NOIP1SN025KA-GDI ONSEMI PYTHON 25K APS-H frame 25 million pixels (5120x5120 26MP) Global shutter black and White monochrome Scientific Research Machine Vision Industrial camera High pixel large pixel
NOIP1SN025KA,ONSEMI PYTHON 25K,APS-H frame 25MP,5120x5120 26MP,global shutter black-and-white monochrome, scientific research machine vision,large array industrial camera,high pixel large pixel high frame
NOIP1SN025KA-GDI Features
● A Pin-compatible Family with Multiple Resolutions:
- 25K = 5120 x 5120 Active Pixels=NOIP1SN025KA
- 16K = 4096 x 4096 Active Pixels=NOIP1SN016KA
- 12K = 4096 x 3072 Active Pixels=NOIP1SN012KA
● 4.5 m x 4.5 m Low Noise Global Shutter Pixels with In-pixel Correlated Double Sampling (CDS)
● APS-H Optical Format (32.6 mm Diagonal) for 25K
● Monochrome (SN), Color (SE) and NIR (FN)
● Random Programmable Region of Interest (ROI) Readout
● Pipelined and Triggered Global Shutter
● On-chip Fixed Pattern Noise (FPN) Correction
● 10-bit Analog-to-Digital Converter (ADC)
● 32 Low-voltage Differential Signaling (LVDS) High-speed Serial Outputs
● Serial Peripheral Interface (SPI)
● High-speed: 80 Frames per Second (fps) at 25 Mpix
● 4.6 W Power Dissipation at Full Resolution, x32 LVDS Mode
● Operational Range: - 40°C to +85°C
● 355-pin μPGA Package
● These Devices are Pb-Free and are RoHS Compliant
NOIP1SN025KA-GDI Applications
● Machine Vision
● Motion Monitoring
● Intelligent Traffic Systems (ITS)
● Pick and Place Machines
● Inspection
● Metrology
NOIP1SN025KA-GDI Description
The PYTHON xK family of CMOS image sensors provide high resolution with very high bandwidth (up to 80 frame per
second readout for 25 megapixel readout) in a pin?compatible family of devices.
The high sensitivity 4.5 m pixels support both pipelined and triggered global shutter readout modes. The sensor also
supports correlated double sampling (CDS) readout in global shutter mode, reducing noise and increasing dynamic range.
The sensor is programmed using a four-wire serial peripheral interface. Black level can be calibrated automatically, or
adjusted using a user programmable offset. The sensor also supports readout of up to 32 separate regions of interest (ROI) to
increase frame rate. Image data is accessed through 32, 16, 8, or 4 LVDS channels, each running at 720 Mbps, and a separate
synchronization channel is provided to facilitate image reconstruction.
The PYTHON xK family is packaged in a 355-pin PGA package and is available in a monochrome, Bayer color, and
extended near?infrared (NIR) configurations.
NOIP1SN025KA-GDI Key Specifications
Table 1. GENERAL SPECIFICATIONS
Parameter/Specification
● Pixel Type:Global shutter pixel architecture
● Shutter Type:Pipelined and triggered global shutter
● Optical Format 25K: APS-H,16K: APS-H,12K: 4/3”
● Frame Rate at Full Resolution:80 frames per second @ 25K;120 frames per second @ 16K;160 frames per second @ 12K
● Master Clock:360 MHz
● Windowing:32 Randomly programmable windows. Normal and sub-sampled readout modes
● ADC Resolution (Note 1):10-bit
● LVDS Outputs:32 data + 1 sync + 1 clock
● Data Rate:32 x 720 Mbps
● Power Consumption:4.6 W
● Operational Range: -40°C to +85°C
● Package Type:355 μPGA
● Color:RGB color, mono
(1. The ADC is 11-bit, down-scaled to 10-bit. The PYTHON XK uses a larger word-length internally to provide 10-bit on the output.)
NOIP1SN025KA-GDI Table 2. ELECTRO-OPTICAL SPECIFICATIONS
Parameter / Specification
● Active Pixels:25K: 5120 (H) x 5120 (V);16K: 4096 (H) x 4096 (V);12K: 4096 (H) x 3072 (V)
● Pixel Size:4.5μm x 4.5 μm
● Conversion Gain:0.085 LSB10/e- , 130 V/e-
● Temporal Noise :< 14 e- (Non?Zero ROT, 1x gain)
● Responsivity at 550 nm:5.8 V/lux.s
● Parasitic Light Sensitivity (PLS):< 1/5000
● Full Well Charge :> 12000 e-
● Quantum Efficiency (QE) x FF:50% at 550 nm
● Pixel FPN (Note 2): < 0.9 LSB10
● PRNU (Note 2): < 1%
● MTF: 68% @ 535 nm - X-dir & Y-dir;68% @ 535 nm - X-dir & Y-dir (NIR)
● PSNL @ 20°C (t_int = 30 ms):91 LSB10/s, 1100 e-/s
● Dark signal @ 20°C 3.9 e-/s, 0.33 LSB10/s
● Dynamic range:59 dB
● Signal-to-Noise Ratio (SNR max):41 dB
(2. Only includes high-frequency component)
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