STLZ1550/..G-3.81-V-P2.6-BK-HT
- 2 to 12 poles
- Vertical pin strip
- Spacing 3.81 mm
- Closed ends
- Reflow soldering
- THR
- Pin length 2.6 mm
- Pin length 1.4 mm | 3.4 mm also available
Wire Size | ||
---|---|---|
Solid | - - | |
Stranded (flexible) | - - | |
Stranded with ferrule | - - | |
Dimensions | ||
PCB hole diameter | 1.2 mm | |
Materials | ||
Contact pin | Copper Alloy | |
Insulating Material | ||
Material | PA | |
Flammability class | UL 94 V-0 | |
Temperatures | ||
Operating temperature | -40 °C (without mech. load) - 105 °C | |
Store temperature | -40 °C - 105 °C | |
Wave Soldering Process | Reflow Process | |
Soldering temperature, recommended | 260 °C | 217 - 245 °C |
Peak soldering time, recommended | 3-4 s | 60 s |
Colours | ||
BLACK, RAL 9011 |
Number of Poles | Width (mm) | Article Designation | Article Number | PU |
---|---|---|---|---|
2 | 9.01 | STLZ1550/2G-3.81-V-P2.6-BK-HT | 51550025343F | 200 |
3 | 12.82 | STLZ1550/3G-3.81-V-P2.6-BK-HT | 51550035343F | 200 |
4 | 16.63 | STLZ1550/4G-3.81-V-P2.6-BK-HT | 51550045343F | 200 |
5 | 20.44 | STLZ1550/5G-3.81-V-P2.6-BK-HT | 51550055343F | 200 |
6 | 24.25 | STLZ1550/6G-3.81-V-P2.6-BK-HT | 51550065343E | 100 |
7 | 28.06 | STLZ1550/7G-3.81-V-P2.6-BK-HT | 51550075343E | 100 |
8 | 31.87 | STLZ1550/8G-3.81-V-P2.6-BK-HT | 51550085343D | 50 |
9 | 35.68 | STLZ1550/9G-3.81-V-P2.6-BK-HT | 51550095343D | 50 |
10 | 39.49 | STLZ1550/10G-3.81-V-P2.6-BK-HT | 51550105343D | 50 |
11 | 43.30 | STLZ1550/11G-3.81-V-P2.6-BK-HT | 51550115343D | 50 |
12 | 47.11 | STLZ1550/12G-3.81-V-P2.6-BK-HT | 51550125343D | 50 |
Please select one of the above listed number of poles before you order for quotation or samples.
to Inquiry FormCoding Star CS1-3.5/3.81-NATURAL-HT
Article Number50000000022
Ratings | ||||||
---|---|---|---|---|---|---|
UseGroup | B | C | D | |||
Rated voltage | 300 V | - | 300 V | 160 V | ||
Rated current | 10 A | - | 10 A | 10 A | ||
Overvoltage category | III | |||||
Test voltage | 1.60 kV | - | 1.60 kV | 2.5 kV | ||
Pollution degree | 3 |
In combination of connectors with different admission data, the lower value is valid.