Parallel Port Converter Module USB to UART I2C SPI TTL ISP EPP MEM Interface 3.3V 5V Output Voltage for Electronic Projects and DIY Enthusiasts PCB Material
R 917
or 4 x payments of R229.25 with
Availability: Currently in Stock
Delivery: 10-20 working days
Please be aware orders placed now will not arrive in time for Christmas, please check delivery times.
Parallel Port Converter Module USB to UART I2C SPI TTL ISP EPP MEM Interface 3.3V 5V Output Voltage for Electronic Projects and DIY Enthusiasts PCB Material
[VERSATILE INTERFACE SUPPORT] This Parallel Port Module seamlessly converts USB to UART I2C SPI TTL ISP EPP MEM interfaces making it ideal for diverse electronic projects. With dual voltage output 3.3V or 5V it accommodates various microcontrollers and development boards ensuring broad compatibility across different work scenarios.
[ CONSTRUCTION] Crafted with premium PCB material this module offers excellent conductivity while maintaining insulation safety. Its robust design prevents cold joints and ensures long term reliability. The compact yet durable build makes it for both laboratory use and field applications.
[PLUG AND PLAY CONVENIENCE] Enjoy effortless setup with this user friendly module that requires no complicated installation or additional tools. Simply connect via USB and start transferring data immediately between devices. for beginners and professionals alike who value efficiency and simplicity.
[COMPREHENSIVE COMPATIBILITY] Supporting USB to printer parallel port conversions as well as EPP or EME parallel ports this module serves multiple purposes. It also facilitates USB to UART I2C and SPI interfaces making it an all in one solution for various communication protocols in electronic systems.
[SOFTWARE FLEXIBILITY] While this module includes downloadable software for debugging I2C and SPI interface chips it maintains versatility by allowing integration with other development tools. Note that software support is specifically optimized for I2C and SPI interface chip debugging ensuring focused functionality.