MCP6V07-E/MD More Semiconductors - ICs by Microchip Technology

300 µA, Auto-Zeroed Op Amps

Status: Active
Series: MCP6V07
RoHS: Compliant
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The MCP6V06/7/8 family of operational amplifiers has input offset voltage correction for very low offset and offset drift. These devices have a wide bandwidth product and strongly reject switching noise. They are unity gain stable, have no 1/f noise, and have good PSRR and CMRR. These products operate with a single supply voltage as low as 1.8V and are designed in an advanced CMOS process. AEC-Q100 Grade 1 qualification is available for this device

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Features

VOS Drift: ±50 nV/°C (maximum)
VOS: ±3 µV (maximum)
AOL: 125 dB (minimum)
PSRR: 125 dB (minimum)
CMRR: 120 dB (minimum)
Eni: 1.7 µVP-P (typical), f = 0.1 Hz to 10 Hz
Eni: 0.54 µVp-p (typical), f = 0.01 Hz to 1 Hz
IQ: 300 µA/amplifier (typical)
Wide Supply Voltage Range: 1.8V to 5.5V
Rail-to-Rail Input/Output
Gain Bandwidth Product: 1.3 MHz (typical)
Unity Gain Stable
Available in Single and Dual
Extended Temperature Range: -40°C to +125°C
AEC-Q100 Grade 1

Specifications

# Per Package 2
GBWP (kHz) 1300
VOS Max. (uV) 3
Supply Voltage Min. (V) 1.8
Supply Voltage Max. (V) 5.5
Iq Typical (µA) 300
Iq Max (uA) 400
Input Voltage Noise Density (nV/rt(Hz)) 82
PSRR Min (dB) 125
CMRR Min (dB) 120
Operating Temperature Range (°C) -40 to 125
Ib (pA) 6
PM (deg) 65
Isc (mA) 22
Slew Rate (V/µs) 0.5
Pins | Packaging 8 | DFN
Temp Range -40C to +125C
Packing Media Tube (91)

Resources


Application Notes
AN699 - Anti-Aliasing, Analog Filters for Data Acquisition Systems
AN687 - Precision Temperature Sensing with RTD Circuits
AN679 - Temperature Sensing Technologies
AN685 - Thermistors in Single Supply Temperature Sensing Circuits
AN684 - Single Supply Temperature Sensing with Thermocouples
AN695 - Interfacing Pressure Sensors to Microchip's Analog Peripherals
AN737 - Using Digital Potentiometers to Design Low Pass Adjustable
AN682 - Using Single Supply Operational Amplifiers in Embedded Systems
AN717 - Building a 10-Bit Bridge Sensing Circuit Using the PIC16C6XX and MCP601Operational Amplifier
AN722 - Operational Amplifier Topologies and DC Specifications
AN723 - Operational Amplifier AC Specifications and Applications
AN792 - A Method to Determine How Much Power a SOT23 Can
AN844 - Simplified Thermocouple Analog Solutions
AN866 - Designing Operational Amplifier Oscillator Circuits For Sensor Applications
Driving Capacitive Loads With Op Amps - Driving Capacitive Loads With Op Amps
AN929 - Temperature Measurement Circuits for Embedded Applications
AN895 - Oscillator Circuits for RTD Temperature Sensors
AN951 - Amplifying High-Impedence Sensors Photodiode Example
AN897 - Thermistor Temperature Sensing with MCP6SX2 PGAs
AN990 - Analog Sensor Conditioning Circuits - An Overview
AN1016 - Detecting Small Capacitive Sensors Using the MCP6291 and
TB077 - Advantage's of Microchip's Cascaded Op Amps
AN1177 - Op Amp Precision Design: DC Errors
AN1228 - Op Amp Precision Design: Random Noise
AN1258 - Op Amp Precision Design: PCB Layout Techniques
AN1297 - Microchip's Op Amp SPICE Macro Models
AN1316 - Using Digital Potentiometers for Programmable Amplifier Gain




Environmental Information

JEDEC Indicator e3
ROHS Compliant
China EFUP Compliant
Device Weight (g) 0.0432
Shipping Weight (kg) 0.076923
Lead Count 8
Package Type DFN
Package Width or Size 4x4x0.9mm
Soldering Composition Matte Tin

Alternative Descriptions

Dual, Auto-Zero Op Amp, E Temp | Microchip Technology
Dual, Zero-Drift Op Amp, E Temp 8 Dfn 4X4X0.9Mm Tube Rohs Compliant: Yes |Microchip MCP6V07-E/MD | Newark Electronics
MCP6V07 Series 5.5 V 1.3 MHz 300 uA Auto-Zeroed Operational Amplifier - DFN-8 | Future Electronics
OP Amp Dual GP R-R I/O 5.5V 8-Pin DFN EP Tube | Avnet America
Dual, Auto-Zero Op Amp, E Temp | Microchip Technology Inc. MCP6V07-E/MD | RS Americas


Frequently Asked Questions

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Is the MCP6V07-E/MD RoHS compliant?

Yes. This part has been flagged as RoHS Compliant by Microchip Technology.

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