Image Sensors, Camera

Image Part Number Description / PDF Quantity Rfq
NANEYE_F2.7_PATTERN_PROJECTOR_G FT SE

NANEYE_F2.7_PATTERN_PROJECTOR_G FT SE

ams

NANEYE F2.7 PATTERN PROJ G FT SE

0

DR2X2K7_INVAR_R&B_V5

DR2X2K7_INVAR_R&B_V5

ams

DR2X2K7 INVAR R&B V5

0

NE2D_RGB_FOV90F6.0_0.31M_S FT SE

NE2D_RGB_FOV90F6.0_0.31M_S FT SE

ams

NE2D RGB FOV90F6.0 0.31M S FT SE

0

NE2D_RGB_FOV160_F2.4_3M FT SE

NE2D_RGB_FOV160_F2.4_3M FT SE

ams

NE2D RGB FOV160 F2.4 3M FT SE

0

CHR71000ES-1E5M1PN

CHR71000ES-1E5M1PN

ams

IMAGE SENSORS & COLOR SENSORS AR

0

NE2D_RGB_FOV120_F2.8_NB_3M FT SE

NE2D_RGB_FOV120_F2.8_NB_3M FT SE

ams

NE2D RGB FOV120 F2.8 NB 3M FT SE

0

NE2D_RGB_FOV160_F2.4_1M FT SE

NE2D_RGB_FOV160_F2.4_1M FT SE

ams

NE2D RGB FOV160 F2.4 1M FT SE

0

NE2D_RGB_FOV90_F2.7_1.33M_S FT SE

NE2D_RGB_FOV90_F2.7_1.33M_S FT SE

ams

NE2D RGB FOV90 F2.7 1.33M S FTSE

0

NE2D_RGB_NP_NB_2M FT SE

NE2D_RGB_NP_NB_2M FT SE

ams

NE2D RGB NP NB 2M FT SE

0

CMV2000-2E5M0PN

CMV2000-2E5M0PN

ams

IMAGE SENSORS

0

NE2D_RGB_FOV90F6.0_1.5M SE

NE2D_RGB_FOV90F6.0_1.5M SE

ams

NE2D RGB FOV90F6.0 1.5M SE

0

NANEYE_PATTERN_AWAIBA_12_350UM FT SE

NANEYE_PATTERN_AWAIBA_12_350UM FT SE

ams

NANEYE PATTERN 12 350UM FT SE

0

NE2D_RGB_FOV90F4.0_3M FT SE

NE2D_RGB_FOV90F4.0_3M FT SE

ams

NE2D RGB FOV90F4.0 3M FT SE

0

CMV2000-3E5C1LP

CMV2000-3E5C1LP

ams

IMAGE SENSORS & COLOR SENSORS AR

0

CMV4000-3E12M1PN

CMV4000-3E12M1PN

ams

IMAGE SENSORS & COLOR SENSORS AR

0

4LS_15K_B&W_V1.2 FT SE

4LS_15K_B&W_V1.2 FT SE

ams

LINE SCAN SENSOR 4LS_15K_B&W_V1.

0

NE2D_RGB_FOV90F4.0_NP_1M FT SE

NE2D_RGB_FOV90F4.0_NP_1M FT SE

ams

NE2D RGB FOV90F4.0 NP 1M FT SE

0

4LS_5K FT SE

4LS_5K FT SE

ams

LINE SCAN SENSOR 4LS_5K FT SE

0

4LS_7K5_B&W_CERAMIC_PGA_V1.0 FT SE

4LS_7K5_B&W_CERAMIC_PGA_V1.0 FT SE

ams

LINE SCAN SENSOR 4LS_7K5_B&W_CER

0

CMV2000-2E12M1LP

CMV2000-2E12M1LP

ams

IMAGE SENSOR COLOR

0

Image Sensors, Camera

1. Overview

Image sensors and cameras are optoelectronic devices that convert optical images into electrical signals. They form the core of modern imaging systems, enabling applications from consumer electronics to industrial automation. These sensors capture light intensity and wavelength information through semiconductor materials, primarily CMOS (Complementary Metal-Oxide-Semiconductor) or CCD (Charge-Coupled Device) technologies. Their importance spans machine vision, medical imaging, autonomous vehicles, and IoT devices, driving advancements in AI-powered visual data processing.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
CMOS SensorsLow power consumption, high integration, cost-effectiveSmartphones, DSLR cameras, drones
CCD SensorsSuperior light sensitivity, lower noiseScientific imaging, medical endoscopes
CMOS Image Sensors (CIS)Backside illumination, stacked architectureHigh-end smartphones, AR/VR devices
Infrared SensorsNear-infrared (NIR) to long-wave IR detectionThermal imaging, night vision
Time-of-Flight (ToF) Sensors3D depth sensing via light pulse timingAutonomous vehicles, gesture recognition

3. Structure and Components

A typical image sensor consists of: - Photosensitive Array: Photodiodes or photogates for light-to-charge conversion - Micro-lens Array: Focuses light onto photodiodes - Color Filter Array (CFA): Bayer pattern for color separation - Signal Processing Circuitry: ADC (Analog-to-Digital Converter), amplifiers - Packaging: Ceramic or plastic encapsulation with optical window Modern CIS uses stacked die architecture with through-silicon vias (TSVs) for compact integration.

4. Key Technical Specifications

ParameterDescriptionImportance
ResolutionPixel count (e.g., 12MP, 48MP)Determines image detail level
Dynamic RangeRatio of max/min detectable light (dB)Low-light performance
Quantum EfficiencyPhoton-to-electron conversion rate (%)Sensitivity metric
Frame RateImages per second (fps)High-speed motion capture
Pixel SizePhysical photodiode dimension ( m)Tradeoff between sensitivity and resolution
Power ConsumptionOperating current/voltage (mW)Battery-powered device longevity

5. Application Fields

  • Consumer Electronics: Smartphones, action cameras, smart home devices
  • Industrial: Machine vision systems, robotic guidance
  • Medical: Endoscopes, OCT (Optical Coherence Tomography)
  • Security: Surveillance cameras, biometric scanners
  • Automotive: ADAS, surround-view systems
  • Scientific: Astronomical telescopes, microscopy

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Sony SemiconductorIMX70050MP CMOS with RYYB color filter
Samsung ISOCELLHM3108MP sensor with 9-in-1 pixel binning
OmniVisionOV64C64MP sensor for AR/VR applications
ON SemiconductorAR0234CS2.3MP automotive image sensor
Teledyne e2vEmerald seriesHigh-speed industrial CMOS sensors

7. Selection Recommendations

Key considerations:

  1. Determine resolution requirements vs. frame rate needs
  2. Assess operating environment (lighting, temperature)
  3. Evaluate interface compatibility (MIPI, LVDS)
  4. Consider power budget and thermal management
  5. Analyze required dynamic range and low-light performance
  6. Factor in optical format and lens compatibility
Example: Select Sony IMX586 for smartphones requiring 48MP resolution with 4-cell output.

8. Industry Trends

Emerging trends include: - Development of 8K-resolution sensors with stacked DRAM - Event-based vision sensors mimicking biological retinas - Multi-spectral/hyperspectral imaging integration - AI co-processing in sensor nodes (smart cameras) - MicroLED-based image sensors for AR/VR - Advancements in quantum dot sensors for improved low-light performance

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