--- 产品详情 ---
Number of channels (#) | 4 |
Total supply voltage (Max) (+5V=5, +/-5V=10) | 44 |
Total supply voltage (Min) (+5V=5, +/-5V=10) | 5 |
Rail-to-rail | No |
GBW (Typ) (MHz) | 4 |
Slew rate (Typ) (V/us) | 13 |
Vos (offset voltage @ 25 C) (Max) (mV) | 5 |
Iq per channel (Typ) (mA) | 1.8 |
Vn at 1 kHz (Typ) (nV/rtHz) | 20 |
Rating | Military |
Operating temperature range (C) | -55 to 125 |
Offset drift (Typ) (uV/C) | 30 |
Input bias current (Max) (pA) | 200 |
CMRR (Typ) (dB) | 100 |
Output current (Typ) (mA) | 30 |
Architecture | FET |
- Internally Trimmed Offset Voltage: 5 mV Max
- Low Input Bias Current: 50 pA Typ.
- Low Input Noise Current: 0.01 pA/√Hz Typ.
- Wide Gain Bandwidth: 4 MHz Typ.
- High Slew Rate: 13 V/μs Typ.
- Low Supply Current: 7.2 mA Typ.
- High Input Impedance: 1012Ω Typ.
- Low Total Harmonic Distortion:
- AV = 10, RL = 10KΩ, VO = 20VP-P
- BW = 20Hz — 20KHz ≤0.02% Typ.
- Low 1/f Noise Corner: 50 Hz Typ.
- Fast Settling Time to 0.01%: 2 μs Typ.
BI-FET is a trademark of Texas Instruments. All trademarks are the property of their respective owners.
The LF147 is a low cost, high speed quad JFET input operational amplifier with an internally trimmed input offset voltage (BI-FET II technology). The device requires a low supply current and yet maintains a large gain bandwidth product and a fast slew rate. In addition, well matched high voltage JFET input devices provide very low input bias and offset currents. The LF147 is pin compatible with the standard LM148. This feature allows designers to immediately upgrade the overall performance of existing LF148 and LM124 designs.
The LF147 may be used in applications such as high speed integrators, fast D/A converters, sample-and-hold circuits and many other circuits requiring low input offset voltage, low input bias current, high input impedance, high slew rate and wide bandwidth. The device has low noise and offset voltage drift.
为你推荐
-
TI数字多路复用器和编码器SN54HC1512022-12-23 15:12
-
TI数字多路复用器和编码器SN54LS1532022-12-23 15:12
-
TI数字多路复用器和编码器CD54HC1472022-12-23 15:12
-
TI数字多路复用器和编码器CY74FCT2257T2022-12-23 15:12
-
TI数字多路复用器和编码器SN74LVC257A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74LVC157A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74ALS258A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74ALS257A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74ALS157A2022-12-23 15:12
-
TI数字多路复用器和编码器SN74AHCT1582022-12-23 15:12
-
如何利用运算放大器设计振荡电路?2023-08-09 08:08
-
【PCB设计必备】31条布线技巧2023-08-03 08:09
-
电动汽车直流快充方案设计【含参考设计】2023-08-03 08:08
-
Buck电路的原理及器件选型指南2023-07-31 22:28
-
100W USB PD 3.0电源2023-07-31 22:27
-
千万不要忽略PCB设计中线宽线距的重要性2023-07-31 22:27
-
基于STM32的300W无刷直流电机驱动方案2023-07-06 10:02
-
上新啦!开发板仅需9.9元!2023-06-21 17:43
-
参考设计 | 2KW AC/DC数字电源方案2023-06-21 17:43
-
千万不能小瞧的PCB半孔板2023-06-21 17:34