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Mining & Tunnelling Cable Guide

Mining Cable Selection: SHD-GC vs Type G-GC vs Type W

SHD-GC, Type G-GC and Type W identify different construction paths. Select from the electrical system and duty first, then verify the exact offered cable, marking and approval documents.

Last technical review:

01Voltage first

Separate the 2 kV and medium-voltage paths before comparing names.

02Protection

Specify phase shielding, grounding and ground-check conductors separately.

03Layout

Confirm round or flat geometry, conductor count and movement duty.

04Evidence

Match the offered construction to the required standard and acceptance record.

SHD-GC shielded mining power cable for mobile equipment
SHD-GC shielded mining power cable for mobile equipment

Quick decision: choose by voltage and protection system

Choose the SHD-GC product specifications when the schedule requires a shielded mining power construction in the applicable voltage class, together with grounding and an insulated ground-check conductor. Choose Type G-GC cable 2000 V when the schedule calls for a 2000 V portable mining cable with grounding conductors and a ground-check conductor but does not call for SHD-GC phase shielding. Choose Type W only when its stated voltage, conductor layout, grounding arrangement, geometry and movement duty match the circuit.

The names are not a substitution ladder. A Type W cable does not become a Type G-GC cable because it serves portable equipment, and Type G-GC does not become SHD-GC because both descriptions mention a ground-check conductor. The project cable schedule, protection design and exact datasheet control the decision.

First-pass comparison for a cable schedule
Cable constructionReference product recordElectrical distinctionDo not assume
SHD-GC2, 8, 15 and 25 kV familyShielded round construction with grounding conductors and an insulated ground-check conductorThat every voltage, size or marking has the same approval
Type G-GC2000 VPortable power with grounding conductors and a ground-check conductorThat it has SHD-GC-style phase shielding
Round Type W600 or 2000 V; three-conductor round recordPortable-power layout for the stated movement and equipment dutyA ground-check conductor or medium-voltage phase shielding
Flat Type W600 or 2000 V; four-conductor flat recordFlat portable-power layout for the stated equipment and routeElectrical equivalence to round Type W or any GC type

Define the electrical system before selecting the cable name

Begin with the single-line diagram, equipment manual and existing cable schedule. Record the nominal and maximum system voltage, phase count, conductor size or load current, grounding method, protective-device arrangement and whether the system monitors grounding continuity. Only then should the team compare cable family names.

For a replacement, read the complete jacket marking rather than relying on an abbreviated maintenance note. Capture photographs of the marking, cross-section, coupler and termination. A useful selection record separates each requirement so a supplier cannot satisfy one item and unintentionally hide a mismatch elsewhere.

  • Rated voltage and conductor size for the actual circuit.
  • Phase shielding, grounding conductors and ground-check conductor as separate fields.
  • Round or flat geometry, overall dimensions and termination space.
  • Trailing, dragging, coiling or non-automatic reeling duty.
  • Required standard, cable marking, tests and acceptance evidence.

Use the selection map as a screening tool

The map below is a first filter for an enquiry, not an engineering approval. Follow its branches from voltage and protection requirements to conductor layout and movement, then compare the resulting candidate with the cable schedule.

Selection map comparing SHD-GC, Type G-GC and Type W mining cable
Screening map for SHD-GC, Type G-GC, round Type W and flat Type W enquiries.

What separates SHD-GC cable

The current TEBAOFLEX SHD-GC product record covers a 2, 8, 15 and 25 kV family. It describes a round shielded construction with power conductors, grounding conductors and an insulated ground-check conductor. This makes SHD-GC the logical starting point when the cable schedule explicitly requires that shielded architecture.

Do not stop at the family name. Ask which voltage construction is offered, how the conductor and insulation screens are arranged, the size and location of grounding and ground-check conductors, jacket compound, overall diameter, mass, minimum bend data and permitted movement. Termination design must suit the screens and grounding system.

The ICEA S-75-381 / NEMA mining-cable standard scope provides the standards-family context. Use the edition named by the project and compare the supplier’s declared construction and tests against it; this guide does not assign clause-level compliance to a product.

What separates Type G-GC cable

The current Type G-GC cable 2000 V record is a 2000 V portable mining cable path. It lists flexible conductors, grounding conductors, an insulated ground-check conductor, EPR insulation and a reinforced jacket. The GC suffix is important because it identifies a ground-check conductor in the recorded construction.

That does not make Type G-GC a low-voltage version of every SHD-GC cable. Confirm whether the circuit requires phase shielding, the exact grounding-conductor layout, the ground-check circuit interface, conductor size, overall diameter and coupler compatibility. Also define how the machine moves the cable. A rugged jacket description alone does not establish suitability for a reel, repeated torsion or a route with severe sidewall pressure.

Use Type G-GC as a candidate only after the project requirements and the offered datasheet agree on those points. If the tender specifies another type, document all deviations and obtain written acceptance before manufacture.

Round Type W and flat Type W are separate layouts

The site’s Round Type W cable record describes a 600/2000 V, three-conductor round construction and records DC mining, non-automatic reeling and drag duty among its uses. The Flat Type W cable record describes a 600/2000 V, four-conductor flat construction and records AC shuttle cars, roof bolters and off-track equipment among its uses.

These are product-record applications, not a universal rule for every cable sold as Type W. The round profile can suit conventional routing and handling, while a flat profile can suit equipment or paths designed around that geometry. Shape changes bend direction, clearance, pulling behavior and termination arrangement. It does not by itself define the protection scheme.

Round and flat Type W screening questions
QuestionRound Type W recordFlat Type W record
Voltage shown600/2000 V600/2000 V
Recorded layoutThree-conductor, roundFour-conductor, flat
Recorded duty examplesDC mining, non-automatic reeling and draggingAC shuttle cars, roof bolters and off-track equipment
Still verifyGrounds, movement limits, dimensions, jacket and listingGrounds, bend direction, dimensions, jacket and listing

Ground-check function and MSHA acceptance are two checks

A ground-check conductor is part of a monitoring circuit. The applicable protection design determines how grounding continuity is supervised and how the circuit responds to a fault or loss of continuity. The cable drawing must therefore agree with the equipment and protection scheme. The official text for 30 CFR 75.803 ground-check circuit context is a starting point when that United States requirement applies.

MSHA flame-resistant cable acceptance is a different question. A cable may include a ground-check conductor without that fact proving an MSHA acceptance, and an acceptance reference does not remove the need to verify voltage, shielding or conductor layout. Check the MSHA flame-resistant cable acceptance list and obtain evidence that identifies the exact offered construction and marking.

Match movement duty, route and terminations

Cable type is only one layer of the mechanical decision. Tell the supplier whether the cable is dragged, manually coiled, moved through rollers, reeled without an automatic tension system, repeatedly bent at one point or exposed to vehicle traffic. Provide reel and sheave dimensions when they exist. A construction intended for portable power can still be unsuitable for a particular cycle rate, tensile load or torsional duty.

Route conditions also change the selection. Water, oil, sunlight, low temperature, sharp rock, mud and crushing exposure affect jacket and handling requirements. At each end, confirm gland or coupler dimensions, conductor preparation, shield treatment and ground-check connection. A dimensional mismatch discovered after production is not solved by a matching cable-family name.

Use a clause-level approval workflow for substitutions

When the requested type is unavailable or another construction is proposed, replace the word equivalent with a documented comparison. The responsible engineer or authority should be able to see every match, deviation and open item before approval.

  1. Freeze the requirement. Record the cable schedule, standard edition, equipment manual and acceptance wording.
  2. Identify the offered cable. State the exact manufacturer, type, voltage, conductor size, construction revision and marking.
  3. Compare electrical construction. Check insulation, screens, grounding conductors, ground-check conductor and protection interface.
  4. Compare mechanical duty. Check geometry, dimensions, jacket, bending, tension, torsion and route exposure.
  5. Attach evidence. Include datasheet, cross-section drawing, test plan and applicable acceptance record.
  6. Close deviations in writing. Obtain project approval before manufacture, shipment or installation.

Questions that prevent the most common selection errors

The fastest way to expose a weak comparison is to ask what the proposed cable does not include. The table below turns frequent assumptions into verifiable questions.

Assumption check before substitution
Risky assumptionQuestion to put in the technical review
Both names contain GC, so they are equivalentAre voltage, phase shielding, grounding layout and ground-check interface identical?
Type W means any portable mining cableWhich voltage, conductor count, grounds, geometry and movement duty does this exact Type W construction provide?
The same family has the same dimensionsDoes the offered size and voltage have the stated diameter, mass, bend data and termination fit?
A logo proves mine acceptanceWhich current record and cable marking identify this exact offered construction?
A lower price proves a better substitutionAre all deviations, service risks, tests and installation changes included in the comparison?

RFQ checklist for SHD-GC, Type G-GC or Type W

A useful RFQ gives the engineering team enough information to reject a wrong path early. Attach the existing cable schedule or marking photographs where available, and identify any requirement that is mandatory rather than preferred.

  • Nominal and maximum system voltage, phase count, load current and conductor size.
  • Required cable type and standard edition, including any owner specification.
  • Phase shielding, grounding conductors and ground-check conductor arrangement.
  • Equipment name, AC or DC system, route length and cable length per drum.
  • Dragging, coiling, reeling, bending, torsion and pulling conditions.
  • Water, oil, sunlight, temperature, abrasion, crushing and flame-resistance requirements.
  • Coupler, gland, termination, maximum diameter and installation constraints.
  • Required datasheet, drawing, routine or type tests, marking and mine acceptance evidence.

Send the cable schedule to TEBAOFLEX for a technical quotation. For broader equipment-duty screening, use the mining cable selection guide or the medium-voltage mining cable guide before naming a product.

Frequently asked questions

What is SHD-GC cable?

SHD-GC is a shielded mining power cable construction. The current TEBAOFLEX record covers 2, 8, 15 and 25 kV versions with grounding conductors and an insulated ground-check conductor; verify the exact voltage, size and documentation offered.

What is the difference between Type G-GC and Type W cable?

The current Type G-GC record is a 2000 V portable cable with grounding conductors and a ground-check conductor. Type W records use different round or flat portable-power layouts; the name alone does not establish a ground-check conductor.

Is Type W the same as SHD-GC cable?

No. Type W and SHD-GC identify different construction paths. Compare voltage, phase shielding, grounds, ground-check requirements, movement duty and the exact datasheet before considering a substitution.

Does SHD-GC automatically mean MSHA accepted?

No. The cable family name and its ground-check conductor do not prove acceptance. Check the current official acceptance record and the marking for the exact offered construction.

Can flat Type W replace round Type W?

Not by shape or voltage alone. Confirm conductor count, grounding arrangement, bend direction, dimensions, movement, equipment interface, terminations and written project approval.

Sources and editorial scope

This guide combines the linked TEBAOFLEX product records with the external sources below. Product links describe TEBAOFLEX reference constructions; they do not prove approval, certification or equivalence for a project. Confirm the governing standard, edition, machine instructions and acceptance documents with the responsible engineer or authority.

Related product references

Use these pages to compare construction details after the application and protection system are defined.

Continue the selection process