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MCP6V76T-EMS PDF预览

MCP6V76T-EMS

更新时间: 2024-11-08 02:43:35
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美国微芯 - MICROCHIP /
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48页 1164K
描述
170 μA, 2 MHz Zero-Drift Op Amps

MCP6V76T-EMS 数据手册

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MCP6V76/6U/7/9  
170 µA, 2 MHz Zero-Drift Op Amps  
Features  
Description  
• High DC Precision:  
The Microchip Technology Inc. MCP6V76/6U/7/9  
family of operational amplifiers provides input offset  
voltage correction for very low offset and offset drift.  
These are low-power devices with a gain bandwidth  
product of 2 MHz (typical). They are unity-gain stable,  
have virtually no 1/f noise and have good Power Supply  
Rejection Ratio (PSRR) and Common Mode Rejection  
Ratio (CMRR). These products operate with a single  
supply voltage as low as 2V, while drawing  
170 µA/amplifier (typical) of quiescent current.  
- VOS Drift: ±150 nV/°C (maximum)  
- VOS: ±25 µV (maximum)  
- AOL: 111 dB (minimum, VDD = 5.5V)  
- PSRR: 110 dB (minimum, VDD = 5.5V)  
- CMRR: 112 dB (minimum, VDD = 5.5V)  
- Eni: 0.45 µVP-P (typical), f = 0.1 Hz to 10 Hz  
- Eni: 0.15 µVP-P (typical), f = 0.01 Hz to 1 Hz  
• Enhanced EMI Protection:  
The MCP6V76/6U/7/9 family has enhanced EMI pro-  
tection to minimize any electromagnetic interference  
from external sources. This feature makes it well suited  
for EMI sensitive applications such as power lines,  
radio stations and mobile communications, etc.  
- Electromagnetic Interference Rejection Ratio  
(EMIRR) at 1.8 GHz: 96 dB  
• Low Power and Supply Voltages:  
- IQ: 170 µA/amplifier (typical)  
- Wide Supply Voltage Range: 2V to 5.5V  
• Small Packages:  
The Microchip Technology Inc. MCP6V76/6U/7/9 op  
amps are offered in single (MCP6V76 and  
MCP6V76U), dual (MCP6V77) and quad (MCP6V79)  
packages. They were designed using an advanced  
CMOS process.  
- Singles in SC70, SOT-23  
- Duals in MSOP-8, 2x3 TDFN  
- Quads in TSSOP-14  
• Easy to Use:  
- Rail-to-Rail Input/Output  
Package Types  
- Gain Bandwidth Product: 2 MHz (typical)  
- Unity Gain Stable  
MCP6V76  
SOT-23  
MCP6V77  
MSOP  
• Extended Temperature Range: -40°C to +125°C  
VDD  
VOUT  
VSS  
VDD  
1
5
4
1
8
7
6
5
VOUTA  
VOUTB  
Typical Applications  
2
3
4
2
3
VINA–  
VINB  
VINB  
+
VINA+  
VIN+  
VIN–  
• Portable Instrumentation  
• Sensor Conditioning  
VSS  
Temperature Measurement  
• DC Offset Correction  
• Medical Instrumentation  
MCP6V76U  
SC70, SOT-23  
MCP6V77  
2×3 TDFN *  
VOUTA  
VDD  
1
8
VIN+  
VSS  
VDD  
1
2
3
5
Design Aids  
• FilterLab® Software  
• Microchip Advanced Part Selector (MAPS)  
• Analog Demonstration and Evaluation Boards  
• Application Notes  
VINA  
+
VOUTB  
2
3
4
7
6
5
EP  
9
VINA  
VINB  
VINB  
+
VIN–  
VOUT  
4
VSS  
MCP6V79  
TSSOP  
Related Parts  
V
V
V
V
V
1
14  
13  
12  
11  
10  
9
VOUTA  
OUTD  
• MCP6V11/1U/2/4: Zero-Drift, Low Power  
• MCP6V31/1U/2/4: Zero-Drift, Low Power  
• MCP6V61/1U: Zero-Drift 1 MHz  
2
3
4
5
6
7
VINA  
VINA  
+
IND  
+
IND  
VDD  
SS  
• MCP6V81/1U: Zero-Drift, 5 MHz  
+
VINB  
VINB  
+
INC  
MCP6V91/1U: Zero-Drift, 10 MHz  
VINC  
VOUTC  
VOUTB  
8
* Includes Exposed Thermal Pad (EP); see Table 3-1.  
2020 Microchip Technology Inc.  
DS20006323B-page 1  

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