Elcon 1000W DC-DC Converter TDC-IY-320-12 Input Voltage 206-454 VDC Output 14.0V

Elcon 1000W DC-DC Converter TDC-IY-320-12 Input Voltage 206-454 VDC Output 14.0V

USD 520.00 USD
SKU: xTX4r6kl
Condition: New

Specifications

Return Shipping Will Be Paid BySeller
All Returns AcceptedReturns Accepted
Item Must Be Returned Within30 Days
Refund Will Be Given AsMoney Back
Nominal Voltage Rating (DC)320V
Nominal Voltage Rating (AC)N/A
Nominal Current Rating3.5A
Current ConversionDC to DC
MPNTDC-IY-320-12
Item Depth278MM
Minimum Operating Temperature-40 °C (-40 °F)
Installation AreaIndoor/Outdoor
BrandElcon
Output Voltage Rating (AC)N/A
TypeConverter
Item Height73MM
Output Voltage Rating (DC)14 V
Maximum Operating Temperature65 °C (149 °F)
Item Width158MM

Elcon 1000W DC-DC Converter TDC-IY-320-12 206-454 VDC Input, 14V 72A Output This DC-to-DC converter supplies 14V power for low-voltage applications in electric vehicles. It manages the charging process of the 12V battery automatically and provides power to the 12-volt system in the electric vehicle conversion. This charger features an IP67 rating and vibration and temperature resistance, making it a great fit for all manner of EV conversions and builds.Input Specifications:Nominal Current: 3.5AMax Current: 6AInput voltage range: DC 206-454VInput Undervoltage Protection: 215VInput Overvoltage Protection: 455VStart-up Time: 0.5s @ VIN = 320VOutput Specifications:Nominal Output Voltage: 14VNominal Output Current: 72ANominal Power: 1000WEfficiency: 94%Signal Specifications:12V Enable Voltage: 6-30V12V Enable Current: 1mAOther Specifications:Protection Class: IP67Operating Temperature: -40℃~ +65℃Storage Temperature: -55℃~ +85℃Overtemperature Protection: Decrease power when interior temperature arrives at 85 centigrade, shut off when temperature arrives at 90 centigrade, auto self-recovery when temperature decreases.The 1000W IP67 Sealed DC-DC Converter can be connected in parallel, however, the output wires should be separate all the way to the battery or load, and be the same lengths. DO NOT join the 'big' output negative and positive together and then run a thick 2 AWG cable to the load. Instead, run two separate sets of smaller 6 AWG cables to the load, and the output currents should stay pretty close to equal.

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