Guida alla selezione SPD per cabinet telecomunicazioni esterni

Risposta Veloce

Un armadio telecom all'aperto richiede normalmente più di un SPD. Proteggi ciascuna linea conduttiva AC, DC, Ethernet e di segnale in base alla sua tensione reale, interfaccia, posizione di installazione e disposizione di messa a terra.

Iniziare con le interfacce dell'armadietto

Quale protezione da sovratensioni è necessaria per un armadio telecom all'aperto?

Iniziare identificando ogni cavo conduttivo che entra o esce dall'armadietto. Non iniziare selezionando uno SPD generico.

L'alimentazione AC, l'alimentazione DC a bassa tensione e i circuiti delle telecomunicazioni o di segnalazione sono coperti da requisiti e framework di test SPD diversi. [1] [2] [3]

Non sostituire tra circuiti. Uno SPD AC non è uno SPD DC 48V. Uno SPD di alimentazione DC non è automaticamente idoneo per una linea RJ45, PoE, RS485 o sensore.
SPD CA

Ingresso AC

Protegge l'alimentazione di rete, la distribuzione AC e l'ingresso del raddrizzatore.

SPD DC

DC 48V / −48V

Protegge l'uscita del raddrizzatore, il bus della batteria e la distribuzione CC.

RJ45 / PoE

Ethernet

Protegge le linee dati in rame supportando la velocità richiesta e l'arrangiamento PoE.

SEGNALE

RS485 e sensori

Protegge i circuiti di monitoraggio, allarme, controllo e sensori ambientali. .

STATO

Allerta remota

Riporta un cambiamento di stato dell'SPD al sistema di monitoraggio del cabinet.

Design dell'intero cabinet

Architettura di protezione da sovratensioni per armadi telecom all'aperto

Esaminare ogni linea conduttiva che attraversa il confine del cabinet. Posizionare l'SPD pertinente vicino all'ingresso del cavo o al punto di distribuzione.

Gli SPD, l'involucro del cabinet e le relative schermature dei cavi devono essere integrati nel progetto di messa a terra e di collegamento. [5] [6]

Outdoor telecom cabinet SPD protection architecture for AC input 48V DC RJ45 PoE and signal lines
Architettura tipica del cabinet che mostra SPD AC, DC, RJ45 o PoE e linee di segnale separate collegate al sistema di messa a terra del cabinet.
Ambito della pagina: Questa guida copre la protezione installata nel cabinet o direttamente associata ad esso. I terminali di aria della torre, i feeder delle antenne e la protezione contro i fulmini dell'intero sito richiedono una valutazione del progetto più ampia.
Confronto ingegneristico veloce

Matrice di selezione SPD per armadi telecom all'aperto

Definire il circuito protetto prima di confrontare i modelli dei fornitori. Prodotti che si adattano alla stessa guida DIN possono comunque servire applicazioni completamente diverse.

Interfaccia del cabinet Categoria SPD tipica Attrezzature protette Parametri da confermare Errore comune di acquisto
Ingresso dell'utilità AC SPD AC di tipo 1+2 o tipo 2 secondo il design del progetto Distribuzione AC, raddrizzatore, ventilatore, riscaldatore e carichi ausiliari AC Tensione, fasi, sistema di messa a terra, Uc, Iimp dove richiesto, In, Imax, Up, poli e protezione di riserva Selezionando solo dalla tensione nominale AC
48V / −48V bus DC SPD DC a bassa tensione adatta per l'attuale sistema DC delle telecomunicazioni Uscita del raddrizzatore, bus della batteria, distribuzione DC e carichi delle telecomunicazioni Massima tensione continua, polarità, conduttore collegato, Uc, valutazioni di scarica, Up e disposizione dei poli Selezionando solo dalla descrizione nominale “48V”
RJ45 Ethernet RJ45 data-line SPD Switch Ethernet, router, gateway, telecamera, radio e controller Velocità dei dati, categoria del cavo, schermatura, coppie protette, disposizione del connettore e perdita di inserzione Assumendo che ogni SPD RJ45 supporti Gigabit Ethernet
Linea PoE SPD RJ45 compatibile con la configurazione PoE richiesta Telecamera da esterno, punto di accesso wireless e dispositivo alimentato da PoE Metodo PoE, potenza, coppie alimentate, corrente, velocità e schermatura Assumendo che ogni SPD dati supporti la potenza PoE richiesta
RS485, sensore o allarme SPD della linea di segnale abbinata all'interfaccia RTU, controller, sensore, allarme porta e I/O remoto Tensione di segnale, corrente, conteggio delle coppie, protocollo, tasso di trasmissione , schermatura e terminali Sostituire un SPD di segnale con un SPD di alimentazione DC
Uscita di stato SPD SPD con contatto remoto senza potenziale NMS, PLC, RTU o controller di allarme dell'armadio riceve il segnale Logica COM, NO e NC, valutazione del contatto e stato normale/guasto Ordinare una versione standard senza segnalazione remota
Comparison of AC DC RJ45 PoE and signal SPD selection for outdoor telecom cabinets
L'alimentazione AC, l'alimentazione DC a bassa tensione, l'Ethernet e le linee di segnale richiedono criteri di selezione separati.
Punto di protezione 01

Selezione SPD per ingresso AC

L'SPD AC protegge l'alimentazione elettrica in ingresso e il lato AC del rettificatore. La selezione e il coordinamento dovrebbero seguire il sistema AC reale, la posizione di installazione e il concetto di protezione del progetto. [1] [8]

Tipo
Tipo 1+2 o Tipo 2 Confermare la classificazione dal progetto di protezione contro le scariche atmosferiche e il design di coordinamento.
Uc
Tensione massima di funzionamento continuo Abbinare Uc alla tensione di alimentazione reale, alla tolleranza e alla configurazione di messa a terra.
Iimp
Corrente di impulso da fulmine Confermare il valore richiesto di 10/350 μs dove è specificata la capacità di Tipo 1.
In / Imax
Valutazioni della corrente di scarica Confrontare i prodotti utilizzando la stessa forma d'onda e classificazione.
Su
Livello di protezione della tensione Coordinate Up with the withstand level of the rectifier and downstream equipment.
Pali
Protection-mode arrangement Confirm 1P+N, 2P, 3P+N, 3+1, 4P or another required configuration.
Importante: The AC input SPD does not replace the DC, Ethernet or signal-line SPDs installed downstream.
Protection Point 02

Selezione SPD per 48V / -48V DC

“48V” is a nominal system description. The real DC bus voltage may be higher during rectifier operation and battery charging.

Select the SPD from the highest continuous DC voltage, polarity, bonded conductor, protection modes and installation position. IEC 61643-41:2025 provides the test framework for SPDs connected to low-voltage DC circuits. [2]

Confirm voltage

Provide nominal voltage, rectifier range, battery charging range and the highest continuous voltage.

Confirm polarity

Identify DC+, RTN, DC− or −48V, PE and the conductor bonded to the cabinet earth.

Confirm location

State whether the SPD is at the incoming feeder, rectifier output, battery bus or DC distribution unit.

Confirm maintenance

Specify visual indication, replaceable modules and remote signalling where required.

Do not use a high-voltage PV SPD as an automatic substitute. A photovoltaic circuit and a low-voltage telecom DC bus have different system conditions and voltage ranges.

Read the detailed 48V / −48V DC SPD for telecom guide for the complete voltage and protection-mode process.

Protection Point 03

Protezione da sovratensioni per RJ45 e PoE

An RJ45 connector does not define the complete technical requirement.

IEC 61643-21:2025 covers telecommunications and signalling network SPDs, including networks carrying power on the same line, such as Power over Ethernet. [3]

1
What data speed is required? Confirm 10/100 Mbps, Gigabit Ethernet or another required transmission rate.
2
Does the cable carry PoE? Confirm the PoE method, required power, operating current and powered pairs.
3
Is the cable shielded? Confirm the shield termination and equipotential-bonding method.
4
Where is the outdoor equipment? Evaluate protection and bonding at both ends of the copper link.
Not every RJ45 SPD supports every PoE system. A device may physically fit while having unsuitable bandwidth, current capacity, protected pairs or shielding.

Continue with the RJ45 surge protector selection guide e il PoE surge protection guide .

Protection Point 04

Protezione da sovratensioni per RS485, sensori e linee di monitoraggio

Outdoor telecom cabinets often contain door alarms, environmental sensors, battery monitoring and remote-control interfaces.

Select the signal SPD from the protocol, voltage, pair count, current, transmission requirement and terminal arrangement.

RS485 communication

Confirm signal voltage, pair count, data rate, current and cable shielding.

Door and alarm lines

Review door contacts, security wiring and any control conductor extending outside the cabinet.

Environmental sensors

Match the SPD to the sensor supply, output signal, conductor number and grounding method.

A signal circuit and a power circuit can share the same nominal voltage while requiring different SPD characteristics.

See the RS485 surge protector selection guide for protocol-specific guidance.

Unattended Cabinet Monitoring

Contatto di allarme remoto per stato SPD

A visual indicator requires a site visit. An optional potential-free contact allows the monitoring system to receive an SPD status change remotely.

SPD Remote Contact COM / NO / NC potential-free terminals
NMS, PLC, RTU or Alarm Controller Receives the status signal for maintenance reporting

Define the logic

Confirm which contact state represents normal operation, module removal or SPD failure.

Check the rating

Verify that the controller input voltage and current are within the contact rating.

Test commissioning

Verify the complete alarm path from the SPD to the remote monitoring platform.

See the SPD remote alarm and PLC wiring guide .

The Surge Discharge Path

La messa a terra e il collegamento influenzano la protezione ottenuta

The internal cabinet grounding bar must be integrated into the wider site earthing and bonding system.

ITU-T K.56 and K.112 provide telecommunications-sector guidance related to lightning protection, earthing and bonding for radio base station environments. [5] [6]

Use coordinated bonding

Integrate the SPDs, metal enclosure and relevant cable shields into the project bonding design.

Keep paths short

Avoid long conductors, unnecessary loops and indirect routes between the SPD and grounding bar.

Separate cable routes

Avoid routing incoming unprotected conductors beside protected outgoing conductors.

Connect to site earth

An internal copper bar cannot replace a complete site earthing system.

Related resources: SPD connection cable length e SPD grounding requirements .

Outdoor Cabinet Environment

Classificazione IP e condensazione sono questioni diverse

An IP-rated enclosure can protect against defined dust and water ingress conditions. It does not automatically solve internal condensation.

IEC 60529 defines enclosure degrees of protection using the IP Code. The classification does not define the complete internal temperature, humidity or condensation-control strategy. [7]

External ingress control

  • Cabinet IP classification
  • Door seals and gaskets
  • Cable glands and entry plates
  • Rain hood and drainage design
  • Corrosion-resistant materials
  • UV, salt-air and pollution exposure
AND

Internal climate control

  • Day and night temperature changes
  • Humidity and dew-point conditions
  • Heating or dehumidification
  • Ventilation or heat exchanger
  • Cold surfaces and thermal bridges
  • Moisture and corrosion inspection
Outdoor telecom cabinet SPD grounding condensation remote alarm and maintenance checklist
Cabinet reliability depends on enclosure sealing, condensation control, grounding, status monitoring and maintenance access.
Importante: An IP-rated cabinet does not automatically make every internal SPD suitable for direct outdoor exposure. Confirm the environmental limits for the selected product.
LEEYEE Preliminary Mapping

Famiglie di prodotti LEEYEE tipiche per armadi telecom

This mapping helps buyers identify the likely product family. It is not a universal model-substitution table.

Serie LY1-C40
Uso tipico Type 2 AC protection for selected distribution and rectifier-input applications.
Confirm before ordering Uc, poles, In, Imax, Up, earthing system and remote-contact option.
LY1-C401S1
Uso tipico Compact 1P+N AC protection where this arrangement matches the single-phase cabinet design.
Confirm before ordering System voltage, earthing method, installation position and backup protection.
Serie LY1-12.5
Uso tipico AC Type 1+2 protection where the project requires declared lightning-current capability.
Confirm before ordering Iimp, Uc, poles, Up, upstream protection and installation position.
Low-Voltage DC Range
Uso tipico 48V or −48V DC feeder, rectifier output, battery bus and DC distribution protection.
Confirm before ordering Highest continuous voltage, polarity, bonded conductor, poles and remote signalling.
RJ45 / PoE Range
Uso tipico Copper Ethernet, outdoor cameras, wireless equipment and monitoring interfaces.
Confirm before ordering Data speed, PoE method, power, protected pairs, shielding and connectors.
LY10 Signal SPD
Uso tipico RS485, sensors, control circuits and industrial communication lines.
Confirm before ordering Signal voltage, pair count, current, transmission requirement and terminal layout.
Final model confirmation: Send the cabinet diagram, system voltage, interfaces, grounding arrangement and document requirements before approving the exact model.
Supplier Verification

Cosa devono verificare gli acquirenti oltre il datasheet

A technically suitable SPD still needs product documentation, manufacturing control and sample confirmation before bulk ordering.

Component and product testing

LEEYEE testing capability includes MOV and GDT testing, impulse equipment, thermal stability testing and combination-wave testing. Applicable tests depend on the product category and test plan.

Document-scope confirmation

Confirm that the datasheet, certificate or report applies to the exact model, voltage, pole arrangement and declared ratings being ordered.

Approvazione del campione

Verify terminal arrangement, DIN-rail space, remote contact, labels and replacement modules before bulk production.

One certificate or test photograph should not be assumed to cover every AC, DC, RJ45, PoE or signal SPD.
Lifecycle Planning

Manutenzione SPD e sostituzione moduli

Plan routine inspections, remote alarm tests and compatible module replacement without rebuilding the cabinet distribution section.

IEC 61643-22 addresses selection, location, coordination and operational considerations for telecommunications and signalling network SPDs. [4]

01

Routine Inspection

Check status indicators, terminals, wiring, overheating, contamination, moisture and corrosion.

02

Remote Alarm Test

Verify that the monitoring system receives the intended normal and failure states.

03

Module Replacement

Use the compatible replacement cartridge specified for the installed base, voltage and protection characteristics.

04

Post-Surge Check

Inspect the SPDs, terminals, grounding conductors and protected equipment after a known severe surge event.

For OEM and Project Buyers

Informazioni da inviare prima di richiedere un preventivo

These details allow the supplier to compare the same engineering requirement and reduce model-selection errors.

Cabinet application Telecom power, wireless site, CCTV, roadside network or another outdoor communication application.
Electrical drawing Show AC input, rectifier, battery, DC distribution, loads and grounding points.
AC input details Voltage, phases, neutral, earthing system and SPD installation position.
48V / −48V DC range Nominal voltage, maximum voltage, rectifier range, polarity and bonded conductor.
Ethernet interfaces Port quantity, speed, cable category, shielding and connected equipment.
PoE information PoE method, required power, powered pairs and operating current.
Linee di segnale RS485, sensors, door contacts, BMS, RTU and other external copper circuits.
Allerta remota COM, NO and NC logic, contact rating and controller input.
Grounding layout Grounding-bar position, SPD connection route and site-earthing interface.
Outdoor environment IP rating, temperature, humidity, condensation control and corrosion exposure.
Mechanical limits DIN-rail width, terminal direction, cable space and service access.
Commercial requirements Quantity, target market, documents, OEM label, packaging and spare modules.

Hai bisogno di una raccomandazione iniziale per SPD?

Send the cabinet drawing, AC input, highest continuous DC voltage, RJ45 or PoE requirements, signal-line list, grounding layout and expected quantity.

LEEYEE B2B Support

Supporto per la fornitura OEM di armadi telecom e progetti

LEEYEE is a specialized surge protection and low-voltage protection supplier, trusted for solar PV, power distribution, telecom, industrial and OEM applications.

CNSPD is LEEYEE’s surge protection-focused brand platform, built to help global buyers source reliable SPDs and related low-voltage protection products.

Costruiti per Proteggere. Affidabili nel Tempo.

Available B2B support

  • AC, DC and signal SPD parameter confirmation
  • Cabinet interface and DIN-rail space review
  • Remote alarm contact configuration
  • Datasheet and document-scope confirmation
  • OEM label and private-label discussion
  • Sample evaluation before bulk production
  • Replaceable-module and spare-parts planning
Final approval should be based on the actual cabinet drawing, system parameters, applicable requirements and sample verification.
Domande frequenti

FAQ SPD per armadi telecom all'aperto

What SPDs are normally required in an outdoor telecom cabinet?

A cabinet may require an AC input SPD, a 48V or −48V DC SPD, RJ45 or PoE protection, signal-line SPDs and remote alarm contacts. The exact combination depends on the conductive lines entering and leaving the cabinet.

Can one SPD protect the complete telecom cabinet?

Usually not. AC power, DC power, Ethernet, PoE and signal circuits have different operating voltages, interfaces and performance requirements.

Where should the AC SPD be installed?

It is commonly installed near the AC cable entry or within the AC distribution section before the rectifier and sensitive AC loads. The final location must follow the project design.

How should a −48V telecom SPD be selected?

Confirm the highest continuous voltage, polarity, bonded conductor, protection modes, discharge ratings, voltage protection level and grounding arrangement.

Can a PV DC SPD be used for a 48V telecom cabinet?

It should not be treated as a direct substitute. A high-voltage photovoltaic circuit and a low-voltage telecom DC bus have different system conditions.

Does every RJ45 SPD support PoE and Gigabit Ethernet?

No. Confirm the data rate, PoE arrangement, powered pairs, current, cable category, shielding and insertion-loss requirements.

Does an IP65 cabinet prevent internal condensation?

No. An IP classification addresses defined enclosure-ingress conditions. Internal condensation can still occur when temperature and humidity change.

Is remote alarm useful for an outdoor telecom cabinet SPD?

It is useful for remote and unattended cabinets. A potential-free contact can report a status change to an NMS, PLC, RTU or alarm controller.

Why should SPD grounding conductors be short?

Fast surge current can create additional voltage across the inductance of long conductors. Short, direct routing reduces unnecessary added voltage.

What should a cabinet OEM send before requesting a quote?

Send the electrical drawing, AC input, maximum DC voltage, grounding layout, Ethernet and PoE requirements, signal list, remote-alarm logic, mechanical space, environment, documents and quantity.

Riferimenti autorevoli

Normative e quadro di riferimento tecnico

  1. IEC 61643-11:2025 — Low-voltage surge protective devices connected to AC low-voltage power systems: requirements and test methods. IEC publication
  2. IEC 61643-41:2025 — Surge protective devices connected to DC low-voltage power systems: requirements and test methods. IEC publication
  3. IEC 61643-21:2025 — Surge protective devices connected to telecommunications and signalling networks: requirements and test methods, including networks carrying power on the same line such as Power over Ethernet. IEC publication
  4. IEC 61643-22:2015 — Selection and application principles for surge protective devices connected to telecommunications and signalling networks. IEC publication
  5. ITU-T K.56:2021 — Protection of radio base stations against lightning discharges. ITU-T recommendation
  6. ITU-T K.112:2021 — Lightning protection, earthing and bonding: practical procedures for radio base stations. ITU-T recommendation
  7. IEC 60529:1989+A1:1999+A2:2013 — Degrees of protection provided by enclosures, IP Code. IEC publication
  8. IEC 61643-12:2020 — Selection and application principles for SPDs connected to AC low-voltage power systems. IEC publication
  9. IEC 62305-4:2024 — Protection against lightning: electrical and electronic systems within structures. IEC publication
This page provides a B2B engineering-selection framework. It does not replace a project-specific lightning risk assessment, electrical design, equipment-manufacturer instruction or local installation requirement. Final SPD selection, wiring, backup protection, grounding and approval must be confirmed against the actual cabinet design and applicable standards.
Articolo precedente.
Elenco di controllo per la manutenzione per i team di manutenzione e i costruttori di pannelli
Articolo successivo.
Guida alla protezione da sovratensioni per armadi di rete per alimentazione AC, RJ45 e PoE
Devin Ling - Ingegnere Elettrico presso LEEYEE Electrics

Devin Ling

Ingegnere elettrico presso LEEYEE Electrics

Oltre 10 anni nei dispositivi di protezione dalle sovratensioni
Specializzato in IEC 61643 / UL 1449
Esperienza in impianti solari fotovoltaici e industriali

Parlare con un ingegnere Ottenere una raccomandazione tecnica

Non siete sicuri di quale SPD sia adatto al vostro sistema?
Ottenete una rapida raccomandazione dai nostri ingegneri.

Informazioni su LEEYEE:

Fondata nel 2009, LEEYEE è un produttore specializzato in dispositivi di protezione a bassa tensione. Possediamo i certificati CE, CB, ISO9001 e TUV. Inoltre, supportiamo le opzioni di personalizzazione per l'aspetto del colore, i parametri e i loghi. Per consultare i cataloghi dei prodotti e le richieste di informazioni, è possibile contattarci via e-mail all'indirizzo max@cnspd.com.

Cita ora

    Elettrico LEEYEE

    Correlato
    Prodotti