avoid accidents resulting in injury or death, fire or
other social damage as a result of such failure.
Export Control
If the Products are controlled items under the export control laws or regulations of various countries,
approval may be required for the export of the Products under the said laws or regulations.
You should be responsible for compliance with the said laws or regulations.
No License Implied
The technical information shown in this specifications book is for your reference purposes only. The
availability of this specifications book shall not be construed as giving any indication that Sony and its
licensors will license any intellectual property rights in such information by any implication or otherwise.
Sony will not assume responsibility for any problems in connection with your use of such information or
for any infringement of third-party rights due to the same. It is therefore your sole legal and financial
responsibility to resolve any such problems and infringement.
Governing Law
This Notice shall be governed by and construed in accordance with the laws of Japan, without reference
to principles of conflict of laws or choice of laws. All controversies and disputes arising out of or relating
to this Notice shall be submitted to the exclusive jurisdiction of the Tokyo District Court in Japan as the
court of first instance.
Other Applicable Terms and Conditions
The terms and conditions in the Sony additional specifications, which will be made available to you when
you order the Products, shall also be applicable to your use of the Products as well as to this
specifications book. You should review those terms and conditions when you consider purchasing
and/or using the Products.
IMX225LQR
5
Contents
Description ......................................................................................................................................................................1
Features ..........................................................................................................................................................................1
Device Structure ..............................................................................................................................................................2
Absolute Maximum Ratings ..............................................................................................................................................3
Recommended Operating Conditions ...............................................................................................................................3
USE RESTRICTION NOTICE ..........................................................................................................................................4
Optical Center .................................................................................................................................................................7
Pixel Arrangement ...........................................................................................................................................................8
Block Diagram and Pin Configuration ...............................................................................................................................9
Pin Desctiption .............................................................................................................................................................. 11
Electrical Characteristics ................................................................................................................................................ 14
DC Characteristics ..................................................................................................................................................... 14
Current Consumption ................................................................................................................................................. 15
AC Characteristics...................................................................................................................................................... 16
Master Clock Waveform (INCK) ............................................................................................................................... 16
XVS / XHS Input Characteristics In Slave Mode (DMODE pin = High) ....................................................................... 17
XVS / XHS Input Characteristics In Master Mode (DMODE pin = Low, CMOS Output)............................................... 17
Serial Communication ............................................................................................................................................. 18
DLCKP / DLCKM,DLOP / DLOM ........................................................................................................................... 20
I/O Equivalent Circuit Diagram ....................................................................................................................................... 22
Spectral Sensitivity Characteristics ................................................................................................................................. 23
Image Sensor Characteristics ........................................................................................................................................ 24
Zone Definition ........................................................................................................................................................... 24
Image Sensor Characteristics Measurement Method ...................................................................................................... 25
Measurement Conditions ............................................................................................................................................ 25
Color Coding of Physical Pixel Array ........................................................................................................................... 25
Definition of standard imaging conditions .................................................................................................................... 25
Measurement Method................................................................................................................................................. 26
Setting Registers Using Serial Communication ............................................................................................................... 27
Description of Setting Registers (4-wire) ..................................................................................................................... 27
Register Communication Timing (4-wire) ..................................................................................................................... 27
Register Write and Read (4-wire) ................................................................................................................................ 28
Description of Setting Registers (I
2
C) .......................................................................................................................... 29
Register Communication Timing (I
2
C).......................................................................................................................... 29
Communication Protocol ............................................................................................................................................. 30
Register Write and Read (I
2
C)..................................................................................................................................... 31
Single Read from Random Location ........................................................................................................................ 31
Single Read from Current Location .......................................................................................................................... 31
Sequential Read Starting from Random Location ..................................................................................................... 32
Sequential Read Starting from Current Location ....................................................................................................... 32
Single Write to Random Location ............................................................................................................................. 33
Sequential Write Starting from Random Location ..................................................................................................... 33
Register Map ................................................................................................................................................................. 34
Readout Drive mode ...................................................................................................................................................... 47
Sync code (Parallel CMOS output / Serial LVDS output) .............................................................................................. 49
Sync Code Output Timing ........................................................................................................................................... 49
Image Data Output Format (CSI-2 output) ................................................................................................................... 50
Frame Format ......................................................................................................................................................... 50
Frame Structure ...................................................................................................................................................... 50
Embedded Data Line .............................................................................................................................................. 51
Image Data Output Format ......................................................................................................................................... 54
All-pixel scan mode (Quad VGA) ............................................................................................................................. 54
2×2 binning mode (Quad VGA)................................................................................................................................ 60
Horizontal / Vertical 1/2 subsampling mode (Quad VGA) .......................................................................................... 63
Window Cropping Mode .......................................................................................................................................... 66
HD720p mode ........................................................................................................................................................ 74
Description of Various Function ...................................................................................................................................... 80
Standby Mode ............................................................................................................................................................ 80
剩余113页未读,继续阅读
资源评论
wyj908797
- 粉丝: 0
- 资源: 7
上传资源 快速赚钱
- 我的内容管理 展开
- 我的资源 快来上传第一个资源
- 我的收益 登录查看自己的收益
- 我的积分 登录查看自己的积分
- 我的C币 登录后查看C币余额
- 我的收藏
- 我的下载
- 下载帮助
最新资源
- 玻璃盘CCD影像筛选机程序:5套视觉系统,稳定可靠,千台装机经验,视觉定位检测经典实机程序,玻璃盘CCD影像筛选机程序,应用5套CCD视觉系统,上位机工控电脑采用IO板转通讯输出OK NG信号,此设备
- 卡盖连接器产品设计规范
- 三菱FX Q FX5U PLC程序加密保护系统:ST结构化文本编程,实现授权码验证、时间管理、触摸屏提醒与通信监控、程序块软加密及跨PLC平台移植,三菱FX Q FX5U PLC 程序加密,使用ST结
- 弹片产品设计规范资源学习
- "远程PLC监控调试与多客户端TCP中转服务器的实现:基于通用中转服务器与Socket多线程并发通讯技术",远程PLC监控调试,PLC通用中转服务器,多客户端tcp中转服务器源代码,socket多线程
- 步进伺服电机控制程序:西门子PLC与威伦触摸屏驱动的步进电机正反转、定位与复位控制程序设置,步进伺服电机控制程序: 1.步进电机的正转、反转控制 2.相对和绝对位置运动 3.电机复位找回零点功能 4
- SIM卡连接器产品设计规范及制造工艺详解
- 三相整流器MATLAB仿真模型预测研究:电路设计与性能分析,三相整流器MATLAB仿真 图中为基于模型预测的三相整流器仿真模型 ,核心关键词:三相整流器; MATLAB仿真; 模型预测; 仿真模型
- libquadmath-devel-4.8.5-44.el7.x64-86.rpm.tar.gz
- libquadmath-static-4.8.5-44.el7.x64-86.rpm.tar.gz
- 组态王自动化数据记录与报表展示:条件触发存储至Excel,精确到秒的时间戳命名文件,报表控件实时更新展示,组态王条件触发数据记录,记录数据后,条件触发存储到excel表格,存储文件名为出发时的年月日时
- 基于Kingscada的外部数据库链接与报表系统实践:数据库处理、控件运用及与上位机链接的脚本实现,kingscada链接外部数据库处理以及报表系统,案例涉及到数据记录插入数据库的脚本实现方法,数据查
- MATLAB下蜻蜓算法优化广义回归神经网络的预测模型:DA-GRN N回归新探,MATLAB程序,蜻蜓算法优化广义回归神经网络,DA-GRN N,回归预测 ,关键词:MATLAB程序;蜻蜓算法;广义
- 艾默生充电桩15kw模块与台达三相PFC源码全套资料:核心算法、原理图、PCB及软件源码完全配套解析,艾默生充电桩15kw模块+台达三相PFC源程序 艾默生充电桩 15kw模块+台达三相PFC源码,软
- 基于MATLAB+CPLEX gurobi平台的SOE算法多时段随机配电网重构优化方法:降低网损,提高经济效益,MATLAB代码:基于SOE算法的多时段随机配电网重构方法 关键词:配电网重构 SOE算
- Modbus TCP协议转RTU串口通讯Arduino源码实现:一键智能配网WiFi连接与永久记忆功能,Modbus TCP协议转RTU串口通讯 TCP转RTU 程序里包含了常用命令的处理,源码采用
资源上传下载、课程学习等过程中有任何疑问或建议,欢迎提出宝贵意见哦~我们会及时处理!
点击此处反馈
安全验证
文档复制为VIP权益,开通VIP直接复制
信息提交成功