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2 Pin Right Angle Pogo Pin Connector, 2.54 mm Pitch

Custom 2-pin right-angle pogo pin connector with two spring-loaded contacts in a compact single-row housing. The bent terminal architecture supports interfaces where the contact direction differs from the PCB or mounting direction. Working stroke, contact pitch, PCB mounting method and electrical ratings are defined by the approved project drawing.

Confirm the Contact Interface
Contact Geometry Plunger, barrel, tail, housing and overall dimensions
Mounting & Termination DIP, SMT, right angle, double ended or custom structure
Mechanical Travel Working stroke, maximum travel and spring-force condition
Contact Arrangement Pin count, pitch, rows, Pin Map and mating alignment

Select an Individual Contact or a Complete Connector Assembly

Determine whether the project needs a single spring-loaded contact, a multi-contact connector assembly, a specific mounting method or a customer-defined mechanical interface.

01

Individual Pogo Pin

A single spring-loaded contact supplied for integration into the customer’s PCB, housing or connector structure.

Browse Individual Pogo Pins →
02

Pogo Pin Connector

A complete multi-contact assembly combining pogo pins, insulating housing, contact pitch and mounting structure.

Browse Connector Assemblies →
03

Mounting and Tail Structure

Choose through-hole, surface mount, right-angle, double-ended or customer-specific termination.

Review Engineering Guides →
04

Customized Contact Interface

Define travel, spring force, current path, housing, Pin Map and device-side mechanical constraints.

Submit Project Requirements →

Engineering Summary

This 2-pin right-angle pogo pin connector integrates two spring-loaded electrical contacts into a compact single-row housing. The bent connector architecture is intended for interfaces where the mating direction differs from the PCB or terminal mounting direction.

The spring-loaded contacts provide electrical connection and controlled axial compliance. Final connector position, compression and mechanical seating should be established by the approved PCB, enclosure and mating-interface design rather than by using the pogo contacts as structural stops.

2-Contact Right-Angle Architecture

The connector contains two spring-loaded contacts arranged in a single row within a compact insulating housing. Bent terminal tails create a right-angle relationship between the contact interface and the termination direction.

Contact pitch, tail dimensions, mounting geometry and the final PCB footprint should be confirmed from the approved connector drawing before PCB layout release.

Why Use a Right-Angle Pogo Connector?

A right-angle pogo connector can be useful when the available PCB orientation and the required mating direction are different. Instead of placing the spring contacts perpendicular to the PCB in a conventional vertical arrangement, the connector can redirect the contact interface through a bent mechanical architecture.

Final suitability depends on available X/Y/Z space, the PCB position, enclosure geometry, mating target and the required contact compression.

Pogo Pin Connector vs. Individual Pogo Pins

This product is a two-contact pogo pin connector assembly rather than two independent pogo pins. The insulating housing maintains the relative position of the two spring-loaded contacts as one connector unit.

Engineers should therefore review the housing, contact spacing, terminal geometry, PCB footprint, working stroke and mating target as one complete interface.

Mechanical Integration

The connector should be reviewed together with the PCB, enclosure and mating target. The right-angle geometry defines the relationship between the spring-contact direction and the terminal direction, but the final seating position should still be controlled by the device-level mechanical design.

Mechanical Information to Confirm

  • Overall connector length, width and height
  • Contact pitch
  • Terminal-tail dimensions
  • PCB mounting method
  • PCB footprint or hole pattern
  • Mating direction
  • Available X/Y/Z tolerance
  • Recommended contact compression
  • Mechanical datums and final stops

Working Stroke and Contact Compliance

Each pogo contact should operate within the working stroke defined by the approved product drawing. Working stroke is different from total available mechanical travel.

The final mating structure should establish the mechanical stop. The pogo contacts should provide controlled electrical-contact compliance rather than functioning as structural stops.

Electrical Design

Two physical contact positions do not determine their electrical functions. The contacts may be assigned according to the project pin map for power, return, sensing, control or other defined functions.

Current capability should be evaluated across the complete conductive path:

Source → PCB / conductor → terminal → pogo contact → mating interface → target → load

Contact diameter or pin count alone is not sufficient to establish the approved current capability.

Contact Pitch and PCB Layout

Contact pitch should be confirmed from the approved product drawing before PCB layout release. The visible product image is not sufficient to establish the exact center-to-center spacing.

If the project uses a defined standard pitch, the PCB footprint, mating-pad position and terminal geometry should all be checked against the released connector drawing.

Product Specification Framework

Product TypePogo Pin Connector
Pin Count2 Pin
Row ConfigurationSingle Row
Contact TechnologySpring-Loaded Contact
Housing ShapeCompact Rectangular
Contact OrientationRight Angle / Bent
Terminal StructureBent Tails
PCB Mounting MethodTo Be Confirmed
Contact PitchDefined by Approved Drawing
PCB FootprintDefined by Approved Drawing
Working StrokeDefined by Approved Drawing
Total TravelAvailable on Request
Spring ForceProject-Specific
Current CapabilityProject-Specific
VoltageProject-Specific
Contact ResistanceTo Be Confirmed
Contact / PlatingDefined by Approved Specification
Cycle LifeTo Be Confirmed
Environmental RequirementsProject-Specific
Operating TemperatureProject-Specific

Application Fit

This 2-pin right-angle connector architecture can be evaluated for compact PCB and device interfaces where two spring-loaded electrical contacts are required and the mating direction differs from the connector termination or mounting direction.

Application suitability depends on the PCB location, enclosure geometry, mating target, working stroke, electrical conditions and mechanical tolerance of the complete device.

Environmental and Reliability Considerations

Contact materials, plating, corrosion requirements, cycle life and operating temperature should only be specified when supported by approved material specifications or validation data.

The visible connector structure does not establish RoHS status, halogen-free status, salt-spray performance, high-temperature capability or a specific mechanical life.

Customization Options

CTP can review project-specific requirements including contact spacing, housing dimensions, right-angle geometry, terminal-tail design, PCB footprint, working stroke, spring force and electrical conditions.

Final dimensions and specifications should be released through an approved connector drawing and PCB interface definition.

Information Engineers Should Provide

  • Available PCB and enclosure X/Y/Z space
  • Required mating direction
  • Contact pitch requirement
  • PCB footprint or mounting-hole requirements
  • Terminal-tail requirements
  • System voltage
  • Continuous and peak current
  • Required working stroke
  • Spring-force requirement
  • Mating target geometry
  • Mating tolerance and final seating position
  • Operating environment
  • 2D / 3D drawings
  • Prototype quantity and expected production volume

FAQ

What makes this a right-angle pogo pin connector?

The connector uses a bent terminal architecture that creates a right-angle relationship between the spring-contact interface and the termination direction.

How many contacts does this connector have?

The connector contains two spring-loaded contacts arranged in a single row.

Is this a pogo pin or a pogo pin connector?

It is a two-contact pogo pin connector assembly. The two spring-loaded contacts are integrated into one insulating housing.

Is the contact pitch 2.54 mm?

The exact contact pitch should be confirmed from the approved product drawing before PCB layout release.

What PCB mounting method does this connector use?

The product image shows bent terminal tails, but the exact PCB mounting and soldering method should be confirmed from the approved drawing.

What current can this 2-pin connector carry?

Current capability is project-specific and should be evaluated across the complete conductive path including the PCB, terminal, pogo contact, mating interface and target conductor.

What working stroke should be used?

Working stroke should follow the approved connector drawing and must be distinguished from total available travel. The device structure should provide the final mechanical stop.

Can the right-angle structure be customized?

Housing dimensions, terminal geometry, contact pitch, working stroke and mounting requirements can be reviewed according to the customer interface and project conditions.

Request a Pogo Connector Engineering Review

If this 2-pin right-angle pogo connector architecture is close to your PCB or device interface requirements, submit the available space, contact pitch, PCB layout, mating geometry and electrical conditions for engineering review.

Request Custom Quote & Samples   |   Browse Pogo Pin Connectors

Engineering Review for 2 Pin Right Angle Pogo Pin Connector, 2.54 mm Pitch

This product page presents a CTP magnetic connector configuration for engineering reference. Final dimensions, electrical ratings, materials, magnet structure, sealing level and reliability targets are not universal values; they are confirmed against the approved drawing, installation condition and model-specific validation plan.

Information to provide for evaluation

  • pin count, pitch, pin map and mating direction
  • housing envelope, mounting method and device-side interface
  • current, voltage, signal and contact-resistance targets
  • magnetic retention, polarity, sealing, materials and finish
  • sample quantity, validation plan and forecast volume

How specifications are confirmed

CTP reviews the application and prepares a drawing or specification for approval before sample production. Test scope, acceptance criteria and report format should identify the model, sample status, method, conditions, result and review date.

Can this magnetic connector be customized?

Yes. Customization can cover geometry, contact layout, materials, cable construction, magnetic structure, sealing and appearance. Feasibility depends on the application and approved specification.

Are the electrical and waterproof values universal?

No. Current, voltage, resistance, temperature rise and ingress-protection claims apply only to the identified model and stated test conditions.

What determines sample and production timing?

Timing is confirmed after the drawing, materials, tooling, sample quantity, validation scope and production requirements have been reviewed.

From Contact Requirements to Project Validation

The development route depends on whether an existing pogo pin can be used, modified or assembled into a customized multi-contact connector.

01

Requirement Review

Confirm product type, dimensions, stroke, force, current, mounting and project quantity.

02

Structure Selection

Match the contact geometry, tail structure, housing, Pin layout and installation method.

03

Drawing and Sample Scope

Confirm dimensional tolerances, material requirements and sample configuration.

04

Validation and Production Review

Review electrical, mechanical, assembly and application-specific validation conditions.

Have a Pogo Pin Drawing, PCB Layout or Contact Requirement?

Submit the product type, dimensions, mounting method, working stroke, spring-force condition, electrical requirements, Pin Map, PCB layout and available drawings for project review.

Submit Pogo Pin Requirements

Applications of Precision Pogo Pin Contacts

Our high-precision pogo pin connectors can be seamlessly integrated into a wide range of industries. Explore our core application areas below. Feel free to contact our engineering team for custom solutions.

Custom precision pogo pin connectors integrated onto a PCB board for consumer electronics.
High current spring-loaded pogo pin contacts with wire solder cups for stable power transmission.
Surface mount SMD pogo pins soldered on a smart wearable device motherboard for reliable signal connection.

Smart Wearables

TWS Earbuds & Watches

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Medical Devices

Healthcare Equipment

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Automotive (EV)

High Current Systems

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Telecommunication

Data Transmission

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Smart Home

IoT & LED Lighting

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