OneStep No Clean Flux Solder Wick 1.5m Bobbin

OneStep No Clean Flux Solder Wick 1.5m Bobbin

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6.80
4.92
7.00
5.20
5.95

Solder-Wick Rosin stands as the go-to solution for the rework and repair of printed circuit boards, computers, cell phones, and various electronic devices. Engineered for efficiency, this advanced desoldering wick offers seamless removal of solder from components or pads on a circuit board, ensuring precise and damage-free desoldering processes.

Key Features:

 Efficient Desoldering: Solder-Wick Rosin effortlessly removes solder from components or circuit board pads, facilitating smooth rework and repair operations.
 Concentrated Fine Copper Braiding: Featuring fine copper braiding, Solder-Wick utilizes less length of wick for each desoldering application. This concentrated design ensures cost-effective and precise desoldering.
 Clean and Oxide-Free Copper Wire: Crafted from clean, oxide-free copper wire, Solder-Wick Rosin guarantees optimal conductivity and desoldering performance. The tight weave of the copper braid enables quick and easy "on and off" desoldering.
 No Clean Flux Residue: Designed to work seamlessly with RMA type no-clean fluxes, Solder-Wick Rosin eliminates the need for cleaning flux residue on the board, saving valuable time and effort.
 Flux Classification Type L0: Compliant with IPC J-STD-004B standards, Solder-Wick Rosin utilizes flux classification type L0, making it compatible with R, RA, RMA, and NC type fluxes, ensuring versatility in various soldering applications.

Solder-Wick Rosin is the preferred choice for professionals seeking precision and efficiency in their desoldering processes. Its compatibility with a range of flux types and the ability to work seamlessly with no-clean fluxes make it an invaluable tool for electronics rework and repair. 

Available at Oritech, your trusted partner for high-quality soldering and desoldering solutions. Elevate your electronic repair work with Solder-Wick Rosin and achieve exceptional results with every desoldering application.