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FCC17E09PC4EB D-Sub Plug 9-Position Right Angle Solder Connector
Part Overview
The FCC17E09PC4EB is a 9-position D-Sub plug connector manufactured by Amphenol ICC with right-angle through-hole solder termination. This connector is classified as obsolete, which necessitates identification of active equivalent alternatives for new designs and ongoing production support. The part features a DE shell size with board-side flange (4-40), gold-plated contacts, and steel tin-plated shell construction suitable for signal applications up to 5A at 200V.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Manufacturer Part Number | FCC17E09PC4EB |
| Manufacturer | Amphenol ICC (Commercial Products) |
| Connector Type | D-Sub Plug, Male Pins |
| Number of Positions | 9 |
| Shell Size / Layout | 1 (DE, E) |
| Mounting Type | Through Hole, Right Angle |
| Termination | Solder |
| Current Rating | 5A |
| Voltage Rating | 200V |
| Operating Temperature | -40°C to 85°C |
| Shell Material / Finish | Steel, Tin Plated |
| Contact Finish | Gold, 15.0µin (0.38µm) |
| Flange Feature | Board Side (4-40) |
| Product Status | Obsolete |
| RoHS Status | RoHS Non-Compliant |
Substitute Part Grouping Explanation
Substitution eligibility for the FCC17E09PC4EB is determined by strict equivalence across the following critical parameters:
- Connector type: D-Sub plug with male pins
- Position count: 9 positions
- Shell size and layout: DE (1)
- Mounting configuration: Through hole, right angle
- Termination method: Solder
- Current and voltage ratings: 5A minimum, 200V minimum
- Flange type: Board side with 4-40 mounting holes
- Contact material and finish: Gold-plated contacts
- Operating temperature range: Minimum -40°C to 85°C
Substitute parts are grouped into two categories: Amphenol ICC active series equivalents (FCE17 series) and cross-manufacturer alternatives (HARTING). All listed substitutes maintain functional and mechanical compatibility with the original FCC17E09PC4EB specification.
Parameter Comparison
| Parameter | FCC17E09PC4EB | FCE17E09PC4EB | FCE17E09PC40B | FCE17E09PC41B | FCE17E09PC44B | FCE17E09PC45B | FCE17E09PC48B | FCE17E09PC49B | FCE17E09PC4DB | 09651626815 | 09651626816 |
|---|---|---|---|---|---|---|---|---|---|---|---|
| Manufacturer | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | Amphenol ICC | HARTING | HARTING |
| Connector Type | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins | D-Sub Plug, Male Pins |
| Number of Positions | 9 | 9 | 9 | 9 | 9 | 9 | 9 | 9 | 9 | 9 | 9 |
| Shell Size / Layout | 1 (DE, E) | 1 (DE, E) | 1 (DE, E) | 1 (DE, E) | 1 (DE, E) | 1 (DE, E) | 1 (DE, E) | 1 (DE, E) | 1 (DE, E) | 1 (DE, E) | 1 (DE, E) |
| Mounting Type | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle | Through Hole, Right Angle |
| Termination | Solder | Solder | Solder | Solder | Solder | Solder | Solder | Solder | Solder | Solder | Solder |
| Current Rating (Amps) | 5A | 5A | 5A | 5A | 5A | 5A | 5A | 5A | 5A | 6.5A | 6.5A |
| Operating Temperature | -40°C to 85°C | -40°C to 85°C | -40°C to 85°C | -40°C to 85°C | -40°C to 85°C | -40°C to 85°C | -40°C to 85°C | -40°C to 85°C | -40°C to 85°C | -55°C to 125°C | -55°C to 125°C |
| Shell Material / Finish | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel, Tin Plated | Steel | Steel |
| Contact Material | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Phosphor Bronze | Copper Alloy | Copper Alloy |
| Flange Feature | Board Side (4-40) | Board Side (4-40) | Board Side (4-40) | Board Side (4-40) | Board Side (4-40) | Board Side (4-40) | Board Side (4-40) | Board Side (4-40) | Board Side (4-40) | Housing/Shell (M3) | Housing/Shell (4-40) |
| Product Status | Obsolete | Active | Active | Active | Active | Active | Active | Active | Active | Active | Active |
| RoHS Status | RoHS Non-Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | RoHS Compliant | ROHS3 Compliant | ROHS3 Compliant |
Engineering Selection Recommendations
For applications currently using FCC17E09PC4EB, the Amphenol ICC FCE17 series (FCE17E09PC4EB, FCE17E09PC40B, FCE17E09PC41B, FCE17E09PC44B, FCE17E09PC45B, FCE17E09PC48B, FCE17E09PC49B, FCE17E09PC4DB) represents the primary substitution path. All FCE17 variants are active products with RoHS compliance, addressing the obsolescence and regulatory status of the original part. These parts maintain identical mechanical and electrical specifications within the operating temperature range of -40°C to 85°C and current rating of 5A.
For designs requiring extended operating temperature range or higher current capacity, HARTING parts 09651626815 and 09651626816 provide alternatives with 6.5A current rating and -55°C to 125°C operating range. The 09651626816 variant includes 4-40 flange mounting, maintaining direct mechanical compatibility. Both HARTING options are ROHS3 compliant and feature copper alloy contacts with stamped construction.
Selection between FCE17 variants and HARTING alternatives depends on specific application requirements for temperature range, current capacity, and contact material performance. All listed substitutes maintain the 9-position DE shell configuration and right-angle solder termination required for direct board-level replacement.
Frequently Asked Questions (FAQ)
Q: Can FCE17E09PC4EB directly replace FCC17E09PC4EB?
A: Yes. The FCE17E09PC4EB maintains identical mechanical and electrical parameters: 9-position DE shell, right-angle through-hole solder termination, 5A current rating, -40°C to 85°C operating range, and board-side 4-40 flange mounting. The primary difference is product status (active vs. obsolete) and RoHS compliance.
Q: What is the difference between the multiple FCE17 variants?
A: All FCE17 variants (FCE17E09PC40B, FCE17E09PC41B, FCE17E09PC44B, FCE17E09PC45B, FCE17E09PC48B, FCE17E09PC49B, FCE17E09PC4DB) share identical electrical and mechanical specifications. Differences exist in internal contact configuration or dielectric material composition, indicated by the suffix designation. Selection among these variants depends on specific circuit design requirements not specified in the connector parameters.
Q: Are HARTING parts 09651626815 and 09651626816 fully compatible?
A: Both HARTING parts maintain 9-position DE shell configuration, right-angle solder termination, and board-side flange mounting. Key differences from Amphenol parts include: backset spacing of 0.409" (10.40mm) versus 0.590" (14.99mm), copper alloy contacts versus phosphor bronze, stamped contact construction versus machined, and extended operating temperature range (-55°C to 125°C). The 09651626816 uses 4-40 flange mounting matching the original part; 09651626815 uses M3 mounting. Mechanical board layout compatibility must be verified before substitution.
Q: What does RoHS compliance mean for this connector?
A: RoHS compliance indicates the connector meets restrictions on hazardous substances (lead, cadmium, mercury, hexavalent chromium, PBBs, PBDEs). The original FCC17E09PC4EB is RoHS non-compliant. All FCE17 variants are RoHS compliant, and HARTING parts are ROHS3 compliant. For applications subject to RoHS regulations, FCE17 or HARTING alternatives are required.
Q: Can I use a HARTING part if my design specifies Amphenol?
A: Cross-manufacturer substitution requires verification of mechanical fit (particularly backset spacing and flange mounting hole pattern) and electrical performance under application-specific conditions. While both manufacturers produce D-Sub connectors meeting the same shell size and position count, internal construction differences may affect performance in specific circuit applications.
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