User manual IDEAL 61534

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IDEAL 61534 : Download the complete user guide (73 Ko)

Manual abstract: user guide IDEAL 61534

Detailed instructions for use are in the User's Guide.

[. . . ] If used on a circuit controlled by a dimmer, turn the dimmer to the highest on position. Features: · Automatically and quicklly finds correct breaker · Non-contact voltage sensor for 80-300VAC · Transmitter works 120/240VAC circuits · Verifies wiring configuration · Low battery detection OPERATION: Self-Test Turn the receiver's power switch forward to the ON position. The unit will perform a self-test to ensure proper operation. Green LED Red LED Power Switch Battery Compartment Low Battery Detection After performing the self-test the receiver will verify the voltage of the 9Vdc battery. If the battery voltage is below 7. 3 volts, the receiver will beep three times and turn itself off. [. . . ] If the incandescent light fixture is controlled by a wall switch, make sure the wall switch is OFF. Turn on the wall switch and follow the procedure described in Locating a Circuit Breaker or Fuse steps 3 through 8. Receiver Auto Power Off: If the receiver is left on and not utilized for 10 minutes (no energized AC circuit or transmitter signals are detected), it will automatically shut down to conserve its battery life. Insert new 9V battery into battery compartment and re-install battery cover. ND 5416-1 61-534 Instructions 7/19/05 11:58 AM Page 2 Verifying Receptacles for Correct Wiring: Plug the transmitter into a standard 120 Vac receptacle. The three LED lamps on the transmitter will indicate the wiring configuration, the label on the transmitter indicates each sequence. Consult the GFCI manufacturer's installation instructions to determine that the GFCI is installed in accordance with the manufacturer's specifications. Check for correct wiring of receptacle and all remotely connected receptacles on the branch circuit. If it does not ­ do not use the circuit ­ consult an electrician. Activate the test button on the GFCI tester for a minimum of 6 seconds when testing the GFCI condition. If the tester fails to trip the GFCI, it suggests: A wiring problem with a totally operable GFCI, or b) proper wiring with a faulty GCFI. Consult with an electrician to check the condition of the wiring and GFCI. Caution: When testing GFCIs installed in 2-wire systems (no ground wire available), the tester may give a false indication that the GFCI is not functioning properly. If this occurs, recheck the operation of the GFCI using the test and reset buttons. NOTE: · All appliances or equipment on the circuit being tested should be unplugged to help avoid erroneous readings. · Not a comprehensive diagnostic instrument but a simple instrument to detect nearly all probable common improper wiring conditions. · Will not indicate reversal of grounded and grounding conductors. SPECIFICATIONS: Operating Range: 100-250VAC Operating Frequency: 47-63Hz Maximum Load: 18A (4ms) at 120VAC, 200mW max, at 120VAC Duty Cycle: Max: 4mS every 16. 6mS (continuous), (. 24%) Weight (excluding battery): Transmitter approx 50gr. , Receiver approx. Power Supply: 9VDC battery Operating Temperature: 0 to 50ºC #61-534 Identificador automático de circuitos de IDEAL con probador de receptáculos equipado con interruptor accionado por pérdidas a tierra E-Z Check® Plus La tarea de ubicar circuitos de CA se hace ahora más rápida y sencilla. Ya no hay necesidad de tratar de adivinar o tantear cuando haya que localizar el disyuntor correcto que suministra corriente a una toma o lámpara de CA. PRECAUCIÓN: Tenga mucho cuidado al trabajar en las proximidades de circuitos de CA, ya que existe la posibilidad de electrocución. [. . . ] Prueba de voltaje sin contacto Apunte el extremo del receptor hacia un receptáculo o cordón de alimentación de CA. Una vez que se detecte un campo de voltaje de CA > 50V, el receptor pasará a la modalidad del sensor de voltaje. Se encenderá el LED rojo del receptor, y emitirá un sonido de forma alternativa. La velocidad de los pitidos aumentará cuando el receptor se acerque a la fuente de alimentación de CA, y disminuirá cuando se aleje. [. . . ]

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