PN5180A0HN/C1E NFC Reader IC Module ?C High-Performance, SMT Package

  • Enables secure contactless communication, facilitating seamless data exchange in embedded systems.
  • Operates at standard NFC frequency, ensuring compatibility with a wide range of RFID and NFC devices.
  • Features a compact package that minimizes board space, ideal for integration in space-constrained designs.
  • Supports applications such as access control and payment systems, enhancing user convenience and security.
  • Designed with robust manufacturing standards, providing consistent performance over the device lifecycle.
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PN5180A0HN/C1E Overview

The PN5180A0HN/C1E is a high-performance NFC frontend IC designed for advanced industrial and consumer applications. This device integrates a powerful 13.56 MHz RF transceiver with an embedded microcontroller, enabling efficient contactless communication and data exchange. It supports multiple NFC protocols, including ISO/IEC 14443 A/B, FeliCa, and ISO/IEC 15693, making it highly versatile for a wide range of RFID and NFC applications. Its robust design ensures reliable operation in demanding environments, while the flexible interface options simplify system integration. Designed for low power consumption and high sensitivity, the PN5180A0HN/C1E delivers precise and reliable contactless communication performance. For more detailed technical resources and purchasing information, visit IC Manufacturer.

PN5180A0HN/C1E Technical Specifications

ParameterSpecification
Operating Frequency13.56 MHz
Supported ProtocolsISO/IEC 14443 A/B, FeliCa, ISO/IEC 15693, NFC Forum Type 1-4 Tags
Supply Voltage2.7 V to 5.5 V
Power ConsumptionTypical 10 mA (active mode)
Interface OptionsSPI, I2C, UART
Integrated MicrocontrollerArm Cortex-M0
Operating Temperature Range-40 ??C to +85 ??C
Package TypeQFN 5×5 mm
RF SensitivityBetter than -80 dBm

PN5180A0HN/C1E Key Features

  • Multi-protocol support: Enables seamless communication with various NFC and RFID tags, enhancing compatibility and flexibility in system design.
  • Integrated Arm Cortex-M0 microcontroller: Provides on-chip processing power, reducing the need for external MCUs and simplifying overall system architecture.
  • Low power operation: Optimizes battery life in portable applications without sacrificing performance or communication range.
  • Multiple interface options (SPI, I2C, UART): Supports easy integration with diverse host controllers and microprocessors, enhancing system adaptability.
  • High sensitivity RF frontend: Ensures reliable detection and communication with low-power tags even in electrically noisy environments.
  • Robust industrial temperature range: Guarantees reliable operation from -40 ??C to +85 ??C, making it suitable for harsh industrial conditions.
  • Compact QFN package: Saves PCB space and simplifies manufacturing in compact electronic designs.

PN5180A0HN/C1E Advantages vs Typical Alternatives

This NFC frontend IC offers superior multi-protocol support and integrated processing capabilities that reduce external component count compared to typical discrete solutions. Its low power consumption and high RF sensitivity provide enhanced communication reliability and longer battery life, critical in industrial and portable applications. The broad interface compatibility and robust temperature range make it a versatile and reliable choice over conventional NFC readers that may lack such flexibility or environmental resilience.

Typical Applications

  • Contactless payment terminals requiring secure and multi-standard NFC communication for fast and reliable transaction processing in retail environments.
  • Access control systems utilizing NFC and RFID technologies for secure entry authentication in commercial and industrial facilities.
  • Smart ticketing solutions for public transportation and event management where compatibility with various NFC tag types is essential.
  • Inventory management and asset tracking systems that benefit from high sensitivity and multi-protocol support for efficient item identification.

PN5180A0HN/C1E Brand Info

Manufactured by a leading semiconductor provider, the PN5180A0HN/C1E is engineered to meet the demanding requirements of modern NFC and RFID applications. The product emphasizes integration, flexibility, and performance, reflecting the brand??s commitment to delivering high-quality, reliable IC solutions for industrial and consumer electronic markets. This NFC frontend IC is part of a broader portfolio designed to accelerate the deployment of contactless technology with robust support and proven field performance.

FAQ

What communication protocols does the PN5180A0HN/C1E support?

This device supports a wide array of NFC and RFID protocols including ISO/IEC 14443 Type A and B, FeliCa, ISO/IEC 15693, and NFC Forum Type 1 to 4 tags. This broad protocol compatibility allows it to interface with most contactless tags and reader systems used in various applications.

What interface options are available for integrating the PN5180A0HN/C1E with a host system?

The IC offers several communication interfaces including Serial Peripheral Interface (SPI), Inter-Integrated Circuit (I2C), and Universal Asynchronous Receiver/Transmitter (UART). These options provide flexibility for designers to connect the NFC frontend to different microcontrollers or processors depending on system requirements.

How does the integrated microcontroller improve system design?

The built-in Arm Cortex-M0 microcontroller allows local processing of NFC protocol layers and tag communication tasks, reducing the processing load on the main host controller. This integration simplifies system architecture, lowers component count, and can lead to cost and power savings in the final product.

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What is the operating temperature range of the PN5180A0HN/C1E?

The device is specified to operate reliably over an industrial temperature range from -40 ??C to +85 ??C. This makes it suitable for use in harsh environments where temperature extremes are common, such as industrial automation or outdoor applications.

How does the PN5180A0HN/C1E ensure low power consumption?

Designed with power efficiency in mind, the IC typically consumes around 10 mA in active mode. Its low power architecture supports battery-operated devices by extending operational life without compromising communication performance or range.

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