Technical Document
Specifications
Brand
onsemiTransistor Type
PNP
Maximum DC Collector Current
-17 A
Maximum Collector Emitter Voltage
-250 V
Package Type
TO-264
Mounting Type
Through Hole
Maximum Power Dissipation
150 W
Minimum DC Current Gain
55, 80
Transistor Configuration
Single
Maximum Collector Base Voltage
-250 V
Maximum Emitter Base Voltage
-5 V
Maximum Operating Frequency
30 MHz
Pin Count
3
Number of Elements per Chip
1
Dimensions
20 x 5 x 26mm
Maximum Operating Temperature
+150 °C
Product details
Power PNP Transistors, Fairchild Semiconductor
Bipolar Transistors, Fairchild Semiconductor
Bipolar Junction Transistors (BJT) broad range provides complete solutions for various circuit application needs. Innovative packages are designed for minimal size, highest reliability and maximum thermal performance.
47.712 OMR
1.908 OMR Each (In a Tube of 25) (ex VAT)
50.098 OMR
2.003 OMR Each (In a Tube of 25) (inc. VAT)
25
47.712 OMR
1.908 OMR Each (In a Tube of 25) (ex VAT)
50.098 OMR
2.003 OMR Each (In a Tube of 25) (inc. VAT)
25
Stock information temporarily unavailable.
Please check again later.
Quantity | Unit price | Per Tube |
---|---|---|
25 - 100 | 1.908 OMR | 47.712 OMR |
125 - 225 | 1.656 OMR | 41.388 OMR |
250+ | 1.595 OMR | 39.875 OMR |
Technical Document
Specifications
Brand
onsemiTransistor Type
PNP
Maximum DC Collector Current
-17 A
Maximum Collector Emitter Voltage
-250 V
Package Type
TO-264
Mounting Type
Through Hole
Maximum Power Dissipation
150 W
Minimum DC Current Gain
55, 80
Transistor Configuration
Single
Maximum Collector Base Voltage
-250 V
Maximum Emitter Base Voltage
-5 V
Maximum Operating Frequency
30 MHz
Pin Count
3
Number of Elements per Chip
1
Dimensions
20 x 5 x 26mm
Maximum Operating Temperature
+150 °C
Product details
Power PNP Transistors, Fairchild Semiconductor
Bipolar Transistors, Fairchild Semiconductor
Bipolar Junction Transistors (BJT) broad range provides complete solutions for various circuit application needs. Innovative packages are designed for minimal size, highest reliability and maximum thermal performance.