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ZGM130S037HGN2
RX TXRX MODULE ISM < 1GHZ SMD
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- 製造商。 部分 #ZGM130S037HGN2
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- 資料表 ZGM130S037HGN2 DataSheet
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規格
| Package | Tray |
| Series | Z-Wave® |
| ProductStatus | Active |
| RFFamily/Standard | General ISM < 1GHz |
| Protocol | Z-Wave® |
| Modulation | 2FSK, GFSK |
| Frequency | 863MHz ~ 876MHz, 902MHz ~ 930MHz |
| DataRate | 100Kbps |
| Power-Output | 13dBm |
| Sensitivity | -102.6dBm |
| SerialInterfaces | ADC, GPIO, I²C, I²S, IrDA, PWM, SPI, UART |
| AntennaType | Antenna Not Included |
| UtilizedIC/Part | ZGM130S |
| MemorySize | 512kB Flash, 64kB RAM |
| Voltage-Supply | 1.8V ~ 3.8V |
| Current-Receiving | 9.5mA ~ 9.9mA |
| Current-Transmitting | 13.3mA ~ 40.7mA |
| MountingType | Surface Mount |
| OperatingTemperature | -40°C ~ 85°C (TA) |
概述
Description
The ZGM130S037HGN2 is a wireless microcontroller unit (MCU) designed by Silicon Labs. Part of their Gecko series, it combines an ARM Cortex-M3 processor with IEEE 802.15.4 radio capabilities, making it suitable for Internet of Things (IoT) applications. This particular model supports Zigbee, Thread, and other mesh networking protocols, making it ideal for building automation, smart lighting, and home security systems.
The ZGM130S037HGN2 is known for its energy efficiency, providing robust performance while maintaining low power consumption, which is critical for battery-operated devices. It integrates a range of peripherals, including UART, I2C, and SPI interfaces, as well as ADCs for sensor measurements. The device also features hardware cryptographic accelerators, enhancing security for wireless communications.
Developers working with this MCU can leverage Silicon Labs' Simplicity Studio, an integrated development environment (IDE) that offers tools such as energy profiling, network analysis, and configuration options. The ZGM130S037HGN2 is suitable for environments where reliable and secure connectivity is essential, offering a balance of performance, security, and power efficiency.
The ZGM130S037HGN2 is known for its energy efficiency, providing robust performance while maintaining low power consumption, which is critical for battery-operated devices. It integrates a range of peripherals, including UART, I2C, and SPI interfaces, as well as ADCs for sensor measurements. The device also features hardware cryptographic accelerators, enhancing security for wireless communications.
Developers working with this MCU can leverage Silicon Labs' Simplicity Studio, an integrated development environment (IDE) that offers tools such as energy profiling, network analysis, and configuration options. The ZGM130S037HGN2 is suitable for environments where reliable and secure connectivity is essential, offering a balance of performance, security, and power efficiency.
Features
The ZGM130S037HGN2 is a part of the ZGM130S SoC series designed for Smart Energy applications, specifically Zigbee and IEEE 802.15.4 protocols. Key features include:
1. Microcontroller: Based on a 32-bit ARM Cortex-M33 core, providing efficient processing capabilities.
2. Memory: Includes 512 kB of Flash memory and 64 kB of RAM for ample storage and processing space for applications.
3. Radio Frequency: Operates in the 2.4 GHz ISM band, supporting Zigbee and other 802.15.4 protocols with adjustable output power.
4. Energy Efficiency: Equipped with low-energy features, designed to prolong battery life in IoT devices.
5. Security: Advanced security features, including a True Random Number Generator (TRNG) and AES-128 for secure communications.
6. Peripherals: Integrated peripherals like ADC, USART, I2C, SPI, and GPIO, offering flexibility in connecting external devices.
7. Package: Available in compact QFN32 or QFN40 packages, suitable for constrained spaces in devices.
8. Development Support: Compatible with Silicon Labs' development tools and software, facilitating easier and faster development cycles.
These features make the ZGM130S037HGN2 ideal for low-power, secure wireless communication in smart energy and IoT applications.
1. Microcontroller: Based on a 32-bit ARM Cortex-M33 core, providing efficient processing capabilities.
2. Memory: Includes 512 kB of Flash memory and 64 kB of RAM for ample storage and processing space for applications.
3. Radio Frequency: Operates in the 2.4 GHz ISM band, supporting Zigbee and other 802.15.4 protocols with adjustable output power.
4. Energy Efficiency: Equipped with low-energy features, designed to prolong battery life in IoT devices.
5. Security: Advanced security features, including a True Random Number Generator (TRNG) and AES-128 for secure communications.
6. Peripherals: Integrated peripherals like ADC, USART, I2C, SPI, and GPIO, offering flexibility in connecting external devices.
7. Package: Available in compact QFN32 or QFN40 packages, suitable for constrained spaces in devices.
8. Development Support: Compatible with Silicon Labs' development tools and software, facilitating easier and faster development cycles.
These features make the ZGM130S037HGN2 ideal for low-power, secure wireless communication in smart energy and IoT applications.
Package
The ZGM130S037HGN2 typically comes in a QFN (Quad Flat No-leads) package. This packaging type is designed for surface mounting on printed circuit boards, offering a compact and efficient form factor suitable for applications with space constraints.
Pinout
The ZGM130S037HGN2 is a module from Silicon Labs designed for low-power wireless communication, particularly in IoT applications. This module is part of the Z-Wave series, which is used for home automation and other similar applications.
The ZGM130S037HGN2 features a 37-pin configuration. The pins serve various functions, including power supply, ground, I/O ports, and specialized functions such as RF communication, programming, and debugging interfaces. These pins enable the module to interface with microcontrollers and other peripherals necessary for Z-Wave communication and control.
For detailed pin functions and configurations, referring to the manufacturer's datasheet or technical reference manual is recommended. These documents provide comprehensive details on the electrical characteristics, pin assignments, and recommended usage for optimal performance in specific applications.
The ZGM130S037HGN2 features a 37-pin configuration. The pins serve various functions, including power supply, ground, I/O ports, and specialized functions such as RF communication, programming, and debugging interfaces. These pins enable the module to interface with microcontrollers and other peripherals necessary for Z-Wave communication and control.
For detailed pin functions and configurations, referring to the manufacturer's datasheet or technical reference manual is recommended. These documents provide comprehensive details on the electrical characteristics, pin assignments, and recommended usage for optimal performance in specific applications.
Manufacturer
The ZGM130S037HGN2 is manufactured by Silicon Labs (Silicon Laboratories Inc.). Silicon Labs is a technology company that specializes in semiconductor and software solutions. They are known for providing a wide range of products including microcontrollers, wireless systems, sensors, and timing devices. Silicon Labs focuses on solutions for Internet of Things (IoT) applications, industrial automation, consumer electronics, and smart home technologies. The company is recognized for its innovation and expertise in developing energy-efficient and highly integrated solutions that enable connected devices and systems.
Application
The ZGM130S037HGN2 is a sub-GHz wireless module commonly used in various Internet of Things (IoT) applications. Its key application areas include smart metering, home and building automation, security systems, and industrial automation. The module's low power consumption and long-range communication capabilities make it suitable for applications requiring reliable wireless connectivity over extended distances.
Equivalent
The ZGM130S037HGN2 is a Gecko Wireless SoC from Silicon Labs. Equivalent products would typically be other low-power, multi-protocol wireless SoCs. Consider alternatives like Nordic Semiconductor's nRF52840, Texas Instruments' CC2652R, or NXP's KW41Z. These chips offer similar Bluetooth and Zigbee connectivity and are suitable for IoT applications. Always verify specific features and compatibility for your use case.
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