LTC6102CMS8#TRPBF Analog Devices Integrated Circuit (Small Outline Packages) In Stock

LTC6102CMS8#TRPBF is a precision single-channel current sense amplifier from Analog Devices rated to 60 V with a 50 µV maximum input offset voltage and 0.02 µA maximum bias current in an 8-pin MSOP package. It is automotive-qualified and suitable for high-side current monitoring over a wide voltage range. Available from stock worldwide with same-day shipping options.

ACTIVEIntegrated CircuitVerified Jun 2026
Package / Visual Reference
LTC6102CMS8#TRPBFSmall Outline Packages
Quick Facts
Manufacturer
Analog Devices
Package
Small Outline Packages
Pin Count
8
Lifecycle
ACTIVE
Category
Integrated Circuit
Price
From $2.4200(MOQ 1)
Temp Range
?°C to 70.0°C
RoHS
Compliant
Lead Time
3–7 business days
Shipping
DHL Express · Worldwide

Key Features

  • 60 V rated input for high-side current sensing on 12 V, 24 V, and 48 V automotive and industrial power rails
  • Ultra-low 50 µV maximum input offset voltage enabling accurate milliamp-level current measurement without zero-offset errors
  • 0.02 µA maximum bias current minimizing measurement error when using high-value external sense resistors in precision designs
  • Compact 8-pin MSOP package with voltage-feedback architecture and integrated frequency compensation for stable current monitoring

Applications

The LTC6102CMS8#TRPBF is designed for precision high-side current monitoring in automotive battery management systems, 48 V mild hybrid vehicle power rails, and industrial motor drive controllers where accurate current sensing over a 60 V common-mode range is critical. Its 50 µV offset voltage ensures milliamp-level measurement accuracy when used with low-value shunt resistors in the 1 milliohm to 10 milliohm range. The device is also used in telecom power supplies, server power monitors, and industrial UPS systems requiring accurate current feedback for overcurrent protection and efficiency measurement.

Specifications

Pbfree CodeNo
Manufacturer Package Code05-08-1660
YTEOL10
Amplifier TypeOPERATIONAL AMPLIFIER
ArchitectureVOLTAGE-FEEDBACK
Average Bias Current-Max (IIB)0.02 µA
Bias Current-Max (IIB) @25C0.02 µA
Frequency CompensationYES
Input Offset Voltage-Max50 µV
JESD-30 CodeS-PDSO-G8
JESD-609 Codee3
Low-BiasNO
Low-OffsetYES
MicropowerNO
Number of Functions1
Package Body MaterialPLASTIC/EPOXY
Package Equivalence CodeTSSOP8,.11
Package ShapeSQUARE
Package StyleSMALL OUTLINE, THIN PROFILE, SHRINK PITCH
Packing MethodTR
Peak Reflow Temperature (Cel)260
PowerNO
Programmable PowerNO
Supply Current-Max0.675mA
Supply Voltage Limit-Max70V
Supply Voltage-Nom (Vsup)12V
Surface MountYES
TechnologyCMOS
Terminal FinishMatte Tin (Sn) - annealed
Terminal FormGULL WING
Terminal Pitch0.65mm
Terminal PositionDUAL
Time@Peak Reflow Temperature-Max (s)30
Unity Gain BW-Nom200
WidebandNO
PackageSmall Outline Packages

Compliance & Regulatory

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

Datasheet

LTC6102CMS8#TRPBF Datasheet Download

Official datasheet from Analog Devices

Alternate & Equivalent Parts

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

Frequently Asked Questions

What is the common-mode voltage range of the LTC6102CMS8#TRPBF and which supply rails does it support?

The LTC6102CMS8#TRPBF supports a common-mode input voltage up to 60 V, allowing it to measure high-side current on 12 V automotive rails, 24 V industrial power buses, and 48 V mild hybrid vehicle systems without requiring a separate high-voltage front-end circuit. This 60 V range covers the vast majority of automotive and industrial power supply architectures in a single current sense amplifier.

How does the 50 µV input offset voltage of the LTC6102CMS8#TRPBF affect current measurement accuracy?

The LTC6102CMS8#TRPBF specifies a maximum input offset voltage of 50 µV, which translates directly to a measurement error of 50 mA when using a 1 milliohm shunt resistor. For designs using a 10 milliohm shunt resistor, the offset contributes only 5 mA of error, enabling high-accuracy current sensing below 1% full-scale error in the 0 A to 5 A measurement range.

Why is the 0.02 µA bias current specification of the LTC6102CMS8#TRPBF important for precision current sensing designs?

The LTC6102CMS8#TRPBF has a maximum bias current of 0.02 µA, which causes negligible voltage error across the external gain-setting resistors even when high-resistance values in the 100 kilohm range are used to set the amplifier gain. This low bias current allows designers to use larger resistors to achieve higher output voltage gains without introducing significant gain error or output offset from bias current flow.

For which automotive and industrial applications is the LTC6102CMS8#TRPBF best suited?

The LTC6102CMS8#TRPBF is best suited for automotive battery current monitoring, 48 V mild hybrid power distribution unit current sensing, industrial servo drive current feedback, and telecom rectifier output current measurement where a 60 V common-mode range and 50 µV offset precision are simultaneously required. Its automotive qualification and 8-pin MSOP package make it a compact and reliable choice for high-reliability current monitoring in under-hood and industrial enclosure environments.

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About Analog Devices

Analog Devices (ADI) is a global leader in high-performance analog, mixed-signal, and digital signal processing integrated circuits used in virtually all types of electronic equipment.

AvailabilityIn Stock
Reference Price (USD)
From $2.4200
Buy from 1pc · Factory-direct pricing
Qty.Unit PriceExt. Price
1+$5.6100$5.61
19+$3.2100$60.99
500+$2.6250$1312.50
1000+$2.4200$2420.00
pcs
Unit price: $5.6100 · Total: $5.61

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

The anti-counterfeit verification gave us confidence we'd never had with other China suppliers.

RP
Rajesh Patel
Procurement Manager, VoltEdge Energy, India