Proximity/Occupancy Sensors - Finished Units

Image Part Number Description / PDF Quantity Rfq
PS-SWX-133-IV

PS-SWX-133-IV

NexLight-PerfectSense

PIR/ACOUSTIC MOTION SENSOR

50

PS-SWX-199-LA

PS-SWX-199-LA

NexLight-PerfectSense

WALL PLATE

50

80.00000154

80.00000154

InnoSenT GmbH

IPS-265 RADAR MODULE

974

80.00000328

80.00000328

InnoSenT GmbH

IVS-979 RADAR MODULE

46

PS-SWX-112-IV

PS-SWX-112-IV

NexLight-PerfectSense

PIR MOTION SENSOR

50

PS-SWX-133-WH

PS-SWX-133-WH

NexLight-PerfectSense

PIR/ACOUSTIC MOTION SENSOR

50

PS-SWX-103-WH

PS-SWX-103-WH

NexLight-PerfectSense

PIR MOTION SENSOR

50

80.00000341

80.00000341

InnoSenT GmbH

SMR-313 RADAR MODULE

864

80.00000079

80.00000079

InnoSenT GmbH

IPM-365_F RADAR MODULE

958

PS-SWX-501-HL

PS-SWX-501-HL

NexLight-PerfectSense

PIR MOTION SENSOR

50

80.00000061

80.00000061

InnoSenT GmbH

IPM-165 24GHZ RADAR MODULE

17

PS-SWX-132-WH

PS-SWX-132-WH

NexLight-PerfectSense

PIR/ACOUSTIC MOTION SENSOR

50

PS-SWX-111-IV

PS-SWX-111-IV

NexLight-PerfectSense

PIR MOTION SENSOR

50

PS-SWX-132-LA

PS-SWX-132-LA

NexLight-PerfectSense

PIR/ACOUSTIC MOTION SENSOR

50

PS-SWX-104-GY

PS-SWX-104-GY

NexLight-PerfectSense

PIR MOTION SENSOR

50

PS-SWX-101-D-IV

PS-SWX-101-D-IV

NexLight-PerfectSense

PIR MOTION SENSOR

50

PS-SWX-511-NL

PS-SWX-511-NL

NexLight-PerfectSense

PIR MOTION SENSOR

50

PS-SWX-102-IV

PS-SWX-102-IV

NexLight-PerfectSense

PIR MOTION SENSOR

50

PS-SWX-101-D-WH

PS-SWX-101-D-WH

NexLight-PerfectSense

PIR MOTION SENSOR

50

80.00000347

80.00000347

InnoSenT GmbH

SMR-334 RADAR MODULE

1135

Proximity/Occupancy Sensors - Finished Units

1. Overview

Proximity/occupancy sensors are devices that detect the presence, absence, or distance of objects or humans within a specific area. These sensors convert physical presence into electrical signals, enabling automated control systems in various applications. Their importance spans across smart buildings, industrial automation, healthcare, and consumer electronics, driving energy efficiency, safety, and user experience improvements.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Passive Infrared (PIR)Detected motion via infrared radiation changesSmart lighting, security alarms
UltrasonicUses sound waves for distance measurementAutomotive parking assist, liquid level detection
Microwave/RadarDoppler effect for high-precision motion detectionIndustrial automation, healthcare monitoring
CapacitiveElectrostatic field disruption detectionTouchless switches, occupancy detection in seats
Time-of-Flight (ToF)Light pulse travel time measurementRobot navigation, augmented reality

3. Structure and Components

Typical units consist of: - Sensing element (e.g., pyroelectric detector for PIR) - Signal conditioning circuitry (amplifiers, filters) - Microcontroller with detection algorithms - Communication interface (UART, I2C, Zigbee) - Protective housing with optical/mechanical shielding - Power management module

4. Key Technical Specifications

ParameterImportance
Detection RangeDefines operational coverage area (0.1m-10m typical)
ResolutionMinimum detectable movement (1cm-50cm)
Response TimeCritical for real-time applications (<10ms-1s)
False Trigger RateMeasures reliability in complex environments
Power ConsumptionKey for battery-operated devices (<10 A-100mA)
Environmental ToleranceOperating temperature (-40 C to +85 C), IP rating

5. Application Fields

Primary industries include: - Smart buildings (HVAC control, lighting automation) - Automotive (occupant detection, autonomous driving) - Healthcare (patient monitoring, equipment usage tracking) - Industrial (machine safety, asset management) - Consumer electronics (smartphones, gaming consoles)

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
HoneywellHPIR-LS-3VLow-power PIR with 120 FOV
Texas InstrumentsAWR164276-81GHz automotive radar
STMicroelectronicsVL53L5CXMulti-zone ToF sensor
OmronE2APUltrasonic presence detection

7. Selection Guidelines

Key considerations: - Match detection physics to application (e.g., radar for through-wall sensing) - Environmental factors (temperature, ambient light, EMI) - Integration requirements (form factor, communication protocols) - Regulatory compliance (FCC, CE) - Cost vs performance trade-offs

Industry Trends Analysis

Current developments focus on: - AI-enhanced pattern recognition - Wireless sensor network integration - Multi-modal sensing fusion - Energy harvesting capabilities - Miniaturization for IoT applications The global market is projected to grow at 12.3% CAGR through 2027, driven by smart city initiatives and Industry 4.0 adoption.

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