Details
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Parameter | Symbol | Conditions | Min | Typical | Max | Unit |
---|---|---|---|---|---|---|
Supply Voltage | VCC | - | 4.5 | - | 36 | V |
Quiescent Current | IQ | VCC = 5V | - | 700 | - | μA |
Input Offset Voltage | VOS | - | - | 250 | - | μV |
Input Bias Current | IB | - | - | ±50 | - | nA |
Input Voltage Range | VIN | - | -2 | - | +2 | V |
Common-Mode Rejection Ratio (CMRR) | CMRR | - | 80 | - | 100 | dB |
Gain | AV | - | 10 | - | 1000 | - |
Bandwidth | fBW | - | - | 100 | - | kHz |
Slew Rate | SR | - | - | 0.5 | - | V/μs |
Output Voltage Swing | VOUT | VCC = 5V | 0.2 | - | 4.8 | V |
Instructions for Use:
Power Supply:
- The AD8212YRMZ operates over a wide supply voltage range from 4.5V to 36V.
- Ensure the supply voltage is within this range to avoid damage to the device.
Quiescent Current:
- The quiescent current is typically 700 μA at a supply voltage of 5V. This value can help in power budget calculations.
Input Offset Voltage:
- The typical input offset voltage is 250 μV. This parameter is important for precision applications where small signal levels are involved.
Input Bias Current:
- The input bias current is typically ±50 nA. This should be considered when using high impedance sources to avoid significant errors.
Input Voltage Range:
- The input voltage range is from -2V to +2V relative to the common mode voltage. Ensure that the input signals do not exceed these limits to prevent distortion or damage.
Common-Mode Rejection Ratio (CMRR):
- The CMRR is between 80 dB and 100 dB, indicating good rejection of common-mode signals. This is crucial for differential measurements in noisy environments.
Gain:
- The gain can be set between 10 and 1000. Use external resistors to set the desired gain according to the application requirements.
Bandwidth:
- The typical bandwidth is 100 kHz. This parameter is important for determining the maximum frequency of the input signal that can be accurately amplified.
Slew Rate:
- The typical slew rate is 0.5 V/μs. This limits the rate at which the output can change and should be considered for fast-changing signals.
Output Voltage Swing:
- The output voltage swing is from 0.2V to 4.8V when the supply voltage is 5V. Ensure that the load does not pull the output beyond these limits to avoid distortion.
Layout and Handling:
- PCB Layout:
- Keep the PCB layout compact to minimize parasitic capacitance and inductance.
- Use short traces and ground planes to reduce noise pickup.
- Handling:
- Handle the device with care to avoid electrostatic discharge (ESD) damage.
- Store the device in a dry, ESD-protected environment.
Application Notes:
- Thermal Considerations:
- Ensure adequate heat dissipation if operating at high supply voltages or high power levels.
- Stability:
- Use appropriate compensation techniques if the circuit requires stability over a wide range of conditions.
For more detailed information, refer to the datasheet provided by Analog Devices.
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