Technical Documents
Specifications
Brand
BroadcomProduct Type
Optocoupler
Mount Type
Surface
Number of Channels
1
Number of Pins
8
Maximum Input Current
230mA
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
125°C
Standards/Approvals
RoHS
Series
ACNT-H87A
Automotive Standard
No
Country of Origin
Philippines
Product Details
The Broadcom ACNT-H87A voltage sensors are optical isolation amplifiers designed specifically for voltage sensing. Its 2V input range and high 1-GW input impedance makes it well suited for isolated voltage sensing requirements in electronic power converters applications including motor drives and renewable energy systems. In a typical voltage sensing implementation, a resistive voltage divider is used to scale the DC-link voltage to suit the input range of the voltage sensor. A differential output voltage that is proportional to the input voltage is created on the other side of the optical isolation barrier.
Stock information temporarily unavailable.
€ 13,870.00
€ 13.87 Each (On a Reel of 1000) (Exc. VAT)
€ 16,366.60
€ 16.367 Each (On a Reel of 1000) (inc. VAT)
1000
€ 13,870.00
€ 13.87 Each (On a Reel of 1000) (Exc. VAT)
€ 16,366.60
€ 16.367 Each (On a Reel of 1000) (inc. VAT)
Stock information temporarily unavailable.
1000
Technical Documents
Specifications
Brand
BroadcomProduct Type
Optocoupler
Mount Type
Surface
Number of Channels
1
Number of Pins
8
Maximum Input Current
230mA
Minimum Operating Temperature
-40°C
Maximum Operating Temperature
125°C
Standards/Approvals
RoHS
Series
ACNT-H87A
Automotive Standard
No
Country of Origin
Philippines
Product Details
The Broadcom ACNT-H87A voltage sensors are optical isolation amplifiers designed specifically for voltage sensing. Its 2V input range and high 1-GW input impedance makes it well suited for isolated voltage sensing requirements in electronic power converters applications including motor drives and renewable energy systems. In a typical voltage sensing implementation, a resistive voltage divider is used to scale the DC-link voltage to suit the input range of the voltage sensor. A differential output voltage that is proportional to the input voltage is created on the other side of the optical isolation barrier.