PN7150B0HN/C11006E Overview
The PN7150B0HN/C11006E is a high-performance NFC controller designed for seamless Near Field Communication integration in industrial and consumer applications. This device supports multiple NFC standards, enabling secure and efficient wireless data exchange. Its compact form factor and advanced features facilitate easy integration into complex electronic systems, making it ideal for embedded applications requiring reliable NFC connectivity. With robust signal processing and low power consumption, it offers engineers a versatile solution suited for smart devices, payment terminals, and access control systems. For detailed technical support and procurement options, visit IC Manufacturer.
PN7150B0HN/C11006E Technical Specifications
Parameter | Specification |
---|---|
Operating Voltage | 2.7 V to 3.6 V |
Communication Interface | I2C Master/Slave |
Supported NFC Standards | ISO/IEC 14443 A/B, ISO/IEC 15693, FeliCa, MIFARE |
Operating Frequency | 13.56 MHz |
Data Rate | 106, 212, 424 kbps |
Operating Temperature Range | -25??C to +85??C |
Package Type | QFN 32-pin, 5 x 5 mm |
Power Consumption | Typically 15 mA active, 1 ??A standby |
PN7150B0HN/C11006E Key Features
- Multi-standard NFC Support: Enables compatibility with a broad range of NFC-enabled devices and tags, ensuring flexible system design.
- Low Power Operation: Reduces energy consumption in battery-powered applications, extending device lifetime and improving efficiency.
- Integrated Secure Element Interface: Facilitates secure transactions and data handling, critical for payment or access control systems.
- Compact QFN Package: Saves PCB space, allowing for integration into slim and compact devices without compromising performance.
PN7150B0HN/C11006E Advantages vs Typical Alternatives
This NFC controller offers enhanced sensitivity and multi-protocol compatibility compared to typical alternatives, providing reliable data transfer in diverse environments. Its low power consumption and integrated secure element interface improve device efficiency and security, making it a superior choice for demanding industrial and consumer applications.
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Typical Applications
- Contactless payment terminals requiring secure and fast NFC communication with multiple card types and mobile wallets.
- Access control systems for secure entry using NFC badges or smartphones.
- Smart home devices that integrate NFC for setup or user authentication.
- Industrial automation equipment where wireless data exchange improves operational flexibility and maintenance.
PN7150B0HN/C11006E Brand Info
The PN7150B0HN/C11006E is a product from a leading NFC semiconductor supplier renowned for delivering innovative and reliable wireless communication solutions. This product line emphasizes interoperability, security, and power efficiency, supporting a wide range of NFC applications across various industries. The brand provides comprehensive documentation, development tools, and technical support to accelerate integration and reduce time-to-market for product developers.
FAQ
What NFC standards does the PN7150B0HN/C11006E support?
The controller supports multiple NFC standards including ISO/IEC 14443 Type A and B, ISO/IEC 15693, FeliCa, and MIFARE, enabling broad compatibility with various NFC cards, tags, and devices.
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What communication interface does this NFC controller use?
It communicates via an I2C interface that can operate both as a master or slave, allowing flexible integration with host microcontrollers or processors.
What is the typical power consumption of this device?
The typical active current consumption is around 15 mA, while in standby mode it can drop to as low as 1 ??A, supporting energy-efficient designs.
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Can this device operate in extreme temperature conditions?
Yes, it is rated for an operating temperature range from -25??C to +85??C, making it suitable for most industrial and consumer environments.
What package type is used for the PN7150B0HN/C11006E?
The device comes in a compact 32-pin QFN package measuring 5 x 5 mm, which supports space-constrained PCB designs without sacrificing performance.