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MIKROE proudly partners with Winbond Electronics, a global leader in memory semiconductor technologies. From serial NOR and NOR/NAND combo Flash to high-speed DRAM and TrustME® secure storage, Winbond offers versatile memory solutions ideal for embedded designs. Their reputation for reliability and broad product range makes them a strong fit in the MIKROE Click board™ ecosystem.
MIKROE Click Boards™ Featuring Winbond Technology
Our lineup of Winbond-powered Click boards™ is designed to slot seamlessly into mikroBUS™ and come with full software support via NECTO Studio, mikroSDK, and examples. The collection focuses exclusively on one essential category:
These boards boost your design with reliable, fast, and compact memory modules suited to IoT, industrial control, automotive, and consumer applications.
Why Choose MIKROE + Winbond Electronics?
Explore all MIKROE Click boards™ featuring Winbond storage modules - perfect for delivering fast, secure code and data storage in embedded applications.
Flash 5 Click is a perfect solution for the mass storage option in various embedded applications. It features the W25N01GVZEIG/IT (1G-bit) Serial SLC NAND Flash Memory from Winbond which provides a storage solution for systems with limited space, pins and power. The W25N SpiFlash family incorporates the popular SPI interface and the traditional large NAND...
The Flash 6 Click based on W25Q128JV (128M-bit) flash memory from Winbond provides a storage solution for systems with limited space, pins and power. The 25Q series offers flexibility and performance well beyond ordinary Serial Flash devices. They are ideal for code shadowing to RAM, executing code directly from Dual/Quad SPI (XIP) and storing voice, text...
Flash 9 Click is a compact add-on board that contains a highly reliable memory solution. This board features the W25Q02JV, an SPI configurable serial Flash memory solution from Winbond Electronics. It represents a four 512Mb stack die supporting linear addressing for the full 2Gb memory address range, offering flexibility and performance well beyond...
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