Details
BUY TS914AIDT https://www.utsource.net/itm/p/12534804.html
| Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
|---|---|---|---|---|---|---|
| Supply Voltage | Vcc | Operating | 2.7 | 5.5 | V | |
| Input Offset Voltage | Vos | Initial, TA = 25掳C | -0.6 | 0 | 0.6 | mV |
| Input Bias Current | Iib | Differential, TA = 25掳C | -10 | 10 | nA | |
| Input Offset Current | Iios | TA = 25掳C | -5 | 5 | nA | |
| Slew Rate | SR | Small signal | 0.3 | V/渭s | ||
| Gain Bandwidth Product | GBP | Closed loop gain = 1 | 1.2 | MHz | ||
| Output Voltage Swing | Vosw | RL = 10k惟, TA = 25掳C | 卤1.4 | V | ||
| Quiescent Current | IQ | No load, TA = 25掳C | 80 | 渭A |
Instructions for TS914AIDT:
Supply Voltage Connection:
- Connect the supply voltage (Vcc) within the range of 2.7V to 5.5V to ensure stable operation.
Input Configuration:
- Ensure the input bias and offset currents are within specified limits by using appropriate input resistors.
- For differential inputs, balance the input impedances to minimize offset errors.
Output Load:
- The output can swing approximately 卤1.4V from the supply rails when connected to a 10k惟 load. Adjust the load resistance as necessary for your application.
Operating Temperature:
- The device is optimized for operation at 25掳C. Ensure proper heat dissipation if operating outside this temperature.
Powering Up:
- Apply power gradually to avoid transient conditions that might affect performance.
Quiescent Current:
- The typical quiescent current is 80渭A. Design your circuit to account for this in low-power applications.
Gain Settings:
- Utilize the gain bandwidth product (GBP) of 1.2MHz for setting closed-loop gains. Higher gains will reduce the effective bandwidth.
Slew Rate Consideration:
- With a small signal slew rate of 0.3V/渭s, consider this parameter for high-frequency or large-signal applications.
Protection Circuits:
- Incorporate protection circuits such as clamping diodes if the input signals may exceed the common-mode input range.
Layout Recommendations:
- Keep the layout compact with short leads and use bypass capacitors close to the supply pins to minimize noise.
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