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 Siemens 3WT2M40 ETU35WT F-4P Air Circuit Breaker (ACB) - Schütz,Leistungsschalter,Solarwechselrichter,Stromzähler,Solarbatterien

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Siemens 3WT2M40 ETU35WT F-4P Air Circuit Breaker (ACB)

Model SegmentBeschreibungDetailed Explanation
3WTProduktserieSiemens SENTRON series air circuit breaker, rated current ranging from 400A to 4000A, breaking capacity up to 66kA
2Size SpecificationSize 2, rated current range from 1000A to 2000A
M40NennstromM40 indicates rated current In = 1600A (M40 corresponds to 1600A, M32 = 1250A, M50 = 2000A)
ETU35WTElectronic Trip UnitBasic three-stage protection trip unit (LSI), equipped with standard LCD Chinese display, providing overload long-time delay, short-circuit short-time delay and instantaneous short-circuit protection functions
FMounting TypeF = Fixed mounting (W = Withdrawable/draw-out mounting)
4PPolzahlFour-pole (3P = Three-pole), suitable for three-phase four-wire systems requiring neutral protection

  • Produktdetails

1.In-depth Model Breakdown (3WT2M40 ETU35WT F-4P)

Model SegmentBeschreibungDetailed Explanation
3WTProduktserieSiemens SENTRON series air circuit breaker, rated current ranging from 400A to 4000A, breaking capacity up to 66kA
2Size SpecificationSize 2, rated current range from 1000A to 2000A
M40NennstromM40 indicates rated current In = 1600A (M40 corresponds to 1600A, M32 = 1250A, M50 = 2000A)
ETU35WTElectronic Trip UnitBasic three-stage protection trip unit (LSI), equipped with standard LCD Chinese display, providing overload long-time delay, short-circuit short-time delay and instantaneous short-circuit protection functions
FMounting TypeF = Fixed mounting (W = Withdrawable/draw-out mounting)
4PPolzahlFour-pole (3P = Three-pole), suitable for three-phase four-wire systems requiring neutral protection
  1. Core Technical Parameter Table

2.1 Basic Electrical Parameters

ParameterWertStandard
Rated Operational Voltage (Ue)500V/690V AC 50/60HzIEC 60947-2
Nennstrom (In)1600AIEC 60947-2
Rated Short-circuit Breaking Capacity (Icu)66Die (500V) / 55Die (690V)IEC 60947-2
Rated Short-time Withstand Current (Icw)66kA/1s (500V)IEC 60947-2
Bemessungsisolationsspannung (Ui)1000V undIEC 60947-2
Rated Operational Frequency50/60HzIEC 60947-2
Polzahl4-pole (3 Stangen + neutraler Pol)IEC 60947-2
Mounting TypeFixedIEC 60947-2

2.2 ETU35WT Trip Unit Protection Parameters

SchutzfunktionSetting RangeTime CharacteristicFunction Description
Overload Long-time Delay (LT/L)Ir = 0.4~1.0×In (640A~1600A)Inverse time-lag, compliant with IEC 60947-2 Standard, configurable I²t characteristicPrevent motors and cables from overheating and burning due to long-term overload
Short-circuit Short-time Delay (ST/S)Isd = 1.5~10×Ir, default 3×IrDefinite time-lag, adjustable from 0.1s to 0.5sAchieve selective protection, isolate fault areas, and avoid overall system power outage
Instantaneous Short-circuit (INST/I)Ii = 5~15×In, default 10×InNo time delay, operation time ≤ 0.02sQuickly cut off severe short-circuit faults to protect equipment from overcurrent impact
Trip IndicationMechanical + electronic dual indicationIntuitively display trip causes (overload/short-circuit/instantaneous)
Memory FunctionTrip cause storage ≥ 2 Tage (trip after activation ≥ 20 Minuten)Facilitate fault analysis and troubleshooting

2.3 Mechanical and Environmental Parameters

ParameterWert
Mechanical Service Life 10,000 Operationen (no-load operation)
Electrical Service Life 1,000 Operationen (at rated current)
Operating MechanismManual spring-charging type, with closing/tripping buttons
SchutzklasseIP30 (when installed inside the cabinet)
Betriebstemperatur-5°C~+40°C (no derating), -25°C~+55°C (derating required)
Relative Humidity5%~95% (non-condensing)
Altitude≤ 2000m (no derating), derating required for > 2000m
WeightApproximately 45kg (fixed type 4P)
  1. Working Principle and Protection Mechanism

3.1 Core Working Principle

  1. Normaler Betrieb: When the circuit breaker is closed, the main contacts connect the circuit, current flows through the main circuit and the trip unit sampling circuit, and the ETU35WT monitors the three-phase current in real time.
  2. Fault Detection: When the current exceeds the set value, the ETU35WT calculates the trip time according to the protection characteristic curve.
  3. Trip Action: When the trip condition is met, the ETU35WT sends a trip signal to drive the electromagnetic tripping mechanism to operate and quickly open the main contacts.
  4. Arc Extinguishing Process: The arc generated when the main contacts are opened is quickly extinguished by the arc extinguishing chamber, preventing arc reignition and phase-to-phase short circuit.

3.2 Detailed Explanation of Three-stage Protection Functions (ETU35WT LSI)

3.2.1 Overload Long-time Delay Protection (LT/L)

Prinzip: Based on the inverse time-lag characteristic (heat accumulation principle), the higher the current, the shorter the trip time (following the I²t law)

Application: Protect cables and motors from long-term overload damage, and withstand short-term overcurrent during motor startup

Setting: Ir = 0.4~1.0×In, usually set to the rated current of the protected equipment

3.2.2 Short-circuit Short-time Delay Protection (ST/S)

Prinzip: Definite time-lag characteristic, set a fixed trip time (0.1s~0.5s) to achieve selective protection

Application: Remain closed before the lower-level circuit breaker operates, only cut off the fault branch, and improve power supply continuity

Setting: Isd = 1.5~10×Ir, usually set to 5~8×Ir, with the time coordinated with the lower-level circuit breaker

3.2.3 Instantaneous Short-circuit Protection (INST/I)

Prinzip: No time-lag characteristic, trip immediately when the current exceeds the set value (≤ 0.02s)

Application: Protect the circuit breaker itself and upper-level equipment from damage caused by huge short-circuit current (usually ≥ 10×In)

Setting: Ii = 5~15×In, usually set to 10~12×In to avoid the peak current during motor startup

3.3 Special Significance of 4-pole Protection

Suitable for TN-S and TN-C-S systems, providing overcurrent protection for the neutral line (N line)

When three-phase unbalance or single-phase ground fault occurs, the neutral line current may reach the phase current level, and the 4-pole design can effectively cut off the fault current

Comply with the protection requirements of IEC 60364 standard for three-phase four-wire systems

  1. Installations- und Verkabelungshandbuch

4.1 Installation Preparation

  1. Safety Requirements: The power supply must be cut off and locked before installation to prevent electric shock
  2. Cabinet Requirements: Reserve sufficient installation space (width × depth × height: approximately 600mm × 800mm × 1000mm)
  3. Fixing Method: Fix on the distribution cabinet mounting beam with M12 bolts, torque 70N·m

4.2 Main Circuit Wiring (4P)

TerminalPurposeCable SpecificationTorque
L1/L2/L3Three-phase power input4×(120mm²~185mm²) copper cable120N·m
NNeutral line input120mm²~185mm² copper cable120N·m
T1/T2/T3Three-phase load output4×(120mm²~185mm²) copper cable120N·m
TNNeutral line output120mm²~185mm² copper cable120N·m

4.3 Control Circuit Wiring

Auxiliary Power Supply: AC/DC 220V (operating power supply for ETU35WT)

Auxiliary Contacts: 2 sets of normally open (NEIN) + 2 sets of normally closed (NC), rated current 5A/250V AC

Trip Signal: Normally closed contact (opened when tripped) for remote alarm

Control Buttons: Closing button (green), tripping button (red), need to be connected to 24V DC or 220V AC control power supply

  1. ETU35WT Trip Unit Setting Steps
  2. Enter Setting Mode: Drücken Sie die Taste “Settingbutton on the ETU panel and enter the password (default 0000)
  3. Overload Long-time Delay (Ir): Set to the rated current of the protected equipment (z.B., if motor In = 1600A, set Ir = 1600A)
  4. Short-circuit Short-time Delay (Isd): Set to 5~8×Ir (z.B., Isd = 8×1600 = 12800A), time 0.2s
  5. Instantaneous Short-circuit (Ii): Set to 10~12×In (z.B., Ii = 10×1600 = 16000A)
  6. Save Parameters: Drücken Sie die Taste “Confirmbutton to save, the ETU will automatically exit the setting mode
  7. Function Test: Perform simulated overload and short-circuit tests to verify the correctness of the trip action
  8. Fault Diagnosis and Maintenance Guide

6.1 Common Fault Troubleshooting Table

FehlerphänomenMögliche UrsachenLösungen
Unable to Close1. Undervoltage trip unit not powered on1. Check the control power supply
2. Trip unit failure2. Replace ETU35WT
3. Mechanical interlock not released3. Release the interlock device
Unintentional Trip1. Setting current too small1. Reset the protection parameters
2. Three-phase current unbalance2. Check load balance
3. Excessively high ambient temperature3. Improve ventilation and heat dissipation
No Trip During Overload1. Setting current too large1. Adjust Ir to an appropriate value
2. ETU sampling circuit failure2. Check the current transformer
3. Tripping mechanism jamming3. Clean and lubricate the mechanism
No Trip During Short-circuit1. Instantaneous setting value too large1. Reduce the Ii setting value
2. Electromagnetic trip unit failure2. Replace the trip unit coil
3. Arc extinguishing chamber damage3. Replace the arc extinguishing chamber

6.2 Maintenance Cycle and Content

Maintenance CycleMaintenance ContentOperation Points
MonthlyVisual InspectionCheck for overheating marks, loose connections and abnormal noise
QuarterlyCleaning and MaintenanceClean the arc extinguishing chamber and contacts with dry compressed air after power off
AnnuallyFunction TestPerform simulated overload and short-circuit tests to verify protection functions
Jeder 2 YearsMechanical InspectionCheck the operating mechanism and contact wear, replace if necessary
Jeder 5 YearsComprehensive OverhaulReplace aging components and recalibrate trip unit parameters
  1. Selection and Application Scenarios

7.1 Anwendbare Szenarien

  1. Industrial Plants: Three-phase four-wire power distribution systems requiring neutral line protection
  2. Data Centers: Power supply for critical loads, requiring high reliability and selective protection
  3. Gewerbebauten: Power supply for large equipment such as central air conditioners and water pumps
  4. New Energy Field: Output side protection of photovoltaic inverters and energy storage systems

7.2 Selection Points

  1. Nennstrom: Select according to the calculated load current (In ≥ 1.25×calculated load current)
  2. Bruchkapazität: Select according to the system short-circuit current (Icu ≥ maximum system short-circuit current)
  3. Auswahl der Polzahl: Select 3P for three-phase three-wire systems, 4P for three-phase four-wire systems
  4. Mounting Type: Select F for fixed mounting, select W (withdrawable) for online maintenance requirements
  5. Trip Unit Selection:

Select ETU35WT (LSI) for basic protection

Select ETU37WT (LSIG) for ground fault protection requirements

Select ETU45WT (with communication function) for advanced applications

  1. Recommended Accessories and Ordering Information
Accessory NameModellFunction Description
Auxiliary ContactLZN102Hinzufügen 2 normally open and 2 normally closed contacts for remote control
Undervoltage Trip UnitLZN201Automatically trip when voltage loss occurs to protect equipment safety
Shunt Trip UnitLZN301Remote trip control for emergency shutdown
Closing CoilLZN401Electric closing device, suitable for automation systems
Communication ModuleCOM16Modbus RTU communication for remote monitoring

Ordering Model: 3WT2M40 ETU35WT F-4P

Alternative Model: Withdrawable version 3WT2M40 ETU35WT W-4P

Siemens SENTRON 3WT series air circuit breaker inherits German manufacturing technology, provides reliable power distribution protection solutions, is widely used in various industrial and commercial fields, and is an ideal choice to ensure power supply continuity and equipment safety.

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