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Kewtech KT1780

Kewtech KT1780
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UK specific slender probe tips to GS38
and with no need to swap ends
Designed to the new internatonal safety
standards IEC 61243-3 / IEC 61010-1
Measurement Category CAT 1V 600V
Clear oversize LED indication
AC and DC voltage tests up to 690V
Continuity test
Clear audible tone
Single pole phase test
Polarity indication
Phase rotation test
Self diagonostic test
Double moulding gives comfortable grip
Auto power on/off
Extra bright white light pen torch
Probe cover protects user and probe tips
IP65
KT1780
2 POLE VOLTAGE DETECTOR
Built in test leads
Batteries
Printed Instruction Manual with
Certificate of Conformity
PRODUCT DATA SHEET
ACCESSORIES
OPTIONAL
Calibration Certificate
Kewprove3 - Proving Unit
Kewlok - Locking Off Device
VOLTAGE TEST
SINGLE POLE PHASE TEST
Voltage Range 100~690V AC (45~100Hz)
GENERAL
t. 01494 792 212 kewtechcorp.com e:sales@kewtechcorp.com
KT1780
SPECIFICATIONS
Voltage Detector
PHASE ROTATION TEST
System
Three-phase 4-wire system
200~690V phase-to-phase
(100~400V earth-to-phase)
AC 50/60Hz
CONTINUITY TEST
Detection Range 0~400K Ω + 50% (23 ± 5ºC)
Test Current Approx. 1.5µA (battery 3V, 0 Ω)
Internal Battery Consumption Approx. 80mA (battery 3V, 0 Ω)
Operating ref. conditions -15~55ºC no Condensation max 85% RH
Storage ref. condition -20~70ºC no Condensation, max 85% RH
Safety standards
IEC 61010-1:2010, IEC 61243-3:2010, IEC 601010-031:2008
Category: CAT III 690, CAT IV 600V polution deg 2
IEC 61557-7:2007
IP Rating IP65 (IEC60529)
Dimensions 243 x 64 x 26 mm
Weight 190g (including batteries)
Batteries 3V (2 x 1.5V AAA / LR03)
Voltage Range 12 - 690V AC/DC
Peak Current Is <3.5mA (at 690V)
Internal Battery Consumption Approx. 80mA (battery 3V, measuring 690V AC)
Battery Life Approx. 1000 operations (30s ON/240s OFF duty)
Nominal Voltage 12/24/50/120/230/400/690V, AC (16~400Hz), DC (±)
Tolerance
(Threshold voltage)
Light on at more than : 7 ± 3V (12V LED),
: 18 ± 3V (24V LED), : 37.5 ± 4V (50V)
75%±5% of nominal voltage, (120/230/400/690V LED)
Response Time <0.6s at 100% of each nominal voltage

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