TLV2772AM 双路 2.7V 大电流转换速率轨至轨输出运算放大器
The TLV277x CMOS operational amplifier family combines high slew rate and bandwidth, rail-to-rail output swing, high output drive, and excellent dc precision. The device provides 10.5 V/µs of slew rate and 5.1 MHz of bandwidth while only consuming 1 mA of supply current per channel. This ac performance is much higher than current competitive CMOS amplifiers. The rail-to-rail output swing and high output drive make these devices a good choice for driving the analog input or reference of analog-to-digital converters. These devices also have low distortion while driving a 600- load for use in telecom systems.
These amplifiers have a 360-µV input offset voltage, a 17 nV/Hz input noise voltage, and a 2-pA input bias current for measurement, medical, and industrial applications
|
TLV2772AM |
Number of Channels |
2 |
Total Supply Voltage (V)(Min)(+5V=5, +/-5V=10) |
2.5 |
Total Supply Voltage (V)(Max)(+5V=5, +/-5V=10) |
6 |
Iq per channel(Max)(mA) |
2 |
GBW(Typ)(MHz) |
5.1 |
Slew Rate(Typ)(V/us) |
10.5 |
VIO (25 deg C)(Max)(mV) |
1.6 |
Offset Drift(Typ)(uV/C) |
2 |
IIB(Max)(pA) |
60 |
CMRR(Min)(dB) |
70 |
Vn at 1kHz(Typ)(nV/rtHz) |
21 |
Rail-Rail |
Out |
Pin/Package |
10CFP, 8SOIC, 20LCCC, 8CDIP |
Rating |
Military |
Operating Temperature Range(C) |
-55 to 125 |
Approx. Price (US$) |
1.25 | 1ku |
TLV2772AM 特性
- High Slew Rate...10.5 V/µs Typ
- High-Gain Bandwidth...5.1 MHz Typ
- Supply Voltage Range 2.5 V to 5.5 V
- Rail-to-Rail Output
- 360 µV Input Offset Voltage
- Low Distortion Driving 600- 0.005% THD+N
- 1 mA Supply Current (Per Channel)
- 17 nV/Hz Input Noise Voltage
- 2 pA Input Bias Current
- Characterized From TA = –55°C to 125°C
- Available in MSOP and SOT-23 Packages
- Micropower Shutdown Mode...IDD < 1 µA
- Available in Q-Temp Automotive
High Reliability Automotive Applications
Configuration Control / Print Support
Qualification to Automotive Standards
TLV2772AM 芯片订购指南
器件 |
状态 |
温度 |
价格(美元) |
封装 | 引脚 |
封装数量 | 封装载体 |
丝印标记 |
5962-9858802Q2A |
ACTIVE |
-55 to 125 |
18.18 | 1ku |
LCCC (FK) | 20 |
1 | TUBE |
|
5962-9858802QHA |
ACTIVE |
-55 to 125 |
15.42 | 1ku |
CFP (U) | 10 |
1 | TUBE |
|
5962-9858802QPA |
ACTIVE |
-55 to 125 |
11.63 | 1ku |
CDIP (JG) | 8 |
1 | TUBE |
|
TLV2772AMD |
ACTIVE |
-55 to 125 |
1.25 | 1ku |
SOIC (D) | 8 |
75 |
|
TLV2772AMDG4 |
ACTIVE |
|
1.25 | 1ku |
SOIC (D) | 8 |
75 |
|
TLV2772AMDR |
ACTIVE |
-55 to 125 |
1.25 | 1ku |
SOIC (D) | 8 |
2500 | LARGE T&R |
|
TLV2772AMDRG4 |
ACTIVE |
|
1.25 | 1ku |
SOIC (D) | 8 |
2500 |
|
TLV2772AMFKB |
ACTIVE |
-55 to 125 |
18.18 | 1ku |
LCCC (FK) | 20 |
1 | TUBE |
|
TLV2772AMJGB |
ACTIVE |
-55 to 125 |
11.63 | 1ku |
CDIP (JG) | 8 |
1 | TUBE |
|
TLV2772AMUB |
ACTIVE |
-55 to 125 |
15.42 | 1ku |
CFP (U) | 10 |
1 | TUBE |
|
TLV2772AM 质量与无铅数据
器件 |
环保计划* |
铅/焊球涂层 |
MSL 等级/回流焊峰 |
环保信息与无铅 (Pb-free) |
DPPM / MTBF / FIT 率 |
5962-9858802Q2A |
TBD |
POST-PLATE |
N/A for Pkg Type |
5962-9858802Q2A |
5962-9858802Q2A |
5962-9858802QHA |
TBD |
A42 |
N/A for Pkg Type |
5962-9858802QHA |
5962-9858802QHA |
5962-9858802QPA |
TBD |
A42 |
N/A for Pkg Type |
5962-9858802QPA |
5962-9858802QPA |
TLV2772AMD |
TBD |
CU NIPDAU |
Level-1-220C-UNLIM |
TLV2772AMD |
TLV2772AMD |
TLV2772AMDG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLV2772AMDG4 |
TLV2772AMDG4 |
TLV2772AMDR |
TBD |
CU NIPDAU |
Level-1-220C-UNLIM |
TLV2772AMDR |
TLV2772AMDR |
TLV2772AMDRG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLV2772AMDRG4 |
TLV2772AMDRG4 |
TLV2772AMFKB |
TBD |
POST-PLATE |
N/A for Pkg Type |
TLV2772AMFKB |
TLV2772AMFKB |
TLV2772AMJGB |
TBD |
A42 |
N/A for Pkg Type |
TLV2772AMJGB |
TLV2772AMJGB |
TLV2772AMUB |
TBD |
A42 |
N/A for Pkg Type |
TLV2772AMUB |
TLV2772AMUB |
TLV2772AM 应用技术支持与电子电路设计开发资源下载
- TLV2772AM 数据资料 dataSheet 下载.PDF
- TI 德州仪器仪运算放大器 (Op Amp)产品选型与价格 . xls
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- 运算放大器的单电源操作 (PDF 2174 KB)
- Tuning in Amplifiers (PDF 44 KB)
- Op Amp Performance Analysis (PDF 76 KB)
- An Error Analysis of the ISO102 in a Small Signal Measuring Application (PDF 29 KB)
- Level Shifting Signals with Differential Amplifiers (PDF 23 KB)
- Operational Amplifier Macromodels: A Comparison (PDF 59 KB)