Électrovanne FESTO VUVG-L14-B52-T-G18-1P3 - Contacteur,disjoncteur,capteur,Encodeur,API,Convertisseur

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Électrovanne FESTO VUVG-L14-B52-T-G18-1P3 - Contacteur,disjoncteur,capteur,Encodeur,API,Convertisseur

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Électrovanne FESTO VUVG-L14-B52-T-G18-1P3

Numéro de matériau.: 566500 Série: VUVG general-purpose solenoid valve, 14 mm valve width, 5/2 double stable (dual coil latching type), internal pilot operated ✅ Model Code Breakdown Segment Definition VUVG Series: General-purpose solenoid valve, piston spool construction L14 14 mm valve width, individual valve mounting (not valve island) B52 5/2 5-way 2-position; B = double stable ...

  • Détails du produit

Numéro de matériau.: 566500

Série: VUVG general-purpose électrovanne, 14 mm valve width, 5/2 double stable (dual coil latching type), piloté interne

✅ Model Code Breakdown

SegmentDéfinition
VUVGSérie: General-purpose solenoid valve, piston spool construction
L1414 mm valve width, individual valve mounting (not valve island)
B525/2 5-way 2-position; B = double stable with dual coils
TInternal pilot supply
G18Working ports G1/8
1P324 Bobine VCC, P-style connector, 3-épingle, IP65 with connector

📋 Core Technical Specifications

Valve function: 5/2 5-way 2-position, double stable (memory type, maintains current position upon power loss)

Moyen: Compressed air ISO 8573-1 [7:4:4], oil lubrication permitted

Pression de service: 1.5 … 8 bar (0.15~0.8 MPa), vacuum operation not supported

Tension de bobine: 24 À DC; coil power consumption: holding 0.3 W / pull-in 1.0 W, voltage tolerance ±10%

Débit: 700 ~ 780 l/min (DIN1343), nominal orifice 5.6 mm

Switching time: 8 MS

Indice de protection: Valve body IP40; IP65 when fitted with connector

Commande manuelle: Hidden, lockable manual pushbutton

Orientation de montage: N'importe quel poste

Cycle de service: 100% fonctionnement continu

Température moyenne: -5℃ ~ +50℃

Certifications: CE, UKCA, UL, MRC, RoHS

🧩 Structure & Notes d'application

  1. Key double-stable characteristic: Only a short pulse signal is required to trigger commutation; valve position is retained after power cut. Continuous energization cannot maintain position; PLC programming must use pulse output.
  2. Pilote interne: Pilot air is tapped from the main air supply; no separate pilot air tubing required. Reliable commutation requires minimum pressure ≥1.5 bar.
  3. Throttle silencers may be fitted to exhaust ports to adjust cylinder speed.
  4. Scénarios d'application: Cylinder actuation in automation lines, manipulateurs, équipement d'emballage, assembly stations. Suitable for standalone mounting or assembly on valve island baseplates.

⚠️ Troubleshooting

No commutation: Supply pressure below 1.5 bar; no pulse signal to coil; jammed manual override; orifice pilote bouché.

Unstable operation: Contamination (water/oil) in compressed air; voltage drop exceeding 10%.

Automatic reset after power loss: Wrong model selected. Double-stable versions do not reset on power loss. Automatic reset is characteristic of single-stable models (B51).

🔁 Replacement / Interchange Reference

Original equivalent: VUVG-L14-B52-T-G18-1P3 (Numéro de matériau. 566500)

Alternative nationale: Search for domestic 14 mm largeur 5/2 double stable solenoid valve, G1/8, 24VDC internal pilot

Similar model differentiation:

B51: Single stable (retour à ressort), resets when power fails, not directly interchangeable with this model

-1R8L: Different connector type, incompatible electrical interface

📌 Customs HS Code Reference

Pneumatic solenoid valve HS: 8481804090 (Other pneumatic valves)

FAIRE LA FÊTE VUVG-L14-B52-T-G18-1P3 Internal Pilot Supply Principle (T=Internal Pilot)

Letter T in model = Internal pilot supply. Pilot air is taken directly from main inlet port Port 1 (P port) via internal passages inside the valve body, no external independent pilot tubing required.

The valve is a double stable 5/2 piston spool valve, composed of a pair of miniature pilot solenoid heads + main piston spool.

  1. Structure de base
  2. Main air circuit: Port 1 supply, Ports 2/4 se connecter au cylindre, Ports 3/5 échappement. Main spool is a piston-type spool, shifted by air pressure. Solenoid coils cannot move the high-flow main spool directly.
  3. Pilot branch (internal air tapping): Small passages cast inside the valve body bleed a small stream of compressed air from main inlet Port 1 as pilot air, feeding to the valve chambers of left and right pilot solenoid heads.
  4. Two pilot solenoid heads (one on each side for B52 dual coil): Each side is a miniature 3/2 vanne pilote; energization opens pilot air path, de-energization closes pilot air path.
  5. Échappement pilote: Waste pilot air from pilot heads is vented through internal small passages to dedicated pilot exhaust openings on valve side, separate from main exhaust Ports 3/5 of the main valve.
  6. Full Operating Sequence (Internal Pilot)

Condition préalable: Port 1 supplied with compressed air ≥ 1.5 bar. Internal pilot passages remain filled with pilot air at the same pressure as main supply.

  1. Left coil receives 24VDC pulse signal

Electromagnetic force actuates the small pilot spool. Internally tapped pilot air (from Port1) is routed into left chamber of main piston spool. Pressure builds in left chamber and pushes main piston spool to the right.

Main valve commutation: 1→2 supply, 4→5 exhaust, cylinder extends.

Pulse signal lasts only tens of ms. Coil de-energizes after pulse, pilot small valve closes. Main spool retains position via air-locked (double stable memory) mechanism, continuous power is not required to hold position.

  1. Right coil receives 24VDC pulse signal

Right pilot head opens, pilot air enters right chamber of main piston, pushing main spool left.

Main valve commutation: 1→4 supply, 2→3 exhaust, cylinder retracts.

Position is maintained after pulse ends and coil de-energizes.

  1. Échappement pilote

During commutation, residual pilot pressure from the opposite chamber of main piston is vented through the pilot exhaust path of the opposite pilot head to atmosphere via dedicated pilot vents.

  1. Internal Pilot vs External Pilot (VUVG Selection Key)

✅ Internal Pilot (T): Pilot air sourced from main supply Port1, no extra pilot tubing required. Cependant, Port1 pressure ≥1.5 bar must be guaranteed, insufficient pressure prevents commutation; vacuum operation is not supported (no positive pressure at Port1 under vacuum, pilot cannot drive spool).

⚙️ External Pilot (M.): Independent pilot ports 12/14, separate external pilot air supply isolated from main circuit; suitable for vacuum and low-pressure applications.

  1. Notes d'ingénierie (Mise en service & Dépannage)
  2. Minimum pressure threshold: 1.5 bar. Below this value, internal pilot pressure cannot drive main piston spool and valve fails to switch.
  3. Pilot air is a small bleed from main supply, pilot flow rate is minimal and barely affects main cylinder flow. Cependant, fluctuations in main supply pressure directly impact pilot driving force.
  4. Contamination risk: Eau, oil and dust in compressed air may clog tiny internal pilot passages, causing sluggish switching or intermittent malfunction.
  5. Double-stable characteristic: Pilot air only performs the switching action and does not hold valve position. Once commutation completes, valve position remains locked even with temporary loss of main supply pressure, until a pulse triggers the opposite pilot coil.
  6. Summary in One Sentence

Internal pilot operation means a small branch of compressed air is taken internally from main inlet Port1 as actuation power. Solenoid coils only control miniature pilot valves; this internally tapped air pressure shifts the main piston spool to complete commutation, eliminating the need for separate pilot tubing.

FESTO VUVG Internal Pilot(T) vs External Pilot(M.) Supply Principle Comparison

Applicable to your VUVG-L14-B52-T-G18-1P3 (T = internal pilot); suffix M in the same series = external pilot

  1. Core Principle Difference

✅ Internal Pilot (T, Internal Pilot Operated)

Pilot actuation gas = Air tapped internally from main inlet P (Port1)

Small pre-machined passages inside valve body bleed a small flow from main supply to feed left/right pilot solenoid heads to shift main spool.

No dedicated pilot port, no extra pilot air tubing needed.

Operating prerequisite: Main supply ≥1.5 bar. Main supply pressure equals pilot pressure.

Loss of main supply pressure removes pilot driving capacity directly; insufficient pressure prevents valve switching.

⚙️ External Pilot (M., External Pilot Operated)

Pilot actuation gas = Independent external pilot supply, fully isolated from main circuit

Valve body fitted with dedicated pilot supply ports (marqué 12/14 on VUVG), pilot air supplied via separate external tubing.

Circuit principal (Ports 1/2/3/4/5) and pilot circuit are two independent air circuits with no mutual interference.

Main circuit can operate at low pressure or even vacuum; spool commutation is achievable as long as pilot port has sufficient pressure.

Pilot supply pressure only drives main spool and is independent of medium pressure in main loop.

  1. Tableau de comparaison
Article de comparaisonInternal Pilot TExternal Pilot M
Pilot Air SourceMain inlet Port P (internal tapping)Separate external pilot port (12/14)
Additional Pilot Tubing❌ Not required✅ Separate pilot tubing mandatory
Minimum Pressure LimitMain supply ≥1.5 bar; valve fails to switch at lower pressureOnly pilot supply ≥1.5 bar required; no lower limit for main circuit pressure
Application typiqueConventional compressed-air cylinder drive, vacuum not permittedVide, low-pressure main circuit, non-compressed-air process media
Cross Influence Between CircuitsMain supply pressure fluctuation directly affects switching performanceMain circuit pressure variation has no impact on pilot driving capability
Valve PortsOnly main ports 1,2,3,4,5Main ports + dedicated pilot supply ports
Installation & Mise en serviceWiring plus one main air tube only, simple pipingExtra pilot air tube and fittings, more complex layout
CoûtLower valve price, fewer fittings, lower overall system costHigher valve cost, extra tubing and fittings required
  1. Operating Logic Comparison (B52 Double Stable Example)

Internal Pilot(T)

  1. Compressed air fed to Port1; small internal orifice bleeds pilot air to both pilot solenoid heads on standby
  2. Pulse to one coil → pilot small valve opens → internal pilot pressure pushes main spool to switch
  3. After commutation completes, main spool air lock retains position, no power required after pulse

Point clé: Without main compressed air supply, there is no pilot driving force and valve cannot switch.

External Pilot(M.)

  1. Pilot port 12 continuously supplied with ≥1.5 bar compressed air (this provides actuation power)
  2. Main Port1 can be low pressure, vacuum or other medium
  3. Pulse to one coil → pilot small valve opens, external pilot pressure pushes main spool for commutation
  4. Position is retained by air lock after switching, same as internal pilot version

Point clé: Main circuit pressure status does not affect commutation, as long as pilot supply remains available.

  1. Guide de sélection

Choose 【Internal Pilot T】

Standard pneumatic cylinders with main circuit using regular compressed air (≥2 bar)

Reduce tubing and fittings, simplify installation

Cost-sensitive standard cylinder drives on production lines (your VUVG-L14-B52-T-G18-1P3 belongs to this category)

Choose 【External Pilot M】

Vacuum chuck circuits (main port under vacuum with no positive pressure; internal pilot cannot function)

Main circuit medium pressure below 1.5 bar

Main circuit uses non-compressed-air special process gas requiring separate clean pilot air supply

  1. Idées fausses courantes
  2. ❌ External pilot means pilot air holds valve position

✅ For B52 double stable valves, both internal and external pilot rely on spool air lock to maintain position. Pilot air only performs switching action; pilot pressure is not needed to hold position after commutation.

  1. ❌ External pilot requires high pressure in main circuit

✅ On the contrary, external pilot is designed for low-pressure or vacuum main circuits.

  1. ❌ Internal pilot exhaust shares main exhaust path

✅ For VUVG internal pilot variants, pilot waste air is discharged via dedicated pilot vents and does not pass through main exhaust Ports 3/5.

  1. Summary in One Sentence

Pilote interne: Uses compressed air from main circuit as actuation power, simple installation but main air must have sufficient pressure. External pilot: Dedicated independent air supply to drive spool; main circuit can run under vacuum or low pressure at the cost of more complex piping.

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