Optical Sensors - Photo Detectors - Remote Receiver

Image Part Number Description / PDF Quantity Rfq
TSOP36436TR

TSOP36436TR

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 36.0KHZ 45M

197

TSOP96340TT

TSOP96340TT

Vishay / Semiconductor - Opto Division

IR RECEIVER - PANHEAD PACKAGE -

0

TSOP37438ETT1

TSOP37438ETT1

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 38.0KHZ 45M

437

TSOP96540TR

TSOP96540TR

Vishay / Semiconductor - Opto Division

IR RECEIVER - PANHEAD PACKAGE -

0

TSOP96256TR

TSOP96256TR

Vishay / Semiconductor - Opto Division

IR RECEIVER - PANHEAD PACKAGE -

0

TSOP36430TR

TSOP36430TR

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 30.0KHZ 45M

0

TSOP96538TT

TSOP96538TT

Vishay / Semiconductor - Opto Division

IR RECEIVER - PANHEAD PACKAGE -

0

TSOP36140TR

TSOP36140TR

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 40.0KHZ 45M

0

TSOP95340TR

TSOP95340TR

Vishay / Semiconductor - Opto Division

IR RECEIVER - HEIMDALL PACKAGE -

0

TSSP58P38TR

TSSP58P38TR

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 38.0KHZ 40M

0

EAIRMDA4

EAIRMDA4

Everlight Electronics

SENSOR REMOTE REC 38.0KHZ 14M

0

TSOP36430TT

TSOP36430TT

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 30.0KHZ 45M

0

IRM-8607S-1

IRM-8607S-1

Everlight Electronics

SENSOR REMOTE REC 32.8KHZ 8M

0

TSOP31356

TSOP31356

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 56.0KHZ 45M

0

TSOP57238TT2

TSOP57238TT2

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 38.0KHZ 40M

0

IRM-8601S-5

IRM-8601S-5

Everlight Electronics

SENSOR REMOTE REC 56.8KHZ 8M

0

TSOP37236HTT1

TSOP37236HTT1

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 36.0KHZ 45M

0

TSOP93556

TSOP93556

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 56.0KHZ 28M

0

TSOP4440

TSOP4440

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 40.0KHZ 45M

0

TSOP36136TT

TSOP36136TT

Vishay / Semiconductor - Opto Division

SENSOR REMOTE REC 36.0KHZ 45M

0

Optical Sensors - Photo Detectors - Remote Receiver

1. Overview

Optical sensors are devices that convert light signals into electrical signals through photoelectric conversion. Photo detectors, a critical category of optical sensors, specifically refer to semiconductor devices that detect light intensity, wavelength, or presence. Remote receivers are specialized photo detectors designed to capture modulated light signals (typically infrared or visible spectrum) for wireless communication or control applications. These components form the foundation of modern optoelectronic systems, enabling contactless sensing, data transmission, and automation across diverse industries.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
PhotodiodesHigh-speed response, linear output, low capacitanceInfrared remote control receivers, optical communication
PhototransistorsHigh sensitivity, integrated amplificationLight barriers, proximity sensors
Photovoltaic CellsSelf-powered operation, energy harvestingSolar-powered remote sensors, light intensity meters
CMOS Image Sensors2D array detection, digital outputSmartphone camera receivers, industrial vision systems
Avalanche PhotodiodesSingle-photon detection capabilityLIDAR systems, quantum communication

3. Structure and Components

Typical remote receiver architecture includes:

  • Optical Window: Anti-reflective coated glass/plastic filter for wavelength selectivity
  • Photo-sensitive Element: Silicon/InGaAs PIN diode or phototransistor with active area (1-100 mm )
  • Signal Conditioning Circuitry: Integrated transimpedance amplifier and bandpass filter
  • Modulation Decoder: IR carrier frequency demodulation (30-60 kHz typical)
  • Package: TO-5/TO-18 metal can, surface-mount (SMD), or lens-integrated housing

4. Key Technical Specifications

ParameterDescriptionImportance
Responsivity (A/W)Current output per watt of incident lightDefines detection sensitivity
Response Time (ns)Rise/fall time for signal transitionDetermines maximum data rate
Spectral Range (nm)Operating wavelength detection windowMatches light source characteristics
Dark Current (nA)Leakage current without illuminationImpacts signal-to-noise ratio
Field of View ( )Acceptance angle for incident lightDefines spatial detection coverage
Modulation DepthSignal amplitude variation capabilityEnables noise-resistant communication

5. Application Fields

Major industry sectors include:

  • Consumer Electronics: TV remote receivers (VS1838B), smart home sensors
  • Industrial Automation: Non-contact position detection in conveyor systems
  • Medical Devices: Pulse oximetry sensors, blood analyzers
  • Telecommunications: Fiber optic network transceivers (PIN-FET modules)
  • Automotive: Driver monitoring systems, LiDAR for autonomous vehicles

Case Study: Automotive keyless entry systems use IR receivers with 940nm spectral sensitivity to decode 38kHz modulated signals with 10m transmission range.

6. Leading Manufacturers and Products

ManufacturerKey ProductsTechnical Highlights
Vishay SemiconductorVEMD8081Ultra-thin IR sensor with 0.1-100 klux detection range
Everlight ElectronicsIRM-2638Integrated IR receiver with built-in demodulator
OSRAM OptoBPS1.3High-speed PIN diode for data rates up to 200Mbps
Hamamatsu PhotonicsG12118Linear image sensor for spectrometry applications
STMicroelectronicsVL53L3CXTime-of-Flight sensor with integrated VCSEL

7. Selection Guidelines

Key consideration factors:

  1. Spectral Matching: Choose detector with peak sensitivity matching light source wavelength
  2. Speed Requirements: Response time must exceed system bandwidth needs
  3. Environmental Factors: Consider temperature range (-40 C to 85 C standard) and ambient light interference
  4. Package Constraints: Through-hole vs surface-mount based on PCB design
  5. Cost vs Performance: Balance sensitivity requirements with budget limitations

Recommended testing protocol: Verify performance under actual operating conditions with calibrated light sources.

8. Industry Trends

Emerging development directions:

  • Miniaturization: Wafer-level packaging enabling 0.5mm form factors
  • Smart Integration: Embedded signal processing (AI-based ambient light compensation)
  • Multi-spectral Detection: Broadband sensors covering UV to near-IR (200-1100nm)
  • Quantum Efficiency: New materials (perovskite, graphene) pushing responsivity beyond 1.5A/W
  • Standardization: Adoption of IEC 61853-1 for medical photodetector testing

Market forecasts indicate 12% CAGR for remote photodetectors driven by IoT and autonomous systems adoption.

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