TLV2625IDRG4 Texas Instruments Integrated Circuit (Small Outline Packages) In Stock

Texas Instruments TLV2625IDRG4 is a quad-channel low-voltage rail-to-rail output operational amplifier with 11 MHz bandwidth and 800 µA per channel supply current. It features ultra-low bias current of 0.00005 µA and 78 dB minimum CMRR. Available in small outline package for portable and battery-powered applications.

OBSOLETEIntegrated CircuitVerified Jun 2026
Package / Visual Reference
TLV2625IDRG4Small Outline Packages
Quick Facts
Manufacturer
Texas Instruments
Package
Small Outline Packages
Pin Count
16
Lifecycle
OBSOLETE
Category
Integrated Circuit
Temp Range
-40.0°C to 125.0°C
RoHS
Compliant
Lead Time
3–7 business days
Shipping
DHL Express · Worldwide

What are the key features of TLV2625IDRG4?

  • Quad-channel rail-to-rail output op-amp with 11 MHz gain-bandwidth product
  • Ultra-low bias current of 0.00005 µA at 25°C for high-impedance sensor inputs
  • Low 800 µA per channel quiescent current for battery-powered efficiency
  • 99 dB typical CMRR with RoHS-compliant Pb-free construction

What is TLV2625IDRG4 used for?

The TLV2625IDRG4 is ideal for portable instrumentation, handheld medical devices, and battery-powered sensor systems where low supply current and wide bandwidth must coexist. Its quad-channel integration enables multichannel signal conditioning such as active filtering and amplification of physiological or environmental sensor outputs within a single compact package. The rail-to-rail output maximizes dynamic range when operating from low single-supply voltages common in 3.3 V or 5 V embedded systems.

What are the specifications of TLV2625IDRG4?

Pbfree CodeYes
YTEOL0
Amplifier TypeOPERATIONAL AMPLIFIER
ArchitectureVOLTAGE-FEEDBACK
Average Bias Current-Max (IIB)0.0002 µA
Bias Current-Max (IIB) @25C0.00005 µA
Common-mode Reject Ratio-Min78dB
Common-mode Reject Ratio-Nom99dB
Frequency CompensationYES
Input Offset Voltage-Max4500 µV
JESD-30 CodeR-PDSO-G16
JESD-609 Codee4
Low-BiasYES
Low-OffsetNO
MicropowerNO
Number of Functions4
Package Body MaterialPLASTIC/EPOXY
Package Equivalence CodeSOP16,.25
Package ShapeRECTANGULAR
Package StyleSMALL OUTLINE
Packing MethodTR
Peak Reflow Temperature (Cel)260
PowerNO
Programmable PowerNO
Qualification StatusNot Qualified
Slew Rate-Min2.7V/us
Slew Rate-Nom7V/us
Supply Current-Max1.3mA
Supply Voltage Limit-Max6V
Supply Voltage-Nom (Vsup)5V
Surface MountYES
TechnologyCMOS
Temperature GradeAUTOMOTIVE
Terminal FinishNICKEL PALLADIUM GOLD
Terminal FormGULL WING
Terminal Pitch1.27mm
Terminal PositionDUAL
Time@Peak Reflow Temperature-Max (s)30
Unity Gain BW-Nom11000
Voltage Gain-Min12500
WidebandNO
PackageSmall Outline Packages

Compliance & Regulatory

RoHS StatusCompliant
Lead-FreeYes (Pb-Free)
Moisture Sensitivity LevelMSL 1
ECCNEAR99
HTS Code8542.33.00.01

Where can I find the TLV2625IDRG4 datasheet?

TLV2625IDRG4 Datasheet Download

Official datasheet from Texas Instruments

What are equivalent replacements for TLV2625IDRG4?

No known alternates. Submit an RFQ and our team can suggest alternatives.

Frequently Asked Questions

How does the TLV2625IDRG4 achieve 11 MHz bandwidth at only 800 µA per channel?

The TLV2625IDRG4 uses a voltage-feedback architecture optimized for low quiescent current, delivering 11 MHz gain-bandwidth product while consuming just 800 µA per channel. This efficiency makes it suitable for audio signal processing, active anti-aliasing filters, and portable ECG front-ends where battery life is critical. Four independent amplifiers in one package further reduce total system power compared to using multiple single or dual devices.

What makes the ultra-low bias current of TLV2625IDRG4 advantageous for sensor interfaces?

With a bias current of only 0.00005 µA at 25°C and a maximum of 0.0002 µA, the TLV2625IDRG4 introduces negligible error when interfacing with high-impedance sensors like pH electrodes, photodiodes, or 10 MΩ bridge networks. A 0.0002 µA bias current through a 1 MΩ source impedance creates less than 0.2 mV offset error, preserving the 4500 µV maximum input offset limit as the dominant accuracy constraint.

How does rail-to-rail output help in 3.3 V single-supply designs using the TLV2625IDRG4?

Rail-to-rail output allows the TLV2625IDRG4 output swing to reach within millivolts of both supply rails rather than stopping 1 V to 2 V short as in conventional amplifiers. In a 3.3 V system, this recovers up to 60% more usable output range compared to non-RRO designs, improving ADC input utilization and signal-to-noise ratio for 12-bit or 16-bit converters sampling sensor signals at the full 3.3 V span.

When should a designer choose TLV2625IDRG4 over a precision op-amp with lower offset voltage?

Choose the TLV2625IDRG4 when bandwidth and power efficiency are the primary constraints rather than DC precision. Its 11 MHz bandwidth and 800 µA per-channel current suit audio, video, and wideband sensor applications where 4500 µV maximum offset is acceptable. For DC or near-DC precision requirements below 100 µV offset in instrumentation or strain gauge circuits, a dedicated precision amplifier with trimmed offset would be more appropriate despite higher current consumption.

Related Guides

Why Buy from FindMyChip

Authorized Source
Verified supply chain with full traceability & inspection
Competitive Pricing
Factory-direct from China distributors, low MOQ
Fast Shipping
DHL Express 3–5 days · FedEx/UPS 5–7 days worldwide
Quality Guaranteed
30-day replacement for defective parts, no questions asked

About Texas Instruments

Texas Instruments (TI) is a global semiconductor company headquartered in Dallas, Texas. TI designs and manufactures analog and embedded processing chips used in industrial, automotive, consumer, communications, and enterprise systems.

AvailabilityIn Stock
Reference Price (USD)
Contact for Price
Buy from 1pc · Factory-direct pricing
pcs

In Stock · 24h Response · Worldwide Shipping

Lead Time3-7 business days
MOQFrom 1 piece
ShippingDHL / FedEx / UPS
OriginChina (Authorized)

Response within 24 hours · Worldwide shipping

Response time is incredible — usually under 4 hours. They understand that production lines can't wait.

JW
James Wright
Supply Chain Director, CircuitPro Ltd, UK