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Rating Automotive Operating temperature range (°C) -40 to 105 Applications Automotive
Rating Automotive Operating temperature range (°C) -40 to 105 Applications Automotive
USON (DNP) 6 4 mm² 2 x 2
  • AEC-Q100 qualified for automotive applications:
    • Temperature grade 2 (USON and SOT-5X3 variant): –40°C to 105°C, TA
  • High-precision, high-speed light-to-digital conversion over high-speed I2C interface
  • Visible channel with 28-bits of effective dynamic range:
    • 585µlux to 157klux for SOT-5X3 package variant
    • 535µlux to 143klux for USON package variant
    • Precision optical filtering closely matches human eye with excellent near infrared (NIR) rejection
  • Near IR channel with 26-bits of effective dynamic range:
    • 447pW/cm2 to 30mW/cm2 for SOT-5X3 package variant
    • 409pW/cm2 to 27.45mW/cm2 for USON package variant
    • Precision optical filtering provides high NIR sensitivity with excellent visible rejection
  • Semi-logarithmic output:
    • 9 (visible channel) and 7 (NIR channel) binary logarithmic full-scale light ranges
    • Highly linear response within each range
  • Built-in automatic full-scale light range selection logic that switches measurement range based on input light condition for best possible resolution at all times
  • 12 configurable conversion times:
    • 600µs to 800ms per channel for high-speed and high-precision applications
  • External pin interrupt for hardware-synchronized trigger and interrupts
  • Error correction code features for improved reliability in automotive use cases
  • Internal FIFO for output registers with I2C burst readout
  • Low operating current: 30µA
  • Ultra-low power standby: 2µA
  • Operating temperature range: –40°C to +105°C
  • Wide power-supply range: 1.6V to 3.6V
  • 5.5V tolerant I/O pins
  • Selectable I2C address
  • Small-form factor:
    • SOT-5X3: 1.9mm x 2.1mm x 0.6mm
    • USON: 2mm × 2mm × 0.65mm
  • AEC-Q100 qualified for automotive applications:
    • Temperature grade 2 (USON and SOT-5X3 variant): –40°C to 105°C, TA
  • High-precision, high-speed light-to-digital conversion over high-speed I2C interface
  • Visible channel with 28-bits of effective dynamic range:
    • 585µlux to 157klux for SOT-5X3 package variant
    • 535µlux to 143klux for USON package variant
    • Precision optical filtering closely matches human eye with excellent near infrared (NIR) rejection
  • Near IR channel with 26-bits of effective dynamic range:
    • 447pW/cm2 to 30mW/cm2 for SOT-5X3 package variant
    • 409pW/cm2 to 27.45mW/cm2 for USON package variant
    • Precision optical filtering provides high NIR sensitivity with excellent visible rejection
  • Semi-logarithmic output:
    • 9 (visible channel) and 7 (NIR channel) binary logarithmic full-scale light ranges
    • Highly linear response within each range
  • Built-in automatic full-scale light range selection logic that switches measurement range based on input light condition for best possible resolution at all times
  • 12 configurable conversion times:
    • 600µs to 800ms per channel for high-speed and high-precision applications
  • External pin interrupt for hardware-synchronized trigger and interrupts
  • Error correction code features for improved reliability in automotive use cases
  • Internal FIFO for output registers with I2C burst readout
  • Low operating current: 30µA
  • Ultra-low power standby: 2µA
  • Operating temperature range: –40°C to +105°C
  • Wide power-supply range: 1.6V to 3.6V
  • 5.5V tolerant I/O pins
  • Selectable I2C address
  • Small-form factor:
    • SOT-5X3: 1.9mm x 2.1mm x 0.6mm
    • USON: 2mm × 2mm × 0.65mm

The OPT4003-Q1 is a dual-channel, light-to-digital sensor (single-chip lux meter and NIR power meter) that independently measures the intensity of visible and near infrared (NIR) light. To measure accurate visible light intensity, a specially engineered filter on the device tightly matches the photopic response of the human eye and rejects the near-infrared component from common light sources. The NIR channel filter is specially engineered to provide high sensitivity to wavelengths in the near infrared region while achieving high rejection of visible wavelengths with a sharp cutoff at 800nm. The output of the OPT4003-Q1 is semi-logarithmic with binary logarithmic full-scale light ranges along with a highly linear response within each range. The visible channel provides nine binary light ranges, providing measurement capability from 535µlux to 143klux for the USON package variant, 585µlux to 157klux for the SOT-5X3 package variant. The NIR channel provides seven light ranges, providing measurement capability from 409pW/cm2 to 27.45mW/cm2 for the USON package variant, 447pW/cm2 to 30 mW/cm2 for the SOT-5X3 package variant. The built-in automatic range selection logic dynamically adjusts the device gain settings based on the light level, providing the best possible resolution in all conditions without user input.

The OPT4003-Q1 is equipped with engineered optical filters on both channels, providing strong out-of-band rejection. Strong infrared rejection on the visible channel aids in maintaining high lux accuracy across all light sources, especially when the sensor is placed under dark glass for aesthetic reasons. The NIR channel robust rejection of visible wavelengths and sharp cutoff below 800nm enables precise near-infrared measurements under mixed lighting conditions, including high levels of visible light.

The OPT4003-Q1 is designed for systems that require light level detection to enhance user experience and typically replaces low-accuracy photodiodes, photoresistors, and other ambient light sensors with underwhelming human eye matching and near-infrared rejection.

The OPT4003-Q1 can be configured to operate with light conversion times from 600µs to 800ms per channel in 12 steps, providing system flexibility based on application need. Conversion time includes the light integration time and analog-to-digital (ADC) conversion time. Measurement resolution is determined by a combination of light intensity and integration time, effectively providing the capability to measure down to 535µlux of light intensity changes for the USON package variant, down to 585µlux for the SOT-5X3 package variant.

Digital operation is flexible for system integration. Measurements can be either continuous or triggered in one shot with register writes or a hardware pin . The device features a threshold detection logic, which allows the processor to sleep while the sensor waits for an appropriate wake-up event to report through the interrupt pin.

The sensor reports a digital output representing the light level over an I2C- and SMBus-compatible, two-wire serial interface. An internal first-in-first-out (FIFO) on the output registers is available to read out measurements from the sensor at a slower pace while still preserving all data captured by the device. The OPT4003-Q1 also supports I2C burst mode, thus helping the host read data from the FIFO with minimal I2C overhead.

The low power consumption and low power-supply voltage capability of the OPT4003-Q1 helps enhance the battery life of battery-powered systems.

The OPT4003-Q1 is a dual-channel, light-to-digital sensor (single-chip lux meter and NIR power meter) that independently measures the intensity of visible and near infrared (NIR) light. To measure accurate visible light intensity, a specially engineered filter on the device tightly matches the photopic response of the human eye and rejects the near-infrared component from common light sources. The NIR channel filter is specially engineered to provide high sensitivity to wavelengths in the near infrared region while achieving high rejection of visible wavelengths with a sharp cutoff at 800nm. The output of the OPT4003-Q1 is semi-logarithmic with binary logarithmic full-scale light ranges along with a highly linear response within each range. The visible channel provides nine binary light ranges, providing measurement capability from 535µlux to 143klux for the USON package variant, 585µlux to 157klux for the SOT-5X3 package variant. The NIR channel provides seven light ranges, providing measurement capability from 409pW/cm2 to 27.45mW/cm2 for the USON package variant, 447pW/cm2 to 30 mW/cm2 for the SOT-5X3 package variant. The built-in automatic range selection logic dynamically adjusts the device gain settings based on the light level, providing the best possible resolution in all conditions without user input.

The OPT4003-Q1 is equipped with engineered optical filters on both channels, providing strong out-of-band rejection. Strong infrared rejection on the visible channel aids in maintaining high lux accuracy across all light sources, especially when the sensor is placed under dark glass for aesthetic reasons. The NIR channel robust rejection of visible wavelengths and sharp cutoff below 800nm enables precise near-infrared measurements under mixed lighting conditions, including high levels of visible light.

The OPT4003-Q1 is designed for systems that require light level detection to enhance user experience and typically replaces low-accuracy photodiodes, photoresistors, and other ambient light sensors with underwhelming human eye matching and near-infrared rejection.

The OPT4003-Q1 can be configured to operate with light conversion times from 600µs to 800ms per channel in 12 steps, providing system flexibility based on application need. Conversion time includes the light integration time and analog-to-digital (ADC) conversion time. Measurement resolution is determined by a combination of light intensity and integration time, effectively providing the capability to measure down to 535µlux of light intensity changes for the USON package variant, down to 585µlux for the SOT-5X3 package variant.

Digital operation is flexible for system integration. Measurements can be either continuous or triggered in one shot with register writes or a hardware pin . The device features a threshold detection logic, which allows the processor to sleep while the sensor waits for an appropriate wake-up event to report through the interrupt pin.

The sensor reports a digital output representing the light level over an I2C- and SMBus-compatible, two-wire serial interface. An internal first-in-first-out (FIFO) on the output registers is available to read out measurements from the sensor at a slower pace while still preserving all data captured by the device. The OPT4003-Q1 also supports I2C burst mode, thus helping the host read data from the FIFO with minimal I2C overhead.

The low power consumption and low power-supply voltage capability of the OPT4003-Q1 helps enhance the battery life of battery-powered systems.

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유형 직함 날짜
* Data sheet OPT4003-Q1 Automotive High-Speed, Dual-Channel, High-Precision, Digital Ambient Light Sensor datasheet (Rev. B) PDF | HTML 2024/12/12
EVM User's guide LIGHTSOURCE01EVM Light Source EVM User's Guide (Rev. A) PDF | HTML 2024/09/11
Application brief Localized Light Sensors for Automotive Applications (Rev. A) PDF | HTML 2024/08/05
Application note Light Source Detection Using the OPT4003-Q1 Ambient Light Sensor PDF | HTML 2023/12/19

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평가 보드

OPT4003DNPQ1EVM — 오토모티브 듀얼 채널(가시광선 및 적외선) 주변광 센서용 OPT4003-Q1 평가 모듈

OPT4003DNPQ1EVM 평가 모듈(EVM)은 OPT4003-Q1 듀얼 채널(가시광선 및 적외선), 오토모티브, 고속, 고정밀, 디지털 주변광 센서의 성능을 평가하기 위한 플랫폼입니다. OPT4003-Q1 장치는 다양한 조명 조건과 덮개 재료 뒤에 사용하도록 설계되었습니다.

OPT4003DNPQ1EVM은 인쇄 회로 기판(PCB) 2개로 이루어져 있습니다. 첫 번째는 OPTMBEVM 보드로, 그래픽 사용자 인터페이스(GUI) 평가 소프트웨어를 실행하는 컴퓨터와 통신할 수 있는 USB 인터페이스, 쿠폰 보드를 연결하기 위한 소켓, (...)

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개발 키트

LIGHTSOURCE01EVM — TI 주변광 센서 평가 모듈의 보정을 위한 안정적인 광원

LIGHTSOURCE01EVM은 주변광 센서(ALS) 및 컬러 센서의 보정에 사용되는 안정적이고 균일한 광원입니다. 이 광원은 생산 환경에서 TI 광 센서를 포함한 최종 제품을 보정 및 테스트하는 데 사용하도록 설계되었습니다. 이 안정화 광원은 일몰(4200K CCT) 및 정오(6400K CCT) 조명 모드를 시뮬레이션하는 데 사용할 수 있습니다. 광원은 균일하고 일정하며 시간이 지남에 따라 광출력이 ±1% 미만이고 직경이 1인치 면적에 균일성이 ±1% 미만입니다. 조명 수준 및 모드는 광원 EVM GUI를 사용하여 조정할 수 (...)

사용 설명서: PDF | HTML
패키지 CAD 기호, 풋프린트 및 3D 모델
USON (DNP) 6 Ultra Librarian

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  • 납 마감/볼 재질
  • MSL 등급/피크 리플로우
  • MTBF/FIT 예측
  • 물질 성분
  • 인증 요약
  • 지속적인 신뢰성 모니터링
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