Datasheet4U Logo Datasheet4U.com

HB7121BELECTRONICS - CMOS IMAGE SENSOR With 8-bit ADC

Datasheet Summary

Description

HB7122B is a highly integrated single chip CMOS B/W image sensor using Hyundai 0.5um CMOS process developed for image application to realize high efficiency photo sensor.

The sensor has 414X314 pixels total, and 400X300 pixels effective.

Features

  • l l l l l l l l 400 x 300 pixels resolution 8um x 8um square pixel High efficiency photo sensors Integrated 8-bit ADC for direct digital output Low power 3.3V operation (5V tolerant I/O) Integrated pan control and window sizing Clock speed up to 15MHz Programmable frame rate and synchronous format l l l l l l l Full function control through standard I2C bus Built-in Automatic Gain Control (AGC) 48 pin CLCC Anti-blooming circuit Flexible exposure time control Integrated on-chip timing and drive c.

📥 Download Datasheet

Datasheet preview – HB7121BELECTRONICS

Datasheet Details

Part number HB7121BELECTRONICS
Manufacturer Hynix Semiconductor
File Size 786.77 KB
Description CMOS IMAGE SENSOR With 8-bit ADC
Datasheet download datasheet HB7121BELECTRONICS Datasheet
Additional preview pages of the HB7121BELECTRONICS datasheet.
Other Datasheets by Hynix Semiconductor

Full PDF Text Transcription

Click to expand full text
HB7121B Electronics Industries Co., Ltd. System IC Division PRELIMINARY CMOS IMAGE SENSOR With 8-bit ADC DESCRIPTION HB7122B is a highly integrated single chip CMOS B/W image sensor using Hyundai 0.5um CMOS process developed for image application to realize high efficiency photo sensor. The sensor has 414X314 pixels total, and 400X300 pixels effective. Each pixel is high photo sensitive, small size active pixel element that converts photons to analog voltage signal. The sensor has three on-chip 8 bit Digital to Analog Convert (DAC) and 414 comparators to digitize the pixel output. The three on-chip 8 bit DAC can be used for independent gain control. Hyundai proprietary on-chip Correlated Double Sampling (CDS) circuit can reduce Fixed Pattern Noise (FPN) dramatically.
Published: |