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DRIVER HALF BRIDGE 8SOIC
| Parameter | Symbol | Min | Typ | Max | Unit | Description |
|---|---|---|---|---|---|---|
| Supply Voltage | VDD | 10 | - | 60 | V | Operating supply voltage range |
| Logic Input High Level | VIH | 2.0 | - | 15 | V | Minimum input high level for logic recognition |
| Logic Input Low Level | VIL | - | - | 0.8 | V | Maximum input low level for logic recognition |
| Output Source Current | IOS | - | 70 | - | mA | Peak output source current |
| Output Sink Current | IOL | - | 130 | - | mA | Peak output sink current |
| Propagation Delay Time | tpd | - | 45 | - | ns | Propagation delay time from input to output |
| Power Dissipation | PD | - | - | 600 | mW | Maximum power dissipation |
| Operating Temperature | Toper | -40 | - | 125 | 掳C | Operating junction temperature range |
| Storage Temperature | Tstg | -55 | - | 150 | 掳C | Storage temperature range |
Instructions for IR2183STRPBF:
- Supply Voltage (VDD): Ensure the supply voltage is within the specified range of 10V to 60V. Exceeding this range can damage the device.
- Logic Inputs: Apply logic levels within the defined VIH and VIL parameters to ensure reliable operation. The input should be between 2.0V and 15V for a high state, and not exceed 0.8V for a low state.
- Output Current Limits: Do not exceed the peak output source and sink currents of 70mA and 130mA respectively, as it can lead to overheating or damage.
- Propagation Delay: Account for the propagation delay time of 45ns in your timing design considerations.
- Power Dissipation: Keep the power dissipation below 600mW to prevent thermal overload. Use appropriate heat sinking if necessary.
- Operating Temperature: Operate the device within the temperature range of -40掳C to 125掳C. Avoid exposing the device to temperatures outside this range.
- Storage Temperature: Store the device in an environment where the temperature does not fall below -55掳C or rise above 150掳C to avoid damage.
Ensure all connections are secure and follow good engineering practices when integrating this component into your circuit.
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