Technical Document
Specifications
Maximum Data Rate
1Mbps
Number of Channels
2
Product Type
I2C Digital Isolator
Package Type
SOIC
Data Rate
10Mbps
Maximum Forward Voltage
5.5V
Propagation Delay Time
55ns
Maximum Input Current
7.1mA
Isolation Voltage
3.75kVrms
Rise Time
4ns
Number of Pins
8
Mount Type
Surface
Maximum Operating Temperature
125°C
Minimum Operating Temperature
-40°C
Depth
1.55mm
Length
5mm
Standards/Approvals
VDE 60747-5-2, EN60950-1, CSA Notice 5A, IEC 60601-1, IEC 61010-1, UL 1577, IEC 60950-1
Series
Si860X
Package Style
SOIC
Automotive Standard
AEC-Q100
Country of Origin
Taiwan, Province Of China
Product details
Si860x Series I2C Digital Isolators
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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€ 2.40
€ 2.40 Each (Exc. VAT)
Stock information temporarily unavailable.
Standard
1
Technical Document
Specifications
Maximum Data Rate
1Mbps
Number of Channels
2
Product Type
I2C Digital Isolator
Package Type
SOIC
Data Rate
10Mbps
Maximum Forward Voltage
5.5V
Propagation Delay Time
55ns
Maximum Input Current
7.1mA
Isolation Voltage
3.75kVrms
Rise Time
4ns
Number of Pins
8
Mount Type
Surface
Maximum Operating Temperature
125°C
Minimum Operating Temperature
-40°C
Depth
1.55mm
Length
5mm
Standards/Approvals
VDE 60747-5-2, EN60950-1, CSA Notice 5A, IEC 60601-1, IEC 61010-1, UL 1577, IEC 60950-1
Series
Si860X
Package Style
SOIC
Automotive Standard
AEC-Q100
Country of Origin
Taiwan, Province Of China
Product details
Si860x Series I2C Digital Isolators
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.
