Phoenix Contact 2902879 Active DC Redundancy Module - Schütz,Leistungsschalter,Sensor,Encoder,SPS,Konverter

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 Phoenix Contact 2902879 Active DC Redundancy Module - Schütz,Leistungsschalter,Sensor,Encoder,SPS,Konverter

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Phoenix Contact 2902879 Active DC Redundancy Module

QUINT-ORING/24DC/2X40/1X80 Product Overview Active DC redundancy module (Oring module), DIN-Schienenmontage. Designed for parallel redundant power supply of two 24VDC power supplies. Adopts MOSFET active current balancing ACB technology to resolve the drawbacks of diode redundancy, such as large voltage drop and unbalanced current sharing. Widely used in industrial control cabinets, DCS and PLC ...

  • Produktdetails

QUINT-ORING/24DC/2X40/1X80

Produktübersicht

Active DC redundancy module (Oring module), DIN-Schienenmontage. Designed for parallel redundant Stromversorgung of two 24VDC power supplies. Adopts MOSFET active current balancing ACB technology to resolve the drawbacks of diode redundancy, such as large voltage drop and unbalanced current sharing. Widely used in industrial control cabinets, DCS and PLC critical power supply circuits. It enables seamless switching when one power supply fails to guarantee continuous power to loads.

Wichtige Spezifikationen

ArtikelParameter
Bestell-Nr.2902879
Eingang2 channels of 24VDC, max. 40A pro Kanal; operating voltage range 18–29.5VDC
AusgabeSingle-channel 24VDC, total rated 80A
TopologieActive Oring, MOSFET, efficiency up to 98%
FunktionenACB automatic current balancing, preventive monitoring for input/output/decoupling circuit, overvoltage clamping to 32V
TerminalsSchraubklemmen
MontageBuilt-in UTA107/30 DIN rail adapter
SchutzklasseIP20
Betriebstemperatur-25℃ ~ +60℃
ZertifizierungenCE, cULus, RoHS
HS-Code85371091

Funktionsprinzip

Two 24V power supplies connect to the two input channels respectively. The module automatically balances load current. If either power supply fails or loses power, the internal MOSFET isolates the faulty branch rapidly, and the healthy power supply continues to power the load. Monitoring contacts can send fault signals to upper-level PLC.

Typische Anwendungsszenarien

Redundant power supply for DCS and safety instrumented systems in petrochemical, power generation and railway industries

Large-scale automated production lines and warehouse logistics control systems

Server rooms and security monitoring DC redundant power supply

Alternative Auswahlreferenz

  1. Lower-current model of the same series: 2902878 QUINT-ORING/24DC/2X20/1X40 (2×20A input, 40Eine Ausgabe)
  2. Alternative Lösung: Diode-type redundancy module (geringere Kosten, but with voltage drop, not suitable for high-current precision power supply)

Richtlinien zur Fehlerbehebung

  1. Red LED alarm: Check single-channel input undervoltage, power supply failure or module overheating
  2. Ausgangsspannungsabfall: Verify input wire gauge, tightening torque of terminals under high-current conditions; check heat dissipation clearance of the module
  3. Current imbalance: The output voltages of the two power supplies must be calibrated consistently for normal ACB current sharing

Active MOSFET Oring Redundancy Module vs. Conventional Diode Redundancy Module

Conventional redundancy modules refer to diode-type passive redundancy modules, namely Phönix QUINT-DIODE series. Der 2902879 QUINT-ORING is an active MOSFET Oring module. The core differences are listed below:

  1. Kernkomponenten & Voltage Drop (Most Critical Difference)

Active Oring (MOSFET)

Internally uses controlled MOSFET switches; conduction drop at tens of millivolts, nearly negligible, efficiency up to 98%.

Low heat generation under high-current operation. No need to deliberately raise power supply output voltage to compensate for voltage drop.

Conventional Diode Redundancy (Passiv)

Relies on Schottky diodes for unidirectional conduction; voltage drop of 0.3~0.4V.

High power dissipation and heat generation at 80A. Engineers must increase the power supply output by ~0.4V for compensation, otherwise load-side voltage will be insufficient.

  1. Load Current Sharing (ACB Automatic Current Balance)

Active Oring (z.B. 2902879)

Equipped with ACB automatic current balance technology. Two power supplies share the load current equally. Both power supplies carry load continuously, verlängerung lebensdauer. Not a setup where one unit runs at full load while the other stands by.

Diode Redundancy

No active current sharing. The power supply with slightly higher output voltage takes most of the load, while the other remains almost unloaded. One unit ages faster in long-term operation; it is a hot standby scheme without load sharing.

  1. Überwachung, Alarm & Diagnose

Active Oring

Continuously monitors two input voltages and MOSFET decoupling circuit status. Relay alarm contacts are available to report faults: loss of single power supply, module overheating, decoupling circuit failure, OVP overvoltage clamping (limits maximum output voltage to protect PLC/DCS cards). It provides early warning of lost redundancy for maintenance replacement before dual faults cause shutdown.

Diode Redundancy

Pure passive hardware with no monitoring or alarm signals. If one power supply fails, the system remains powered, but the loss of redundancy cannot be detected until the second power supply also fails and causes outage.

  1. Fault Isolation Speed

Active Oring: MOSFET turns off in microseconds. Reverse current is detected and the faulty branch is cut off immediately to prevent the failed power supply from pulling down the output bus.

Diode Redundancy: Passive blocking via inherent diode unidirectional characteristic; response depends on diode properties.

  1. Kosten, Zuverlässigkeit & Anwendungsbereich

Active Oring (2902879 Typ)

✅ Vorteile: Low voltage drop, low heat generation, automatic current sharing, Fehlerüberwachung, Überspannungsschutz, high availability

❌ Disadvantages: More complex circuit, höherer Preis, built-in control circuit

👉 Applications: DCS, SIS safety instrumented systems, power/petrochemical/railway industries, high-value production lines, critical high-current 24V power circuits where unexpected shutdown is prohibited.

Conventional Diode Redundancy Module

✅ Vorteile: Einfache Struktur, few components, stable reliability, niedrige Kosten, no control circuit, suitable for explosion-proof environments

❌ Disadvantages: Large voltage drop, severe heat at high current, no current sharing, no fault alarm, heavy heat dissipation burden under high current

👉 Applications: Ordinary control cabinets, low/medium-current auxiliary circuits, projects with limited budget that only require basic anti-parallel reverse protection.

Vergleichstabelle

VergleichsartikelActive Oring Redundancy Module (2902879)Conventional Diode Redundancy Module
KernkomponentenControlled MOSFET + SteuerkreisSchottky diode
Conduction Drop<50mV0.3~0.4V
Current SharingACB automatic load sharingNo current sharing; higher-voltage supply bears most load
Überwachung & AlarmInput/circuit monitoring, relay fault output, OVP overvoltage clampingNo monitoring or alarm
Effizienz~98%Untere, severe heat generation at high current
KostenHöherNiedrig
Typische SzenarienSIS, DCS, critical high-current industrial power supplyOrdinary control cabinets, low/medium-current auxiliary circuits

Auswahlempfehlung

If current ≥40A, high shutdown loss is expected and remote redundancy status monitoring is required → Select active Oring such as 2902879

For low-current auxiliary circuits with limited budget, only basic anti-reverse parallel protection needed → Diode redundancy module is sufficient

Phoenix QUINT-ORING Active Redundancy Module Full Series List (ACB Auto Current Balancing MOSFET Oring, Serie von 2902879)

-Notiz: Distinguish QUINT-ORING (original standard version) / QUINT4-ORING (4th generation new version); `/CO` denotes conformal coated version (anti-corrosion for chemical plants and high-humidity environments)

  1. QUINT-ORING (Original Series, fixed 24DC input, your model belongs here)
Bestell-Nr.Vollständiges ModellSpezifikationBemerkungen
2902877QUINT-ORING/24DC/2X10/1X202×10A input, 20Eine AusgabeStandard, non-coated
2902878QUINT-ORING/24DC/2X20/1X402×20A input, 40Eine AusgabeStandard, non-coated
2902879QUINT-ORING/24DC/2X40/1X802×40A input, 80Eine AusgabeIhr Modell
2320173QUINT-ORING/24DC/2X10/1X20/CO2×10A input, 20Eine AusgabeConformal coated /CO
2320186QUINT-ORING/24DC/2X20/1X40/CO2×20A input, 40Eine AusgabeConformal coated /CO
2320199QUINT-ORING/24DC/2X40/1X80/CO2×40A input, 80Eine AusgabeConformal coated /CO
  1. QUINT4-ORING (4th generation upgraded model, 12~24VDC wide input, new replacement)
Bestell-Nr.Vollständiges ModellSpezifikationBemerkungen
1088206QUINT4-ORING/12-24DC/2X10/2X102 independent outputs, 10A each12~24V wide DC input
2905488QUINT4-ORING/12-24DC/2X20/1X402×20A input, 40Eine Ausgabe12~24V wide DC input
2905489QUINT4-S-ORING/12-24DC/1X40Single channel 40A, single-channel Oring (anti-reverse / isolation for single power supply)Single-channel version
  1. Passive Diode Redundancy of the same platform (QUINT-DIODE, not part of ORING active series, Nur als Referenz)

-Passive diode redundancy, no ACB current sharing, no active MOSFET, do not confuse with ORING

2907719 QUINT4-DIODE/12-24DC/2X20/1X40

2320157 QUINT-DIODE/12-24DC/2X20/1X40

Series Selection Summary

  1. QUINT-ORING (2902877/2902878/2902879): Fixed 24VDC input, ACB active current balancing, standard for industrial cabinets; `/CO` coated variant for chemical, offshore and highly corrosive environments.
  2. QUINT4-ORING: 12~24VDC wide DC input, new generation hardware with optimized dimension and monitoring logic. Preferred for new projects.
  3. Current ratings: 20A /40A /80A. Match rating according to rated current of the two power supplies.

Aufschlüsselung der Modellbenennung (QUINT-ORING/24DC/2X40/1X80)

QUINT-ORING: QUINT series active redundancy Oring module

24Gleichstrom: Rated input 24V DC

2X40: Two input channels, max. 40A pro Kanal

1X80: Combined single output channel, max. 80A

/CO: Konforme Beschichtung, anti-corrosion protective coating

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