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TE Connectivity 5414409-1 BNC Connector Jack Equivalent & Substitute Parts
Part Overview
The TE Connectivity 5414409-1 is an active BNC connector jack designed for 75 ohm coaxial RF applications. This female socket connector features right-angle panel mount through-hole solder termination with a bulkhead front-side nut mounting feature. The connector operates across a frequency range up to 2 GHz and is rated for 500 mating cycles. Finding equivalent and substitute parts is necessary to address inventory availability, lead time constraints, compliance requirements, and design flexibility across manufacturing environments.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Connector Style | BNC |
| Connector Type | Jack, Female Socket |
| Impedance | 75 Ohms |
| Mounting Type | Panel Mount, Through Hole, Right Angle |
| Contact Termination | Solder |
| Shield Termination | Solder |
| Fastening Type | Bayonet Lock |
| Frequency - Max | 2 GHz |
| Voltage Rating | 500 V |
| Operating Temperature | -55°C ~ 85°C |
| Mating Cycles | 500 |
| Body Material | Zinc |
| Body Finish | Nickel |
| Center Contact Plating | Gold |
| Dielectric Material | Polymethylpentene (PMP) |
| Moisture Sensitivity Level | 1 (Unlimited) |
| RoHS Status | ROHS3 Compliant |
Substitute Part Grouping Explanation
Substitute parts for the 5414409-1 are classified based on strict electrical and mechanical parameter alignment. All substitute candidates maintain identical specifications across the following critical parameters: BNC connector style, female jack socket type, 75 ohm impedance, right-angle panel mount through-hole configuration, solder termination for both contact and shield, bayonet lock fastening, 2 GHz maximum frequency, 500 V voltage rating, -55°C to 85°C operating temperature range, 500 mating cycles, nickel-plated zinc body, and gold-plated center contact.
Parametric equivalents are TE Connectivity parts 414907-1, 5222092-1, 5222092-3, and 5414907-1. These parts share all critical electrical and mechanical parameters with the main part. Variations exist in center contact material composition and regulatory compliance status, which do not affect functional interchangeability in the specified application.
The Molex 0731010040 is classified as a similar part. While it maintains all critical electrical and mechanical parameters, it differs in manufacturer origin, dielectric material (polypropylene versus polymethylpentene), body material specification (zinc alloy versus zinc), and includes a board lock feature not present in the TE Connectivity design.
Parameter Comparison
| Parameter | 5414409-1 | 414907-1 | 5222092-1 | 5222092-3 | 5414907-1 | 0731010040 |
|---|---|---|---|---|---|---|
| Manufacturer | TE Connectivity | TE Connectivity | TE Connectivity | TE Connectivity | TE Connectivity | Molex |
| Connector Style | BNC | BNC | BNC | BNC | BNC | BNC |
| Connector Type | Jack, Female Socket | Jack, Female Socket | Jack, Female Socket | Jack, Female Socket | Jack, Female Socket | Jack, Female Socket |
| Impedance | 75 Ohms | 75 Ohms | 75 Ohms | 75 Ohms | 75 Ohms | 75 Ohms |
| Mounting Type | Panel Mount, Through Hole, Right Angle | Panel Mount, Through Hole, Right Angle | Panel Mount, Through Hole, Right Angle | Panel Mount, Through Hole, Right Angle | Panel Mount, Through Hole, Right Angle | Panel Mount, Through Hole, Right Angle |
| Contact Termination | Solder | Solder | Solder | Solder | Solder | Solder |
| Shield Termination | Solder | Solder | Solder | Solder | Solder | Solder |
| Fastening Type | Bayonet Lock | Bayonet Lock | Bayonet Lock | Bayonet Lock | Bayonet Lock | Bayonet Lock |
| Frequency - Max | 2 GHz | 2 GHz | 2 GHz | 2 GHz | 2 GHz | 2 GHz |
| Voltage Rating | 500 V | 500 V | 500 V | 500 V | 500 V | 500 V |
| Operating Temperature | -55°C ~ 85°C | -55°C ~ 85°C | -55°C ~ 85°C | -55°C ~ 85°C | -55°C ~ 85°C | -55°C ~ 85°C |
| Mating Cycles | 500 | 500 | 500 | 500 | 500 | 500 |
| Body Material | Zinc | Zinc | Zinc | Zinc | Zinc | Zinc Alloy |
| Body Finish | Nickel | Nickel | Nickel | Nickel | Nickel | Nickel |
| Center Contact Plating | Gold | Gold | Gold | Gold | Gold | Gold |
| Dielectric Material | Polymethylpentene (PMP) | Polymethylpentene (PMP) | Polymethylpentene (PMP) | Polymethylpentene (PMP) | Polymethylpentene (PMP) | Polypropylene (PP) |
| Center Contact Material | Phosphor Bronze | Beryllium Copper | Beryllium Copper | Beryllium Copper | Beryllium Copper | Phosphor Bronze |
| Moisture Sensitivity Level | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) | 1 (Unlimited) |
| RoHS Status | ROHS3 Compliant | RoHS non-compliant | ROHS3 Compliant | ROHS3 Compliant | ROHS3 Compliant | ROHS3 Compliant |
| REACH Status | REACH Affected | Vendor Undefined | REACH Affected | REACH Affected | REACH Affected | REACH Unaffected |
| Packaging | Tube | Tube | Tube | Tube | Tube | Bulk |
| Inventory Status | 2460 Pcs | 1578 Pcs | 1318 Pcs | 1274 Pcs | 1118 Pcs | 1567 Pcs |
Engineering Selection Recommendations
TE Connectivity 414907-1: This part is a parametric equivalent with identical electrical and mechanical specifications. However, it carries RoHS non-compliant status and vendor-undefined REACH status. Selection of this part is appropriate only when RoHS3 compliance is not a design requirement and REACH compliance verification is not mandated.
TE Connectivity 5222092-1 and 5222092-3: Both parts are parametric equivalents with full ROHS3 compliance and REACH affected status, matching the regulatory profile of the main part 5414409-1. These parts are suitable for direct substitution in applications requiring RoHS3 compliance. The primary distinction between these two variants is packaging designation only.
TE Connectivity 5414907-1: This part is a parametric equivalent with ROHS3 compliance and REACH affected status. It provides full regulatory alignment with the main part and is suitable for direct substitution.
Molex 0731010040: This part is classified as a similar substitute rather than a parametric equivalent. It maintains all critical electrical and mechanical parameters but differs in dielectric material (polypropylene versus polymethylpentene), body material specification (zinc alloy versus zinc), and includes a board lock feature. This part carries ROHS3 compliance and REACH unaffected status. Selection is appropriate when cross-manufacturer sourcing is acceptable and the board lock feature provides design benefit.
For applications requiring strict regulatory compliance with REACH affected status and ROHS3 certification, parts 5222092-1, 5222092-3, and 5414907-1 are recommended as primary substitutes. The Molex 0731010040 is suitable when REACH unaffected status is preferred or when the board lock feature is functionally required.
Frequently Asked Questions (FAQ)
Q: Can TE Connectivity 5222092-1 be used as a direct replacement for 5414409-1?
A: Yes. The 5222092-1 maintains identical electrical and mechanical parameters including BNC connector style, 75 ohm impedance, right-angle panel mount through-hole solder termination, 2 GHz frequency rating, 500 V voltage rating, and -55°C to 85°C operating temperature. Both parts carry ROHS3 compliance and REACH affected status. Direct substitution is supported.
Q: What is the difference between 5222092-1 and 5222092-3?
A: These parts are parametric equivalents with identical electrical and mechanical specifications. The designation difference reflects packaging variation only. Both are suitable for direct substitution with 5414409-1.
Q: Why is TE Connectivity 414907-1 listed as a substitute if it is RoHS non-compliant?
A: The 414907-1 is included as a parametric equivalent because it maintains all critical electrical and mechanical parameters required for functional interchangeability. However, its RoHS non-compliant status restricts its use to applications where RoHS3 compliance is not mandated. Selection depends on specific regulatory requirements of the end application.
Q: Can the Molex 0731010040 replace the 5414409-1 in all applications?
A: The Molex 0731010040 maintains all critical electrical and mechanical parameters and is suitable for most applications. However, it differs in dielectric material (polypropylene versus polymethylpentene), body material specification (zinc alloy versus zinc), and includes a board lock feature. These differences do not affect electrical performance but may impact mechanical fit or design considerations. Verification of mechanical compatibility with the PCB layout is recommended.
Q: What is the significance of the center contact material difference between phosphor bronze and beryllium copper?
A: Both phosphor bronze and beryllium copper are acceptable center contact materials for BNC connectors operating at 75 ohms up to 2 GHz. The material difference does not affect electrical performance or impedance characteristics. Selection between these materials is based on manufacturing process and availability rather than functional requirements.
Q: Are all substitute parts available in the same packaging format?
A: No. The TE Connectivity parts 5414409-1, 414907-1, 5222092-1, 5222092-3, and 5414907-1 are supplied in tube packaging. The Molex 0731010040 is supplied in bulk packaging. Packaging format may affect procurement processes and handling requirements but does not impact electrical or mechanical performance.
Q: What is REACH affected status and why does it matter?
A: REACH affected status indicates that the part is subject to European REACH (Registration, Evaluation, Authorization and Restriction of Chemicals) regulations. Parts with REACH affected status require compliance documentation and may have restrictions on certain chemical substances. The Molex 0731010040 carries REACH unaffected status, indicating it is not subject to these regulations. Selection depends on whether the end application is subject to REACH requirements.
Q: Can I use the Molex 0731010040 in a design originally specified for 5414409-1?
A: The Molex 0731010040 is electrically and mechanically compatible with 5414409-1 for the specified application parameters. However, the board lock feature and different dielectric material may require design verification. Mechanical fit with the PCB mounting holes and connector orientation should be confirmed before implementation.
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