IFM PM1708 Pressure Transmitter - Contactor,întrerupător de circuit,senzor,Codificator,PLC,Convertor

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 IFM PM1708 Pressure Transmitter - Contactor,întrerupător de circuit,senzor,Codificator,PLC,Convertor

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IFM PM1708 Pressure Transmitter

Model complet: PM-,25BREA01-E-ZVG/US Product Type: Sanitary flush diaphragm relative pressure transmitter. Designed for food, beverage and pharmaceutical sanitary processes. Equipped with Aseptoflex Vario G1 external thread, cavity-free flush diaphragm, no dead space, suitable for CIP/SIP cleaning. ✅ Core Measurement Parameters Measuring range: -0.0125 ~ 0.25 bar (-12.5 ~ 250 mbar / -1.25 ~ 25 kPa) ...

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Model complet: PM-,25BREA01-E-ZVG/US

Tip de produs: Sanitary flush diaphragm relative pressure transmitter. Designed for food, beverage and pharmaceutical sanitary processes. Equipped with Aseptoflex Vario G1 external thread, cavity-free flush diaphragm, no dead space, suitable for CIP/SIP cleaning.

✅ Core Measurement Parameters

Domeniul de măsurare: -0.0125 ~ 0.25 bar (-12.5 ~ 250 mbar / -1.25 ~ 25 kPa)

Pressure type: Presiunea manometrică

Overload pressure: 0.6 bar (600 mbar); Burst pressure: 30 bar

Factory preset: 0~250 mbar, 4…20mA analog output. Measuring range can be freely scaled via IO-Link.

Measuring element: Ceramic capacitive sensor

Precizie: Characteristic deviation < ±0.2%FS; Repeatability < ±0.1%FS; Long-term stability per year < ±0.1%FS

⚙️ Mechanical & Wetted Specifications

Conexiune la proces: G1 external thread (ISO228), Aseptoflex Vario sanitary seal

Wetted materials: 316L(1.4435) oţel inoxidabil, 99.9% alumina ceramic diaphragm; Ra<0.4μm

Materialul carcasei: 316L oțel inoxidabil; Greutate: 273.45 g; Dimensiuni: Φ30.2 × L111 mm

Installation torque: 35 Nm

Medium temperature: -25 ~ +150 ℃, supports high-temperature sterilization

Clasa de protectie: IP67 / IP68 / IP69K, high-pressure washdown compatible (CIP)

Electrical connector: M12 A-coded 4-pin gold-plated plug

🔌 Electrical & IO-Link

Tensiune de alimentare: DC 18~30V

Ieșire: 1 × 4~20mA analog + 1 × configurable digital switch output, IO-Link V1.1 COM2 (38.4kBaud)

Supported functions: Zero/span calibration, internal temperature reading, diagnostic information. IO-Link resolution: 0.05 mbar

Timp de răspuns: 30ms for 2-wire mode; 7ms for 3-wire mode. Analog output damping adjustable from 0~4s

Features reverse polarity protection, short-circuit protection and watchdog circuit

📌 Typical Applications

Tank pressure and hydrostatic level measurement (low range) for food & beverage tanks; sanitary pressure monitoring in pharmaceutical processes; fermenters, fruit juice/dairy, sauce media (solids-containing, viscous media; flush diaphragm minimizes material buildup).

🔁 Alternative Selection & Aceeași serie

PM17 series with identical housing: PM1789 (smaller measuring range); PM17xx series shares same housing with different pressure ranges.

Alternative interne: Sanitary flush diaphragm transmitters with G1 thread, 316L wetted parts, 4-20mA+IO-Link for low pressure. Match overload pressure, burst pressure and surface roughness during selection.

⚠️ Installation & Note de întreținere

  1. Flush diaphragm surface must be flush with tank inner wall to avoid liquid trapping dead zones.
  2. Strictly limit installation torque to 35 Nm; over-torque will damage ceramic diaphragm.
  3. Keep temperature transients during CIP cleaning within specification; never exceed burst pressure.
  4. IO-Link can read internal sensor temperature and diagnostic information for predictive maintenance.

IFM PM1708 Troubleshooting Checklist

Applicable for no output, pressure drift and abnormal alarms. Distinguish between 4-20mA analog signal and IO-Link digital signal. Power supply DC18~30V.

  1. No Output (Ammeter / PLC channel shows 0mA or fixed 4mA)
  2. Putere & Wiring Check (Cea mai mare prioritate)

Alimentare electrică: Verify terminal voltage DC18~30V. Voltage drop under load shall not fall below 18V. Severe power supply ripple may also cause failure to start.

M12 4-pin A-coded pinout:

Pin1: BN Brown = +24V supply

Pin2: BK Black = 4~20mA / IO-Link signal

Pin3: BU Blue = 0V GND

Pin4: GY Grey = Switch output

Fault points:

Polaritate inversă: Reverse power connection will not burn the sensor, but results in no operation and no output. Correct wiring to restore function.

Scurt-circuit: Signal wire shorted to ground → current locked, PLC reports channel fault. Disconnect sensor to test wiring separately.

2-sârmă / 3-wire confusion: PM1708 is a 3-wire device. Do not wire as conventional 2-wire transmitter; this easily causes abnormal signals.

Măsurare: Disconnect load and measure supply & signal directly at sensor pins, to differentiate fault between sensor body or downstream PLC module.

  1. Deteriorări hardware / Installation Issues

Water ingress / corrosion at M12 plug: Rated IP69K, but aged seal causes reduced insulation under humid conditions. Inspect pins for oxidation or water stains.

Mechanical overload: Installation torque >35Nm leads to microcracks on ceramic diaphragm. Diaphragm damage usually accompanied by zero drift; severe cases result in total loss of output.

Frozen medium: Medium temperature below specification causes diaphragm damage.

  1. IO-Link Communication Failure

Rata baud: COM2 (38400). Master station parameters must match.

Check master power supply and port enablement. Excessively long cables or poor shielding cause handshake failure.

Factory reset: Send reset command via IO-Link master to restore sensor parameters.

  1. Pressure Drift (Zero drift, inaccurate readings; value slowly changes while pressure remains constant)
  2. Zero Drift (Cele mai comune)
  3. Installation stress drift

Over-tightened G1 thread creates continuous stress on ceramic diaphragm, leading to slow drift even at rest. Never exceed 35 Nm.

Pipeline thermal expansion / contraction pulls sensor housing and introduces mechanical stress. Loosen thread, rest for 10 min, then re-perform zero calibration for verification.

  1. Deriva de temperatură

Large medium temperature fluctuation outside compensation range. Read internal sensor temperature via IO-Link and compare with process temperature.

Short-term drift during CIP/SIP hot-cold cycling is normal thermal effect. If readings fail to recover after cooling, diaphragm damage is suspected.

  1. Zero offset

Residual process material coats flush diaphragm; viscous or crystallized deposits block pressure transmission. Clean diaphragm surface.

Perform zero calibration via IO-Link under fully vented zero-pressure condition.

  1. Span Drift / Readings too high or too low

Verify range parameters in IO-Link: Check whether upper/lower limits have been modified accidentally. Original PM1708 range: -12.5~250 mbar.

Overload damage: Instant pressure exceeding 0.6bar overload rating permanently damages ceramic element. This type of drift cannot be fixed by zero calibration; este necesară înlocuirea senzorului.

Hydrostatic installation offset: Hydrostatic head from mounting height for level measurement is not compensated at zero point.

  1. Interference-induced Drift

Power cables routed alongside sensor signal wires cause electromagnetic interference. Use shielded signal cable with single-end grounding for shield.

Poor 24V power quality with high ripple leads to jitter and drift on analog signal.

III. Alarms / Abnormal Status (IO-Link diagnostic bit alarm, or analog output locked at fault current)

Fault current for PM1708 is configurable; typical values: 3.6mA (low fault) or 22mA (high fault)

Read IO-Link diagnostic code first to classify fault:

  1. Hardware Fault (Sensor Fault): Internal measuring element failure. Zero/span calibration impossible. Replace sensor directly.
  2. Temperature alarm: Internal sensor temperature out of operating range (-25~150℃), caused by over-temperature during CIP or sustained high heat.
  3. Pressure out-of-range alarm: Process pressure exceeds configured range. Not sensor damage; verify actual process pressure.
  4. Parameter error alarm: Incorrect parameter download or invalid range setting. Restore factory defaults and reconfigure.
  5. Communication fault: IO-Link cable break or master port fault. Only digital communication fails; analog output may still operate.
  6. Fast On-site Troubleshooting Sequence (Follow in order)
  7. Opriți, inspect M12 plug exterior, pin corrosion and water ingress; recheck wiring definition.
  8. Power on under no-load condition, measure supply voltage and confirm DC18~30V.
  9. Read pressure value under zero-pressure condition:

Stable reading near zero → zero point OK.

Large zero offset and calibration failure → mechanical stress or diaphragm damage.

  1. Apply known reference pressure (calibrator) for verification:

Calibration successful → drift caused by installation stress or material coating.

Drift persists after calibration → sensor element damaged.

  1. Read internal temperature and diagnostic codes via IO-Link to locate fault source.
  2. After eliminating external factors, swap with a spare identical sensor to confirm body fault.
  3. Common Misconceptions
  4. Concepție greșită: Flush diaphragm can be scrubbed hard.

Alumina ceramic is wear-resistant, but sharp objects create irreversible scratches. Only gentle flushing is allowed for cleaning.

  1. Concepție greșită: Repeated zero calibration fixes drift.

Frequent calibration only masks mechanical stress or cracked diaphragm; drift will reappear shortly.

  1. Concepție greșită: Drift after CIP high temperature equals sensor failure.

Cool down to ambient temperature before assessment; temporary drift from thermal shock is normal.

  1. Spare Part Replacement Criteria (Replace if any condition met)

Zero calibration fails, IO-Link reports hardware fault

Drift cannot be eliminated after pressure overload or over-torque installation

Visible cracks or chipping on diaphragm

Water ingress and corrosion inside M12 connector with degraded insulation

IFM PM1708 Ceramic Diaphragm (Measuring Cell) Damage Assessment

PM1708 uses oil-free ceramic capacitive flush diaphragm. Diaphragm material: 99.9% alumina ceramic. Microcracks are invisible to naked eye. Assessment follows four steps: Visual Inspection → IO-Link Diagnostics → Zero / Calibration Test → Reference Pressure Comparison.

  1. Inspecție vizuală (Only detects obvious breakage; microcracks cannot be seen)

Remove sensor, clean ceramic diaphragm surface and inspect under strong light:

  1. ✅ Normal: Uniform matte white ceramic surface, no scratches, chipping, indentation or radial cracks. Diaphragm surface flush with G1 end face.
  2. ⚠️ Damage signs:

Chipping, radial fine cracks or pitting on ceramic surface

Indented / bulged diaphragm (from overload impact)

Gap between ceramic and stainless steel base, or medium penetration traces

Nota: Minor microcracks cannot be seen visually, and must be verified electrically or via pressure test.

Do not use hard tools to scrape ceramic surface during inspection.

  1. IO-Link Diagnostics (Cea mai mare prioritate, built-in measuring cell monitoring)
  2. Read IO-Link diagnostic event: CELL Err (Measuring Cell Error). This indicates damaged ceramic capacitive element; diaphragm is damaged and cannot be repaired.
  3. Fault characteristics:

Persistent fixed offset; sensor detects abnormal capacitance characteristics and reports CELL Err.

Some cases trigger hardware fault alarm, analog output locks to fault current (3.6mA /22mA).

No CELL Err ≠ intact diaphragm. Minor damage may only produce zero drift without CELL Err at early stage.

III. Zero Point Test (Most commonly used on-site method)

Condiție prealabilă: Sensor removed, diaphragm fully exposed to atmosphere, zero pressure condition. Rest 10 minutes to release installation stress.

  1. Read pressure value via IO-Link and record zero reading.

Normal: Stable zero reading with small deviation; zero calibration completes successfully.

Suspected damage:

Large zero offset and zero calibration failure (non-convergent calibration with error)

Recurring zero drift: Reading drifts minutes after successful calibration

Reading changes when flipping sensor orientation: Ceramic unit capacitance already compromised.

Differentiation: Installation stress drift — zero can be calibrated normally after loosening thread and resting. Diaphragm damage: zero cannot stabilize or be calibrated regardless of resting time.

  1. Reference Pressure Calibration (Final confirmation, lab / calibration bench)

Apply known calibrated pressure (cover range: 0, 100mbar, 250mbar) and record readings:

  1. ✅ Intact: Good linearity, good repeatability, small hysteresis between pressurization and depressurization; reading returns to zero after pressure release.
  2. ❌ Typical diaphragm damage symptoms:

Nonlinear pressure-reading curve; mismatch between pressurization and depressurization curves

Readings high/low during pressurization; zero fails to return after depressurization

Poor repeatability: Large reading variation for repeated tests at same pressure.

Once observed, ceramic diaphragm has developed microcracks, nereparabile; este necesară înlocuirea senzorului.

  1. Typical Root Causes for Diaphragm Damage (for cross validation)

Installation torque>35Nm, squeezing ceramic unit (most frequent cause)

Instant pressure exceeding 0.6bar overload rating, pressure shock

Vacuum shock, repeated severe thermal shock during CIP/SIP

Hard object impact on ceramic diaphragm (during cleaning or disassembly)

  1. Quick Decision Rules (Direct application)

Replace ceramic diaphragm / sensor if any condition satisfied:

  1. IO-Link reports CELL Err / measuring cell hardware fault
  2. Zero calibration fails under zero-pressure condition
  3. Reference pressure test: zero cannot recover after pressurization / depressurization, nonlinearity, poor repeatability
  4. Visible cracks or chipping on diaphragm

If the following applies, diaphragm is NOT damaged (external factor)

Zero drift, but zero calibration succeeds after loosening thread and resting → mechanical installation stress, not cracked diaphragm.

VII. Common Misconceptions

  1. Concepție greșită: Ceramic is hard and cannot break.

Ceramic is wear-resistant, but vulnerable to impact and compressive load. Over-torquing is the top cause of invisible internal microcracks.

  1. Concepție greșită: Pressure reading available = intact diaphragm.

Microcracks may still return pressure readings at early stage, only showing drift; CELL Err alarm appears later.

  1. Concepție greșită: Zero calibration can repair diaphragm.

Offset caused by microcracks is permanent damage. Calibration only temporarily masks drift, which will recur.

IFM PM17xx Same Series List (Identical housing as PM1708: Aseptoflex Vario G1 external thread, ceramic flush diaphragm, 4-20mA+IO-Link, IP69K, M12 cu 4 pini)

Caracteristici comune: Identical outline dimension, installation torque 35Nm, wetted material, electrical interface and diagnostic logic. Only measuring range differs. Interschimbabil mecanic (only IO-Link range parameters need reconfiguration).

ModelGamă (Gauge Pressure)Overload PressureAplicație
PM1789-0.002 ~ 0.04 bar (-2~40 mbar)0.4 barUltra-low micro-pressure, tank micro-vacuum, ultra-low hydrostatic level for fermenters
PM1708-0.0125 ~ 0.25 bar (-12.5~250 mbar)0.6 barFood tank pressure, low hydrostatic level (your current model)
PM1718-0.05 ~ 0.4 bar (-50~400 mbar)0.8 barSlightly higher tank pressure, gol + low pressure process
PM1717-0.1 ~ 1.6 bar (-100~1600 mbar)3.2 barGeneral tank pressure, level measurement with negative pressure
PM1707-0.05 ~ 1 bar (-50~1000 mbar)3 barMedium-low pressure sanitary process
PM1709-1 ~ 1 bar3 barVid + joasă presiune, vacuum tank, degassing process
PM1703-1 ~ 25 bar37.5 barHigh-pressure sanitary piping, sterilization loop

Similar Housing Alternative Series (Compatible with Aseptoflex adapter)

PI17xx (Aseptoflex G1 flush diaphragm, similar appearance with LED status indicator)

PI1708: Same range as PM1708 (-12.5~250 mbar), cu indicator LED, other parameters similar. Preferred field replacement option for PM1708.

PI1717 / PI1707 / PI1703: Corresponding PM17 range versions with LED display.

PY Series (Sanitary flush diaphragm, oil-filled metal diaphragm, not ceramic, better high-temperature resistance for CIP)

PY20xx: Metal diaphragm, suitable for higher temperature and high pressure shock media. Diaphragm principle differs; fault diagnosis logic is not equivalent to PM17 ceramic diaphragm.

Note de selecție de înlocuire

  1. All PM17 models use ceramic diaphragm same as PM1708; identical troubleshooting method. Mechanical interface fully compatible. Reconfigure range via IO-Link after swap.
  2. PI17xx: Added LED indicator; mecanic, electric, installation torque and Aseptoflex seal remain unchanged. Widely used for project replacement of PM1708.
  3. PY series uses oil-filled metal diaphragm, not ceramic. Diaphragm damage judgment method differs, not recommended as direct equivalent for PM17.

Not Recommended for Mixing

PM16 series: G1/2 thread, different process connection, cannot use PM17 Aseptoflex Vario adapter.

PI27/PI28: Local digital display, longer housing, different installation dimension.

Quick Selection Advice

Replace PM1708: Prefer PI1708 (same range, LED, compatible interface)

Same housing upgrade for higher micro-pressure: PM1718

Smaller micro-pressure range: PM1789

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