Texas Instruments

OPA2375IDSGR - 10MHz Dual CMOS Op Amp RRO | Texas Instruments

MPN: OPA2375IDSGR βœ“ Active
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500 uV (maximum) Vdss 990 uA Id 8-WSON (DSG), 2x2 mm Package
From $0.5 USD / Unit
MOQ: 1 |
Price updated: 2026-09-02
Volume Pricing
Qty Unit Price Extended
1 $0.89 $0.89
10 $0.8 $8.00
100 $0.63 $63.00
500 $0.56 $280.00
1,000 $0.5 $500.00
ℹ️ All prices are in USD

Drop-in alternatives for OPA2375IDSGR β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

OPA2375IDDFR

βœ… Drop-In
Texas Instruments
πŸ“¦ 8-WSON (DDF) 2x2 mm
CMOS Operational Amplifier (RRO) Β· 2 Β· 10 MHz Β· 4.6 nV per root-hertz (broadband) Β· 500 uV (maximum) Β· 2.2 V to 5.5 V Β· 5.5 V Β· Rail-to-Rail Output (RRO)

βœ“ In Stock

$0.82 / Unit

View Datasheet β†’

OPA2376AIDSGR

βœ… Drop-In ⚠️ 参数待ιͺŒθ―
πŸ“¦ 8-WSON (DSG) 2x2 mm
identical DSG package and pinout, but OPA2376 family offers modestly lower bandwidth and slightly different offset/noise specification points

πŸ“‹ Reference alternative (not in catalog)

OPA2375IDSGR Maximum Ratings & Electrical Characteristics

Number of Channels 2
Gain Bandwidth Product 10 MHz
Broadband Input Noise 3.5 nV/sqrtHz
Noise (TI product page) 4.6 nV/sqrtHz
Input Offset Voltage 500 uV (maximum)
THD+N 0.00015%
Quiescent Current per Amplifier 990 uA
Output Type Rail-to-Rail Output (RRO)
Unity-Gain Stable Yes
Technology CMOS
Package 8-WSON (DSG), 2x2 mm
Mounting Type Surface Mount
RoHS Status Compliant

OPA2375IDSGR Pin Configuration

DFN-8 Package Pinout Diagram DFN-8 2x2mm, P0.5mm, EP 0.9x1.7mm, JEDEC MO-229. 1 8 2 7 3 6 4 5 DFN-8
Pin 1 OUT A β€” Output of amplifier A
Pin 2 -IN A β€” Inverting input of amplifier A
Pin 3 +IN A β€” Non-inverting input of amplifier A
Pin 4 V- β€” Negative supply (or ground on single supply)
Pin 5 +IN B β€” Non-inverting input of amplifier B
Pin 6 -IN B β€” Inverting input of amplifier B
Pin 7 OUT B β€” Output of amplifier B
Pin 8 V+ β€” Positive supply

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for OPA2375IDSGR Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this component. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

OPA2375IDSGR is suitable for 6 applications: Sensor Signal Conditioning, Portable Medical Instrumentation, Industrial Data Acquisition, Active Filter Design, Battery-Powered Portable Devices, ADC Input Buffering.

🧩

Sensor Signal Conditioning

The OPA2375IDSGR fits precision sensor front-ends because its 3.5 nV/sqrtHz broadband noise and 500 uV maximum offset preserve small sensor signals that general-purpose CMOS amplifiers would corrupt. Its rail-to-rail output exploits the full 3.3 V or 5 V ADC range when amplifying bridge, thermistor, or pressure sensor outputs, while the dual channel allows one amplifier for gain and a second for filtering. Drawing only 990 uA per channel, it suits always-on battery nodes. Place the amplifier close to the sensor with a low-pass RC on the output to limit noise bandwidth before digitization.

πŸ’Š

Portable Medical Instrumentation

Portable diagnostic and monitoring devices benefit from the OPA2375IDSGR's combination of benchtop-class analog performance and 2 mA total quiescent drain. The 0.00015% THD+N supports clean amplification of biopotential and optical-sensor signals, while the 10 MHz gain bandwidth provides headroom for 20-40 kHz filtering without gain peaking. The rail-to-rail output drives 12-bit or higher ADCs on a 3.3 V single supply, simplifying battery-powered power trees. Use guarded PCB routing around the high-impedance inputs and bias the amplifier mid-supply for AC-coupled biopotential channels.

🏭

Industrial Data Acquisition

In industrial DAQ modules, the OPA2375IDSGR buffers and scales 4-20 mA receiver, thermocouple, and RTD signals ahead of precision converters. The 500 uV maximum offset limits DC error at low gains, and the rail-to-rail output prevents signal clipping near the rails after offset and gain tolerances accumulate. Its 10 MHz bandwidth settles quickly in multiplexed input channels, an advantage over slower 1 MHz micropower op amps. Anti-aliasing filters built with the second channel complete the signal chain before feeding the ADS131M08 delta-sigma ADC family.

πŸ”§

Active Filter Design

The OPA2375IDSGR is a strong choice for Sallen-Key and multiple-feedback active filters at audio and instrumentation frequencies. The 10 MHz gain bandwidth means a 100 kHz, gain-of-10 filter stage still retains ample loop gain, keeping the actual corner frequency close to the calculated value - a common failure mode with 1 MHz op amps. The dual channel lets one package implement a two-pole low-pass section, saving board space. Keep resistor values in the 1-10 kilo-ohm range so op-amp input noise dominates over resistor Johnson noise, and verify unity-gain stability in follower stages.

πŸ“±

Battery-Powered Portable Devices

Handheld meters, wearables, and IoT gateways use the OPA2375IDSGR where every microwatt counts. At 990 uA per channel (about 6.6 mW at 3.3 V for both channels), it delivers 10 MHz of bandwidth and 3.5 nV/sqrtHz noise - performance class usually reserved for amplifiers drawing several times more current. The 2x2 mm WSON (DSG) package occupies minimal PCB area, and the rail-to-rail output maintains signal swing as the battery discharges. For power cycling, the CMOS inputs tolerate power-down conditions well; still, add a series resistor if inputs can be back-driven by charged capacitors.

πŸ–₯️

ADC Input Buffering

Successive-approximation and delta-sigma ADCs need a driver that settles quickly and holds low noise; the OPA2375IDSGR addresses both with 10 MHz bandwidth and 3.5 nV/sqrtHz noise. Its rail-to-rail output reaches the ADC full-scale range without headroom loss, maximizing effective resolution on 3.3 V references. When driving switched-capacitor SAR inputs, add an RC charge-kickback filter (for example 100 ohms into 1 nF) between amplifier and ADC input, sized so the amplifier stays stable with the capacitive load presented during acquisition.

What are the key specifications of OPA2375IDSGR that engineers should know?
The Texas Instruments OPA2375IDSGR is a dual-channel CMOS op amp with a 10 MHz gain bandwidth, 3.5 nV/sqrtHz broadband noise, 500 uV maximum offset voltage, and 0.00015% THD+N. It has a rail-to-rail output, is unity-gain stable, and draws 990 uA per channel from supplies up to 5.5 V. It comes in an 8-pin WSON (DSG) 2x2 mm package. According to the TI OPAx375 datasheet, these specs suit precision portable and sensor applications.
What is the price of OPA2375IDSGR?
The OPA2375IDSGR is priced at approximately $0.89 per unit at quantity 1, dropping to about $0.50 at quantity 1000, as of 2026-09-03 based on distributor comparison data. Pricing varies by distributor and stock position; checking Octopart-linked distributors such as DigiKey and Mouser is recommended for live quotes before ordering production volumes.
Where can I buy OPA2375IDSGR online?
The OPA2375IDSGR can be purchased from authorized distributors including DigiKey (which lists it as shipping same day) and Mouser, and through parts aggregators such as Octopart that compare 2 distributor listings. XAIPART also offers this part with datasheets and drop-in alternative analysis. Always verify stock and date codes at checkout to ensure factory-fresh, traceable inventory for production use.
Where to download the OPA2375IDSGR datasheet PDF?
The OPA2375IDSGR datasheet PDF is available directly from the Texas Instruments product page at ti.com/product/OPA2375. The document, titled 'OPA375, OPA2375, OPA4375 500-uV (Maximum), 10-MHz, Low Broadband Noise, RRO Operational Amplifier,' covers all three family members and is approximately 57 pages per aggregator listings. Avoid third-party mirrors when possible, since TI hosts the latest revision with current specifications.
What is the difference between OPA2375 and OPA375 and OPA4375?
The OPA375 is the single-channel version, the OPA2375 is the dual-channel version, and the OPA4375 is the quad-channel version of the same amplifier design. All share identical core specifications: 10 MHz gain bandwidth, 3.5 nV/sqrtHz noise, 500 uV maximum offset, and rail-to-rail output. The single OPA375 draws 890 uA per channel while the dual OPA2375 and quad OPA4375 draw 990 uA per channel, according to the TI OPAx375 datasheet.
OPA2375 vs OPA2376 - which should I choose for a low-noise sensor amplifier?
Choose the OPA2375 when maximum bandwidth and lowest noise matter: it offers 10 MHz gain bandwidth and 3.5 nV/sqrtHz noise. The OPA2376 trades some of this performance for lower cost and a broader temperature option, and both are unity-gain stable CMOS rail-to-rail-output amplifiers sharing similar packages. For 5 V sensor front-ends needing fast settling to a 12-bit or higher ADC, the OPA2375 is the stronger choice; for cost-optimized consumer designs, the OPA2376 suffices.
Is OPA2375IDSGR suitable for battery-powered portable devices?
Yes, the OPA2375IDSGR is well suited to battery-powered designs. Each amplifier channel draws only 990 uA, the rail-to-rail output maximizes signal swing on a single 3.3 V or 5 V cell-derived rail, and the 2x2 mm WSON (DSG) package minimizes board area. The combination of low quiescent current with a 10 MHz bandwidth and 3.5 nV/sqrtHz noise is unusual, allowing portable instruments to achieve precision benchtop-class analog performance without sacrificing battery life.
What is the best drop-in replacement for OPA2375IDSGR?
The best drop-in replacement is the OPA2375IDDFR, which is the same dual OPA2375 die and specification set in the 8-pin WSON (DDF) package - verify the DDF land pattern matches your DSG footprint before release. Within the same family, the OPA2376AIDSGR is pin-compatible in the identical DSG package but with modestly different bandwidth and noise. Full pin-to-pin cross-brand equivalents in this exact 2x2 mm WSON package are scarce, so confirm footprints against the datasheet before qualifying any substitute.
What is the best cross-brand equivalent for the OPA2375IDSGR?
Cross-brand dual CMOS rail-to-rail op amps with similar specs include the Analog Devices AD8606 family, which is widely referenced as a pin-compatible alternative in standard SOIC/MSOP footprints, though the exact 2x2 mm WSON (DSG) mechanical variant must be verified against your land pattern. Because pin mapping in sub-2 mm WSON packages varies between manufacturers, always compare the datasheet pinout diagrams and key parameters - 10 MHz GBW, sub-500 uV offset - before qualifying a cross-brand substitute.
What is the pinout of OPA2375IDSGR in the 8-WSON package?
The OPA2375IDSGR uses the standard dual op amp 8-pin arrangement: pin 1 is OUT A, pin 2 is -IN A, pin 3 is +IN A, pin 4 is V- (negative supply or ground), pin 5 is +IN B, pin 6 is -IN B, pin 7 is OUT B, and pin 8 is V+ (positive supply). This conventional pin map means layouts designed for standard dual SOIC-8 op amps translate easily to the compact WSON (DSG) footprint.
Is the OPA2375IDSGR unity-gain stable?
Yes, the OPA2375IDSGR is unity-gain stable, meaning it does not require a minimum closed-loop gain to remain stable. It can be configured as a direct follower for buffering ADC inputs or sensor outputs without adding compensation components. According to the TI OPAx375 datasheet, the amplifier is also specified to drive reasonable capacitive loads; for heavier capacitive loads, an isolation resistor of tens of ohms in series with the output preserves stability at the cost of a small gain error.
Is OPA2375IDSGR RoHS compliant and lead-free?
Yes, the OPA2375IDSGR is RoHS compliant and produced in a lead-free surface-mount process, consistent with current Texas Instruments standard product policy. The 8-WSON (DSG) package is a green mold-compound, halogen-aware offering typical of TI's modern portfolio. For formal regulatory documentation such as RoHS certificates, REACH declarations, or material composition reports, download the official TI certificate of conformance from the product page at ti.com/product/OPA2375 rather than relying on distributor summaries.
What supply voltage does the OPA2375IDSGR need?
The OPA2375IDSGR is specified for operation from supply rails up to 5.5 V, per the TI product page headline 'Dual, 5.5-V, 10-MHz, low noise, RRO operational amplifier.' It is designed for single-supply operation at common rails such as 3.3 V and 5 V, with the rail-to-rail output swinging within millivolts of ground and the positive rail. For dual-supply operation, keep total supply within the maximum rating and confirm the exact minimum supply voltage in the TI datasheet electrical characteristics table.
How much power does the OPA2375IDSGR consume?
The OPA2375IDSGR consumes 990 uA per amplifier channel, so the dual package draws roughly 2 mA total quiescent current at nominal supply - about 6.6 mW at 3.3 V. According to the TI OPAx375 datasheet, the single OPA375 draws slightly less at 890 uA per channel. This low consumption, combined with the 10 MHz bandwidth, gives the part excellent bandwidth-per-milliamp efficiency, making it attractive for always-on battery-powered signal chains.
Is OPA2375IDSGR the same as OPA2375IDGKR?
Electrically yes, mechanically no. Both orderable part numbers contain the same dual OPA2375 amplifier die with identical 10 MHz bandwidth, 3.5 nV/sqrtHz noise, and 500 uV maximum offset. The difference is the package: IDSGR is the 8-pin WSON (DSG) 2x2 mm package, while IDGKR is the 8-pin VSSOP (DGK) package. They are not footprint-compatible, so a PCB designed for one cannot accept the other without redesign - they are same-family alternatives, not drop-in substitutes.
What is the lead time and stock situation for OPA2375IDSGR?
The OPA2375IDSGR is an active, current-generation Texas Instruments part, and DigiKey lists it as in stock with same-day shipping as of the September 2026 data snapshot, with additional inventory at Mouser. Standard lead time from authorized distributors is typically a few days for stocked reels and cut tape; factory orders may run several weeks for volume reels. Because the part is active rather than near-EOL, long-term supply risk is low, but dual-sourcing a WSON-8 alternative is still prudent for production programs.

Engineering reference data for OPA2375IDSGR β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the OPA2375IDSGR when a dual low-noise amplifier is needed on a single 3.3-5.5 V rail with tight board space: it uniquely combines 3.5 nV/sqrtHz noise, 10 MHz bandwidth, and 990 uA per channel in a 2x2 mm WSON package, making it ideal for precision sensor front-ends, active filters, and ADC drivers in portable or battery-powered systems. If cost matters more than the last few nV of noise or MHz of bandwidth, the pin-compatible OPA2376AIDSGR in the identical DSG footprint is the efficient alternative. If your PCB already uses the WSON DDF land pattern, the OPA2375IDDFR provides the same electrical performance. Avoid substituting the VSSOP-packaged OPA2375IDGKR onto a DSG footprint - the dies match but the packages do not.

Comparison with Alternatives

Parameter This Product OPA2375IDDFR OPA2376AIDSGR
Package 8-WSON (DSG) 2x2 mm 8-WSON (DDF) 2x2 mm 8-WSON (DSG) 2x2 mm - same
Brand Texas Instruments Texas Instruments Texas Instruments
Gain Bandwidth Product 10 MHz 10 MHz 5.5 MHz
Broadband Noise 3.5 nV/sqrtHz 3.5 nV/sqrtHz 7.5 nV/sqrtHz
Channels 2 2 2
Quiescent Current per Channel 990 uA 990 uA 760 uA
Output Type Rail-to-Rail Output Rail-to-Rail Output Rail-to-Rail Output
Unit Price (qty 1) $0.89 [DATA_NEEDED] [DATA_NEEDED]

Key Differentiators

  • Class-leading noise at micropower current (vs OPA2376AIDSGR)
  • Higher bandwidth headroom for active filters (vs OPA2376AIDSGR)
  • Identical electrical specs across package variants (vs OPA2375IDDFR)

Design Notes

The 8-WSON (DSG) package is only 2x2 mm with fine pitch leads and a small exposed die-attach pad on the underside. Follow the TI datasheet land pattern exactly and connect the thermal pad to a solid ground plane with several vias - this improves heat spreading, provides a low-impedance ground return, and stabilizes high-frequency performance. Reflow profile compliance with the datasheet soldering recommendation is important on such a small package; inspect for solder bridging on 0.5 mm pitch pads.

Decouple V+ (pin 8) with a 100 nF ceramic capacitor placed within 2 mm of the pin, plus a 1-2.2 uF bulk capacitor nearby. With a 10 MHz gain bandwidth, supply ringing can couple into the RRO output stage, so keep the ground return of the decoupling capacitor direct to the plane. When driving capacitive loads, add a series isolation resistor (approximately 20-50 ohm) to preserve unity-gain stability, trading a small gain error for guaranteed phase margin.

Do not confuse OPA2375IDSGR (WSON DSG) with OPA2375IDGKR (VSSOP DGK) - they are electrically identical but footprint-incompatible, a frequent BOM substitution error. Also note the datasheet headline noise figure (3.5 nV/sqrtHz broadband) differs from the TI product-page figure (4.6 nV/sqrtHz), which reflects a different measurement condition; use the datasheet electrical characteristics table for design margin. Finally, verify the minimum supply voltage and temperature range in the datasheet before finalizing a design since those values are not repeated in distributor summaries.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Not Applicable
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Compliant

RoHS compliance per TI standard product policy and DigiKey listing. For formal REACH/RoHS certificates, download TI's certificate of conformance from ti.com/product/OPA2375.

Data verified on: 2026-09-03 β€” data verified and curated by XAIPART's component engineering team

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Related Components & Terms

Texas Instruments OPA2375IDSGR OPA2375 OPA375 OPA4375 OPA2376AIDSGR OPA2375IDDFR operational amplifier op amp amplifier IC CMOS rail-to-rail output RRO gain bandwidth product THD+N 8-WSON (DSG) WSON package RoHS sensor signal conditioning data acquisition quiescent current unity-gain stable ADS131M08 TI.com
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