ISO2H823V2.5
Active and preferred
RoHS Compliant
Lead-free

ISO2H823V2.5

Isolated 8-channel HS-switch for industrial automation with SPI and parallel control interface offering highly sophisticated diagnostic capabilities.
ea.
in stock

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ISO2H823V2.5
ISO2H823V2.5
ea.


Product details

  • Budgetary Price €/1k
    5.2

OPN
ISO2H823V25XUMA1
Product Status active and preferred
Infineon Package
Package Name N/A
Packing Size 2500
Packing Type TAPE & REEL
Moisture Level 3
Moisture Packing DRY
Lead-free Yes
Halogen Free Yes
RoHS Compliant Yes
Country of Assembly (CoA)
CN,PH
Country of Diffusion (CoD)
DE
Infineon stock last updated:
ea. in stock

Product Status
Active
Infineon Package
Package Name -
Packing Size 2500
Packing Type TAPE & REEL
Moisture Level 3
Moisture Packing DRY
Lead Free
Halogen Free
RoHS Compliant
Country of Assembly (CoA)
CN,PH
Country of Diffusion (CoD)
DE
ea.
in stock
ISOFACE™ ISO2H823V2.5 is a 8-ch galvanically isolated high-side switch for industrial automation environments, like digital outputs for PLCs, industrial robots, drives, machinery, wind power, general actuators and valves. It offers a serial & parallel uC interface, 0.6A load current with integrated protection and is distinguished by its diagnosis that provides all relevant fault cases like short circuit, open load, overload or overtemp per channel.

Features

  • 8-channel high-side switch
  • 600mA load current per channel
  • VISO = 2.5 kVrms isolation voltage
  • 3.3 V parallel interface & SPI with CRC
  • Short-circuit and overtemp protection
  • Active clamping for inductive loads
  • Common output disable pin
  • Open load diagnosis (ON & OFF) per ch
  • short circuit diagnosis (GND/VBB) per ch
  • Overtemperature diagnosis per ch
  • Detailed VBB monitoring (3 level)
  • IEC 61131-2 compliant

Benefits

  • Allows compact PLC module design
  • Higher system uptime
  • Reduced isolation-design effort
  • No aging effects of isolation
  • Flexible interface
  • High system reliability
  • Robust designs for harsh environments
  • System monitoring
  • Fast fault localization
  • More efficient maintenance
  • Supports predictive maintenance
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