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Power Supply FF ZI-17 switching 100–264V AC input 14.5V DC 0.8A 12W
Power Supply FF ZI-17 switching 100–264V AC input 14.5V DC 0.8A 12W
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Power Supply FF ZI-17 switching 100–264V AC input 14.5V DC 0.8A 12W
Leave your address - as soon as the price of the product goes down, you'll know about it right away
Power Supply FF ZI-17 switching 100–264V AC input 14.5V DC 0.8A 12W
Power Supply FF ZI-17 switching 100–264V AC input 14.5V DC 0.8A 12W
FF ZI-17 is a compact switching power supply that accepts a wide AC input range of 100–264V and provides a fixed 14.5V DC output at up to 0.8A (12W). The unit is intended for low-power electronics where a stable 14.5V supply is required, such as LED driver modules, network equipment and small appliances. The design emphasizes a small footprint and regulated output to maintain consistent voltage under varying mains conditions.
The switching topology ensures efficient conversion across the 100–264V AC input range while keeping heat generation and size to a minimum. Built-in regulation delivers a steady 14.5V DC output at the rated current, and the unit’s compact form factor simplifies integration into enclosures or equipment racks. Standard safety and protection features typical of this class of supply help reduce the risk of overload and improve reliability in continuous operation.
Connect the power supply to a mains source within the 100–264V AC range using the appropriate AC cord or wiring. Verify the correct polarity and connection method for the 14.5V DC output before powering the connected device. Ensure the total load does not exceed 0.8A (12W) and allow for adequate ventilation around the unit to dissipate heat. If installing inside an enclosure, maintain recommended clearances and follow local electrical codes and grounding requirements.
Use the FF ZI-17 with devices whose input voltage tolerance and current draw match the 14.5V DC and 0.8A rating. Avoid sustained operation at the maximum rating without appropriate thermal management. For long cable runs, account for voltage drop and, where necessary, increase conductor size or place the supply closer to the load.
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