Details
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| Parameter | Description | Min | Typ | Max | Unit |
|---|---|---|---|---|---|
| Supply Voltage (VDD) | Operating supply voltage | 2.7 | - | 3.6 | V |
| Supply Current | Typical supply current | - | 40 | - | mA |
| Analog Input Voltage Range | Maximum allowable input voltage range | -0.2 | - | 1.8 | V |
| Sampling Rate | Maximum sampling rate | - | 500 | - | MSPS |
| Differential Input Range | Maximum differential input voltage | -0.5 | - | 0.9 | Vpp |
| SNR | Signal-to-noise ratio at Nyquist | - | 62 | - | dB |
| SFDR | Spurious-free dynamic range at Nyquist | - | 85 | - | dBc |
| Power Dissipation | Total power dissipation | - | 144 | - | mW |
Instructions for Use:
- Power Supply Connection: Connect the VDD pin to a stable power supply within the specified range of 2.7V to 3.6V.
- Analog Input Configuration: Ensure that the analog input signals do not exceed the specified input voltage range (-0.2V to 1.8V) to prevent damage or distortion.
- Sampling Rate Setting: Set the sampling rate up to a maximum of 500 MSPS as required by your application. Ensure the clock signal is clean and stable.
- Differential Input Handling: Keep the differential input voltage within the range of -0.5Vpp to 0.9Vpp to maintain optimal performance.
- Performance Considerations: To achieve the best SNR and SFDR, ensure proper layout and grounding practices are followed, minimizing noise and interference.
- Power Management: Be aware of the total power dissipation of 144 mW typical; manage heat dissipation appropriately in your design.
For detailed specifications and advanced configuration, refer to the datasheet provided by the manufacturer.
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