CD4053BQM96Q1
Specifications
SKU
11689240
Details
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IC MUX/DEMUX TRIPLE 2X1 16SOIC
| Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
|---|---|---|---|---|---|---|
| Supply Voltage | VCC | - | 3 | - | 18 | V |
| Output Voltage (High Level) | VOH | IO = -1mA, VCC = 15V | - | 13.5 | 15 | V |
| Output Voltage (Low Level) | VOL | IO = 1mA, VCC = 15V | 0 | 1.5 | - | V |
| Input Current (High Level) | IIH | VI = VCC - 1.5V | - | 1 | 20 | μA |
| Input Current (Low Level) | IIL | VI = 0.5V | -20 | -1 | - | μA |
| Leakage Current (Channel Off) | IOFF | VCC = 15V, TA = 25°C | - | - | 1 | μA |
| Switching Time (Typical) | tSW | VCC = 15V, RL = 1kΩ | - | 25 | - | ns |
| Power Dissipation | PD | - | - | - | 720 | mW |
| Operating Temperature Range | TA | - | -40 | - | 85 | °C |
| Storage Temperature Range | TSTG | - | -65 | - | 150 | °C |
Instructions for Use:
- Supply Voltage: Ensure the supply voltage is within the specified range of 3V to 18V to avoid damage to the device.
- Output Levels: When designing circuits, ensure that the output voltages do not exceed the supply voltage or fall below ground to prevent improper operation.
- Input Current: Keep input currents within the specified limits to avoid excessive power dissipation and potential damage.
- Leakage Current: Account for leakage current when designing circuits to ensure proper functionality, especially in low-power applications.
- Switching Time: Consider the typical switching time of 25ns when designing high-speed circuits to ensure reliable operation.
- Power Dissipation: Ensure that the total power dissipation does not exceed 720mW to prevent overheating and potential failure.
- Operating Temperature: The device is designed to operate within a temperature range of -40°C to 85°C. Ensure that the ambient temperature stays within these limits.
- Storage Temperature: Store the device in an environment with a temperature range of -65°C to 150°C to maintain its integrity.
Additional Notes:
- ESD Sensitivity: Handle the device with care to avoid electrostatic discharge (ESD) damage.
- Decoupling Capacitors: Use decoupling capacitors close to the power pins to reduce noise and improve stability.
- Grounding: Ensure a good ground connection to minimize noise and interference.
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