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Product Detailed Parameters
- Description:TRANSFORMER
- Series:-
- Mfr:Pulse Electronics
- Package:Bulk
- Transformer Type:LAN 10/100 Base-T
- Inductance:350µH
- ET (Volt-Time):-
- Turns Ratio - Primary:Secondary:1:01
- Mounting Type:Surface Mount
- Size / Dimension:0.500" L x 0.358" W (12.70mm x 9.09mm)
- Height - Seated (Max):-
- Operating Temperature:0°C ~ 70°C
- Grade:-
- Qualification:-
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Overview
The H1102FHL is a LAN 10/100 Base-T pulse transformer manufactured by Pulse Electronics. It features a 350µH inductance and a 1:1 turns ratio, designed for Ethernet networking applications. The component supports surface mount installation with a single port configuration. It operates within a temperature range of 0°C to 70°C and complies with RoHS standards.
Feature Summary
- Designed for 10/100 Base-T Ethernet networking applications
- Features a 350µH inductance with a 1:1 turns ratio
- Supports surface mount technology for automated assembly
Applications
- Ethernet networking equipment
- LAN interface circuits
- Network adapter cards
Procurement Notes
Verify the specific suffix 'FHL' against official Pulse Electronics documentation to confirm package type and pin configuration. Ensure compatibility with 10/100 Base-T requirements and check for RoHS compliance status prior to integration into final designs.
Selection Notes
Select this component for standard 10/100 Base-T applications requiring a single-port solution. Consider the 350µH inductance value and 1:1 ratio for signal integrity. Verify thermal performance within the 0°C to 70°C operating range for the target environment.
Part Context
This part belongs to the LAN pulse transformer family from Pulse Electronics. It serves as a critical isolation component in Ethernet physical layer interfaces, providing galvanic isolation between the MAC and PHY while maintaining signal integrity for data transmission.
Replacement Considerations
Consult official Pulse Electronics substitution guides for verified alternatives. Cross-reference specifications such as inductance, isolation voltage, and package dimensions to ensure functional equivalence without design modification.
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