MEMS Pressure Sensor

MEMS Pressure Sensor | Piezoresistive (Gauge/Absolute/ΔP)

Winsen’s piezoresistive MEMS portfolio spans board-level sensors and rugged transmitters. Measure gauge, absolute and differential (ΔP) pressure—from barometric 300–1100 hPa and Pascals-level ΔP up to 25 bar process lines—with outputs tailored for embedded controllers or PLC/BMS.

OEM/ODM • Private labeling • Fast lead time

Overview & Working Principle

Our MEMS sensors use a diffused-silicon piezoresistive diaphragm forming a Wheatstone bridge. Pressure-induced strain changes bridge resistance and the ASIC provides a temperature-compensated, linear output. For liquids or harsh gases, the die is oil-filled and isolated behind an SS316L diaphragm (WPCK series).

Modes: Gauge (relative), Absolute (vacuum reference), Differential (High–Low).

Outputs: 0.5–4.5 V/I²C (cores) • 0–10 V/4–20 mA (transmitters).

Construction: stainless-steel isolation or direct gas path for low-range air/ΔP.

Pressure Sensor and Transmitter Comparison Overview

CategoryModelPower Supply / OutputDetection RangeAccuracy / NonlinearityPressure ReferenceOperating TemperatureShell MaterialRemarks
Diffused Silicon Pressure SensorWPAK701.5mA / mV-100kPa ~ 0 ~ 10kPa…10MPa≤±0.3%FSGauge / Absolute / Sealed Gauge-40℃ ~ 120℃High versatility, compact design
WPAK691.5mA / mV-100kPa ~ 0 ~ 10kPa…10MPa≤±0.3%FSGauge / Absolute / Sealed Gauge-40℃ ~ 120℃Similar to WPAK70
WPAK681.5mA / mV-100kPa ~ 0 ~ 10kPa…100MPa≤±0.3%FSGauge / Absolute / Sealed Gauge-40℃ ~ 120℃Extended range version
WPAK671.5mA / mV0 ~ 10kPa…2.5MPa≤±0.3%FSDifferential Pressure-40℃ ~ 120℃For differential applications
WPAK661.5mA or 10V / mV6MPa…60MPa≤±0.3%FSSealed Gauge-40℃ ~ 120℃Sealed design for higher ranges
WPAK651.5mA or 10V / mV-100kPa ~ 0 ~ 10kPa…16MPa≤±0.3%FSGauge / Absolute / Sealed Gauge-40℃ ~ 120℃General-purpose sensor
WPAK641.5mA or 10V / mV-100kPa ~ 0 ~ 10kPa…25MPa≤±0.3%FSGauge / Absolute / Sealed Gauge-40℃ ~ 120℃Moderate range coverage
WPAK63J1.5mA / mV-100kPa ~ 0 ~ 10kPa…100MPa≤±0.3%FSGauge / Absolute / Sealed Gauge-40℃ ~ 120℃J-type version for special mounting
WPAK631.5mA or 10V / mV-100kPa ~ 0 ~ 10kPa…100MPa≤±0.3%FSGauge / Absolute / Sealed Gauge-40℃ ~ 120℃Versatile with wide range
Ceramic Pressure SensorWPAH012–20V / mV0 ~ 200kPa…40MPa≤±0.3%FS-40℃ ~ 125℃High chemical resistance
Plastic Sealed Pressure SensorWPAS12Digital and analog15–115kPa-40℃ ~ 125℃Cost-effective, compact
WPAS02Digital and analog10kPa ~ 100kPa-20℃ ~ 80℃Basic sensor for air/gas
WPAS01Digital and analog10kPa ~ 100kPa-40℃ ~ 125℃Robust high-temp tolerance
Diffused Silicon Pressure TransmitterWPCK814–20mA, RS4850 ~ 1m…200mH₂O±0.5%FS / ±1%FSGauge PressureStainless steelFor deep-level and tank level measurements
WPCK624–20mA (Optional)0 ~ 35kPa…25MPa±0.5%FSGauge / Absolute / Sealed GaugeStainless steelWidely compatible, thread options
WPCK084–20mA, RS4850 ~ 200mH₂O±0.5%FSGauge PressureStainless steelExplosion-proof version
WPCK074–20mA, 0.5–4.5V, 0–5V, 1–5V, 0–10V, 1–10V-100kPa ~ 0 ~ 10kPa…100MPa±0.5%FSGauge / Absolute / Sealed GaugeStainless steelFull-range output types
WPCK050.5–4.5V, 0–5V, 1–5V, 0–10V, 1–10V-100kPa ~ 0 ~ 10kPa…100MPa±0.5%FSGauge / Absolute / Sealed GaugeStainless steelVoltage output options
WPCK03I²C, 4–20mA, 0.5–4.5V and more-100kPa ~ 0 ~ 10kPa…100MPa±0.2%FS, ±0.5%FS (custom)Gauge / Absolute / Sealed GaugeStainless steelFlexible signal types, high accuracy
Ceramic Pressure TransmitterWPCH040.5–4.5V (Customizable)0.2MPa…40MPa0.1%FS (Default)Stainless steelHigh precision ceramic core
WPCH014–20mA, 0/1–5/10V, 0.5–4.5V0.2–5MPa0.1% ~ 5.0%FS (Default 2.0%)Stainless steelCustomizable, versatile outputs
WPBH01Proportional voltage (0.5–4.5V)2–400 bar (Customizable)0.5%, 1%, 2% (Default), 3%Stainless steelBroad pressure range
Glass Micro-Fusing TransmitterWPCK89Digital and analog0 ~ 100 / 150 / 250 / 500 psig±1%FSStainless steelExtremely robust and thermally stable

Selection Guide

Use CaseMode & RangeRecommended ModelOutputNotes
Weather/altitude referenceAbsolute 300–1100 hPaWPAS010.5–4.5 VCalibrate at site altitude; average samples for stability.
Cleanroom & HVAC duct staticΔP ±25…±1000 PaWPAK670–10 V / 4–20 mA / I²CEqual-length tubing; enable averaging 0.5–3 s.
Pneumatics & compressorsGauge 0–10/16 barWPCK07 / WPCK054–20 mA / 0–10 VAdd snubber for pulsation; shielded cable on long runs.
Water/RO skids & building loopsGauge 0–6/10/16 barWPCK620–10 V / 4–20 mAPanel-friendly; select seals for temperature and medium.
OEM smart gauge/headGauge 0–10/16 bar (core)WPAK660.5–4.5 V (board)Add your ADC/display; private labeling available.

Threads: G1/4, 1/4-NPT, M14×1.5; Electrical: M12, DIN, Deutsch/Packard, pigtail (per model).

Applications & Industries

HVAC & Cleanrooms

Duct static, room pressurization, filter status and VAV control using ΔP cores/transducers.

Pneumatics & Compressors

Manifolds, regulator monitoring, leak and energy programs in plant air systems.

Water & Process Lines

RO/UF skids, building water loops, boiler auxiliaries with isolated SS316L transmitters.

Instruments & Test Benches

Fast response channels for labs and OEM devices; ratiometric or 0–10 V outputs.

Weather & Altitude

Barometric reference in stations, drones and environmental compensation channels.

OEM Smart Gauges

Private-label gauge heads built on WPAK66/64 with your display and enclosure.

Why Global Clients Choose Us?

The company consistently adheres to the quality policy of “Fine Craftsmanship, Scientific Innovation, Pursuit of Excellence, and Value-Added Service.” By formulating production process control plans and work instructions, it has established a standardized, accountable, and regulated process management system. Additionally, the company has independently developed an MES production management system, enabling comprehensive and visual management across the entire workflow.

30+ YEARS OF EXPERIENCE

R&D, manufacture and sales of sensors and sensing solutions.

QUALITY GUARANTEE CONTINOUS IMPROVEMENT

Complete and rigid process flow control, coupled with significant improvements.

INTERNATIONAL MARKET

Deliver sensing products to more than 100 countries and regions.

STABLE SUPPLY CHAIN RELIABLE PRODUCTION

Core components not subject to constraints, advanced equipments for manufaturing and test.

R&D STRENGTH TECHNOLOGY INNOVATION

200+ patents, 180+ R&D team members, self-built labs for continous innovation.

ONE-STOP SERVICE

Professional consultation, fast delivery, 24 hours after-sales support.

Leading the Industry, Innovative & Controllable Technology

With robust R&D capabilities, we maintain sustained input in R&D and unwavering commitment to technological innovation. This not only ensures that we remain at the forefront of industry but also drives continuous innovation, leading the future trend of the sensing industry.

10% R&D Input

The average annual R&D input exceeds 10% of the annual revenue.

5+ R&D Layout

With Zhengzhou headquarters as the core, a nationwide R&D and innovation system is being established, encompassing cities of Shanghai, Wuhan, Shenzhen, and Taiyuan.

180+ R&D Team

There are over 180 R&D personnel, including more than 10 with doctoral degrees and over 50 with master's degrees, who have an average of more than 8 years of experience in sensor development.

20+ Experiment Types

Gas-related, Climatic Environment, EMC, Electrical Performance, Mechanical Performance, etc.

10+ Advanced Laboratories

CNAS Laboratory, MEMS Laboratory, UL Laboratory, Nanocomposite Materials Laboratory, etc.

400+ sets Leading R&D Equipment

Cube Storage, Die Bonder, Lithography Machine, Coating Machine, SMT Placement Machine, Automatic Probe Station, etc.

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    Integration & Installation

    Board-level (0.5–4.5 V/I²C): Use a stable 5 V supply, short traces to ADC, and good ground. Average samples (e.g., moving average) to reduce vibration noise.

    Transmitters (0–10 V / 4–20 mA): 12–36 V supply; shielded cable; ground at one end; 4–20 mA preferred for long/noisy runs. Add a snubber for pulsation.

    • Vent gauge sensors correctly; avoid trapped pressure.
    • For ΔP, keep tubes equal length; add hydrophobic filters/drip loops.
    • Confirm overload/burst vs. transients (water hammer, compressor ripple).

    Ordering & Bulk Purchasing

    How to Specify

    1. Mode & range (Gauge/Absolute/ΔP; units & span)
    2. Output (0.5–4.5 V, I²C, 0–10 V, 4–20 mA)
    3. Medium & temperature (air, water, process)
    4. Process connection (G1/4, 1/4-NPT, M14×1.5, barbed, manifold)
    5. Electrical interface (M12, DIN, Deutsch/Packard, pigtail, board)
    6. Docs required (test report, calibration certificate, labeling)

    Program Terms

    • Samples for validation
    • Tiered pricing for volume schedules
    • Private labeling & custom packaging
    • Rolling forecast & safety stock options

    Differential Pressure Sensor vs Transducer vs Transmitter

    DeviceOutputTypical UseProsConsiderations
    ΔP Sensor (board/compact)Ratiometric / I²C / SPIEmbedded devices, instrumentsSmall, low-power, cost-effectiveRequires host electronics and enclosure
    ΔP Transducer0–10 V / 4–20 mAPLC/DAQ measurementSimple wiring, long cable runsExternal display/relays not included
    ΔP TransmitterConditioned + enclosure (often display/relays)Field installation, panel mountRugged, installer-friendlyLargest size and highest cost

    Not sure which to choose? Share your controller model and mounting location—we’ll recommend the right package.

    Frequently Asked Questions (FAQ)

    What is a MEMS (piezoresistive) pressure sensor?

    A silicon diaphragm with diffused resistors forms a Wheatstone bridge. Pressure changes resistance; the ASIC outputs a temperature-compensated, linear signal.

    When should I choose gauge vs absolute vs differential?

    Gauge for lines/tanks, absolute for barometric/altitude/reference, differential for ΔP across ducts, filters and flow elements.

    Can MEMS measure liquids safely?

    Yes—use isolated, oil-filled transmitters (WPCK series) that protect the die behind an SS316L diaphragm.

    Which output suits my controller?

    0.5–4.5 V or I²C for embedded devices; 0–10 V/4–20 mA for PLC/BMS. Choose 4–20 mA for long/noisy runs.

    How to deal with pulsation and surges?

    Add a snubber/restrictor, mount away from hammer sources, and verify overload/burst ratings vs. peak spikes.

    Do you provide calibration documentation?

    Yes—test reports are standard; calibration certificates and serialized labels are available on request.

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