Schneider Electric, TeSyS LR Thermal Overload Relay 1 NO/1 NC, 10A, 14 A F.L.C, 14A Contact Rating, 100 W, 250 V dc,

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PHP3,869.31

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PHP4,333.63

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RS Stock No.:
372-9029
Distrelec Article No.:
304-23-459
Mfr. Part No.:
LR2K0321
Manufacturer:
Schneider Electric
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Brand

Schneider Electric

FLC Motor Rating

10, 14A

Product Type

Thermal Overload Relay

Relay Contact Current

14A

Series

TeSyS LR

Mount Type

DIN Rail

Pole and Throw Configuration

3

Power Rating

100W

Terminal Type

Screw

Normal State Configuration

1 NO/1 NC

IP Rating

IP2X

Reset Method

Automatic & Manual

Number of Auxiliary Contacts

2

Adjustable Current Range

10 to 14 A

Minimum Operating Temperature

-20°C

Width

45mm

Contact Voltage

690V ac

Maximum Operating Temperature

55°C

Length

116mm

Standards/Approvals

VDE 0660, UKCA, CSA/IEC 60947, UL, BS 4941, NFC 63-650

Depth

65mm

Control Voltage

250, 690V dc

COO (Country of Origin):
CZ

Schneider Electric Mini Thermal Overload Relays - LR2-K Range


Schneider Electrics K thermal overload relays are adjustable from 0.11 to 11.5 A, they have been predominantly designed for use in applications that require motor protection.

This range of mini thermal overload relays feature compensated and phase failure sensitivity, the range also offers manual and automatic reset. Each overload relay has 3-poles and screw clamp terminals.

Features & Benefits


• Commonly referred to by the range short name - LR2K

• Easy maintenance checks, check the tightening of cables through conducting thermographic testing and checking the mechanical operation of the product through manually operating the test, reset and stop buttons

• Direct mounting under a contactor is achievable

• Standards - IEC 947, BS4941, VDE 0660, NFC63-650

• Standards - CSA, UL, DEMKO, NEMKO, SEMKO, FIMKO, PTB

Applications of a Contactor and Control Overload Relay


• The majority of the time is to protect a motor

• To detect both overload conditions and fault conditions to then announce trip command for a protective device

• To deactivate a device whenever it pulls high current

• Sometimes developed into microprocessor systems and solid-state electronics

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