Documente Tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
STMicroelectronicsProduct Type
General Purpose Driver
Curent iesire
20A
Numar pini
2
Fall Time
30μs
Tip pachet
TO-263
Driver Type
MOSFET
Rise Time
30μs
Tensiune de alimentare minima
40V
Number of Drivers
1
Tensiune de alimentare maxima
40V
Frecventa minima de auto-rezonanta
-40°C
Temperatura maxima de lucru
150°C
Lungime
10.4mm
Inaltime
4.6mm
Standards/Approvals
No
Montare
Surface
Automotive Standard
No
Detalii Produs
The STMicroelectronics VNB10N07 are monolithic device made using VI Power M0 Technology, intended for replacement of standard power MOSFETS in DC to 50 KHz applications. It built-in thermal shut-down, linear current limitation and overvoltage clamp protect the chip in harsh environments. Fault feedback can be detected by monitoring the voltage at the input pin.
Informatii despre stoc temporar indisponibile
€ 1.460,00
€ 1,46 Buc. (Pe o rola de 1000) (fara TVA)
€ 1.766,60
€ 1,767 Buc. (Pe o rola de 1000) (cu TVA)
1000
€ 1.460,00
€ 1,46 Buc. (Pe o rola de 1000) (fara TVA)
€ 1.766,60
€ 1,767 Buc. (Pe o rola de 1000) (cu TVA)
Informatii despre stoc temporar indisponibile
1000
Documente Tehnice (Imaginile sunt cu titlu informativ. Va rugam sa consultati specificatiile tehnice.)
Specificatii
Marca
STMicroelectronicsProduct Type
General Purpose Driver
Curent iesire
20A
Numar pini
2
Fall Time
30μs
Tip pachet
TO-263
Driver Type
MOSFET
Rise Time
30μs
Tensiune de alimentare minima
40V
Number of Drivers
1
Tensiune de alimentare maxima
40V
Frecventa minima de auto-rezonanta
-40°C
Temperatura maxima de lucru
150°C
Lungime
10.4mm
Inaltime
4.6mm
Standards/Approvals
No
Montare
Surface
Automotive Standard
No
Detalii Produs
The STMicroelectronics VNB10N07 are monolithic device made using VI Power M0 Technology, intended for replacement of standard power MOSFETS in DC to 50 KHz applications. It built-in thermal shut-down, linear current limitation and overvoltage clamp protect the chip in harsh environments. Fault feedback can be detected by monitoring the voltage at the input pin.