Camera Modules

Image Part Number Description / PDF Quantity Rfq
82635DSD455

82635DSD455

Intel

DEPTH CAMERA D455 W/CABLE

1

82638L515G1PRQ

82638L515G1PRQ

Intel

CAMERA LIDAR L515 HIGH RES DEPTH

124

82635ASRCDVKMP

82635ASRCDVKMP

Intel

REALSENSE DEPTH CAMERA D415

36

82635D435IDK5P

82635D435IDK5P

Intel

REALSENSE DEPTH CAMERA D435I

29

82635DSASRCPRQ

82635DSASRCPRQ

Intel

REALSENSE DEPTH MODULE D415

240

82635AWGDVKPMP

82635AWGDVKPMP

Intel

REALSENSE DEPTH CAMERA D435

89

82635AWGDVKPRQ

82635AWGDVKPRQ

Intel

REALSENSE DEPTH CAMERA D435

19

82635DSD455MP

82635DSD455MP

Intel

DEPTH CAMERA D455 CAM ONLY

87

82635ASRCDVKHV

82635ASRCDVKHV

Intel

REALSENSE DEPTH CAMERA D415

180

82635DSAWGPRQ

82635DSAWGPRQ

Intel

REALSENSE DEPTH MODULE D430

263

82635DSASRPRQ

82635DSASRPRQ

Intel

REALSENSE DEPTH MODULE D410

0

82635DSASICBDIF

82635DSASICBDIF

Intel

BOARD VISION PRO D4 IMU FOR D450

61

82635DSF455

82635DSF455

Intel

CAMERA DEPTH PERIPH ID F455

0

82635DSPWGPRQ

82635DSPWGPRQ

Intel

REALSENSE DEPTH MODULE D420

100

82635DSF450

82635DSF450

Intel

CAMERA DEPTH MODULE ID F450

0

82635DSD450

82635DSD450

Intel

REALSENSE DEPTH MODULE D450

82

82535IVCHVM

82535IVCHVM

Intel

REALSENSE CAMERA SR300

0

Camera Modules

1. Overview

Camera modules are integrated optoelectronic devices that convert optical images into digital signals. As critical components in sensors and transducers systems, they combine image sensors, lenses, and signal processing circuits to enable visual data acquisition in modern electronics. Their miniaturization, high performance, and cost-effectiveness have driven advancements in automation, healthcare, security, and consumer electronics.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
CMOS Image SensorsLow power consumption, high integration, cost-effectiveSmartphones, webcams
CCD SensorsSuperior image quality, high light sensitivityIndustrial inspection, astronomy
Infrared CamerasCapture non-visible infrared spectrumNight vision, thermal monitoring
3D Depth SensorsGenerate spatial depth informationAR/VR, robotics
Global Shutter ModulesEliminate motion distortionHigh-speed industrial imaging
Low-light CamerasEnhanced sensitivity in dark environmentsSurveillance, autonomous vehicles

3. Structure and Components

A typical camera module consists of: - Optical Lens System: Focuses light onto the sensor - Image Sensor (CMOS/CCD): Converts photons to electrical signals - Image Signal Processor (ISP): Performs color correction and noise reduction - Interface Circuitry: Supports data transmission (MIPI, USB, etc.) - Mechanical Housing: Protects components and ensures optical alignment Advanced modules may integrate autofocus actuators, IR filters, or AI acceleration cores.

4. Key Technical Specifications

ParameterDescriptionImportance
ResolutionPixel count (e.g., 1920 1080)Determines image detail level
Frame RateImages per second (fps)Critical for motion capture
Sensor SizePhysical dimensions (inches)Affects light gathering capability
Dynamic RangeLight-to-dark ratio (dB)Measures detail retention in extremes
Signal-to-Noise RatioImage clarity vs. noiseImpacts low-light performance
Interface TypeMIPI CSI-2, USB 3.0, etc.Dictates system compatibility
Power ConsumptionOperating current (mA)Battery life consideration
Operating TemperatureFunctional range ( C)Environment suitability

5. Application Fields

  • Consumer Electronics: Smartphone cameras, action cameras
  • Security Systems: IP cameras, doorbell cameras
  • Medical Imaging: Endoscopes, dermatology scanners
  • Automotive: ADAS vision systems, dash cams
  • Industrial Automation: Machine vision inspection systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Sony SemiconductorIMX58648MP CMOS sensor with 0.8 m pixels
onsemiAR0234CS2.3MP automotive image sensor
MicrosoftKinect Azure3D depth sensing with time-of-flight
Intel RealSenseD455HD depth camera with RGB sensor
Himax TechnologiesHX-6320Low-power driver IC for camera modules

7. Selection Recommendations

Key considerations include: - Match resolution/frame rate to application needs - Evaluate environmental requirements (temperature, vibration) - Verify interface compatibility with host system - Balance cost with required image quality - Assess long-term supply stability - Consider additional features (autofocus, EIS support) - Test under actual lighting conditions

Industry Trends Analysis

Emerging trends include: - Stacked CMOS sensors with AI processing cores - Multi-spectral imaging integration - Event-based vision sensors with microsecond response - Wafer-level optics for further miniaturization - Increased adoption of computational photography - Automotive-grade modules with ASIL-D functional safety

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