KEHIPI
KEHIPI 100g 0.6mm Solder Wire Sn99.3 Cu0.7 Green
Lead-free solder wire, 0.6 mm diameter and 100 g, with 2 % flux for electronics work
- Color/FinishGreen
- Lead-free alloy with Sn 99.3 Cu 0.7 composition
- 6 mm diameter enables precise joints on small pads
- 100 g spool provides ample length for multiple projects
- Melting range 215 °C – 220 °C suits standard iron tips
- 2 % flux core promotes clean wetting without extra paste
Lead-free 0.6 mm solder wire
KEHIPI supplies a 100 g spool of Sn99.3 Cu0.7 alloy wire with 2 % flux core, diameter 0.6 mm, formulated for electronics assembly and repair work where lead-free compliance is required.
Melting range and flux behaviour
The alloy melts between 215 °C and 220 °C with a recommended working point of 217 °C, and the 2 % flux content promotes smooth flow and fast wetting without excessive smoke or splatter during normal hand-soldering.
Replaces leaded 60/40 wire for RoHS jobs
This spool substitutes traditional Sn60 Pb40 wire in applications that must avoid lead; the jump is worthwhile when regulations or customer specifications demand a lead-free joint and the slightly higher melting range is acceptable for the components being soldered.
Highlights
- Lead-free alloy with Sn 99.3 Cu 0.7 composition
- 6 mm diameter enables precise joints on small pads
- 100 g spool provides ample length for multiple projects
- Melting range 215 °C – 220 °C suits standard iron tips
- 2 % flux core promotes clean wetting without extra paste
Specifications
| Color/Finish | Green |
|---|
Questions about this item
How do I feed the 0.6 mm wire into a soldering iron tip without it jamming?
Use a tip with a 0.6 mm or wider bore, heat to 217 °C, then push the wire straight in so the 2 % flux core melts evenly; bending the tip or feeding at an angle causes the thin wire to buckle.
When will the 100 g spool run out and need replacing?
A 100 g roll of 0.6 mm Sn99.3 Cu0.7 wire yields roughly 2 000 typical 2 mm joints; heavy daily use can empty it in a few weeks, while occasional repair work may last months.
What happens if I hold the iron above 220 °C for a long session?
The alloy melts at 215–220 °C; sustained temperatures above 220 °C accelerate flux burn-off and tip oxidation, so the joint quality degrades before the wire itself fails.
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