LPV7215 Micropower CMOS Comparator

Texas Instruments Signal_Chain — specifications, applications, sourcing support and RFQ.

LPV7215 Micropower CMOS Comparator

RFQ Available Sourcing Support Alternative Matching RoHS
Part Number
LPV7215
Manufacturer
Texas Instruments
Package
5-pin SOT-23 (DBV) 2.90 mm x 1.60 mm; 5-pin SC70 (DCK) 2.00 mm x 1.25 mm
Category
Signal Chain
Product Type
Operational Amplifier

Quick Sourcing Note

LPV7215 from Texas Instruments is a Signal_Chain micropower CMOS comparator with rail-to-rail CMOS inputs and a push-pull output. It operates from a 1.8 to 5.5 V supply over a -40 to 125 °C free-air temperature range. Package options include 5-pin SOT-23 (DBV) at 2.90 mm x 1.60 mm and 5-pin SC70 (DCK) at 2.00 mm x 1.25 mm. Key parameters include 580 nA typical supply current at 1.8 V, ±0.3 mV typical input offset voltage at VCM=0 V, 120 dB voltage gain, and microsecond propagation delay at 100 mV overdrive.

Specifications

TypeDescription
Part NumberLPV7215
ManufacturerTexas Instruments
Product TypeOperational Amplifier
CategorySignal Chain
Package / Case5-pin SOT-23 (DBV) 2.90 mm x 1.60 mm; 5-pin SC70 (DCK) 2.00 mm x 1.25 mm
Supply Voltage Range1.8 to 5.5 V; recommended operating conditions, V+ - V-
Operating Temperature Range-40 to 125 °C; recommended operating free-air temperature range
Typical Supply Current580 nA; V+=1.8 V, VCM=0.3 V, TA=25°C
Supply Current580 typ, 750 max nA; V+=1.8 V, VCM=0.3 V, TA=25°C
Supply Current1050 max nA; V+=1.8 V, VCM=0.3 V, temperature extremes
Supply Current790 typ, 980 max nA; V+=1.8 V, VCM=1.5 V, TA=25°C
Supply Current1300 max nA; V+=1.8 V, VCM=1.5 V, temperature extremes
Input Offset Voltage±0.3 typ, ±6 max mV; V+=1.8 V, VCM=0 V, TA=25°C
Input Offset Voltage±0.4 typ, ±5 max mV; V+=1.8 V, VCM=1.8 V, TA=25°C
Input Offset Average Drift±1 µV/°C; V+=1.8 V, determined over temperature extremes
Input Bias Current-40 fA; V+=1.8 V, VCM=1.6 V
Input Offset Current10 fA; V+=1.8 V
Common-Mode Rejection Ratio66 min, 88 typ dB; V+=1.8 V, VCM stepped from 0 V to 0.7 V, TA=25°C
Common-Mode Rejection Ratio68 min, 87 typ dB; V+=1.8 V, VCM stepped from 1.2 V to 1.8 V, TA=25°C
Common-Mode Rejection Ratio44 min, 77 typ dB; V+=1.8 V, VCM stepped from 0 V to 1.8 V, TA=25°C
Power Supply Rejection Ratio66 min, 82 typ dB; V+ stepped from 1.8 V to 5.5 V, VCM=0 V, TA=25°C
Input Common-Mode Voltage Range-0.1 to 1.9 V; V+=1.8 V, CMRR >= 40 dB, temperature extremes
Voltage Gain120 dB; V+=1.8 V
Output Swing High1.63 min, 1.69 typ V; V+=1.8 V, IO=500 µA, TA=25°C
Output Swing Low88 typ, 180 max mV; V+=1.8 V, IO=-500 µA, TA=25°C
Output Current Source1.75 min, 2.26 typ mA; V+=1.8 V, VO=V+/2, TA=25°C
Output Current Sink2.35 min, 3.1 typ mA; V+=1.8 V, VO=V+/2, TA=25°C
Propagation Delay High-to-Low4.5 typ, 6.5 max µs; V+=1.8 V, overdrive=100 mV, TA=25°C
Propagation Delay Low-to-High6.6 typ, 9 max µs; V+=1.8 V, overdrive=100 mV, TA=25°C
Rise Time75 ns; V+=1.8 V, overdrive=100 mV, CL=30 pF, RL=1 MΩ
Fall Time65 ns; V+=1.8 V, overdrive=100 mV, CL=30 pF, RL=1 MΩ
Supply Current605 typ, 780 max nA; V+=2.7 V, VCM=0.3 V, TA=25°C
Supply Current815 typ, 1010 max nA; V+=2.7 V, VCM=2.4 V, TA=25°C
Input Offset Voltage±0.3 typ, ±6 max mV; V+=2.7 V, VCM=0 V, TA=25°C
Input Common-Mode Voltage Range-0.1 to 2.8 V; V+=2.7 V, CMRR >= 40 dB, temperature extremes
Output Current Source4.5 min, 5.7 typ mA; V+=2.7 V, VO=V+/2, TA=25°C
Output Current Sink5.6 min, 7.5 typ mA; V+=2.7 V, VO=V+/2, TA=25°C
Propagation Delay High-to-Low5.8 typ, 8.5 max µs; V+=2.7 V, overdrive=100 mV, TA=25°C
Propagation Delay Low-to-High7.5 typ, 10 max µs; V+=2.7 V, overdrive=100 mV, TA=25°C
Supply Current612 typ, 790 max nA; V+=5 V, VCM=0.3 V, TA=25°C
Supply Current825 typ, 1030 max nA; V+=5 V, VCM=4.7 V, TA=25°C
Absolute Maximum Differential Input Voltage-2.5 to 2.5 V; absolute maximum ratings
Absolute Maximum Supply Voltage6 V; absolute maximum ratings, V+ - V-
Absolute Maximum Input and Output Pin VoltageV- - 0.3 V to V+ + 0.3 V; absolute maximum ratings
Junction Temperature150 °C; absolute maximum rating
Storage Temperature Range-65 to 150 °C; absolute maximum ratings
ESD Rating HBM±2000 V; human-body model, MIL-STD-883 Method 3015.7
ESD Rating MM±200 V; machine model, JESD22-A115-A
Thermal Resistance Junction-to-Ambient234 °C/W; DBV SOT-23, 5 pins
Thermal Resistance Junction-to-Ambient456 °C/W; DCK SC70, 5 pins
Output TypePush-pull output; device description/features
Input TypeRail-to-rail CMOS input; device description/features
Datasheet Statusrequest_only

Product Overview

The LPV7215 is a Texas Instruments micropower CMOS comparator in the Signal_Chain category. Its recommended supply range is 1.8 to 5.5 V, with operation specified across a -40 to 125 °C free-air temperature range. The device uses rail-to-rail CMOS inputs and a push-pull output, supporting comparator functions where low supply current and full-rail input coverage are important design parameters.

At V+=1.8 V and TA=25°C, supply current is specified as 580 nA typical and 750 nA maximum at VCM=0.3 V, with 790 nA typical at VCM=1.5 V. Input offset voltage is specified at ±0.3 mV typical, ±6 mV maximum at VCM=0 V, and ±0.4 mV typical, ±5 mV maximum at VCM=1.8 V. Propagation delay is 4.5 µs typical high-to-low and 6.6 µs typical low-to-high at 100 mV overdrive.

Package choices are 5-pin SOT-23 (DBV) and 5-pin SC70 (DCK). Thermal resistance junction-to-ambient is 234 °C/W for DBV and 456 °C/W for DCK.

Key Features

  • 1.8 to 5.5 V recommended supply range
  • -40 to 125 °C operating temperature range
  • 580 nA typical supply current at 1.8 V
  • Rail-to-rail CMOS input structure
  • Push-pull comparator output
  • ±0.3 mV typical input offset at VCM=0 V
  • 120 dB voltage gain at 1.8 V
  • 4.5 µs typical high-to-low propagation delay
  • 75 ns rise time with 30 pF load
  • SOT-23 and SC70 five-pin package options

Typical Applications

  • Low-power threshold detection
  • Rail-to-rail voltage comparison
  • Battery-supply signal monitoring
  • Microsecond comparator switching
  • Compact five-pin signal-chain designs
  • CMOS-input sensing circuits

Procurement Notes

When requesting a quote for LPV7215, buyers should confirm the manufacturer, package or case, required quantity, target date code, compliance documents, packing method, destination country and expected delivery schedule.

If alternatives are acceptable, buyers should share the approved vendor list, required electrical or optical limits, package constraints and qualification requirements. Any alternative part should be reviewed by the buyer's engineering team before production use.

For analog and signal-chain sourcing, supply voltage, bandwidth, accuracy, noise level, package, temperature grade, input/output configuration and qualification requirements should be verified before approval.

FAQ

What supply voltage range does the LPV7215 support?

The LPV7215 recommended operating supply range is 1.8 to 5.5 V, specified as V+ minus V-. The absolute maximum supply voltage rating is 6 V.

What packages are specified for the LPV7215?

The extracted package data lists a 5-pin SOT-23 DBV package measuring 2.90 mm x 1.60 mm and a 5-pin SC70 DCK package measuring 2.00 mm x 1.25 mm.

What is the LPV7215 supply current at 1.8 V?

At V+=1.8 V, VCM=0.3 V, and TA=25°C, supply current is specified as 580 nA typical and 750 nA maximum. At temperature extremes under the same common-mode condition, the maximum is 1050 nA.

Does the LPV7215 have rail-to-rail inputs?

Yes. The device description identifies the LPV7215 input type as rail-to-rail CMOS input. At V+=1.8 V, the input common-mode voltage range is specified from -0.1 to 1.9 V with CMRR at least 40 dB.

Technical Review & Sourcing Note

Prepared by LDeepAI Component Sourcing Team. Reviewed for RFQ, documentation and alternative sourcing use. Last updated: July 25, 2026.

This page is based on manufacturer datasheet information and LDeepAI sourcing review. Specifications should be verified against the official manufacturer datasheet before final procurement or design approval. Final electrical, optical and reliability approval should be confirmed by the buyer's engineering team.

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