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MCP6031DM-PTPLS
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MCP6031DM-PTPLS

  • Category:Operational amplifiers
  • Product Name:The MCP6031 op amp (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA offset voltage, which is less than 150 microvolts. The MCP6031 uses Microchip's advanced CMOS technology to provide rail-to-rail input and output swing with low bias current, high speed, high open-loop gain. The MCP6031 can have a single supply voltage as low as 1.8V and a quiescent current of less than 1 microamp. be
  • Manufacturers:Microchip
  • Production Batch Number:12+
  • Encapsulation:SMD/SMT
  • Stock Status:There is stock
  • Stock Quantity:3000
  • Minimum order quantity: 1
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  • Product introduction

MCP6031DM-PTPLSMCP6031Operational amplifiersOp ampThe gain bandwidth of is 10 kHzof low typicalOperating current900 nAAn offset voltagebeLess than 150Microvolts MCP6031adoptfinishMicrochip is advancedCMOSTechnology, offeredLow bias current,high speedhighOpen-loop gaintargetrailto the railInput and output swings MCP6031Single power supplyVoltage canAs low as 1.8VwhereasLess than1Microampsquiescent currentbeatStandard 8-pinSOIC,MSOP,SOT-23 and 2x3 DFN packagetargetMCP6031

characteristic
    • Rail-to-Rail Input and Output
    • Unity gain stable
    • Low operating voltage
    • Low quiescent current
    • Low offset voltage
    • Wide Power Supply Voltage: 1.8V to 5.5V

 

 

 

 

 

 
Microchip Centennial Electronic Technology - Professionalsensorexpert

characteristic
    • Rail-to-Rail Input and Output
    • Unity gain stable
    • Low operating voltage
    • Low quiescent current
    • Low offset voltage
    • Wide Power Supply Voltage: 1.8V to 5.5V
    • Gain Bandwidth Product: 10 kHz (typical)
    • No Phase Reversal

andMCP6031DM-PTPLSRelated ICs are:


Model Manufacturers lot number encapsulation illustrate
MCP6031DM-PTPLS Microchip 12+ SMD/SMT The MCP6031 op amp (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA offset voltage, which is less than 150 microvolts. The MCP6031 uses Microchip's advanced CMOS technology to provide rail-to-rail input and output swing with low bias current, high speed, high open-loop gain. The MCP6031 can have a single supply voltage as low as 1.8V and a quiescent current of less than 1 microamp. be

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Microchip brand product recommendation


Model Manufacturers lot number encapsulation illustrate
MCP6031T-E/SN Microchip 12+ SMD/SMT The MCP6031 op amp (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA offset voltage, which is less than 150 microvolts. The MCP6031 uses Microchip's advanced CMOS technology to provide rail-to-rail input and output swing with low bias current, high speed, high open-loop gain. The MCP6031 can have a single supply voltage as low as 1.8V and a quiescent current of less than 1 microamp. be
MCP6031T-E/OT Microchip 12+ SMD/SMT The MCP6031 op amp (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA offset voltage, which is less than 150 microvolts. The MCP6031 uses Microchip's advanced CMOS technology to provide rail-to-rail input and output swing with low bias current, high speed, high open-loop gain. The MCP6031 can have a single supply voltage as low as 1.8V and a quiescent current of less than 1 microamp. be
MCP6031T-E/MS Microchip 12+ SMD/SMT The MCP6031 op amp (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA offset voltage, which is less than 150 microvolts. The MCP6031 uses Microchip's advanced CMOS technology to provide rail-to-rail input and output swing with low bias current, high speed, high open-loop gain. The MCP6031 can have a single supply voltage as low as 1.8V and a quiescent current of less than 1 microamp. be
MCP6031T-E/MC Microchip 12+ SMD/SMT The MCP6031 op amp (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA offset voltage, which is less than 150 microvolts. The MCP6031 uses Microchip's advanced CMOS technology to provide rail-to-rail input and output swing with low bias current, high speed, high open-loop gain. The MCP6031 can have a single supply voltage as low as 1.8V and a quiescent current of less than 1 microamp. be
MCP6031-E/SN Microchip 12+ SMD/SMT The MCP6031 op amp (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA offset voltage, which is less than 150 microvolts. The MCP6031 uses Microchip's advanced CMOS technology to provide rail-to-rail input and output swing with low bias current, high speed, high open-loop gain. The MCP6031 can have a single supply voltage as low as 1.8V and a quiescent current of less than 1 microamp. be
MCP6031-E/MS Microchip 12+ SMD/SMT The MCP6031 op amp (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA offset voltage, which is less than 150 microvolts. The MCP6031 uses Microchip's advanced CMOS technology to provide rail-to-rail input and output swing with low bias current, high speed, high open-loop gain. The MCP6031 can have a single supply voltage as low as 1.8V and a quiescent current of less than 1 microamp. be
MCP6031-E/MC Microchip 12+ SMD/SMT The MCP6031 op amp (op amp) has a gain bandwidth of 10 kHz with a low typical operating current of 900 nA offset voltage, which is less than 150 microvolts. The MCP6031 uses Microchip's advanced CMOS technology to provide rail-to-rail input and output swing with low bias current, high speed, high open-loop gain. The MCP6031 can have a single supply voltage as low as 1.8V and a quiescent current of less than 1 microamp. be
MCP6444T-E/ST Microchip 12+ SMD/SMT The MCP6444 device is a four-nanopower op amp (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). These devices operate from a single supply as low as 1.4V. These features make home op amps ideal for single-supply, battery-powered applications.
MCP6444T-E/SL Microchip 12+ SMD/SMT The MCP6444 device is a four-nanopower op amp (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). These devices operate from a single supply as low as 1.4V. These features make home op amps ideal for single-supply, battery-powered applications.
MCP6444-E/ST Microchip 12+ SMD/SMT The MCP6444 device is a four-nanopower op amp (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). These devices operate from a single supply as low as 1.4V. These features make home op amps ideal for single-supply, battery-powered applications.
MCP6444-E/SL Microchip 12+ SMD/SMT The MCP6444 device is a four-nanopower op amp (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). These devices operate from a single supply as low as 1.4V. These features make home op amps ideal for single-supply, battery-powered applications.
MCP6442T-E/MNY Microchip 12+ SMD/SMT The MCP6442 device features a dual nanopower operational amplifier (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). The device operates from a single supply voltage as low as 1.4V. These features make home op amps ideal for single-supply, battery-powered applications
MCP6442T-E/SN Microchip 12+ SMD/SMT The MCP6442 device features a dual nanopower operational amplifier (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). The device operates from a single supply voltage as low as 1.4V. These features make home op amps ideal for single-supply, battery-powered applications
MCP6442T-E/MS Microchip 12+ SMD/SMT The MCP6442 device features a dual nanopower operational amplifier (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). The device operates from a single supply voltage as low as 1.4V. These features make home op amps ideal for single-supply, battery-powered applications
MCP6442-E/SN Microchip 12+ SMD/SMT The MCP6442 device features a dual nanopower operational amplifier (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). The device operates from a single supply voltage as low as 1.4V. These features make home op amps ideal for single-supply, battery-powered applications
MCP6442-E/MS Microchip 12+ SMD/SMT The MCP6442 device features a dual nanopower operational amplifier (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). The device operates from a single supply voltage as low as 1.4V. These features make home op amps ideal for single-supply, battery-powered applications
MCP6441T-E/OT Microchip 12+ SMD/SMT The MCP6441 device is a single nanopower operational amplifier (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). These devices operate from a single supply as low as 1.4V. These features make home op amps ideal for single-supply, battery-based applications
MCP6441T-E/LT Microchip 12+ SMD/SMT The MCP6441 device is a single nanopower operational amplifier (op amp) with low quiescent current (450 nA, typical) and rail-to-rail input and output operation. The op amp is unity-gain stable with a gain bandwidth product of 9 kHz (typical). These devices operate from a single supply as low as 1.4V. These features make home op amps ideal for single-supply, battery-based applications
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