Technical documents
Specifications
Brand
StannolWire Diameter
1mm
Model Number
HS10
Percent Lead
40%
Product Form
Wire
Melting Point
183°C
Percent Tin
60%
Flux Type
Rosin Based
Product Weight
500g
Flux Content Percent
2.5%
Country of Origin
Germany
Product details
HS10 Soldering Wire
The electronic solder wire HS10 is a proven and reliable product of Stannol research, which was developed to meet high-quality requirements in industrial electronic production and for quick rework. The solder wire HS10 is efficient by its high activity, which results in quick spread of solder and electrical safe residues. It is a halide activated rosin (colophony) flux. The solder wire HS10 conforms to IEC 61190-1-3 type ROM1
Features & Benefits
Solid and dry residues, pin testable
Fast soldering, high spread speed
High reliability
Soldering Wire, SN60Pb40 alloy with a flux core
Well suited to high-quality works, at low melting temperature
Solidus at 183°C, liquidus at 188°C
Flux of 2.5% type 1.1.2B / ROM1
Standards
EN ISO 9453:2006
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Technical documents
Specifications
Brand
StannolWire Diameter
1mm
Model Number
HS10
Percent Lead
40%
Product Form
Wire
Melting Point
183°C
Percent Tin
60%
Flux Type
Rosin Based
Product Weight
500g
Flux Content Percent
2.5%
Country of Origin
Germany
Product details
HS10 Soldering Wire
The electronic solder wire HS10 is a proven and reliable product of Stannol research, which was developed to meet high-quality requirements in industrial electronic production and for quick rework. The solder wire HS10 is efficient by its high activity, which results in quick spread of solder and electrical safe residues. It is a halide activated rosin (colophony) flux. The solder wire HS10 conforms to IEC 61190-1-3 type ROM1
Features & Benefits
Solid and dry residues, pin testable
Fast soldering, high spread speed
High reliability
Soldering Wire, SN60Pb40 alloy with a flux core
Well suited to high-quality works, at low melting temperature
Solidus at 183°C, liquidus at 188°C
Flux of 2.5% type 1.1.2B / ROM1
Standards
EN ISO 9453:2006