Technical Document
Specifications
Brand
MolexSeries
EXTreme PowerMass
Product Type
PCB Header
Pitch
3.2mm
Current
150A
Number of Contacts
1
Housing Material
Thermoplastic
Number of Rows
1
Orientation
Right Angle
Shrouded/Unshrouded
Shrouded
Connector System
Board-to-Board
Mount Type
Through Hole
Contact Material
Copper Alloy
Contact Plating
Gold
Minimum Operating Temperature
-40°C
Row Pitch
3.2mm
Termination Type
Solder
Maximum Operating Temperature
105°C
Standards/Approvals
No
Voltage
600 V
Product details
EXTreme PowerMass™ 150 Amp Module
EXTreme PowerMass PCB receptacle power connectors for high capacity board-to-board applications. These EXTreme PowerMass PCB receptacle power connectors offer 350.0A per inch current density and less than 1 mΩ resistance at end-of-life allowing minimum heat generation with maximum current transfer.
Molex EXTreme PowerMass™ Range
Stock information temporarily unavailable.
BD 7.755
BD 7.755 Each (Exc. Vat)
BD 8.531
BD 8.531 Each (inc. VAT)
1
BD 7.755
BD 7.755 Each (Exc. Vat)
BD 8.531
BD 8.531 Each (inc. VAT)
Stock information temporarily unavailable.
1
| Quantity | Unit price |
|---|---|
| 1 - 19 | BD 7.755 |
| 20 - 74 | BD 6.650 |
| 75 - 299 | BD 5.912 |
| 300 - 599 | BD 5.098 |
| 600+ | BD 4.917 |
Technical Document
Specifications
Brand
MolexSeries
EXTreme PowerMass
Product Type
PCB Header
Pitch
3.2mm
Current
150A
Number of Contacts
1
Housing Material
Thermoplastic
Number of Rows
1
Orientation
Right Angle
Shrouded/Unshrouded
Shrouded
Connector System
Board-to-Board
Mount Type
Through Hole
Contact Material
Copper Alloy
Contact Plating
Gold
Minimum Operating Temperature
-40°C
Row Pitch
3.2mm
Termination Type
Solder
Maximum Operating Temperature
105°C
Standards/Approvals
No
Voltage
600 V
Product details
EXTreme PowerMass™ 150 Amp Module
EXTreme PowerMass PCB receptacle power connectors for high capacity board-to-board applications. These EXTreme PowerMass PCB receptacle power connectors offer 350.0A per inch current density and less than 1 mΩ resistance at end-of-life allowing minimum heat generation with maximum current transfer.


