OEM / ODM Custom Interconnect Solutions
Custom Spring Contact & Connector Solution

10 Pin Dual Row SMT Pogo Pin Connector, 2.54 mm Pitch

Custom 10-pin SMT pogo pin connector with a 5 × 2 dual-row spring-contact arrangement for PCB-mounted electrical interfaces. The integrated housing keeps ten contact positions in one connector assembly, while each pogo contact provides electrical connection and controlled Z-axis compliance. Contact pitch, PCB footprint, working stroke, electrical ratings and pin assignment 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 10-pin SMT pogo pin connector integrates ten spring-loaded electrical contacts into a compact 5 × 2 dual-row housing for PCB-mounted interfaces. Compared with installing individual pogo pins separately, the connector housing maintains the contact array as one mechanical assembly and can simplify PCB and mating-interface integration.

Each spring-loaded contact provides electrical connection and controlled compliance along the contact axis. Final connector position, compression and mechanical seating should be established by the approved PCB, housing and mating-interface design rather than by using the pogo contacts as structural stops.

10-Contact Dual-Row Architecture

The connector contains ten spring-loaded contacts arranged as five positions per row across two parallel rows. This 5 × 2 architecture provides multiple independently assignable electrical contact positions within a compact rectangular connector body.

Contact pitch, row spacing, pin numbering and mating-pad geometry should be confirmed from the approved connector drawing before PCB layout release.

Pogo Pin Connector vs. Individual Pogo Pins

This product is a multi-contact pogo pin connector assembly rather than an individual spring-loaded contact. The molded housing maintains the relative position of the ten contacts as one connector unit.

For engineers, this means the connector should be evaluated as a complete contact array including the housing geometry, PCB footprint, mating target, working stroke and tolerance stack-up.

SMT PCB Integration

The connector is intended for surface-mount PCB integration. The final PCB land pattern, solder-pad dimensions, component orientation and assembly process should follow the approved connector and PCB drawings.

Reflow conditions, solder paste design and production inspection requirements should be confirmed before volume assembly. SMT construction alone does not establish a specific reflow-temperature capability.

Mechanical Integration

The 10-contact connector should be reviewed together with the PCB position, mating target and enclosure structure. Mechanical datums or housing features should establish the final connector relationship to the mating surface.

Mechanical Information to Confirm

  • Overall connector length, width and height
  • Contact pitch and row spacing
  • PCB footprint and solder-pad dimensions
  • Mating-pad position and geometry
  • Mating direction
  • Available X/Y/Z tolerance
  • Connector compression and final seating position
  • Device-level mechanical stops and datums

Working Stroke and Contact Compliance

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

The mating structure should establish the final mechanical stop so that the pogo pins provide controlled electrical-contact compliance rather than carrying structural loads beyond the intended contact motion.

Pin Map and Contact Assignment

Ten physical contact positions do not determine their electrical functions. Power, return, signal, sensing, control or identification functions should be assigned through the approved customer pin map.

Pin numbering and mating orientation should also be defined clearly in the connector drawing to avoid ambiguity between the PCB layout and target contact interface.

Current Capability and Parallel Contacts

Current capability should be evaluated across the complete conductive path:

Source → PCB → SMT termination → pogo contact → mating interface → target conductor → load

Neither the number of pins nor the visible contact diameter is sufficient to establish an approved current rating. PCB copper, solder joints, contact resistance, mating resistance and temperature rise should be included in the electrical review.

Where multiple contacts are connected in parallel, current sharing between contacts must also be considered.

Signal and Data Considerations

A 10-pin connector provides ten available electrical contacts, but pin count does not define data bandwidth.

Signal capability should be evaluated from the actual pin map, return paths, contact pitch, contact geometry, PCB routing, mating target and the complete electrical channel.

Product Specification Framework

Product TypePogo Pin Connector
Pin Count10 Pin
Contact Layout5 × 2
Row ConfigurationDual Row
Housing ShapeCompact Rectangular
Mounting TypeSMT / SMD
PCB IntegrationSurface Mount
Contact PitchDefined by Approved Drawing
Row SpacingDefined by Approved Drawing
PCB FootprintDefined by Approved Drawing
Mating InterfaceTo Be Confirmed
Working StrokeDefined by Approved Drawing
Total TravelAvailable on Request
Spring ForceProject-Specific
Pin AssignmentDefined by Customer Pin Map
Current CapabilityProject-Specific
VoltageProject-Specific
Contact ResistanceTo Be Confirmed
Signal CapabilityRequires Interface Review
Data CapabilityRequires Complete Channel Review
Contact / Plating SpecificationDefined by Approved Specification
Cycle LifeTo Be Confirmed
Reflow RequirementsTo Be Confirmed
Operating TemperatureProject-Specific

Application Fit

This 5 × 2 connector architecture can be evaluated for PCB-mounted electrical interfaces that require ten independently assigned spring-contact positions in one compact connector block.

Application suitability depends on the mating target, available PCB area, contact assignment, working stroke, electrical conditions, mechanical tolerance and operating environment.

Environmental and Assembly Considerations

Environmental performance should be defined according to the completed assembly. Contact plating, corrosion requirements, cycle life, operating temperature and PCB assembly conditions should only be specified when supported by approved material specifications or validation data.

SMT construction does not by itself establish lead-free, halogen-free, corrosion-resistant or high-temperature performance.

Customization Options

CTP can review project-specific pogo connector requirements including contact count, contact arrangement, housing dimensions, PCB footprint, working stroke, spring-force condition, pin assignment and mating-interface geometry.

Final dimensions and electrical 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 10-contact pin map
  • PCB mounting orientation
  • Target contact or mating-pad geometry
  • Required contact pitch and row spacing
  • System voltage
  • Continuous and peak current
  • Any parallel contact assignments
  • Signal or communication requirements
  • Required working stroke
  • Mating tolerance and final seating position
  • Operating environment
  • 2D connector drawing and PCB layout
  • Prototype quantity and expected production volume

FAQ

How are the 10 contacts arranged?

The connector uses a 5 × 2 dual-row arrangement, providing ten independently assignable spring-contact positions in one connector housing.

Is this an individual pogo pin or a pogo pin connector?

It is a pogo pin connector assembly. Ten spring-loaded contacts are integrated into one housing rather than installed as ten separate individual pogo pins.

What does SMT mean for this pogo connector?

SMT refers to surface-mount PCB integration. The final land pattern, solder-pad dimensions and assembly conditions should follow the approved connector and PCB drawings.

Is the contact pitch 2.54 mm?

Contact pitch should be confirmed from the approved product drawing before PCB layout release. Do not rely on appearance alone when defining the land pattern.

What current can this 10-pin connector carry?

Current capability is project-specific and should be evaluated across the complete path from the PCB and SMT joints through the pogo contacts and mating interface to the target load.

Can several contacts be connected in parallel?

Parallel contacts can be evaluated for a specific design, but current sharing, PCB copper, solder-joint resistance, contact resistance and temperature rise must be considered.

Does a 10-pin pogo connector support high-speed data?

Pin count alone does not define data capability. Signal performance depends on the pin map, return paths, contact geometry, PCB transitions and the complete electrical channel.

What information is needed for a custom 10-pin SMT pogo connector?

Provide the PCB space, contact arrangement, pin map, voltage, current, working stroke, mating-pad geometry, assembly requirements and available 2D drawings or PCB layout files.

Request a Pogo Connector Engineering Review

If this 10-pin dual-row SMT pogo connector architecture is close to your PCB interface requirements, submit the pin map, PCB layout, available space, electrical conditions and mating-interface requirements for engineering review.

Request Custom Quote & Samples   |   Browse Pogo Pin Connectors

Engineering Review for 10 Pin Dual Row SMT 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

⚕️

Medical Devices

Healthcare Equipment

🚗

Automotive (EV)

High Current Systems

📡

Telecommunication

Data Transmission

🏠

Smart Home

IoT & LED Lighting

Explore More Pogo Pin Solutions