Automatic Loom Test Equipment For Laboratory And Production Environments
Cables (two or more wires within a single covering) and looms (an assembly of discrete wires) require testing after fabrication to ensure continuity between desired points, the absence of short circuits, adequate insulation, resistance, and undamage-2 insulation. Today's users require syste...
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ndltd-netd.ac.za-oai-union.ndltd.org-wits-oai-wiredspace.wits.ac.za-10539-163152019-05-11T03:41:43Z Automatic Loom Test Equipment For Laboratory And Production Environments Bloch, Neil Cables (two or more wires within a single covering) and looms (an assembly of discrete wires) require testing after fabrication to ensure continuity between desired points, the absence of short circuits, adequate insulation, resistance, and undamage-2 insulation. Today's users require systems which have higher test speeds, expandability, easier programming and lower cost. A market investigation of the automatic loom testers available today, shows that there is no inexpensive solution. With the rapidly growing demand for loom testing facilities, the need for a new, fully functional, low-coot automatic loom tester has arisen. Due to the many forms that such testers take (i.e. varied packaging, node capacity etc.) the design presented here concentrates on an open-ended approach, the aim of which is to develop and prove technologies which satisfy the various loom testing philosophies of Interest. Three expandable modules have been developed, namely the GO/NO-GO, QUALITY, and CENTRAL PROCESSING UNIT cards. On this basis, m customer can configure an automatic loom tester to satisfy the needs of his particular environment. 2015-01-09T09:41:34Z 2015-01-09T09:41:34Z 2015-01-09 Thesis http://hdl.handle.net/10539/16315 en application/pdf application/pdf |
collection |
NDLTD |
language |
en |
format |
Others
|
sources |
NDLTD |
description |
Cables (two or more wires within a single covering) and looms
(an assembly of discrete wires) require testing after
fabrication to ensure continuity between desired points, the
absence of short circuits, adequate insulation, resistance, and
undamage-2 insulation. Today's users require systems which have
higher test speeds, expandability, easier programming and lower
cost.
A market investigation of the automatic loom testers available
today, shows that there is no inexpensive solution. With the
rapidly growing demand for loom testing facilities, the need
for a new, fully functional, low-coot automatic loom tester has
arisen. Due to the many forms that such testers take (i.e.
varied packaging, node capacity etc.) the design presented here
concentrates on an open-ended approach, the aim of which is to
develop and prove technologies which satisfy the various loom
testing philosophies of Interest.
Three expandable modules have been developed, namely the
GO/NO-GO, QUALITY, and CENTRAL PROCESSING UNIT cards. On this
basis, m customer can configure an automatic loom tester to
satisfy the needs of his particular environment. |
author |
Bloch, Neil |
spellingShingle |
Bloch, Neil Automatic Loom Test Equipment For Laboratory And Production Environments |
author_facet |
Bloch, Neil |
author_sort |
Bloch, Neil |
title |
Automatic Loom Test Equipment For Laboratory And Production Environments |
title_short |
Automatic Loom Test Equipment For Laboratory And Production Environments |
title_full |
Automatic Loom Test Equipment For Laboratory And Production Environments |
title_fullStr |
Automatic Loom Test Equipment For Laboratory And Production Environments |
title_full_unstemmed |
Automatic Loom Test Equipment For Laboratory And Production Environments |
title_sort |
automatic loom test equipment for laboratory and production environments |
publishDate |
2015 |
url |
http://hdl.handle.net/10539/16315 |
work_keys_str_mv |
AT blochneil automaticloomtestequipmentforlaboratoryandproductionenvironments |
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1719084248899518464 |