Texas Instruments
OPA2132U  
OP Amps, Buffer Amps ICs

Texas Instruments
OPA2132U
687-OPA2132U
Ersa
Texas Instruments-OPA2132U-datasheets-3233826.pdf
IC OPAMP JFET 2 CIRCUIT 8SOIC
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OPA2132U Description

OPA2132U Description

The OPA2132U is a high-performance operational amplifier from Texas Instruments, designed for precision signal processing applications. It belongs to the OPAx132 series and is housed in a surface-mount 8SOIC package. This dual-channel op-amp offers a wide supply voltage range from 5 V to 36 V, making it suitable for a variety of power supply configurations. The OPA2132U is known for its low input bias current of 5 pA and an input offset voltage of 250 µV, which ensures high accuracy and stability in signal amplification. With a gain bandwidth product of 8 MHz and a slew rate of 20 V/µs, the OPA2132U can handle high-frequency signals with minimal distortion. Each channel can source or sink up to 40 mA of current, providing robust output capabilities. The device is RoHS3 compliant and REACH unaffected, ensuring environmental safety and regulatory compliance.

OPA2132U Features

  • Wide Supply Voltage Range: Operates from 5 V to 36 V, offering flexibility in power supply requirements.
  • Low Input Bias Current: 5 pA ensures minimal loading on the input signal source, preserving signal integrity.
  • High Gain Bandwidth Product: 8 MHz allows for high-frequency signal processing with excellent performance.
  • Fast Slew Rate: 20 V/µs ensures quick response times and minimal signal distortion.
  • Low Input Offset Voltage: 250 µV contributes to high accuracy in precision applications.
  • High Output Current: Each channel can source or sink up to 40 mA, providing strong output drive capabilities.
  • Dual Channel Configuration: Two independent op-amps in a single package, ideal for space-constrained designs.
  • Surface Mount Packaging: 8SOIC package is suitable for automated assembly processes, enhancing manufacturing efficiency.
  • Environmental Compliance: RoHS3 compliant and REACH unaffected, ensuring regulatory compliance and environmental safety.

OPA2132U Applications

The OPA2132U is ideal for a wide range of applications requiring precision signal amplification and processing. Its low input bias current and high gain bandwidth product make it suitable for high-impedance sensor interfaces, such as photodiode amplifiers and precision transimpedance amplifiers. The fast slew rate and low input offset voltage ensure accurate signal reproduction in audio processing and high-speed instrumentation. The dual-channel configuration is particularly useful in differential signal processing and balanced line drivers. The OPA2132U is also well-suited for applications in medical equipment, where precision and reliability are critical, such as in electrocardiograms (ECGs) and patient monitoring systems.

Conclusion of OPA2132U

The OPA2132U from Texas Instruments is a versatile and high-performance operational amplifier that stands out in its class. Its wide supply voltage range, low input bias current, and high gain bandwidth product make it an excellent choice for precision signal processing applications. The dual-channel configuration and surface-mount packaging further enhance its suitability for modern electronic designs. Whether used in high-impedance sensor interfaces, audio processing, or medical equipment, the OPA2132U delivers reliable performance and environmental compliance. Its combination of technical specifications and practical features positions it as a preferred choice for engineers seeking precision and reliability in their designs.

Tech Specifications

Number of Channels per Chip
Unit Weight
Power Supply Type
Typical Output Current (mA)
Rail-to-rail
Product
PPAP
Gain Bandwidth Product
Automotive
Maximum Input Offset Current (uA)
RoHS
THD plus Noise
REACH Status
Operating temperature range (°C)
Current - Supply
Standard Package Name
Shut Down Support
Mounting
Iout (typ) (A)
Moisture Sensitive
Manufacturer Type
Package
Minimum CMRR (dB)
Maximum Quiescent Current (mA)
Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V)
GBW (typ) (MHz)
en - Input Voltage Noise Density
Output Type
Vos - Input Offset Voltage
Minimum CMRR Range (dB)
Typical Gain Bandwidth Product (MHz)
Package Height
Maximum Operating Temperature
Ib - Input Bias Current
Width
RoHS Status
Number of channels
Iq per channel (typ) (mA)
Minimum Operating Temperature
Voltage - Input Offset
Type
Vos (offset voltage at 25°C) (max) (mV)
Length
Operating Supply Voltage
Output Current per Channel
Part Status
Lead finish / Ball material
Number of Circuits
Package Width
GBP - Gain Bandwidth Product
Voltage - Supply Span (Max)
Maximum Input Offset Voltage (mV)
Product Status
Current - Input Bias
Supplier Package
Package / Case
Number of Channels
Typical Voltage Gain (dB)
Technology
Typical Input Bias Current (uA)
EU RoHS
Carrier
Amplifier Type
Maximum Dual Supply Voltage (V)
Moisture Sensitivity Level (MSL)
Typical Input Noise Voltage Density (nV/rtHz)
Operating Temperature
Architecture
Typical Slew Rate (V/us)
ECCN
MSL rating / Peak reflow
Mounting Type
Pin Count
In - Input Noise Current Density
Ios - Input Offset Current
Shutdown
Typical Dual Supply Voltage (V)
Voltage - Supply Span (Min)
Lead Shape
HTSUS
Pins
Current - Output / Channel
USHTS
PCB changed
HTS
Voltage Gain dB
Rating
ECCN (US)
Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V)
Supplier Device Package
Supply Voltage - Min
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Operating Supply Current
SR - Slew Rate
Mfr
Height
CMRR (typ) (dB)
Supply Voltage - Max
Mounting Style
Input Type
Maximum Input Bias Current (uA)
Typical Noninverting Input Current Noise Density (pA/rtHz)
Slew Rate
Package Length
Minimum Dual Supply Voltage (V)
Vn at 1 kHz (typ) (nV√Hz)
CMRR - Common Mode Rejection Ratio
REACH
Series
Slew rate (typ) (V/µs)
Typical Settling Time (ns)
Base Product Number
Input bias current (max) (pA)

OPA2132U Documents

Download datasheets and manufacturer documentation for OPA2132U

Ersa OPA4132UAE4      
Ersa Design 25/Feb/2022       OPA132Uy/OPA2132Uy Assembly Wafer Site/Design 22/Dec/2023      

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