Documente tehnice
Specificatii
Number of Channels
4
Rata maxima de date
150Mbps
Tip pachet
QSOP
Maximum Forward Voltage
5.5V
Maximum Input Current
9.2 mA
Isolation Voltage
1 kV
Rise Time
4ns
Number of Pins
16
Timp montare
Surface Mount
Frecventa minima de auto-rezonanta
-40°C
Temperatura maxima de lucru
+125°C
Lungime
4.8mm
Adancime
1.25mm
Latime
3.9mm
Tara de origine
Malaysia
Detalii produs
Si864x Series 4-channel Digital Isolators
The Si864x Series of four-channel digital isolators, based on the proprietary capacitive isolation technology, enable low propagation delay and skew, low emissions, high noise immunity and high reliability for a long lifecycle.
Digital Isolators, Silicon Laboratories
The Silicon Labs broad range of Digital Isolation products offers significant improvements over older isolation technologies such as opto-couplers. They demonstrate lower power consumption, greater reliability and higher performance, and are generally smaller in size and lower in cost. These CMOS-based devices exhibit stable operating characteristics over a wide temperature range and do not suffer from the lifespan limitations of opto-coupled devices.
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P.O.A.
Standard
1
P.O.A.
Standard
1
Documente tehnice
Specificatii
Number of Channels
4
Rata maxima de date
150Mbps
Tip pachet
QSOP
Maximum Forward Voltage
5.5V
Maximum Input Current
9.2 mA
Isolation Voltage
1 kV
Rise Time
4ns
Number of Pins
16
Timp montare
Surface Mount
Frecventa minima de auto-rezonanta
-40°C
Temperatura maxima de lucru
+125°C
Lungime
4.8mm
Adancime
1.25mm
Latime
3.9mm
Tara de origine
Malaysia
Detalii produs
Si864x Series 4-channel Digital Isolators
The Si864x Series of four-channel digital isolators, based on the proprietary capacitive isolation technology, enable low propagation delay and skew, low emissions, high noise immunity and high reliability for a long lifecycle.
Digital Isolators, Silicon Laboratories
The Silicon Labs broad range of Digital Isolation products offers significant improvements over older isolation technologies such as opto-couplers. They demonstrate lower power consumption, greater reliability and higher performance, and are generally smaller in size and lower in cost. These CMOS-based devices exhibit stable operating characteristics over a wide temperature range and do not suffer from the lifespan limitations of opto-coupled devices.