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Samlex TN-1500-112F > 1500 Watt 12 Volt Inverter/Charger > Pure Sine Wave
Samlex 1500 Watt 12 Volt Inverter/Charger - Pure Sine Wave - TN-1500-112F


 


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Samlex TN Series Off-Grid Inverter

Pure Sine Wave
Built in Charge Controller
1500 Watt, 12 VDC / 100/110/115/120 VAC
Manufacturer Part Number: TN-1500-112F

This high efficiency UL-approved micro-controller based pure sine-wave inverter charger provides an AC output of 100/110/ 115/120 V at 50/60 Hz at 1500 Watts (rated) from the battery input. The TN-1500 series inverter chargers have an in-built solar battery charger and UPS functionality. Preference is given to the solar panels and batteries as sources of power and in the eventuality that these are inadequate; the load is transferred to the utility power supply, resulting in energy-saving. These inverter chargers are UL-458 approved. The units come with an elaborate LED display indicating detailed operating status including battery charge and load power levels.

Features:

  • True sine wave output (THD<3%)
  • Power ON-OFF switch
  • Saving mode set by controller
  • LED indicator for operation status
  • Thermostatically controlled cooling fan
  • Protections: Bat. low alarm / Bat. low shutdown / Over temp. / Output short / Input polarity reverse / Overload

Specifications:

Model# Input Voltage Output Voltage Dimensions Output Fuse Rating Weight
TN-1500-112F 10.5 - 15 VDC 100/110 VAC
115/120 VAC
(user selectable)
16.5" x 8.7" x 3.5" 1500 Watts N/A 15.07 lbs

Detailed Description:

Applications

  • Home appliances
  • Power tools
  • Office and portable equipment
  • Automotive
  • Industrial control equipment
  • Renewable energy solutions – Solar/AC UPS

Pure Sine Wave vs. Modified Sine Wave Inverters

  1. What is a Pure Sine-wave Inverter?

    The output voltage of a sine-wave inverter has a sine wave-form like the sine wave-form of the mains / utility voltage. In a sine wave, the voltage rises and falls smoothly with a smoothly changing phase angle and also changes its polarity instantly when it crosses 0 Volts.

  2. What is a Modified Sine-wave Inverter?

    In a modified sine wave, the voltage rises and falls abruptly, the phase angle also changes abruptly and it sits at 0 Volts for some time before changing its polarity.

  3. What are the advantages of Pure Sine-wave inverters?

    • The output wave-form is a sine-wave with very low harmonic distortion and clean power like utility supplied electricity
    • Inductive loads like microwaves and motors run faster, quieter and cooler
    • Reduces audible and electrical noise in fans, fluorescent lights, audio amplifiers, TV, fax and answering machines
    • Prevents crashes in computers, weird print outs and glitches in monitors

  4. Which devices will not function properly from a Modified Sine-wave Inverter?

    Any device that uses a control circuitry that senses the phase (for voltage / speed control) or instantaneous zero voltage crossing (for timing control) will not work properly from a voltage that has a modified sine wave-form. Also, as the modified sine wave is a form of square wave, it is comprised of multiple sine waves of odd harmonics (multiples) of the fundamental frequency of the modified sine wave.

    For example, a 60 Hz. modified sine wave will consist of sine waves with odd harmonic frequencies of 3rd (180 Hz), 5th (300 Hz.), 7th (420 Hz.) and so on. The high frequency harmonic content in a modified sine wave produces enhanced radio interference, higher heating effect in motors / microwaves and produces overloading due to lowering of the impedance of low frequency filter capacitors / power factor improvement capacitors.

    Some examples of devices that may not work properly with modified sine wave and may also get damaged are given below:

    • Laser printers, photocopiers, magneto-optical hard drives
    • The built-in clocks in devices such as clock radios, alarm clocks, coffee makers, bread-makers, VCR, microwave ovens etc may not keep time correctly
    • Output voltage control devices like dimmers, ceiling fan / motor speed control may not work properly (dimming / speed control may not function)
    • Sewing machines with speed / microprocessor control
    • Transformer-less capacitive input powered devices like (i) Razors, flashlights, night-lights, smoke detectors etc (ii) Re-chargers for battery packs used in hand power tools. These may get damaged. Please check with the manufacturer of these types of devices for suitability
    • Devices that use radio frequency signals carried by the AC distribution wiring
    • Some new furnaces with microprocessor control / Oil burner primary controls
    • High intensity discharge (HID) lamps like Metal Halide lamps. These may get damaged. Please check with the manufacturer of these types of devices for suitability
    • Some fluorescent lamps / light fixtures that have power factor correction capacitors. The inverter may shut down indicating overload

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