Texas Instruments LMC660CM/NOPB
- Part Number:
- LMC660CM/NOPB
- Manufacturer:
- Texas Instruments
- Ventron No:
- 3688967-LMC660CM/NOPB
- Description:
- IC OPAMP GP 1.4MHZ RRO 14SOIC
- Datasheet:
- LMC660CM/NOPB
Texas Instruments LMC660CM/NOPB technical specifications, attributes, parameters and parts with similar specifications to Texas Instruments LMC660CM/NOPB.
- Factory Lead Time6 Weeks
- Lifecycle StatusACTIVE (Last Updated: 3 days ago)
- Contact PlatingTin
- MountSurface Mount
- Mounting TypeSurface Mount
- Package / Case14-SOIC (0.154, 3.90mm Width)
- Number of Pins14
- Operating Temperature0°C~70°C
- PackagingTube
- JESD-609 Codee3
- Pbfree Codeyes
- Part StatusActive
- Moisture Sensitivity Level (MSL)1 (Unlimited)
- Number of Terminations14
- ECCN CodeEAR99
- SubcategoryOperational Amplifier
- TechnologyCMOS
- Terminal PositionDUAL
- Terminal FormGULL WING
- Peak Reflow Temperature (Cel)260
- Number of Functions4
- Supply Voltage5V
- Terminal Pitch1.27mm
- Base Part NumberLMC660
- Pin Count14
- Output TypeRail-to-Rail
- Number of Channels4
- Voltage15V
- Number of Circuits4
- Nominal Supply Current1.5mA
- Output Current40mA
- Slew Rate1.1V/μs
- ArchitectureVOLTAGE-FEEDBACK
- Amplifier TypeGeneral Purpose
- Common Mode Rejection Ratio63 dB
- Current - Input Bias0.002pA
- Voltage - Supply, Single/Dual (±)4.75V~15.5V ±2.38V~7.75V
- Output Current per Channel40mA
- Input Offset Voltage (Vos)6.3mV
- Bandwidth1.4MHz
- Unity Gain BW-Nom1400 kHz
- Voltage Gain126.02dB
- Average Bias Current-Max (IIB)0.000002μA
- Power Supply Rejection Ratio (PSRR)63dB
- Low-OffsetNO
- Frequency CompensationYES
- Voltage - Input Offset1mV
- Low-BiasYES
- MicropowerYES
- Bias Current-Max (IIB) @25C0.000002μA
- Programmable PowerNO
- Input Offset Current-Max (IIO)0.000001μA
- Height1.75mm
- Length8.65mm
- Width3.91mm
- Thickness1.58mm
- Radiation HardeningNo
- REACH SVHCNo SVHC
- RoHS StatusROHS3 Compliant
- Lead FreeLead Free
LMC660CM/NOPB Overview
The current lifecycle status of the product is active, with the last update being three days ago. The contact plating on this product is tin, providing a reliable and durable connection. The packaging for this product is in a tube form, making it easy to store and transport. Additionally, this product is labeled as Pbfree, meaning it is free from lead, making it environmentally friendly. The part status is also active, ensuring that this product is readily available for purchase. This product has a low input offset voltage of 6.3mV, allowing for precise and accurate measurements. Furthermore, it is equipped with frequency compensation, ensuring stable performance. The maximum input offset current for this product is an incredibly low 0.000001μA, making it highly efficient. The dimensions of this product are 8.65mm in length and 3.91mm in width, making it compact and versatile for various applications.
LMC660CM/NOPB Features
14 Pins
supply voltage of 5V
126.02dB voltage gain
Output Type: Rail-to-Rail
LMC660CM/NOPB Applications
There are a lot of Texas Instruments LMC660CM/NOPB Instrumentational OP Amps applications.
earphone
Active probe
Wireless base stations
Band-pass filter
Strain gauges
Micro signal measurement
MP3
High gain DC amplifier
Proportional operation circuits
single/dual op amp sum and difference circuits
The current lifecycle status of the product is active, with the last update being three days ago. The contact plating on this product is tin, providing a reliable and durable connection. The packaging for this product is in a tube form, making it easy to store and transport. Additionally, this product is labeled as Pbfree, meaning it is free from lead, making it environmentally friendly. The part status is also active, ensuring that this product is readily available for purchase. This product has a low input offset voltage of 6.3mV, allowing for precise and accurate measurements. Furthermore, it is equipped with frequency compensation, ensuring stable performance. The maximum input offset current for this product is an incredibly low 0.000001μA, making it highly efficient. The dimensions of this product are 8.65mm in length and 3.91mm in width, making it compact and versatile for various applications.
LMC660CM/NOPB Features
14 Pins
supply voltage of 5V
126.02dB voltage gain
Output Type: Rail-to-Rail
LMC660CM/NOPB Applications
There are a lot of Texas Instruments LMC660CM/NOPB Instrumentational OP Amps applications.
earphone
Active probe
Wireless base stations
Band-pass filter
Strain gauges
Micro signal measurement
MP3
High gain DC amplifier
Proportional operation circuits
single/dual op amp sum and difference circuits
LMC660CM/NOPB More Descriptions
Quad, 15.5-V, 1.4-MHz operational amplifier 14-SOIC 0 to 70
Op Amp Quad Low Power Amplifier R-R O/P 15.5V Automotive 14-Pin SOIC Tube
ROHS3Compliant EAR99 LMC660 Tube op amp buffer circuit 8.65mm 0.000002muA 6.3mV 1400kHz
Operational Amplifier, 4 Func, 6300uV Offset-Max, CMOS, PDSO14
CMOS; Op Amp; 16V Supply; 35mASupply; /- 16V Voltage, Differential I/P, pbf
OP AMP, 1.4MHZ, 1.1V/US, SOIC-14; NO. OF; MSL: MSL 1 - Unlimited; SVHC: No SVHC (15-Jan-2019); Available until stocks are exhausted Alternative available
Operational Amplifier (Op-Amp) IC; No. of Amplifiers:4; Op Amp Type:High Gain; Gain Bandwidth -3db:1.4MHz; Slew Rate:1.1V/µs; Supply Voltage Min:5V; Supply Voltage Max:16V; No. of Pins:14; Operating Temperature Range:0°C to 70°C ;RoHS Compliant: Yes
Op Amp Quad Low Power Amplifier R-R O/P 15.5V Automotive 14-Pin SOIC Tube
ROHS3Compliant EAR99 LMC660 Tube op amp buffer circuit 8.65mm 0.000002muA 6.3mV 1400kHz
Operational Amplifier, 4 Func, 6300uV Offset-Max, CMOS, PDSO14
CMOS; Op Amp; 16V Supply; 35mASupply; /- 16V Voltage, Differential I/P, pbf
OP AMP, 1.4MHZ, 1.1V/US, SOIC-14; NO. OF; MSL: MSL 1 - Unlimited; SVHC: No SVHC (15-Jan-2019); Available until stocks are exhausted Alternative available
Operational Amplifier (Op-Amp) IC; No. of Amplifiers:4; Op Amp Type:High Gain; Gain Bandwidth -3db:1.4MHz; Slew Rate:1.1V/µs; Supply Voltage Min:5V; Supply Voltage Max:16V; No. of Pins:14; Operating Temperature Range:0°C to 70°C ;RoHS Compliant: Yes
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