Flux, Flux Remover

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406
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ImageProduct DetailPriceAvailabilityECAD Model
FLS400-4G
#400 NC FLUX, VOC-FREE 4% SOL
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CW9200
FLUX REMOVER PEN FOR ROSIN
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ES888B
FLUX REMOVER EXTRA NO CLEAN 10OZ
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ES7200
FLUX-OFF CZ AEROSOL 12OZ
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CW8200BLK50
FLUX RA PEN 0.32OZ 50PK
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CW8710
FLUX - NO CLEAN LF TACKY
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CW9100BLK
FLUX RMVR - NO CLEAN PEN 0.32OZ
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ES135E
CLEANER DEGREASER ELECT 1 GAL
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10-4202
LIQUID SOLDER FLUX 2 OZ
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REFILL-WS
SRA WATER SOLUABLE FLUX PEN REFI
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PN 413C-1L
HEAVY DUTY FLUX REMOVER
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FLS312-1G
#312 NC FLUX, SOLVENT BASED 2%
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FLS99-1G
SRA #99 ROSIN FLUX, TYPE RMA 1G
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FLS400-1G
#400 NC FLUX, VOC-FREE 4% SOL
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1634-12S
G3 NO-CLEAN FLUX REMOVER G3
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1631-5S
G3 FLUX REMOVER
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PCB Symbol, Footprint & 3D Model
835-P
PEN RA ROSIN FLUX .34OZ W/TIP
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835-100ML
LIQUID ROSIN FLUX
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835-1L
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8351-125ML
NO CLEAN FLUX, HALOGEN FREE
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Flux, Flux Remover

Flux is a critical material used in the soldering process to ensure proper bonding between the solder and the materials being joined. Flux comes in different forms such as paste, spray, or liquid, and is applied to the materials being soldered to prevent the formation of metal oxides that can inhibit bonding and create weak joints. During the soldering process, flux also aids in cleaning the surfaces by removing any oxides, dirt, or other contaminants that may be present on the materials. This cleaning action helps to create a clean and even surface for the solder to flow around and adhere to the material. Some fluxes can leave residue after the soldering process is complete. This post-soldering residue can be removed using rosin activated, ionic, or lead-free flux remover. Rosin activated flux remover is typically used for removing rosin-based flux residues, while ionic flux remover is more effective for removing water-soluble flux residues. Lead-free flux remover is specifically designed for removing residues from lead-free soldering processes. It is important to choose the correct type of flux for the materials being soldered, as well as the specific application. Different types of fluxes are available, each with its own unique properties and characteristics. For example, some fluxes may contain lead, while others are lead-free. The choice of flux depends on the specific requirements of the task, as well as any regulatory or environmental considerations. In summary, flux is a crucial component of the soldering process that helps to prevent oxidation, clean surfaces, and create strong bonds between the materials being joined. By choosing the correct type of flux and using appropriate flux remover, technicians can ensure the quality and reliability of their soldering work, while also meeting regulatory and environmental requirements.