Technical Document
Specifications
Brand
NexperiaTransistor Type
NPN
Maximum DC Collector Current
1 A
Maximum Collector Emitter Voltage
180 V
Package Type
SOT-23
Mounting Type
Surface Mount
Maximum Power Dissipation
300 mW
Minimum DC Current Gain
100
Transistor Configuration
Single
Maximum Collector Base Voltage
400 V
Maximum Emitter Base Voltage
6 V
Maximum Operating Frequency
100 MHz
Pin Count
3
Number of Elements per Chip
1
Maximum Operating Temperature
+150 °C
Dimensions
3 x 1.4 x 1.1mm
Country of Origin
China
Product details
Low Saturation Voltage NPN Transistors
A range of NXP BISS (Breakthrough In Small Signal) Low Saturation Voltage NPN 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
2,120.80 MOP
69.66 MOP Each (In a Pack of 30) (ex VAT)
Standard
30
2,120.80 MOP
69.66 MOP Each (In a Pack of 30) (ex VAT)
Stock information temporarily unavailable.
Standard
30
Stock information temporarily unavailable.
Technical Document
Specifications
Brand
NexperiaTransistor Type
NPN
Maximum DC Collector Current
1 A
Maximum Collector Emitter Voltage
180 V
Package Type
SOT-23
Mounting Type
Surface Mount
Maximum Power Dissipation
300 mW
Minimum DC Current Gain
100
Transistor Configuration
Single
Maximum Collector Base Voltage
400 V
Maximum Emitter Base Voltage
6 V
Maximum Operating Frequency
100 MHz
Pin Count
3
Number of Elements per Chip
1
Maximum Operating Temperature
+150 °C
Dimensions
3 x 1.4 x 1.1mm
Country of Origin
China
Product details
Low Saturation Voltage NPN Transistors
A range of NXP BISS (Breakthrough In Small Signal) Low Saturation Voltage NPN 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.


