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NOIP1SN5000A-QTI Datasheet(PDF) 1 Page - ON Semiconductor |
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NOIP1SN5000A-QTI Datasheet(HTML) 1 Page - ON Semiconductor |
1 / 75 page © Semiconductor Components Industries, LLC, 2016 August, 2016 − Rev. 2 1 Publication Order Number: NOIP1SN5000A/D NOIP1SN5000A PYTHON 5.0/2.0 MegaPixels Global Shutter CMOS Image Sensors Features • Data Output Options ♦ P1: 8 LVDS Data Channels ♦ P3: 4 LVDS Data Channels • Size Options ♦ PYTHON 2000: 1920 x 1200 Active Pixels, 2/3” Optical Format ♦ PYTHON 5000: 2592 x 2048 Active Pixels, 1” Optical Format • 4.8 mm x 4.8 mm Low Noise Global Shutter Pixels with In-pixel CDS • Monochrome (SN), Color (SE) and NIR (FN) • Zero Row Overhead Time Mode Enabling Higher Frame Rate • Frame Rate at Full Resolution, 8 LVDS Data Channels (P1 only) ♦ 100/85 frames per second @ 5 MP (Zero ROT/Non−Zero ROT) ♦ 230/180 frames per second @ 2 MP (Zero ROT/Non−Zero ROT) ♦ 255/200 frames per second @ Full HD (Zero ROT/Non−Zero ROT) • On-chip 10-bit Analog-to-Digital Converter (ADC) • Eight/Four/Two/One LVDS High Speed Serial Outputs • Random Programmable Region of Interest (ROI) Readout • Serial Peripheral Interface (SPI) • Automatic Exposure Control (AEC) • Phase Locked Loop (PLL) • High Dynamic Range (HDR) Modes Possible • Dual Power Supply (3.3 V and 1.8 V) • −40°C to +85°C Operational Temperature Range • 84-pin LCC • Power Dissipation ♦ 1.45 W (P1, 8 LVDS, NZROT) ♦ 915 mW (P1, P3, 4 LVDS, NZROT) ♦ 520 mW (P1, P3, 2 LVDS, NZROT) ♦ 370 mW (P1, P3, 1 LVDS, NZROT) • These Devices are Pb−Free and are RoHS Compliant Applications • Machine Vision • Motion Monitoring • Security • Intelligent Traffic Systems (ITS) Description The PYTHON 2000 and PYTHON 5000 image sensors utilize high sensitivity 4.8 mm x 4.8 mm pixels that support low noise “pipelined” and “triggered” global shutter readout modes. The sensors support correlated double sampling (CDS) readout, reducing noise and increasing dynamic range. The sensor has on-chip programmable gain amplifiers and 10-bit A/D converters. The integration time and gain parameters can be reconfigured without any visible image artifact. Optionally the on-chip automatic exposure control loop (AEC) controls these parameters dynamically. The image’s black level is either calibrated automatically or can be adjusted by adding a user programmable offset. A high level of programmability using a four wire serial peripheral interface enables the user to read out specific regions of interest. Up to sixteen regions can be programmed, achieving even higher frame rates. The image data interface of the P1 devices consists of eight LVDS lanes, facilitating frame rates up to 100 frames per second in Zero ROT mode for the PYTHON 5000. Each channel runs at 720 Mbps. A separate synchronization channel containing payload information is provided to facilitate the image reconstruction at the receiving end. The P3 devices are the same as the P1 but with only four of the eight LVDS data channels enabled, facilitating frame rates of 45 frames per second in Non Zero ROT (NZROT) for the PYTHON 5000. www.onsemi.com Figure 1. PYTHON 5000 |
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