NXP PCF7991AT/1081/M,1 Transponder IC
The NXP PCF7991AT/1081/M,1 is a highly integrated transponder IC designed for use in passive keyless entry (PKE) and radio-frequency identification (RFID) applications. This advanced component from NXP Semiconductors is built to provide secure communication and identification in a compact, power-efficient package.
Key Features:
- Multi-protocol Support: The PCF7991AT/1081/M,1 supports a wide range of modulation and coding schemes, making it versatile for various RFID systems and standards.
- Low Power Consumption: Engineered for battery-powered applications, this transponder IC exhibits low power consumption, helping to extend the life of the device it's embedded in.
- Security Features: It includes advanced security protocols to prevent unauthorized access and cloning, ensuring secure communication between the transponder and reader.
- High Sensitivity: The IC is designed for high sensitivity, enabling reliable operation even in environments with weak signal strength or at extended ranges.
- Configurable Memory: With its user-configurable memory, the PCF7991AT/1081/M,1 can be tailored to specific applications, storing necessary data securely.
Applications:
The NXP PCF7991AT/1081/M,1 is ideal for a variety of applications that require secure and passive wireless communication. These include:
- Vehicle immobilizers
- Passive keyless entry systems
- Access control systems
- Asset tracking
- Identification tags for animals
Technical Specifications:
For detailed technical specifications, designers and engineers should refer to the official datasheet provided by NXP Semiconductors. The datasheet provides comprehensive information on the electrical characteristics, programming instructions, and application guidelines necessary to integrate the PCF7991AT/1081/M,1 into their designs.
Overall, the NXP PCF7991AT/1081/M,1 transponder IC stands out as a robust and secure solution for developers looking to incorporate passive RFID functionality into their products. Its combination of versatility, low power consumption, and advanced security features make it a top choice for smart and connected devices in today's IoT landscape.