Nexperia PBSS4032SPN,115 Dual NPN + PNP Transistor, 5.7 A, 30 V, 8-Pin SOT-96
- RS Stock No.:
- 816-0683
- Mfr. Part No.:
- PBSS4032SPN,115
- Brand:
- Nexperia
Currently unavailable
We don’t know if this item will be back in stock, it is being discontinued by the manufacturer.
- RS Stock No.:
- 816-0683
- Mfr. Part No.:
- PBSS4032SPN,115
- Brand:
- Nexperia
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
---|---|---|
Brand | Nexperia | |
Transistor Type | NPN + PNP | |
Maximum DC Collector Current | 5.7 A | |
Maximum Collector Emitter Voltage | 30 V | |
Package Type | SOT-96 | |
Mounting Type | Surface Mount | |
Maximum Power Dissipation | 2.3 W | |
Transistor Configuration | Isolated | |
Maximum Collector Base Voltage | 30 V | |
Maximum Emitter Base Voltage | 5 V | |
Maximum Operating Frequency | 100 MHz | |
Pin Count | 8 | |
Number of Elements per Chip | 2 | |
Maximum Operating Temperature | +150 °C | |
Dimensions | 5 x 4 x 1.75mm | |
Select all | ||
---|---|---|
Brand Nexperia | ||
Transistor Type NPN + PNP | ||
Maximum DC Collector Current 5.7 A | ||
Maximum Collector Emitter Voltage 30 V | ||
Package Type SOT-96 | ||
Mounting Type Surface Mount | ||
Maximum Power Dissipation 2.3 W | ||
Transistor Configuration Isolated | ||
Maximum Collector Base Voltage 30 V | ||
Maximum Emitter Base Voltage 5 V | ||
Maximum Operating Frequency 100 MHz | ||
Pin Count 8 | ||
Number of Elements per Chip 2 | ||
Maximum Operating Temperature +150 °C | ||
Dimensions 5 x 4 x 1.75mm | ||
- COO (Country of Origin):
- TH
Low Saturation Voltage Dual NPN/PNP Transistors, Nexperia
A range of NXP BISS (Breakthrough In Small Signal) Low Saturation Voltage Dual NPN/PNP Bipolar Junction Transistors. These devices feature very low collector-emitter saturation voltages and high collector current capacities in compact space-saving packages. The reduced losses of these transistors results in lower heat generation and an overall increase in efficiency when used in switching and digital applications.
Bipolar Transistors, Nexperia