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Product Detailed Parameters
- Description:PULSE XFMR 1CT:1CT 200UH
- Series:786
- Mfr:Murata Power Solutions Inc.
- Package:Tube
- Transformer Type:General Purpose
- Inductance:200µH
- ET (Volt-Time):6VµS
- Turns Ratio - Primary:Secondary:1CT:1CT
- Mounting Type:Through Hole
- Size / Dimension:0.375" L x 0.354" W (9.52mm x 9.00mm)
- Height - Seated (Max):0.250" (6.35mm)
- Operating Temperature:0°C ~ 70°C
- Grade:-
- Qualification:-
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Overview
The Murata Power Solutions 78615/3C is a through-hole pulse transformer with a 1CT:1CT turns ratio and 200µH inductance. It features a 28 Vµs volt-second rating, operates between 0°C and +70°C, and measures 9.52 mm x 9 mm x 6.35 mm.
Feature Summary
- Through-hole mounting configuration for PCB integration
- Center-tapped primary and secondary winding architecture
- General-purpose signal isolation and coupling capability
Applications
- Gate drive circuit isolation
- Pulse transformer applications requiring center taps
- Signal coupling in power electronics
Procurement Notes
Verify the specific suffix 'C' against official Murata documentation to confirm package type and pinout compatibility. Ensure the component meets RoHS requirements for your assembly process. Cross-reference datasheet parameters like inductance and voltage-time rating with your design specifications before ordering.
Selection Notes
Select this component when a center-tapped topology is required for through-hole implementation. The 200µH inductance and 28 Vµs rating define its operational limits. Verify physical dimensions fit the target PCB layout constraints compared to surface-mount alternatives.
Part Context
This part belongs to the Murata 786 series of pulse transformers. These components are designed for general-purpose isolation tasks. The series offers various inductance values and winding configurations to suit different circuit requirements.
Replacement Considerations
Check the 78615/9JC for similar through-hole characteristics. Verify that any substitute matches the 1CT:1CT ratio and 200µH inductance exactly to maintain circuit performance.
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