Surge Protection Device (SPD) Selection: IEC 61643 Type 1, Type 2, Type 3

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Electrical Fundamentals
Surge Protection Device (SPD) Selection: IEC 61643 Type 1, Type 2, Type 3

IEC 61643-11 classifies surge protection devices into three types by installation level and surge current magnitude. Installing the wrong type in the wrong location leaves equipment unprotected.

This guide explains what each type does, how to read their test parameters, and a step-by-step selection method for any installation.

IEC 61643 Type 1 Type 2 Type 3 Iimp In and Imax Up Voltage Protection Level
Hello everyone, today we are going to learn about surge protection device selection based on IEC 61643. We will understand what Type 1, Type 2, and Type 3 SPDs do, the key parameters that define each type, and how to select the right SPD for the service entrance, distribution board, and equipment level of any electrical installation.

A single lightning strike injects 50 to 200 kA into the mains network. Even a residual surge of 1 to 5 kA at the wall socket is enough to destroy unprotected equipment.

SPDs at each level of the installation intercept the surge at the right point.

SPD

Type 1, Type 2 and Type 3 SPDs: What Each One Does

Type 1 SPD
Service Entrance / Main Distribution Board

Installed at the origin of the installation, at the service entrance or main distribution board. Handles the highest surge currents from a direct or nearby lightning strike on the supply network.

Test current: Iimp (impulse current), 10/350 µs waveform. Typical Iimp values: 12.5 kA to 100 kA per pole.

Device type: spark gap or combined spark gap and varistor. Built to absorb the high energy of a 10/350 µs impulse.

Type 2 SPD
Sub-Distribution Board / Branch Panel

Installed at sub-distribution boards and branch panels downstream of the main distribution board. Handles residual surges that pass through the Type 1 SPD and switching-induced surges.

Test current: In (nominal discharge current) and Imax (maximum discharge current), 8/20 µs waveform. Typical In values: 5 kA to 20 kA per pole.

Device type: varistor (MOV) or transient voltage suppressor. Lower energy handling than Type 1, lower residual voltage Up.

Type 3 SPD
Equipment Level / Socket Outlet

Installed close to the protected equipment at the socket outlet or equipment terminal. Handles residual surges that pass through Type 1 and Type 2 SPDs.

Test current: Uoc (open-circuit voltage) and Isc (short-circuit current), combination wave. Typical Uoc: 1 kV to 10 kV.

Device type: transient voltage suppressor, suppressor diode, or filter. Very low Up voltage protection level, typically below 1.5 kV.

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Where Each SPD Type Is Installed in the Building

LEVEL 1 LEVEL 2 LEVEL 3 SUPPLY Mains input MAIN DB Service entrance TYPE 1 SPD Iimp · 10/350 µs 12.5 kA to 100 kA SUB-BOARD Branch panel TYPE 2 SPD In · 8/20 µs 5 kA to 20 kA SOCKET Equipment level TYPE 3 SPD Uoc · combo wave Up below 1.5 kV LOAD Protected Earth / PE bus
Did You Know? The 10/350 µs waveform used to test Type 1 SPDs represents a lightning stroke current. The 8/20 µs waveform used for Type 2 testing represents an induced surge from a nearby lightning strike. These two waveforms have very different energy content: a 10/350 µs pulse carries approximately 10 times more energy than an 8/20 µs pulse of the same peak current.

This is why a device rated only for 8/20 µs testing (a Type 2 SPD) must never be used at the service entrance without a Type 1 SPD in front of it. The 10/350 µs energy of a real lightning event would destroy a Type 2 device instantly.

Key SPD Parameters Compared

Parameter
Type 1 (Red)
Type 2 (Amber)
Type 3 (Green)
Test waveform
10/350 µs (lightning impulse)
8/20 µs (switching surge)
Combination wave 1.2/50 µs + 8/20 µs
Key rating
Iimp: impulse current 12.5 kA to 100 kA per pole
In: nominal discharge current 5 kA to 20 kA per pole. Imax: maximum discharge current
Uoc: open-circuit voltage 1 kV to 10 kV. Isc: short-circuit current
Up (protection level)
2 to 4 kV typical
0.9 to 2.5 kV typical
Below 1.5 kV typical
Installation location
Service entrance, main distribution board
Sub-distribution board, branch panel
Socket outlet, equipment terminal, patch panel
Typical device
Spark gap, combined spark gap and MOV
Metal oxide varistor (MOV), TVS
TVS diode, RC filter, plug-in suppressor
Used alone?
Yes, at service entrance (but Up is high)
Yes, when no direct lightning risk. Never alone at service entrance.
No. Always downstream of Type 1 or Type 2.
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SPD Selection Tool

SPD Type Selector
Answer two questions to find the correct SPD type for your installation point

Coordination Between SPD Types

SPDs at different levels must be coordinated so that each one clamps only the surge energy it is designed for, and passes the residual energy to the next level downstream.

Coordination RuleRequirementWhy It Matters
Minimum cable distance between Type 1 and Type 2At least 10 m of cable between the Type 1 SPD and the Type 2 SPD, or a decoupling inductance of at least 1.5 µHWithout separation, the surge voltage from the Type 1 device can couple directly into the Type 2 device before the Type 1 has finished clamping. This overstresses the Type 2.
Minimum cable distance between Type 2 and Type 3At least 5 m of cable between the Type 2 SPD and the Type 3 SPD, or a decoupling elementSame coupling risk at a lower energy level. The Type 3 device is small and will fail if exposed to the full discharge current of the Type 2 before the Type 2 has clamped.
Up of upstream SPD must exceed Up of downstream SPDUp(Type 1) greater than Up(Type 2) greater than Up(Type 3). Typical: 3 kV, 1.5 kV, 1.0 kV.The upstream device must clamp at a higher voltage so that it conducts first and absorbs most of the surge energy before the downstream device sees it.
Maximum cable length from Type 3 to equipmentLess than 10 m total cable from Type 3 SPD to the protected equipmentA long cable between the Type 3 and the equipment can re-develop a significant surge voltage from the residual current. Keep the Type 3 physically close to the equipment it protects.
Tip: Always check the Uc (maximum continuous operating voltage) rating of the SPD against your supply voltage.

Uc is the maximum AC voltage the SPD can withstand continuously without conducting. For a 230 V system, IEC 61643 requires Uc of at least 1.1 x 230 = 253 V, but practical designs use Uc of 275 V or 320 V to allow for supply tolerance. An SPD with a Uc below the local supply voltage will conduct continuously, overheat, and fail. Always check the Uc rating on the datasheet, not just the kA discharge rating.

SPD connection varies between TN-S, TN-C, TT, and IT systems. See the TN, TT and IT earthing systems guide and the earthing resistance calculation guide for earth electrode requirements.

Watch: SPD Selection and IEC 61643 Explained

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SPD Selection Questions Engineers Ask

What is the difference between Type 1 and Type 2 SPD?
Type 1 uses the 10/350 µs waveform (rated by Iimp) and is installed at the service entrance. Type 2 uses the 8/20 µs waveform (rated by In and Imax) at sub-distribution boards.
Can I use a Type 2 SPD at the service entrance instead of Type 1?
No. A Type 2 SPD is not rated for the 10/350 µs lightning impulse. Installing one where a Type 1 is required will result in SPD destruction on the first surge.
What does Up mean on an SPD datasheet?
Up is the maximum voltage the SPD allows to pass during a surge. A lower Up means better protection. Type 3 SPDs have the lowest Up, typically below 1.5 kV.
Why is a minimum cable distance required between SPD types?
Without sufficient cable between SPD types, the clamping voltage of the upstream SPD couples to the downstream SPD before the upstream device has finished conducting. This overstresses and destroys the downstream SPD.
What is Uc on an SPD datasheet?
Uc is the maximum continuous operating voltage. The SPD must not conduct below Uc in normal operation. For a 230 V system, Uc should be at least 275 V.

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External References

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What We Learn Today

  • IEC 61643-11 defines three SPD types by installation level and test waveform. Type 1 (10/350 µs, Iimp) goes at the service entrance. Type 2 (8/20 µs, In and Imax) goes at sub-distribution boards. Type 3 (combination wave, Uoc) goes at equipment level, always downstream of Type 1 or Type 2.
  • The voltage protection level Up decreases from Type 1 (2 to 4 kV) to Type 2 (0.9 to 2.5 kV) to Type 3 (below 1.5 kV). Each stage reduces the residual surge voltage seen by the next level of equipment.
  • SPDs must be coordinated: at least 10 m of cable or 1.5 µH decoupling inductance between Type 1 and Type 2, and at least 5 m between Type 2 and Type 3. Without coordination, the downstream SPD is destroyed by the upstream clamping transient before the upstream device has finished conducting.
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