November 14, 2024 –
Mouser Electronics, the industry’s leading New Product Introduction (NPI) distributor of the broadest selection of semiconductors and electronic components™, is now offering the PASCO2V15 XENSIV™ PAS CO2 5V sensor from Infineon Technologies.
The XENSIV™ PAS CO2 5V sensor uses photoacoustic spectroscopy to accurately measure carbon dioxide (CO2) levels. The sensor can be integrated into HVAC systems, smart home and building equipment, and smart agriculture solutions to help achieve better indoor air quality.
Infineon's PASCO2V15 XENSIV™ PAS CO2 5V sensor provides high-precision data continuously and meets the performance requirements of the WELL™ building standard. The sensor's module size is 14mm × 13.8mm × 7.5mm, which is 1/4 the volume and 1/3 the weight of NDIR equivalents. Such a small size is ideal for smart home and Internet of Things (IoT) devices such as air purifiers and thermostats. The product is packaged in SMD packaging and tape and reel packaging to simplify the assembly process in high-speed, high-volume production.
The PASCO2V15 XENSIV™ PAS CO2 5V sensor features a dedicated microcontroller that runs advanced compensation algorithms and provides precise readings with an accuracy of ±50ppm ±5% between 400ppm and 3,000ppm. The XENSIV™ PAS CO2 5V sensor is dust-proof and maintenance-free for long-term monitoring. Three interfaces are available: UART, I2C, and PWM. The sensor improves comfort and energy efficiency while reducing utility costs.
As a global authorized distributor, Mouser Electronics stocks a wide range of semiconductors, electronic components and industrial automation products. Mouser aims to supply customers with fully certified original products and provide full manufacturer traceability. To help customers accelerate design, Mouser's website provides a rich technical resource library, including a technical resource center, product data sheets, supplier-specific reference designs, application notes, technical design information, engineering tools and other useful information.
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