Pressure Sensors, Transducers

Image Part Number Description / PDF Quantity Rfq
DP3-21

DP3-21

Panasonic

SENSOR PRESSURE 100KPA GAUGE

2

DP-112A-E-P-J

DP-112A-E-P-J

Panasonic

SENSOR PRESSURE -0.1 - 1MPA

27

DPH-101-R

DPH-101-R

Panasonic

SENSOR PRESSURE 100KPA GAUGE

6

DP-102Z

DP-102Z

Panasonic

SENSOR PRESSURE -0.1 - 1MPA

2

DP-102A-N-P

DP-102A-N-P

Panasonic

SENSOR DGTL PNP -0.100 TO +1 MPA

64

ADP42913

ADP42913

Panasonic

SENSOR PRESSURE 980.7KPA STD DIP

100

DP-101ZA

DP-101ZA

Panasonic

SENSOR PRESSURE 100KPA

19

ADP1271

ADP1271

Panasonic

SENSOR PRESSURE 490.3KPA STD DIP

6

DP-102

DP-102

Panasonic

SENSOR PRESSURE -0.1 - 1MPA

54

DP-101A-E-P

DP-101A-E-P

Panasonic

SENSOR PRESSURE 100KPA

7

DP-101-E-P-J

DP-101-E-P-J

Panasonic

SENSOR PRESSURE 100KPA

6

DPH-L133

DPH-L133

Panasonic

SENSOR HEAD 0 TO 3.5MPA

4

DPH-101-M3

DPH-101-M3

Panasonic

SENSOR PRESSURE 100KPA GAUGE

8

DP-102Z-P

DP-102Z-P

Panasonic

SENSOR PRESSURE -0.1 - 1MPA

6

DP-101A-N-J

DP-101A-N-J

Panasonic

SENSOR PRESSURE 100KPA

4

DP-101

DP-101

Panasonic

SENSOR PRESSURE 100KPA

21

DP-102-M

DP-102-M

Panasonic

SENSOR PRESSURE -0.1 - 1MPA

11

DPH-101-C5

DPH-101-C5

Panasonic

SENSOR PRESSURE 100KPA GAUGE

2

ADP5270

ADP5270

Panasonic

SENSOR PRESSURE 1000KPA SMT

6

ADP42310

ADP42310

Panasonic

49.0KPA, TERMINAL DIRECTION OPPO

100

Pressure Sensors, Transducers

1. Overview

Pressure sensors and transducers are devices that convert mechanical pressure signals into electrical outputs. They serve as critical components in monitoring and controlling pressure in various systems. Modern industrial automation, medical diagnostics, and automotive safety systems rely on their precise measurements to ensure operational efficiency and safety.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Strain GaugeHigh accuracy, stable output, requires bridge circuitIndustrial machinery, load cells
PiezoresistiveMiniaturized design, high sensitivity, temperature-dependentMedical blood pressure monitors
CapacitiveLow power consumption, corrosion-resistant, nonlinear outputAerospace altitude sensors
PiezoelectricSelf-generating, dynamic pressure measurementEngine combustion analysis
Optical FiberImmune to EMI, suitable for harsh environmentsOil well downhole monitoring

3. Structure and Components

Typical components include:

  • Pressure port (stainless steel/ceramic diaphragm)
  • Sensing element (MEMS silicon chip, strain gauge)
  • Signal conditioning circuit (amplifier, ADC)
  • Output interface (4-20mA, I2C, CANbus)
  • Environmental sealing (IP67 rating standard)

4. Key Technical Specifications

ParameterImportance
Measurement Range (0-10kPa to 0-100MPa)Determines operational limits
Accuracy ( 0.1% FS to 2% FS)Impacts system reliability
Output Signal (Analog/digital)Affects compatibility with control systems
Temperature Range (-40 C to +150 C)Defines environmental adaptability
Response Time (1ms to 100ms)Critical for dynamic pressure monitoring

5. Application Fields

Major industries:

  • Industrial Automation (hydraulic system monitoring)
  • Automotive (engine MAP sensors, TPMS)
  • Medical (ventilator pressure control)
  • Aerospace (flight control surface pressure)
  • Consumer Electronics (smartwatches for altitude tracking)

6. Leading Manufacturers and Products

ManufacturerRepresentative Product
HoneywellPPT0010 (0-10psi MEMS sensor)
Bosch SensortecBMP580 (barometric pressure sensor)
TE ConnectivityPPT0001NN1A3 (high-temperature sensor)
WIKAA-1100.75 (industrial process sensor)
OmronD6F-PH (low-pressure airflow sensor)

7. Selection Guidelines

Key considerations:

  • Pressure range with 20% safety margin
  • Environmental factors (temperature, vibration)
  • Signal compatibility (analog/digital requirements)
  • Material selection for corrosive environments
  • Cost vs. long-term stability trade-offs

8. Industry Trends

Emerging developments:

  • MEMS integration for miniaturization
  • Wireless pressure sensing nodes
  • AI-enabled predictive maintenance systems
  • New materials like graphene for ultra-sensitive detection
  • Energy-harvesting self-powered sensors

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