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RFID Development Board - UHF RFID Modules Manufacturer | SILION TECH
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The SLD1010 is a development board designed to facilitate the testing of RFID modules and the assembly of complete machines. Products in this series feature an industrial-grade design. This development board can be directly connected to a variety of modules, including SIM7100, SIM7200, SIM7300, and others. It provides Type-C, RS-232, and TCP/IP communication interfaces, along with a 1-input, 1-output GPIO port. The GPIO port has strong driving capability, enabling direct connection to external devices such as indicator lights and alarms. Based on this development board, users can easily evaluate the performance of RFID modules. It can also be paired with a housing to form a fixed reader—boasting a compact structure, easy installation, and stable performance, making it suitable for various industrial application scenarios. Additionally, it simplifies testing operations such as GPIO control, reset, and power-on management. The development board operates on a 9-24V power supply. For an external power supply, please use the matching power adapter (12V/2A).
The SLD1030 is a development board designed to facilitate the testing of RFID modules and the assembly of complete machines. Products in this series adopt an industrial-grade design. This development board can directly connect to various modules, including SIM7100, SIM5100, and SIM3100. It provides USB, RS232, and TCP/IP communication interfaces, as well as 4-input-4-output GPIO ports (3 of which are relay outputs). With strong driving capability, it can directly power external devices such as indicator lights and alarms. Based on this development board, users can easily evaluate the performance of RFID modules. It can also be paired with a housing to form a fixed reader—featuring a compact structure, easy installation, and stable performance, making it suitable for various industrial application scenarios. Additionally, it simplifies testing operations such as GPIO control and power-on management. The interface board operates on a 9-24V power supply. For external power supply, please use the matching power adapter (either 9V/3A or 12V/2A).
The SLD1040 is a development board designed to facilitate the testing of RFID modules and the assembly of card issuers. Products in this series adopt an industrial-grade design. This development board is compatible with all series of SILION TECH's RFID modules. The SLD1040 provides communication interfaces such as USB, RS232, and Bluetooth. It is equipped with a 1-input-1-output GPIO port, which has strong driving capability and can directly power external devices like indicator lights and alarms. Based on this development board, users can easily evaluate the performance of RFID modules. It can also be paired with a housing to form a card reader—boasting a compact structure, easy installation, and stable performance, making it suitable for various industrial application scenarios.
SLD1090 is a full-featured interface board designed for convenient testing and assembly of RF modules into complete machines, providing customers with an easy and fast way to perform tests. It enables customers to quickly evaluate the performance of RF modules based on the development board, and to develop their own products based on open-source information.
The SLD6020 is an interface board designed for convenient testing and assembly of RFID modules into complete machines. This product series adopts an industrial-grade design and can directly connect with various modules, such as SIM7100, SIM7200, SIM7300, SLR1200, SLR5600, etc. It provides an RS232 communication interface, 1 input and 1 output GPIO port with strong driving capability to drive peripheral devices such as indicator lights, alarms, etc. Based on this board, the performance of RFID modules can be evaluated conveniently. It can also be combined with a shell to make a fixed reader with a compact structure, convenient installation, and stable performance, suitable for various industrial applications. Additionally, it facilitates testing of GPIO operations, power-on control, etc. The interface board is powered by 9-24V, and an external power supply is recommended to use the matching power adapter (12V/2A).
SLD6010 is a debugging board designed for convenient testing and assembly of RFID modules into complete machines. This series of products adopts an industrial-grade design and can directly connect with various modules, such as SIM7100, SIM7200, SIM7300, SLR1200, SLR5600, and other full series modules. The board provides a Type-C communication interface. Based on this development board, the performance of RFID modules can be evaluated conveniently. It can also be combined with a shell to make a fixed reader with a compact structure, convenient installation, and stable performance, suitable for various industrial applications.
UHF RFID modules are the core components that enable radio-frequency identification (RFID) by transmitting and receiving signals to read and write data on RFID tags. However, these modules generally come as barebones hardware that can't function standalone. This is where an RFID Development Board becomes essential. Here are some reasons why RFID Development Boards are necessary when working with UHF RFID modules:
1. Interface: Development boards provide the necessary interfaces for connecting RFID modules to computers, microcontrollers, or other systems. They offer the connecting ports and pins needed to establish communications.
2. Power Supply: RFID modules require a power supply to operate, and development boards typically include power regulation circuits to safely provide this power from various sources and ensure that the module operates within its specified power range.
3. Prototyping: Development boards often include other components such as LEDs, buttons, and sometimes screens, which help in developing, testing, and debugging RFID applications in both laboratory and field settings.
4. Firmware Development: For devices that need custom software, development boards offer the ability to upload and debug firmware directly onto the module, allowing developers to create specialized RFID solutions.
5. Circuit Protection: Handling signals and power correctly is vital to prevent damage to the UHF RFID modules. Development boards often include circuit protection elements such as fuses and transient voltage suppressors to protect against electrical anomalies.
6. Signal Conditioning: In some cases, signals received from tags or sent to the tags may need conditioning to be properly read by a computer or microcontroller. Development boards can include the necessary circuitry for this signal conditioning.
7. Learning and Training: Development boards are excellent tools for education and training purposes, allowing students and professionals to understand and experiment with RFID technology in a controlled and safe environment.
8. Rapid Deployment: By providing a ready-to-use platform that interfaces with both the RFID module and the device's final application, development boards can help in rapidly deploying RFID systems.
In summary, RFID Development Boards serve as a supportive platform for UHF RFID modules, without which the module alone would be difficult to integrate into practical applications. They help engineers and developers to transform RFID modules into functional parts of an RFID system more easily and reliably.
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