Details
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| Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
|---|---|---|---|---|---|---|
| Supply Voltage | VCC | Operating | 3.0 | 5.5 | V | |
| Differential Input Voltage | VIDIFF | ±12V Common Mode | -12 | +12 | V | |
| Output Low Voltage | VOL | IOH = 4mA, VCC = 5V | 0.4 | V | ||
| Output High Voltage | VOH | IOL = -4mA, VCC = 5V | 4.6 | V | ||
| Propagation Delay | tPD | VCC = 5V, RL = 54Ω | 8 | ns | ||
| Slew Rate | SR | 100 | V/ns | |||
| Power Dissipation | PD | Continuous | 750 | mW |
Instructions for SN65HVD75DGK
Power Supply Requirements:
- Ensure the supply voltage (VCC) is within the range of 3.0V to 5.5V for proper operation.
Input Signal Handling:
- The device can handle differential input voltages up to ±12V in common mode. Avoid exceeding these limits to prevent damage.
Output Configuration:
- For optimal performance, configure the output load resistance (RL) appropriately. A typical value is 54Ω.
- Ensure that the output low voltage (VOL) and high voltage (VOH) levels are within specified limits for your application.
Timing Considerations:
- Account for the propagation delay (tPD) in your timing calculations. At VCC = 5V and RL = 54Ω, the delay is typically around 8ns.
Slew Rate Control:
- The slew rate is set at 100V/ns to minimize EMI while ensuring reliable signal transmission.
Thermal Management:
- Monitor power dissipation (PD) to ensure it does not exceed 750mW continuously to avoid overheating.
Installation and Handling:
- Handle the device with care to avoid electrostatic discharge (ESD) damage. Use appropriate ESD protection measures during installation.
Application Notes:
- Refer to the manufacturer’s application notes for detailed guidance on integrating the SN65HVD75DGK into your system, especially for complex or high-speed applications.
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