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Circuit identifier
This field is optional: it will be printed on the report for identification purposes

Cable type

Cable installation method
checked> Cable grouping method
Cables in group Length of cable completely enclosed in thermal insulation"
Ring Radial Ring radial Design current Overcurrent protective device
External earth loop resistance" ohms

Voltage drop:
metres
For a total cable length of: Volt drop at middle of ring: Volt drop at end of cable: degrees celcius amps and cable temperature is at maximum value of V when carrying
Warning: voltage drop exceeds the 4% threshold specified by the Wiring Regulations {Gz?Basic cable properties:
Cable type: Installation method: amps at 30 degrees celcius
Uncorrected nominal current: degrees celcius
Rated full load temperature: Ambient temperature: Current rating temperature correction factor: Semi-enclosed fuse correction factor: Grouping method: Cables in group: Grouping correction factor: Ring correction factor: Length in thermal insulation: Thermal insulation correction factor: amps

Corrected nominal current: ohms/metre at Specific resistance of power conductor: Specific resistance of earth conductor: K-1
Temperature cofficient of resistance:

CableCalc V1.0

(c)2000 Kevin Boone, all rights reserved

This program checks whether the choice of cable and over-current protection device conforms to the requirements of BS7671 (IEE Wiring Regulations 16th edition. Before using this program for the first time, please read the instructions content-type: text/html Kevin's cable characteristics calculator QUERY_STRING

Cable specification report

Generated by CableCalc V1.0 (c)2000 Kevin Boone, all rights reserved

Basic compatibility of overcurrent device with cable and design current
Selected over-current device: Nominal current rating of overcurrent device is compatible with design current
Nominal current rating of overcurrent device is compatible with corrected cable current rating
amps
Current required to disconnect device in 5 seconds: ohms at maximum rated temperature
Effective worst-case earth conductor resistance of cable: volts Worst-case shock voltage after five seconds: Disconnection times
ohms
Total fault resistance: amps
Fault current: Over-current device will disconnect in 5 seconds
Over-current device will disconnect in less than 0.4 seconds
This cable/device combination is suitable for all allowed applications, including bathroom and outdoor systems
Over-current device will not disconnect in 0.4 seconds
This cable/device combination is not suitable for outdoor circuits or bathroom installations
Because the worst-case shock voltage is lower than 50V at disconnection time, this combination is suitable for socket outlets and fixed appliances in dry locations.
Because the worst-case shock voltage is greater than 50V at disconnection time, supplementary earthing or RCD protection is required if this cable feed socket outlets.
Over-current device will not disconnect in 5 seconds. RCD protection, supplementary earthing, or reduction in earth loop resistance is required
overcurrent protection device has a nominal current higher than the corrected nominal rating of the cable: not suitableovercurrent protection device has a nominal current smaller than that of the design current: not suitableI@out of memorypos > lenlen - n1 > max_size () - n2pos2 > len2pos > length ()

CableCalc V1.0

(c)2000 Kevin Boone, all rights reserved

Overview

CableCalc is a simple program for checking that a selected cable, installation method, operating current and over-current device conform to all the basic electrical safety regulations defined in BS7671 (which is equivalent to the IEE Wiring Regulations, 16th Edition). These regulations state that the current-carrying capacity of a cable must be appropriate for its load and the over-current device protecting it, and that the over-current device must disconnect in an earth fault within 0.4 or 5 seconds, depending on the application. In addition, the voltage drop along the cable must be less than 4% of the supply voltage.

CableCalc is intended for use in simple. domestic installations, and to that effect only supports cable sizes and over-current devices likely to be appropriate in a domestic installation.

Sequence of operations

CableCalc determines the true current-carrying capacity of the cable, then calculates the voltage drop, worst-case shock voltage, and disconnection times of the over-current device selected. For the latter, you will need to know, or assume, the earth-fault loop resistance of the external system.

The full calculation is divided into stages, where each stage uses the results from the previous one. If you are only interested in kowing, say, the corrected current rating of a cable, you can just fill in the first section of the form, and click the button "Calculate basic properties" at the end of the section. The same applies to the other sections. If you want a full report, click "Calculate disconnection times" at the very end of the form.

Assumptions

This program makes a number of assumptions of which you need to be aware
  • All voltages and currents are AC RMS
  • Cables, fuses and MCBs conform to the appropriate British Standards
  • The same over-current device provides both overload and short-circuit protection
  • The cable may be at its maximum operating temperature when a fault occurs. With fixed loads and over-rated cables this may not be true, but the error is on the side of safety. This assumption is made because there is no straightforward way of working out the true running temperature with a variable load
  • All the supported devices have a fusing current of less than 1.45 times the nominal current. The relationship between fusing current and current carrying capacity of the the cable is not checked or reported by the software, because all the supported devices will automatically pass
  • The cable has its `supply' end at the consumer's intake position. This implies that one end of the earth conductor will be at the same potential as the main earthing terminal. If this is not true, you could add a little to the earth loop resistance to represent the resistance between the cable's supply end and the intake position
  • A live-neutral short-circuit will open the over-current device within the allowed disconnection time. This is a safe assumption, and allowed in the Regulations, for all the cables and devices supported by this software.

Earth loop resistance

To calculate disconnection times, you will need to know (or assume) the earth-fault loop resistance external to your installation. This information can be obtained from the supply company. Typical figures are 0.3 ohms (for TN-C-S supplies), 0.8 ohms (for TN-S supplies), or 20 ohms if earthing is by a local earth spike.

Disclaimer

While every effort has been taken to ensure that the information presented is accurate, and appropriate to the purpose, the author will not take responsibility for any adverse consequences arising from its use. This software is intended to be used only by people with the appropriateexperience and technical knowledge to be able to interpret the information it provides.&@&@*@.@1@,@,@0@3@6@2@2@7@;@>@9@9@>@B@D@@@@@C@G@D@E@E@J@O@Q@????????ffffff??333333?= ףp=??333333?HzG??\(\? ףp= ??Gz?????Q@Q@Q@Q@Q@Q@Mbp?Mbp?Mbp?Mbp?Mbp?Mbp?:pΈ?@Lj?_vO~?sr?[| j? ]?:pΈ?@Lj?@Lj?@Lj?_vO~? ]?PVC-insulated two-core-and-earth 1 mm2 with 1 mm2 earth conductorPVC-insulated two-core-and-earth 1.5 mm2 with 1.5 mm2 earth conductorPVC-insulated two-core-and-earth 2.5 mm2 with 1.5 mm2 earth conductorPVC-insulated two-core-and-earth 4 mm2 with 1.5 mm2 earth conductorPVC-insulated two-core-and-earth 6 mm2 with 2.5 mm2 earth conductorPVC-insulated two-core-and-earth 10 mm2 with 4 mm2 earth conductorunknownewenclosed in an insulated wallbetween a surface and thermal insulation materialenclosed in a surface-mounted conduitclipped to a surfacein free air, or a perforated metal trayQcuno grouping; cables widely separatedcables bunched and clipped, or enclosed togethercables clipped side-by-side, touching, on non-metallic surfacecables clipped side-by-side, not touching, on non-metallic surfacedesign current is too high for the corrected rating of this cable. Consider specifying a lower current, a heavier cable, or a different method of installation@the selected cable is not rated to operate at the specified ambient temperatureI@Y@i@y@4@9@{Gz?>@A@Gz?D@ףp= ?F@HzG?I@Q?K@Q?N@?yQ@ffffff? ףp= ?Q?zG?Gz?Q?out of memorypos > lenlen - n1 > max_size () - n2&@&@*@.@1@,@,@0@3@6@2@2@7@;@>@9@9@>@B@D@@@@@C@G@D@E@E@J@O@Q@????????ffffff??333333?= ףp=??333333?HzG??\(\? ףp= ??Gz?????Q@Q@Q@Q@Q@Q@Mbp?Mbp?Mbp?Mbp?Mbp?Mbp?:pΈ?@Lj?_vO~?sr?[| j? ]?:pΈ?@Lj?@Lj?@Lj?_vO~? ]?%lf%xcabletypeinstallationmethodgroupingmethodprotectivedevicecablesingroupmaxambient' is not a valid number (in maximum ambient temperature)`lengthofinsulation' is not a valid number (length of cable in thermal insulation)length' is not a valid number (length of cable)externalearthloopresistance' is not a valid number (external earth loop resistance)designcurrent' is not a valid number (design current)supplyvoltage' is not a valid number (supply voltage)circuitnameinstructionscircuittyperingsubmitCalculate basic cable propertiesCalculate voltage dropCheck basic suitabilityCheck disconnection timeundefined argument `'out of memorypos > lenlen - n1 > max_size () - n2pos2 > len2pos > length ()&@&@*@.@1@,@,@0@3@6@2@2@7@;@>@9@9@>@B@D@@@@@C@G@D@E@E@J@O@Q@????????ffffff??333333?= ףp=??333333?HzG??\(\? ףp= ??Gz?????Q@Q@Q@Q@Q@Q@Mbp?Mbp?Mbp?Mbp?Mbp?Mbp?:pΈ?@Lj?_vO~?sr?[| j? ]?:pΈ?@Lj?@Lj?@Lj?_vO~? ]?5-amp cartridge fuse to BS136115-amp cartridge fuse to BS136120-amp cartridge fuse to BS136135-amp cartridge fuse to BS136145-amp cartridge fuse to BS13615-amp type-1 MCB6-amp type-1 MCB10-amp type-1 MCB15-amp type-1 MCB16-amp type-1 MCB20-amp type-1 MCB30-amp type-1 MCB32-amp type-1 MCB40-amp type-1 MCB5-amp type-B MCB10-amp type-B MCB16-amp type-B MCB20-amp type-B MCB32-amp type-B MCB40-amp type-B MCBunknown 5Pe  2 D V out of memorypos > lenlen - n1 > max_size () - n2(@.@4@>@F@@@$@.@0@4@>@@@D@@$@0@4@@@D@+@ F@S@33333]@l@4@8@D@N@P@T@^@`@d@>@I@T@Y@d@i@5@fffffP@fffff&`@33333g@w@4@8@D@N@P@T@^@`@d@>@I@T@Y@d@i@@.@4@>@F@@@$@.@0@4@>@@@D@@$@0@4@@@D@+@ F@S@33333]@l@4@8@D@N@P@T@^@`@d@>@I@T@Y@d@i@5@fffffP@fffff&`@33333g@w@4@8@D@N@P@T@^@`@d@>@I@T@Y@d@i@@.@4@>@F@@@$@.@0@4@>@@@D@@$@0@4@@@D@+@ F@S@33333]@l@4@8@D@N@P@T@^@`@d@>@I@T@Y@d@i@5@fffffP@fffff&`@33333g@w@4@8@D@N@P@T@^@`@d@>@I@T@Y@d@i@±ıбds.O`޳ij T?δD /qF34s`asܶ$Qc̷ ޷AFSt3޹ù+BsT{` 9KrBsT`kFӻ3 K]yμn3S >ҽ# N3sɾ`۾FDpq0b>`t#F3 kC}.s^}#n6 IUG%@Rl`lPU @ :E]ieNi05<Ze ?H/=XHZe  ')5OyOaxxc&0u#3VVf C0dtWs6z0C3OcpqV`[kC.^llzzU3pOVcCq0P[kC.^llzzE3CO0cq@[kVC.p^llzz5O_7ppu0`n(epOyKW;IgWiuOX?MhXju"""""""""OaxxOyOaxxehz| (AB DG.o.k.P.N. 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