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classITEM_CLASSv1rev 22017-12-07

Structural design of a capacitance level transmitter/switch

0112/2///61987#ABF136

properties characterizing the constructional details of a capacitance level transmitter and a capacitance level switch

Hierarchy#

Ancestors (top) → ABF136 (highlighted) → subclasses and powertype instances. Capped at 12 each; see the full lists in the sections below.

Higher level classes3#

Declared properties37#

37 / 37

precautions taken or to be taken during manufacture of the device regarding wetted parts to ensure its safe operation under special operation conditions

ABA633type of surface finishENUM_STRING_TYPE

classification of a component surface finish according to the method used to achieve it

ABB028operating frequencyREAL_MEASURE_TYPE

typical or rated electrical or mechanical vibration frequency at which the device operates

ABB140leak tightness to exteriorREAL_MEASURE_TYPE

tightness of a pressure or vacuum housing expressed in terms of the leakage rate to or from its environment

ABB396type of sealTRANSLATABLE_STRING_TYPE

classification of a seal according to its construction

ABB521surface roughness of wetted partsREAL_MEASURE_TYPE

finishing specification of a surface expressed as roughness, either as a maximum depth or in a standardized roughness dimension

ABC028type of feedthroughTRANSLATABLE_STRING_TYPE

classification of a feedthrough according to the mechanical design

ABE884insertion lengthREAL_MEASURE_TYPE

overall length of that part of a device or component to be found within a containment

ABF133style of bottom weightENUM_STRING_TYPE

classification of the fixation of a probe by a weight according to its mechanical and electrical construction

ABF137type of probeENUM_STRING_TYPE

classification of a probe according to its mechanical construction

ABF138length of probeREAL_MEASURE_TYPE

length of a probe, including the bottom weight where applicable, measured from the bottom of the process connection

ABF139style of probeENUM_STRING_TYPE

classification of a probe according to its method of fixation

ABF140style of probe insulationENUM_STRING_TYPE

classification of the insulation of an electrical probe according to its mechanical construction

ABF141diameter of probeREAL_MEASURE_TYPE

largest diameter of a probe, where appropriate excluding the bottom weight

ABF144length of probe partial insulationREAL_MEASURE_TYPE

length of that part of a probe, measured from the bottom of the process connection, that is electrically insulated

ABF146active length of probeREAL_MEASURE_TYPE

length of that part of a probe that is used to provide a measurement

ABH399maximum discharge to probeREAL_MEASURE_TYPE

highest current a probe must withstand without permanent impairment of operating characteristics

Subclasses#

No subclasses

This class is a leaf — no other classes inherit from it.

Metadata#

Version
1
Revision
2
Status
Standard
Publisher
IEC
Published in
IEC 61987
Responsible committee
IEC/SC 65E
Change request
C00200
Dates
  • Original: 2017-12-07
  • Current version: 2017-12-07
  • Current revision: 2026-05-04

Full source data#

Every key from the original .xls export, including multilingual variants, status, publisher, committee, and workbook-specific codes.

Raw properties (23 keys from source .xls) — click to expand
C002
C00200
C011
IEC
C012
IEC 61987
C016
Standard
C017.de
0
C018.de
2015-11-12
C019.de
Mr. W. Hartmann
MDC_P001_5
0112/2///61987#ABF136
MDC_P002_1
1
MDC_P002_2
2
MDC_P003_0
2026-05-04
MDC_P003_1
2017-12-07
MDC_P003_2
2017-12-07
MDC_P003_3
2026-05-04
MDC_P004.de
Konstruktiver Aufbau kapazitiver Füllstandmessumformer/-Grenzstandschalter
MDC_P004.en
Structural design of a capacitance level transmitter/switch
MDC_P006.de
Merkmale, die die konstruktiven Details eines kapazitiven Füllstandmessumformers und kapazitiven Grenzstandschalters kennzeichnen
MDC_P006.en
properties characterizing the constructional details of a capacitance level transmitter and a capacitance level switch
MDC_P010
0112/2///61987#ABV501
MDC_P011
ITEM_CLASS
MDC_P012
IEC/SC 65E
MDC_P014
{0112/2///61987#ABU164,0112/2///61987#ABF137,0112/2///61987#ABF139,0112/2///61987#ABF141,0112/2///61987#ABF733,0112/2///61987#ABF153,0112/2///61987#ABF138,0112/2///61987#ABF140,0112/2///61987#ABF143,0112/2///61987#ABF144,0112/2///61987#ABF145,0112/2///61987#ABF734,0112/2///61987#ABF147,0112/2///61987#ABF146,0112/2///61987#ABH400,0112/2///61987#ABE884,0112/2///61987#ABB028,0112/2///61987#ABH399,0112/2///61987#ABF150,0112/2///61987#ABF151,0112/2///61987#ABF149,0112/2///61987#ABF151,0112/2///61987#ABU883,0112/2///61987#ABF133,0112/2///61987#ABF134,0112/2///61987#ABF731,0112/2///61987#ABB007,0112/2///61987#ABC028,0112/2///61987#ABB521,0112/2///61987#ABA147,0112/2///61987#ABA633,0112/2///61987#ABB140,0112/2///61987#ABB396,0112/2///61987#ABB915,0112/2///61987#ABD033,0112/2///61987#ABB457,0112/2///61987#ABC969}
MDC_P019
false

Version history2#

  1. Current rev 02
    04 May 2026 · 14:34 UTC by BATCH 00000863
    View on cdd.iec.ch ↗
  2. superseded rev 01
    28 Mar 2018 · 07:26 UTC by BATCH 00000762
    ↓ Version JSON
    View on cdd.iec.ch ↗

IEC CDD records every published revision of each entity — version number, status, timestamp, and the change request that introduced it. OpenCDD captures the full chain of custody from cdd.iec.ch; the entry marked Current is the one rendered on this page.