Tekninen dokumentti
Tekniset tiedot
Merkki
onsemiTransistor Type
PNP
Maximum DC Collector Current
-600 mA
Maximum Collector Emitter Voltage
-40 V
Package Type
TO-92
Mounting Type
Through Hole
Maximum Power Dissipation
625 mW
Minimum DC Current Gain
100
Transistor Configuration
Single
Maximum Collector Base Voltage
40 V
Maximum Emitter Base Voltage
5 V
Pin Count
3
Number of Elements per Chip
1
Maximum Operating Temperature
+150 °C
Dimensions
5.2 x 4.19 x 5.33mm
Tuotetiedot
Small Signal PNP Transistors, 40 to 50V, 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.
€ 19,80
€ 0,198 kpl (toimitus teipissä) (ilman ALV)
€ 24,85
€ 0,248 kpl (toimitus teipissä) (Sis ALV:n)
Tuotantopakkaus (Nauha)
100
€ 19,80
€ 0,198 kpl (toimitus teipissä) (ilman ALV)
€ 24,85
€ 0,248 kpl (toimitus teipissä) (Sis ALV:n)
Tuotantopakkaus (Nauha)
100
Varastotiedot eivät ole tilapäisesti saatavilla.
Tarkista myöhemmin uudelleen.
Määrä | Yksikköhinta | Per Nauha |
---|---|---|
100 - 240 | € 0,198 | € 1,98 |
250 - 490 | € 0,172 | € 1,72 |
500 - 990 | € 0,151 | € 1,51 |
1000+ | € 0,138 | € 1,38 |
Tekninen dokumentti
Tekniset tiedot
Merkki
onsemiTransistor Type
PNP
Maximum DC Collector Current
-600 mA
Maximum Collector Emitter Voltage
-40 V
Package Type
TO-92
Mounting Type
Through Hole
Maximum Power Dissipation
625 mW
Minimum DC Current Gain
100
Transistor Configuration
Single
Maximum Collector Base Voltage
40 V
Maximum Emitter Base Voltage
5 V
Pin Count
3
Number of Elements per Chip
1
Maximum Operating Temperature
+150 °C
Dimensions
5.2 x 4.19 x 5.33mm
Tuotetiedot
Small Signal PNP Transistors, 40 to 50V, 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.