LCF001-I-03 4.48μm 450mm 5×5 Sapphire Analog Current Light Sensor 4.5–5.5V >110° -40~+80°C | SENBA

SENBA

The LCF001-I-03 from SENBA’s LCF001 Analog Current Series is a high-performance optical sensing device designed for accurate ambient light detection with stable analog current output. Featuring a 4.48μm spectral response and a 5×5 sapphire sensing element with an extended 450mm structure, this sensor delivers exceptional durability, optical stability, and reliable performance in demanding environments.

Operating within a regulated supply voltage range of 4.5–5.5V, the LCF001-I-03 is optimized for systems requiring consistent current-based signal output, making it ideal for precision light measurement and control applications. Its wide field of view greater than 110° enables broad-angle light detection, supporting applications that require wide-area illumination monitoring.

The sapphire-based sensing element offers superior resistance to environmental stress, enhanced thermal stability, and long-term reliability compared to conventional silicon sensors. Designed for harsh operating conditions, the device performs reliably across a wide temperature range of -40°C to +80°C, ensuring stable operation in both indoor and outdoor environments.

With its analog current output, extended sensing structure, and rugged sapphire construction, the LCF001-I-03 is an excellent choice for high-precision and high-reliability light sensing applications.


Key Features:

  • Sapphire-based 5×5 light sensing element
  • Spectral response: 4.48μm
  • Analog current output for precise sensing
  • Operating voltage: 4.5–5.5V
  • Wide field of view: >110°
  • Extended sensing structure: 450mm
  • Wide operating temperature: -40°C to +80°C
  • High durability and environmental resistance

Applications:

  • Ambient light detection systems
  • Industrial optical sensing applications
  • Analog current-based measurement systems
  • Smart lighting control circuits
  • Environmental monitoring equipment
  • Wide-area light sensing solutions