Details
BUY AD8616ARMZ https://www.utsource.net/itm/p/4164921.html
Precision, 20 MHz, CMOS, Rail-to-Rail Input/Output Operational Amplifiers
Parameter | Min | Typ | Max | Unit | Description |
---|---|---|---|---|---|
Supply Voltage | 2.7 | - | 5.5 | V | Operating supply voltage range |
Quiescent Current | - | 10 | - | μA | Supply current per amplifier |
Input Offset Voltage | - | 45 | - | μV | Maximum input offset voltage at 25°C |
Input Bias Current | - | 0.5 | - | pA | Maximum input bias current at 25°C |
Input Voltage Noise | - | 13 | - | nV/√Hz | Voltage noise density at 1 kHz |
Slew Rate | - | 0.8 | - | V/μs | Slew rate |
Bandwidth (-3 dB) | - | 1.6 | - | MHz | Unity gain bandwidth |
Output Voltage Swing | - | - | - | V | Output swing to rails, typically within 200 mV of each rail |
Common-Mode Rejection | - | 110 | - | dB | Common-mode rejection ratio at DC |
Power-Supply Rejection | - | 110 | - | dB | Power-supply rejection ratio at DC |
Instructions for Use:
- Supply Voltage: The AD8616ARMZ can operate with a supply voltage between 2.7V and 5.5V. Ensure that the power supply is stable and within this range to avoid damage or erratic behavior.
- Quiescent Current: With a quiescent current of 10 μA, the device is suitable for low-power applications. Be mindful of this when designing circuits for battery-powered devices.
- Input Protection: Avoid applying voltages outside the supply rails to the inputs to prevent damage. Consider using external protection diodes if necessary.
- Output Load: The output can swing close to the supply rails (within 200 mV), making it suitable for driving various loads. However, ensure the load impedance matches the output capability to avoid distortion.
- Noise Considerations: Given the input voltage noise of 13 nV/√Hz, this op-amp is well-suited for precision signal conditioning where low noise is critical.
- Temperature Range: This device operates over a temperature range from -40°C to +125°C, ensuring reliable performance in a wide variety of environments.
- PCB Layout: Pay attention to proper PCB layout practices, including short leads and adequate bypass capacitors near the power pins to minimize noise and parasitic effects.
- Stability: Ensure that the feedback network provides sufficient phase margin to maintain stability. This may involve adding compensation components as necessary.
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