Description
BUY NE5517AN https://www.utsource.net/itm/p/12361530.html
| Parameter |
Symbol |
Min |
Typ |
Max |
Unit |
| Supply Voltage |
VCC |
4.5 |
- |
36 |
V |
| Quiescent Current |
IQ |
- |
8 |
- |
mA |
| Input Voltage Range |
VIN |
0 |
- |
VCC - 1.5 |
V |
| Differential Input Voltage |
VDIF |
±25 |
- |
- |
V |
| Output Voltage Swing |
VOUT |
0 |
- |
VCC - 1.5 |
V |
| Slew Rate |
SR |
- |
10 |
- |
V/μs |
| Bandwidth (0.1% Distortion) |
fBW |
- |
10 |
- |
MHz |
| Gain Bandwidth Product |
GBP |
- |
100 |
- |
MHz |
| Large Signal Voltage Gain |
AV |
- |
1000 |
- |
V/V |
| Input Bias Current |
IB |
- |
100 |
- |
nA |
| Input Offset Current |
IOS |
- |
20 |
- |
nA |
| Input Offset Voltage |
VOS |
- |
5 |
- |
mV |
| Common Mode Rejection Ratio |
CMRR |
- |
90 |
- |
dB |
| Power Supply Rejection Ratio |
PSRR |
- |
80 |
- |
dB |
| Operating Temperature Range |
TA |
-40 |
- |
85 |
°C |
Instructions for Use:
Power Supply:
- The NE5517AN can operate with a supply voltage ranging from 4.5V to 36V.
- Ensure that the power supply is stable and free from noise to avoid performance degradation.
Input Signals:
- The input voltage range should be between 0V and VCC - 1.5V.
- The differential input voltage can be up to ±25V without damaging the device.
Output Configuration:
- The output voltage swing is from 0V to VCC - 1.5V.
- For optimal performance, ensure that the load resistance is appropriate for the output current capabilities.
Biasing:
- The input bias current is typically 100nA, and the input offset current is 20nA.
- Use high-quality input resistors to minimize the impact of these currents on the circuit.
Offset Voltage:
- The input offset voltage is typically 5mV. Use trimming techniques if precise offset control is required.
Stability:
- The NE5517AN has a gain bandwidth product of 100MHz and a slew rate of 10V/μs.
- Ensure that the feedback network is properly designed to maintain stability at high frequencies.
Temperature Considerations:
- The operating temperature range is from -40°C to 85°C.
- Ensure adequate heat dissipation if the device is operated near the upper temperature limit.
Protection:
- The device includes internal protection circuits to prevent damage from overvoltage and short circuits.
- However, it is recommended to use external protection components for robust designs.
Layout:
- Use a good ground plane and keep signal traces as short as possible to minimize noise and interference.
- Place bypass capacitors close to the power pins to ensure stable operation.
Storage:
- Store the device in a dry, cool place to prevent moisture damage.
- Handle with care to avoid static discharge, which can damage the sensitive components.
(For reference only)
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