5SD7413-1

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Siemens 5SD7413-1 is a Type 1 surge protection device (lightning arrester), Requirement Class B, designed to protect low-voltage electrical installations against lightning impulse currents and switching surges. Built for TN-C distribution systems in a 3-pole, 3+0 configuration (L–PEN), it provides robust upstream protection with a maximum continuous operating voltage (Uc) of 350 V and a protection level up to 1.5 kV. The unit features pluggable protective modules and clear status indication via optical display, plus a remote signalling changeover contact (PDT) for monitoring device condition within control panels. It mounts on standard 35 mm DIN rail and uses screw terminals for straightforward panel integration, making it well-suited for industrial and commercial switchboards where dependable surge diversion and system availability are priorities.
Specification Description
Manufacturer Siemens
Part Number 5SD7413-1
Alternative Part Number 5SD74131
Product Type Surge Protection Device (SPD) / Lightning arrester
SPD Type (EN/IEC) Type 1 (Test Class I); also suitable for Type 2 (Test Class II) applications
Standards IEC 61643-11:2011; EN 61643-11:2012; UL 1449 (4th edition)
Application / System Type TN-C distribution systems
Circuit / Pole Configuration 3-pole, 3+0 circuit
Protective Path L–PEN
Number of Ports 1
Nominal Operating Voltage 230 V AC
Maximum Continuous Operating Voltage (Uc) 350 V
Discharge Current (8/20 µs) 25 kA (per path); 50 kA (1 phase)
Total Lightning Impulse Current (10/350 µs) 75 kA
Lightning Current Peak Value (10/350 µs) 25 kA
Protection Level (Up) 1.5 kV (max. 1.5 kV)
Residual Voltage at Rated Discharge Current 1.5 kV (max.)
Response Time 100 ns
Follow Current Extinguishing Capability 50 kA
SCCR (Short-Circuit Rating) 50 kA at 264 V
TOV Behaviour 415 V AC (5 s, withstand mode) / 457 V AC (120 min, withstand mode)
Indicator / Signalling Optical status indication and remote signalling contact
Remote Signalling Contact Function PDT (changeover) contact
Remote Signalling Contact Voltage (AC) 12…250 V AC
Remote Signalling Contact Current (AC) 10 mA…1 A
Electrical Connection (Power) Screw terminals
Conductor Cross-Section (Rigid) 2.5…35 mm²
Conductor Cross-Section (Finely Stranded) 2.5…25 mm²
Stripped Length (Power Terminals) 18 mm
Connection Screw Thread M5
Tightening Torque (Power Terminals) 4.3…4.7 N·m
Remote Signalling Terminal M2
Remote Signalling Conductor Cross-Section 0.14…1.5 mm² (rigid or finely stranded)
Stripped Length (Remote Signalling) 7 mm
Tightening Torque (Remote Signalling) 0.25 N·m
Mounting DIN rail NS 35
Enclosure Material PBT
Ingress Protection (at terminals) IP20
Pollution Degree 2
Overvoltage Category III (IEC 61010-1)
Operating Humidity 5…95% RH
Max. Installation Altitude 2,000 m
Shock Resistance 25 gn
Vibration Resistance 5 gn (5 Hz…500 Hz, limited to 2.5 h per axis)
Dimensions (W × H × D) 106.8 × 94.8 × 71.1 mm
Net Weight 1,108 g
Product Description Siemens 5SD7413-1 is a Type 1 surge protection device designed for TN-C systems, using a 3-pole 3+0 arrangement to provide effective protection between L and PEN. It combines high lightning impulse handling capability with fast response and includes both optical indication and remote signalling for straightforward status monitoring in industrial and commercial low-voltage installations.

What does this device do?

It is a Type 1 surge protection device (lightning arrester) designed to divert high-energy surge currents (including lightning impulse currents) away from the electrical installation, helping to limit overvoltage at the incoming supply.

Which type of power system is it intended for?

It is intended for TN-C distribution systems and uses an L–PEN protective path arrangement suitable for that earthing concept.

What does “Type 1 / Test Class I” mean in practical terms?

Type 1 (Test Class I) indicates the device is tested for high-energy lightning impulse currents (10/350 µs) and is typically installed at the service entrance or main distribution board where lightning currents may enter the installation.

Can it also cover Type 2 surge protection requirements?

Yes. In addition to being Type 1, it is also classified as Type 2 (Test Class II), which means it also addresses standard surge currents (8/20 µs). Many installations still use additional downstream Type 2/Type 3 protection depending on equipment sensitivity and cable lengths.

What is the continuous operating voltage (Uc) and why does it matter?

Uc is 350 V. It indicates the maximum RMS voltage the SPD can be continuously exposed to without operating; selecting the correct Uc helps avoid unwanted operation during normal mains variations while still providing effective protection during surges.

What are the key surge current ratings?

Key ratings include total lightning impulse current Iimp (10/350 µs) of 75 kA, lightning current peak value (10/350 µs) of 25 kA, and discharge current In (8/20 µs) of 25 kA (with up to 50 kA per phase at 8/20 µs as specified).

What protection level (Up) does it provide?

The maximum protection level Up is 1.5 kV, and the residual voltage at rated discharge current is specified up to 1.5 kV. This indicates the voltage that may remain at the terminals during a surge event.

How fast does it respond to a surge?

The response time is specified as 100 ns, supporting fast limitation of transient overvoltages.

Is it a single module or a multi-pole device?

It is a 3-pole, pluggable protective module design (3+0 circuit). This arrangement is commonly used for TN-C systems where protection is provided between line conductors and PEN.

Does it include local status indication?

Yes. It provides optical indication on the device to show status, allowing quick visual checks during inspections.

Can it provide remote indication to a monitoring system?

Yes. It includes a remote signalling contact with PDT (changeover) switching function, suitable for integration into alarm or building monitoring circuits.

What are the remote signalling contact electrical ratings?

For AC, the remote signalling contact operating voltage range is 12 to 250 V, with operational current from 10 mA up to 1 A (per the specification).

What conductor sizes can be connected to the power terminals?

The power terminals accept 2.5 to 35 mm² for rigid conductors and 2.5 to 25 mm² for finely stranded conductors.

What conductor sizes can be connected to the remote signalling terminals?

Remote signalling terminals accept 0.14 to 1.5 mm² for both rigid and finely stranded conductors.

What type of terminals are used and what are typical installation details?

It uses screw terminals. The main conductor strip length is 18 mm, and the connection screw thread is M5. The specified tightening torque range for the main terminals is 4.3 to 4.7 N·m.

How is it mounted in a panel?

It is designed for DIN rail mounting on NS 35 rail, which is standard for most distribution boards and control panels.

What space does it take up in a distribution board?

The device size is specified as 6 MW, with overall dimensions of approximately 106.8 mm (W) × 94.8 mm (H) × 71.1 mm (D).

What is the ingress protection rating at the terminals?

With all terminals connected, the terminal area is rated IP20, meaning it is protected against finger contact but not against water ingress.

Are there upstream fuse recommendations?

Yes. The specification lists fuse protection of 125 A AC (gG) for a V-shaped connection and 315 A AC (gG) for a T-connector arrangement. Always ensure coordination with the installation design and applicable regulations.

What short-circuit capability does it have?

The short-circuit rating (SCCR) is specified as 50 kA at 264 V, indicating the maximum prospective short-circuit current the device assembly can withstand under defined conditions.

How does it behave under temporary overvoltage (TOV) conditions?

Its TOV behaviour is specified at 415 V AC for 5 seconds (withstand mode) and 457 V AC for 120 minutes (withstand mode), helping it tolerate certain temporary mains overvoltage events without immediate disconnection.

What standards is it built and tested to?

It is specified to IEC 61643-11:2011 and EN 61643-11:2012 for surge protective devices.

What environmental conditions is it designed for in typical indoor panels?

It is specified for pollution degree 2, relative humidity from 5% to 95% during operation, and installation altitude up to 2,000 m, which aligns with many indoor switchboard environments.

Are the protective modules replaceable?

Yes. The design uses pluggable protective modules, allowing replacement of the module(s) when indicated, without replacing the entire base assembly.

Are any accessories associated with this device?

The specification references accessories as 3 × 5SD7418-1. If you need confirmation of compatibility for a specific panel layout, share your configuration details and we can help you verify the correct matching items.

What is the typical application location within an installation?

It is typically installed at the origin of the installation (incoming supply, main LV distribution board, or service entrance) where the highest surge energy is expected, especially in buildings with external lightning protection systems or overhead supplies.

Can it be used on a 230 V system?

Yes. The operating voltage is specified as 230 V, with Uc 350 V to accommodate normal mains conditions while providing surge diversion capability.

How should I interpret the “3+0” circuit description?

“3+0” generally indicates protection paths for three line conductors to PEN (rather than line-to-neutral plus neutral-to-earth). This aligns with TN-C systems where neutral and protective earth are combined as PEN.

  • Main incomer surge protection in TN-C switchboards, providing Type 1 lightning current handling at the service entrance
  • Protection of distribution panels in industrial facilities where overhead lines or external cable runs increase surge exposure
  • Use in commercial buildings to limit transient overvoltages before they reach downstream circuits and equipment
  • Installation in plant room and utility-area boards to reduce the impact of lightning-related impulses and switching surges
  • Front-end surge protection for process and automation power distribution in factories using a TN-C earthing arrangement
  • Retrofit upgrade in legacy TN-C installations that require a pluggable Type 1 surge protection device with status indication and remote signalling
  • Integration into DIN rail assemblies where compact, modular surge protection is required for three-phase supplies with PEN conductor protection paths
  • Protection of building services panels supporting pumps, fans, HVAC controls and other electrically driven loads susceptible to surges
  • Use in sites with frequent switching events (large motors, transformers, capacitor banks) to help reduce nuisance damage from transient spikes
  • Monitoring-enabled installations where remote signalling contacts are used to report SPD status to building management or panel alarms

This content has been produced using multiple sources. EU Automation takes no responsibility for the accuracy of this information. Always consult the original equipment manufacturer for the most up to date instructions and information.

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