MCP6033

The MCP6033 operational amplifier (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA and an offset voltage that is less than 150 uV. The MCP6033 uses Microchip's advanced CMOS technology, which provides low bias current, high-speed operation, high open-loop gain and rail-to-rail input and output swing. The MCP6033 offers a single amplifier with a Chip Select pin for additional power savings. The MCP6033 operates with a single supply voltage that can be as low as 1.8V, while drawing less than 1 uA of quiescent current. The MCP6033 is available in standard 8-lead SOIC and MSOP packages. AEC-Q100 Grade 1 qualification is available for this device

Features
  • Chip Select pin
  • Rail-to-Rail Input and Output
  • Unity gain stable
  • Low operating voltage
  • Low quiescent current
  • Low offset voltage
  • AEC-Q100 Grade 1
Parameter
Parameter Name Value Value
Temp. Range (°C) -40°C to +125°C -40°C to +125°C
Vos Max (µV) 150 150
# per Package 1 1
Iq Typical (µA) 0.9 0.9
Iq Max (µA) 1.35 1.35
GBWP (kHz) 10 10
Operating Voltage Range (V) 1.8 to 5.5 1.8 to 5.5
Device Description Linear Op Amps Linear Op Amps
Input Voltage Noise Density (nV/rt(Hz)) 165 165
PSRR Min (dB) 70 70
CMRR Min (dB) 70 70
Vos/Ta (uV/°C) 3 3
Ib (pA) 1 1
Aol (dB) 115 115
PM (deg) 65 65
Isc (mA) 23 23
Rail-to-Rail In/Out In/Out
Unity Gain Stable Yes Yes
Slew Rate V/uS 0.004 0.004
Documents
MCP6031/2/3/4 - 0.9 uA High Precision Op AmpsData Sheets02/10/2010637KB
AN1016 - Detecting Small Capacitive Sensors Using the MCP6291 and PIC16F690 DevicesAppNote04/13/2006630KB
AN1177 - Op Amp Precision Design: DC ErrorsAppNote03/12/2008269KB
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AN1228 - Op Amp Precision Design: Random NoiseAppNote09/02/2008588KB
AN1297 - Microchip's Op Amp SPICE Macro ModelsAppNote09/25/2009280KB
AN1316 - Using Digital Potentiometers for Programmable Amplifier GainAppNote04/14/2010441KB
AN679 - Temperature Sensing TechnologiesAppNote08/10/1999177KB
AN682 - Using Single Supply Operational Amplifiers in Embedded SystemsAppNote07/07/2011169KB
AN684 - Single Supply Temperature Sensing with ThermocouplesAppNote08/10/1999301KB
AN685 - Thermistors in Single Supply Temperature Sensing CircuitsAppNote07/27/2004163KB
AN687 - Precision Temperature Sensing with RTD CircuitsAppNote09/26/2008149KB
AN695 - Interfacing Pressure Sensors to Microchip's Analog PeripheralsAppNote04/13/2000230KB
AN699 - Anti-Aliasing, Analog Filters for Data Acquisition SystemsAppNote07/26/1999171KB
AN717 - Building a 10-Bit Bridge Sensing Circuit Using the PIC16C6XX and MCP601Operational AmplifierAppNote04/03/2001181KB
AN722 - Operational Amplifier Topologies and DC SpecificationsAppNote04/03/2001223KB
AN723 - Operational Amplifier AC Specifications and ApplicationsAppNote04/03/2001341KB
AN737 - Using Digital Potentiometers to Design Low Pass Adjustable FiltersAppNote02/24/2004277KB
AN792 - A Method to Determine How Much Power a SOT23 Can Dissipate in an ApplicationAppNote07/18/2001523KB
AN844 - Simplified Thermocouple Interfaces and PICmicro® MCUsAppNote07/21/2002273KB
AN866 - Designing Operational Amplifier Oscillator Circuits For Sensor ApplicationsAppNote06/18/2003358KB
AN895 - Oscillator Circuits for RTD Temperature SensorsAppNote05/17/2004418KB
AN897 - Thermistor Temperature Sensing with MCP6SX2 PGAsAppNote05/31/2006452KB
AN929 - Temperature Measurement Circuits for Embedded ApplicationsAppNote05/06/2004448KB
AN951 - Amplifying High-Impedence Sensors ? Photodiode ExampleAppNote07/25/2006290KB
AN990 - Analog Sensor Conditioning Circuits - An OverviewAppNote03/28/2010262KB
Driving Capacitive Loads With Op Amps - Driving Capacitive Loads With Op AmpsAppNote03/31/2009493KB
TB077 - Advantage's of Microchip's Cascaded Op AmpsAppNote07/25/200685KB
Automotive Recommended Product Selector GuideBrochures09/16/20147598KB
Electronic Solutions for Medical and FitnessBrochures09/10/201410216KB
PGA, Operational Amplifiers and Comparators Design GuideBrochures12/08/2009640KB
Signal Chain Design GuideBrochures11/10/20123229KB
SPICE Model for MCP6031/2/3/4 DevicesSpice Model05/14/20135KB
SPICE Model for MCP6041/2/3/4 DevicesSpice Model02/05/20135KB
MCP6XXX Amplifier Eval Board - 4 as an Integrator Demo VideoVideo07/20/201037460KB
MCP6XXX as an Inverting Amplifier 1 Eval board VideoVideo07/20/201037546KB
MCP6XXX Eval Board 1- Voltage Follower VideoVideo07/20/201035976KB
MCP6XXX Eval board 2 as a Summing Amplifier VideoVideo07/20/201035562KB
MCP6XXX Eval board 3 as a Difference Amplifier VideoVideo07/22/201036624KB
Ordering Information
Part NumberLeadsPackage TypeTemp RangePacking1+26+100+1000+5000+
MCP6033-E/MC8DFN-40C to +125CTUBE0.740.610.560.560.55
MCP6033-E/MS8MSOP-40C to +125CTUBE0.740.610.560.560.55
MCP6033-E/SN8SOIC-40C to +125CTUBE0.740.610.560.560.55
MCP6033T-E/MC8DFN-40C to +125CT/R0.740.610.560.560.55
MCP6033T-E/MS8MSOP-40C to +125CT/R0.740.610.560.560.55
MCP6033T-E/SN8SOIC-40C to +125CT/R0.740.610.560.560.55
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RoHS Information
PartNumberDeviceWeightShippingWeightLeadCountPackageTypePackageWidthSolderCompositionJEDECIndicatorRoHSChinaEFUP
MCP6033-E/SN0.0780000.1600008SOIC.150In(3.90mm)Matte Tine3
MCP6033T-E/SN0.0780000.2303038SOIC.150In(3.90mm)Matte Tine3
MCP6033-E/MS0.0256000.0700008MSOP3x3mmMatte Tine3
MCP6033T-E/MS0.0256000.2156008MSOP3x3mmMatte Tine3
MCP6033-E/MC0.0170000.0333338DFN2x3x0.9mmMatte Tine3
MCP6033T-E/MC0.0170000.1306068DFN2x3x0.9mmMatte Tine3
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