Technical Document
Specifications
Power Supply Type
Single
Typical Single Supply Voltage
5 → 30 V
Rail to Rail
Rail to Rail Output
Number of Channels per Chip
1
Mounting Type
Surface Mount
Package Type
SOIC
Pin Count
8
Dimensions
5 x 4 x 1.55mm
Height
1.55mm
Width
5mm
Length
5mm
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+125 °C
Product details
Si826x range of Isolated Gate Drivers, Silicon Laboratories
Silicon Labs Si826x range of ISOdrivers are pin-compatible drop-in upgrades for popular gate drive optocouplers. These devices are ideal for driving power MOSFETs and IGBTs used in a wide variety of inverter and motor control applications. The Si826x isolated gate drivers use Silicon Labs proprietary silicon isolation technology which supports up to 5.0 kV RMS. This technology enables higher-performance, reduced variation with temperature and age, tighter part-to-part matching and superior common-mode rejection compared to opto-drivers.
MOSFET & IGBT Drivers, Silicon Laboratories
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EGP 176.67
Each (In a Pack of 10) (ex VAT)
Standard
10
EGP 176.67
Each (In a Pack of 10) (ex VAT)
Standard
10
Technical Document
Specifications
Power Supply Type
Single
Typical Single Supply Voltage
5 → 30 V
Rail to Rail
Rail to Rail Output
Number of Channels per Chip
1
Mounting Type
Surface Mount
Package Type
SOIC
Pin Count
8
Dimensions
5 x 4 x 1.55mm
Height
1.55mm
Width
5mm
Length
5mm
Minimum Operating Temperature
-40 °C
Maximum Operating Temperature
+125 °C
Product details
Si826x range of Isolated Gate Drivers, Silicon Laboratories
Silicon Labs Si826x range of ISOdrivers are pin-compatible drop-in upgrades for popular gate drive optocouplers. These devices are ideal for driving power MOSFETs and IGBTs used in a wide variety of inverter and motor control applications. The Si826x isolated gate drivers use Silicon Labs proprietary silicon isolation technology which supports up to 5.0 kV RMS. This technology enables higher-performance, reduced variation with temperature and age, tighter part-to-part matching and superior common-mode rejection compared to opto-drivers.