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Product Detailed Parameters
- Description:115V INPUT 0.6VA PWR XFMR
- Series:EE20-10.5
- Mfr:Zettler Magnetics
- Package:Tube
- Type:-
- Voltage - Primary:115V
- Voltage - Secondary (Full Load):10V
- Current - Output (Max):30mA
- Primary Winding(s):Single
- Secondary Winding(s):Single
- Center Tap:No
- Power - Max:0.6VA
- Mounting Type:Through Hole
- Termination Style:PC Pin
- Size / Dimension:24.00mm L x 23.00mm W
- Height - Seated (Max):19.50mm
- Voltage - Isolation:2800Vrms
- Weight:-
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Overview
The BV201D10006 is a 0.6VA encapsulated power transformer from Zettler Magnetics, designed for through-hole mounting. It features an 115V primary input and dual 10V secondary outputs with a combined current rating of 30mA. The unit utilizes an EE20 core configuration with a maximum case height of 19.5mm and dimensions of 23.0x24.0mm. Operating at 50/60Hz, it provides electrical isolation between windings and supports a thermal class T70B insulation system.
Feature Summary
- Encapsulated construction for environmental protection
- Dual secondary winding configuration
- Through-hole PCB mounting design
Applications
- Low-power AC-DC converter stages
- Control circuit isolation
- Signal conditioning interfaces
Procurement Notes
Verify the specific ordering suffix against the manufacturer's latest datasheet to ensure compatibility with required voltage ratings and insulation standards. Confirm that the encapsulation type meets the thermal and mechanical requirements of the target application environment before finalizing procurement.
Selection Notes
Select this component when a compact, low-power isolation solution is required for 115V primary systems. Ensure the total load does not exceed the 0.6VA rating and that the dual 10V secondary outputs align with the downstream circuit voltage requirements.
Part Context
This part belongs to the BV series of encapsulated power transformers by Zettler Magnetics. These units are characterized by their small form factor and reliable performance in consumer and industrial electronics where space constraints and basic isolation are critical design factors.
Replacement Considerations
Consult official cross-reference lists for direct substitutes. Verify that any alternative maintains identical VA ratings, pin configurations, and insulation classes to ensure functional equivalence without redesigning the host circuit.
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