STV0976E [STMICROELECTRONICS]

1.0 Megapixel SMIA Processor; 1.0万像素的SMIA处理器
STV0976E
型号: STV0976E
厂家: ST    ST
描述:

1.0 Megapixel SMIA Processor
1.0万像素的SMIA处理器

微控制器和处理器 外围集成电路 uCs集成电路 uPs集成电路
文件: 总3页 (文件大小:44K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
STV0976  
1.0 Megapixel SMIA Processor  
DATA BRIEF  
FEATURES  
DESCRIPTION  
Supports the VS6650 1.0 Megapixel (1152H x  
864V) and the VS6590 SVGA (800H x 600V)  
camera modules  
SMIA1 class 0 (208 Mbit/s) sensor interface  
The STV0976 is a low power digital image proces-  
sor supporting the VS6650 1.0 Megapixel SMIA  
camera module at up to 15 fps, or the VS6590  
SVGA camera module at up to 30 fps.  
The STV0976 performs all the necessary opera-  
tions required to capture state-of-the-art megapix-  
el images, including JPEG compression and  
viewfinder generation, in a small footprint and low  
power budget. With both video input and output  
being SMIA-class 0, hardware acceleration in  
SMIA architecture achieves leading edge-mobile-  
imaging capabilities.  
Up to 30 frame per second (fps) operation at  
SVGA or 15 fps at 1.0 Megapixel  
Dedicated digital image processing functions  
including defect correction, noise filtering, lens  
shading correction, demosaicing, sharpening,  
gamma correction and color space conversion  
Embedded camera controller for automatic  
exposure control, automatic white balance,  
black level compensation, 50/60 Hz flicker  
detection and elimination  
APPLICATIONS  
Mobile phone  
PDA  
Fine image downscaler, 13 steps of 0.5 from 1x  
to 7x, 5 steps of 1.0 from 7x to 12x, maximum  
CIF output image size  
Wireless security camera  
PART NUMBERING  
ITU-R BT.656-4 YUV (YCbCr) 4:2:2, RGB 565,  
RGB 444 or JPEG output formats with  
embedded syncs  
Part Number  
Description  
TFBGA 56 AFOP lead-free,  
tray packing  
STV0976E  
JPEG compression with programmable target  
TFBGA 56 AFOP lead-free,  
13 inch tape-and-reel packing  
file size  
STV0976E/TR  
SMIA Class 0 (208 Mbit/s) host interface  
8-bit parallel video interface with separate  
horizontal and vertical syncs, 24 MHz clock  
Two-wire control interface (CCI)  
Single 1.8 V power supply  
15 µW standby power consumption  
TFBGA 56, 6mm x 6mm AFOP leadfree  
package  
Pin compatible with the STV0974 processor  
1.Standard Mobile Imaging Architecture  
visit www.smia-forum.org  
Rev. 1  
October 2004  
1/3  
STV0976  
APPLICATION DIAGRAM  
TECHNICAL SPECIFICATIONS  
VS6650 1.0MP SMIA  
VS6590 480kP  
Sensor support  
Frame rate  
Baseband  
or  
Application  
Processor  
EXTCLK  
XSHUTDOWN  
STV0976  
VS6650  
or  
1.0 Megapixel  
SMIA  
1 to 15 Hz (1152H x 864V)  
1 to 30 Hz (800H x 600V)  
VS6590  
CCI  
Processor  
SMIA  
Camera  
Module  
Gamma correction  
Image Crop  
Standard, S-curve  
Arbitrary size  
CCP 1.0  
x1 to x7 in 0.5 steps  
x7 to x12 in 1.0 steps  
Image Downscale  
BLOCK DIAGRAM  
JPEG on YUV 4:2:2,  
programmable quantization  
tables  
Image Compression  
STV0976  
YUV 4:2:2  
RGB 565, RGB 444  
JPEG  
VDD_POR  
RST_IN  
CLK  
Clock &  
Power  
Mgmt  
RAM, ROM,  
µprocessor  
I2C  
slave  
SSCL  
Output Format  
SSDA  
Internal bus  
SMIA class 0 high-speed  
serial  
208Mbit/s data/clock  
1.8 V LVDS  
PCLKP  
PCLKN  
CCP  
HCLKN  
HCLKP  
Video Output Interface  
Receiver  
CCP  
Transmitter  
PDATAP  
PDATAN  
MSCL  
HDATAP  
HDATAN  
I2C  
8-bit parallel video  
HSYNC/VSYNC/PCLK  
24 MHz max  
Master  
Video Output Interface  
(2)  
MSDA  
TMS, TCK,  
TDI, TDO  
JTAG & Test Interface  
6.5 to 27 MHz square  
13 MHz typ.  
Clock input  
Supply voltage  
I/O voltage  
1.8 V ± 0.1 V digital  
1.8 V CMOS levels  
Streaming 15 fps: 85 mW  
max  
Power consumption  
Power down: 60 µW max.  
TFBGA 56 AFOP lead-free  
STV0974 compatible  
Package type  
Package size (mm)  
6 x 6 x 1.2 (wlh)  
TEMPERATURE RANGES  
Storage  
-40 to +85 °C  
Operating  
-25 to +70 °C  
2/3  
STV0976  
REVISION HISTORY  
Table 1. Revision History  
Date  
Revision  
Description of Changes  
October 2004  
1
First Issue  
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences  
of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted  
by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject  
to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not  
authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics.  
The ST logo is a registered trademark of STMicroelectronics.  
All other names are the property of their respective owners  
© 2004 STMicroelectronics - All rights reserved  
STMicroelectronics group of companies  
Australia - Belgium - Brazil - Canada - China - Czech Republic - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan -  
Malaysia - Malta - Morocco - Singapore - Spain - Sweden - Switzerland - United Kingdom - United States of America  
www.st.com  
3/3  

相关型号:

STV0976TR

1.0 Megapixel SMIA Processor
STMICROELECTR

STV0984

2 Megapixel SMIA profile 2 mobile imaging processor
STMICROELECTR

STV0984/TR

2 MegaPixel SMIA Profile 2 Mobile Imaging Processor
STMICROELECTR

STV0984TR

2 Megapixel SMIA profile 2 mobile imaging processor
STMICROELECTR

STV0984_07

2 Megapixel SMIA profile 2 mobile imaging processor
STMICROELECTR

STV0986

5 Megapixel mobile imaging processor
STMICROELECTR

STV0986/TR

5 Megapixel mobile imaging processor
STMICROELECTR

STV09D03F

1W 3kVdc Isolated Dual Output Surface Mount DC-DC Converter
SUPERWORLD

STV09D05F

1W 3kVdc Isolated Dual Output Surface Mount DC-DC Converter
SUPERWORLD

STV09D09F

1W 3kVdc Isolated Dual Output Surface Mount DC-DC Converter
SUPERWORLD

STV09D12F

1W 3kVdc Isolated Dual Output Surface Mount DC-DC Converter
SUPERWORLD

STV09D15F

1W 3kVdc Isolated Dual Output Surface Mount DC-DC Converter
SUPERWORLD