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型号: | MCP6232T-E/MS |
厂商: |
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标准: | ![]() ![]() |
分类: | 半导体 , 集成电路 - IC |
描述: | operational amplifiers - Op amps dual 1.8V 200khz extended temp |
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Datasheet下载地址
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MCP6232T-E/MS的详细信息
Manufacturer: | Microchip |
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Product Category: | Operational Amplifiers - Op Amps |
RoHS: | Yes |
Amplifier Type: | Operational Amplifiers |
Gain Bandwidth Product: | 0.3 MHz |
Number of Channels: | 2 Channel |
Common Mode Rejection Ratio - Min: | 61 dB |
Input Offset Voltage: | 5 mV |
Input Bias Current - Max: | 1100 pA |
Operating Supply Voltage: | 1.8 V to 5.5 V |
Mounting Style: | SMD/SMT |
Package / Case: | MSOP-8 |
Slew Rate: | 0.1 V/us |
Shutdown: | No Shutdown |
Output Current: | 23 mA |
Maximum Operating Temperature: | + 125 C |
Packaging: | Reel |
Brand: | Microchip Technology |
Input Referred Voltage Noise: | 52 nV |
Minimum Operating Temperature: | - 40 C |
Series: | MCP6232 |
Factory Pack Quantity: | 2500 |
Supply Current: | 20 uA |
Technology: | CMOS |
MCP6232T-E/MS相关文档
- Video: MCP6XXX as an Inverting Amplifier 1 Eval board Video
- User Guides: Quick Guide to Microchip Development Tools
- Brochures: Analog & Interface Guide (Volume 2)
- Brochures: Signal Chain Design Guide
- User Guides: 8-Pin SOIC/MSOP/TSSOP/DIP Evaluation Board User's Guide
- Video: MCP6XXX Amplifier Eval Board - 4 as an Integrator Demo Video
- Brochures: PGA, Operational Amplifiers and Comparators Design Guide
- Video: MCP6XXX Eval Board 1- Voltage Follower Video
- Product Selection Tools: Automotive Recommended Product Selector Guide
- Video: MCP6XXX Eval board 2 as a Summing Amplifier Video
- Sample Code: SPICE Model for MCP6231/2/4 Devices
- Brochures: Solutions for Medical Applications
- Video: MCP6XXX Eval board 3 as a Difference Amplifier Video
- Product Selection Tools: Analog & Interface Product Selector Guide
MCP6232T-E/MS应用笔记
- Driving Capacitive Loads With Op Amps - Driving Capacitive Loads With Op Amps
- AN684 - Single Supply Temperature Sensing with Thermocouples
- AN1316 - Using Digital Potentiometers for Programmable Amplifier Gain
- AN792 - A Method to Determine How Much Power a SOT23 Can Dissipate in an Application
- AN1016 - Detecting Small Capacitive Sensors Using the MCP6291 and PIC16F690 Devices
- DG9 - Analog Solutions for Automotive Applications Design Guide
- AN895 - Oscillator Circuits for RTD Temperature Sensors
- AN1297 - Microchip's Op Amp SPICE Macro Models
- AN695 - Interfacing Pressure Sensors to Microchip's Analog Peripherals
- TB077 - Advantage's of Microchip's Cascaded Op Amps
- AN990 - Analog Sensor Conditioning Circuits - An Overview
- AN679 - Temperature Sensing Technologies
- AN866 - Designing Operational Amplifier Oscillator Circuits For Sensor Applications
- AN1177 - Op Amp Precision Design: DC Errors
- DG6 - PGA, Operational Amplifiers and Comparators Design Guide
- AN699 - Anti-Aliasing, Analog Filters for Data Acquisition Systems
- AN737 - Using Digital Potentiometers to Design Low Pass Adjustable Filters
- AN682 - Using Single Supply Operational Amplifiers in Embedded Systems
- AN722 - Operational Amplifier Topologies and DC Specifications
- AN723 - Operational Amplifier AC Specifications and Applications
- AN951 - Amplifying High-Impedence Sensors ? Photodiode Example
- AN897 - Thermistor Temperature Sensing with MCP6SX2 PGAs
- AN717 - Building a 10-Bit Bridge Sensing Circuit Using the PIC16C6XX and MCP601Operational Amplifier
- AN1228 - Op Amp Precision Design: Random Noise
- AN929 - Temperature Measurement Circuits for Embedded Applications
- AN844 - Simplified Thermocouple Interfaces and PICmicro® MCUs
- AN685 - Thermistors in Single Supply Temperature Sensing Circuits
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