FCC17B25PC69B D-Sub 25 Position Right Angle Solder Plug Connector

Part Overview

The FCC17B25PC69B is a 25 position D-Sub plug connector manufactured by Amphenol ICC (Commercial Products) with right angle through-hole solder termination. This connector features a DB/B shell size (Size 3) with male pins, gold-plated contacts, and steel tin-plated shell construction. The part is classified as obsolete, necessitating identification of active equivalent and substitute components for new designs and ongoing production requirements. Current inventory of 686 pieces is available as new original stock.

Substiute Parts

FCC17B25PC69B
Amphenol ICC (Commercial Products)In Stock: 790FCC17B25PC69B Datasheet
FCC17B25PC69B
Current Part
FCE17B25PC69B
Amphenol ICC (Commercial Products)In Stock: 905FCE17B25PC69B Datasheet
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FCE17B25PC61B
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FCE17B25PC64B
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FCE17B25PC65B
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FCE17B25PC68B
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FCE17B25PC6DB
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FCE17B25PC6EB
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Key Parameters

Parameter Value
Manufacturer Part Number FCC17B25PC69B
Manufacturer Amphenol ICC (Commercial Products)
Connector Type Plug, Male Pins
Number of Positions 25
Number of Rows 2
Shell Size, Connector Layout 3 (DB, B)
Mounting Type Through Hole, Right Angle
Termination Solder
Shell Material, Finish Steel, Tin Plated
Contact Finish Gold
Contact Finish Thickness 15.0µin (0.38µm)
Current Rating 5A
Voltage Rating 200V
Operating Temperature Range -40°C ~ 85°C
Material Flammability Rating UL94 V-0
Product Status Obsolete
RoHS Status RoHS non-compliant

Substitute Part Grouping Explanation

Substitution of the FCC17B25PC69B is determined by strict equivalence across the following critical parameters:

Mandatory Matching Parameters:

  • Connector Type: Plug, Male Pins
  • Number of Positions: 25
  • Number of Rows: 2
  • Shell Size, Connector Layout: 3 (DB, B)
  • Mounting Type: Through Hole, Right Angle
  • Termination: Solder
  • Contact Type: Signal
  • Flange Feature: Board Side (M3)
  • Material Flammability Rating: UL94 V-0
  • Current Rating: 5A
  • Backset Spacing: 0.590" (14.99mm)
  • Contact Finish Thickness: 15.0µin (0.38µm)
  • Operating Temperature Range: -40°C ~ 85°C
  • Moisture Sensitivity Level: 1 (Unlimited)

Substitutes are grouped into two categories:

  1. Amphenol ICC FCE17 Series (Active Status): Direct parametric equivalents with identical electrical and mechanical specifications. These parts differ only in product status (Active vs. Obsolete) and RoHS compliance status. The FCE17 series represents the active production line replacement for the obsolete FCC17 series.

  2. HARTING 09653226800 and 09653227800 (Similar Alternatives): These connectors share core D-Sub 25 position right angle solder configuration but exhibit differences in backset spacing, contact form, and material composition. These are classified as similar alternatives rather than direct equivalents.

Parameter Comparison

Parameter FCC17B25PC69B FCE17B25PC69B FCE17B25PC60B FCE17B25PC61B FCE17B25PC64B FCE17B25PC65B FCE17B25PC68B FCE17B25PC6DB FCE17B25PC6EB 09653226800 09653227800
Manufacturer Amphenol ICC Amphenol ICC Amphenol ICC Amphenol ICC Amphenol ICC Amphenol ICC Amphenol ICC Amphenol ICC Amphenol ICC HARTING HARTING
Connector Type Plug, Male Pins Plug, Male Pins Plug, Male Pins Plug, Male Pins Plug, Male Pins Plug, Male Pins Plug, Male Pins Plug, Male Pins Plug, Male Pins Plug, Male Pins Plug, Male Pins
Number of Positions 25 25 25 25 25 25 25 25 25 25 25
Number of Rows 2 2 2 2 2 2 2 2 2 2 2
Shell Size, Connector Layout 3 (DB, B) 3 (DB, B) 3 (DB, B) 3 (DB, B) 3 (DB, B) 3 (DB, B) 3 (DB, B) 3 (DB, B) 3 (DB, B) 3 (DB, B) 3 (DB, B)
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
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 Finish Gold Gold Gold Gold Gold Gold Gold Gold Gold Not Specified Not Specified
Contact Finish Thickness 15.0µin (0.38µm) 15.0µin (0.38µm) 15.0µin (0.38µm) 15.0µin (0.38µm) 15.0µin (0.38µm) 15.0µin (0.38µm) 15.0µin (0.38µm) 15.0µin (0.38µm) 15.0µin (0.38µm) Not Specified Not Specified
Current Rating (Amps) 5A 5A 5A 5A 5A 5A 5A 5A 5A 6.5A 6.5A
Backset Spacing 0.590" (14.99mm) 0.590" (14.99mm) 0.590" (14.99mm) 0.590" (14.99mm) 0.590" (14.99mm) 0.590" (14.99mm) 0.590" (14.99mm) 0.590" (14.99mm) 0.590" (14.99mm) 0.409" (10.40mm) 0.409" (10.40mm)
Material Flammability Rating UL94 V-0 UL94 V-0 UL94 V-0 UL94 V-0 UL94 V-0 UL94 V-0 UL94 V-0 UL94 V-0 UL94 V-0 UL94 V-0 UL94 V-0
Operating Temperature Range -40°C ~ 85°C -40°C ~ 85°C -40°C ~ 85°C -40°C ~ 85°C -40°C ~ 85°C -40°C ~ 85°C -40°C ~ 85°C -40°C ~ 85°C -40°C ~ 85°C -55°C ~ 125°C -55°C ~ 125°C
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

Primary Substitutes (Amphenol ICC FCE17 Series):

The FCE17B25PC69B, FCE17B25PC60B, FCE17B25PC61B, FCE17B25PC64B, FCE17B25PC65B, FCE17B25PC68B, FCE17B25PC6DB, and FCE17B25PC6EB represent direct parametric equivalents to the obsolete FCC17B25PC69B. All eight variants maintain identical electrical and mechanical specifications including connector type, position count, shell size, mounting configuration, termination method, current rating, backset spacing, and operating temperature range. The primary distinction is product status: all FCE17 variants are active production components, whereas the FCC17B25PC69B is obsolete.

All FCE17 series substitutes are RoHS Compliant, addressing regulatory requirements that the original FCC17B25PC69B does not meet. Selection among the eight FCE17 variants should be based on specific application requirements and availability, as all are functionally equivalent for the FCC17B25PC69B application.

Secondary Alternatives (HARTING 09653226800 and 09653227800):

The HARTING 09653226800 and 09653227800 connectors are classified as similar alternatives rather than direct equivalents. These parts share the D-Sub 25 position right angle solder configuration but differ in backset spacing (0.409" versus 0.590"), contact form (stamped versus machined), and dielectric material composition. The HARTING variants support higher current ratings (6.5A versus 5A) and extended operating temperature range (-55°C to 125°C versus -40°C to 85°C). These differences may require PCB layout modifications and should be evaluated against specific application constraints.

Both HARTING alternatives are ROHS3 Compliant and carry active product status, providing regulatory compliance and long-term availability assurance.

Frequently Asked Questions (FAQ)

Q: Can the FCE17B25PC69B directly replace the FCC17B25PC69B without PCB modifications?

A: Yes. The FCE17B25PC69B maintains identical mechanical and electrical specifications including shell size, mounting type, backset spacing, and pin configuration. No PCB layout modifications are required for direct substitution.

Q: What is the primary reason for substituting the FCC17B25PC69B?

A: The FCC17B25PC69B is classified as obsolete. The FCE17 series represents the active production equivalent, ensuring continued availability and supply chain reliability for new designs and ongoing production.

Q: Are all eight FCE17 variants functionally interchangeable with the FCC17B25PC69B?

A: Yes. All eight FCE17 variants (FCE17B25PC69B, FCE17B25PC60B, FCE17B25PC61B, FCE17B25PC64B, FCE17B25PC65B, FCE17B25PC68B, FCE17B25PC6DB, and FCE17B25PC6EB) are parametric equivalents with identical electrical and mechanical specifications. Selection should be based on availability and application-specific requirements.

Q: What is the difference between the Amphenol ICC FCE17 series and the HARTING alternatives?

A: The FCE17 series provides direct parametric equivalence to the FCC17B25PC69B. The HARTING 09653226800 and 09653227800 are similar alternatives with different backset spacing (0.409" versus 0.590"), contact form, and material composition. HARTING variants support higher current ratings and extended temperature ranges but may require PCB layout evaluation.

Q: Does the FCE17B25PC69B meet RoHS compliance requirements?

A: Yes. The FCE17B25PC69B is RoHS Compliant, addressing regulatory requirements that the original FCC17B25PC69B does not meet. All eight FCE17 variants are RoHS Compliant.

Q: What is the backset spacing specification, and why is it important?

A: Backset spacing is the distance from the mounting flange to the rear of the connector shell. The FCC17B25PC69B and all FCE17 equivalents specify 0.590" (14.99mm) backset spacing. This parameter is critical for PCB layout and mechanical clearance. The HARTING alternatives specify 0.409" (10.40mm), requiring layout verification before substitution.

Q: Are there inventory considerations when selecting a substitute?

A: Current inventory levels are provided for reference: FCC17B25PC69B (686 pcs), FCE17B25PC69B (880 pcs), FCE17B25PC60B (938 pcs), FCE17B25PC61B (1071 pcs), FCE17B25PC64B (777 pcs), FCE17B25PC65B (841 pcs), FCE17B25PC68B (936 pcs), FCE17B25PC6DB (688 pcs), FCE17B25PC6EB (719 pcs), 09653226800 (882 pcs), and 09653227800 (870 pcs). Availability may vary based on current demand and procurement timing.

Q: What is the contact finish specification, and how does it affect performance?

A: The FCC17B25PC69B and all FCE17 equivalents specify gold contact finish with 15.0µin (0.38µm) thickness. This specification ensures reliable electrical contact and corrosion resistance. The HARTING alternatives do not specify contact finish details, requiring clarification from the manufacturer for critical applications.

Q: Can the HARTING 09653226800 or 09653227800 be used as direct replacements?

A: The HARTING variants are classified as similar alternatives rather than direct equivalents due to differences in backset spacing, contact form, and material composition. These differences may require PCB layout modifications and should be evaluated against specific application constraints before implementation.

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