Pressure Transmitters — Capacitive, Piezoelectric, Strain Gauge, DP Cell

Electronic pressure transmitters measure process pressure and output a proportional electrical signal (4–20 mA, HART, Profibus, FOUNDATION Fieldbus, or IO-Link) for DCS/PLC integration, remote monitoring, and control loops. Capacitive transmitters use the deflection of a metallic diaphragm that changes the capacitance between the diaphragm and a fixed electrode — the most common industrial transmitter type, characterised by wide range, high accuracy, and long-term stability. Strain gauge types bond silicon or metallic strain resistors to the diaphragm — resistance changes under strain (Wheatstone bridge circuit). Differential pressure (DP) transmitters have two process ports (high and low side) and measure the difference between them.

Challenges

Overrange Damage at Static Pressure Exceeding Rated Overpressure

Pressure spike above sensor overrange rating permanently deforms the sensing diaphragm — zero shifts; accuracy degrades.

Process Diaphragm Corrosion from Incompatible Fill Fluid / Process Fluid Contact

Process fluid incompatible with fill fluid permeates micro-porous diaphragm weld — degrades fill fluid; shifts output.

EMI/RFI Interference Causing Signal Noise on 4–20 mA Lines

Variable frequency drives and radio transmitters generate electrical interference on instrument signal cables — false readings.

Condensation in Electronic Housing Causing Corrosion on PCB in Outdoor Installation

Daily temperature cycling causes condensation inside IP 65 housing if cable entry seals degrade — PCB corrosion; instrument failure.

Zero Drift Over Time from Diaphragm Creep at Sustained High Static Pressure

Long-term static load on capacitive diaphragm causes creep — zero shifts by 0.1–0.5% FS per year without re-zeroing.

Solutions

Applications

Models & Capacities

Pressure Transmitters — Models & Range Reference

Type

Pressure Range

Accuracy [% FS]

Long-Term Stability

Turn-Down Ratio

Output Signal

Process Connection

Wetted Material

Max Process Temp [°C]

IP Rating

SIL Rating

Capacitive DP (standard)

0–1 mbar to 0–700 bar; ΔP 0–100 mbar to 0–100 bar

±0.04–0.1

±0.1%/year

100:1

4–20 mA + HART/FF/PA

1/2″ NPT; G 1/2 flange

SS 316L; Hastelloy; Tantalum

121 (direct)

IP 67

SIL 2 (optional)

Capacitive gauge/absolute

0–10 mbar to 0–700 bar

±0.04–0.075

±0.1%/year

100:1

4–20 mA + HART/FF/PA

G 1/2; DIN / ANSI flange

SS 316L; Hastelloy

121

IP 67

SIL 2

Strain gauge (silicon)

0–100 mbar to 0–600 bar

±0.1–0.25

±0.2%/year

10:1

4–20 mA + HART

G 1/4 to G 1/2

SS 316L

150

IP 67

SIL 1

Piezoelectric (dynamic)

0.001 mbar peak to 10,000 bar peak

±1–3% FS

Charge drift

Charge amplifier; voltage

Flush diaphragm

SS 316L; Inconel

400

IP 68

Not rated (dynamic only)

Multivariable DP + SP + T

ΔP 0–100 mbar to 0–100 bar; static to 300 bar

±0.04% DP; ±0.1% SP

±0.1%/year

100:1 (DP)

4–20 mA + HART / FF (multivariable output)

G 1/2; flange

SS 316L; Hastelloy

121

IP 67

SIL 2

Flush diaphragm (sanitary)

0–100 mbar to 0–40 bar

±0.1–0.25

±0.25%/year

10:1

4–20 mA + HART + IO-Link

Tri-Clamp; DIN 11851

SS 316L Ra <0.8 µm; PTFE

150

IP 69K

SIL 2

Intrinsically safe (IS, Zone 0)

0–1 mbar to 0–700 bar

±0.04–0.1

±0.1%/year

100:1

4–20 mA + HART IS

G 1/2; flange

SS 316L; Hastelloy

150

IP 67

SIL 2 (IEC 61508)

Wireless (WirelessHART)

0–100 mbar to 0–700 bar

±0.1

±0.2%/year

10:1

WirelessHART (ISA 100.11a)

G 1/2; flange

SS 316L

121

IP 67

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