Photocouplers for IPM Interface

This photocoupler supports power supply voltages of 5 V and 15 V, whichever is best suited as an insulated interface for IPM (Intelligent Power Module). The output circuit lineup includes an open collector circuit and a totem pole circuit. In addition, the two types of totem pole circuit components, inverter logic output and buffer logic output, can be selected according to the input circuit of each company's IPM, such as High Active and Low Active.

Lineup

You can narrow down the search for applicable products by selecting specifications.

Data transfer rate (Mbps)
Output Interface
VCC/VDD (Min) (V)
VCC/VDD (Max) (V)
BVS (Min) (Vrms)
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You can narrow down your search for applicable products by package type or number of pins.

unit:

All package dimensions are guaranteed in millimeters as mentioned on datasheet. Package dimension in inches is round to 2 significant digits converted with 1mm=0.0393701inch.

About information presented in this cross reference

The information presented in this cross reference is based on TOSHIBA's selection criteria and should be treated as a suggestion only. Please carefully review the latest versions of all relevant information on the TOSHIBA products, including without limitation data sheets and validate all operating parameters of the TOSHIBA products to ensure that the suggested TOSHIBA products are truly compatible with your design and application.
Please note that this cross reference is based on TOSHIBA's estimate of compatibility with other manufacturers' products, based on other manufacturers' published data, at the time the data was collected.
TOSHIBA is not responsible for any incorrect or incomplete information. Information is subject to change at any time without notice.

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Such as low power consumption, miniaturization and robust operation are important in designing inverter/servo. Toshiba provides information on a wide range of semiconductor products suitable for power supply unit, motor driving circuit units, signal transmission units, etc., along with circuit configuration examples.

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