OEM / ODM Custom Interconnect Solutions
Custom Magnetic Connector

2 Pin Magnetic Pogo Pin Connector with Dual Spring Contacts

CTP 2 Pin Magnetic Pogo Pin Connector uses two independent spring-loaded electrical contacts in a compact magnet-assisted mating structure. The two contacts can form a project-specific power and return pair or be assigned to other defined electrical functions according to the customer circuit. Final polarity, voltage, current, contact pitch, working stroke, magnetic retention, mating life and environmental performance must be confirmed using the approved connector drawing and complete customer assembly.

For an engineering review, provide the Pin Map, voltage and current, available installation space, mating orientation, expected quantity and any available 2D or 3D drawings.
Engineering Review Inputs

Information That Helps Us Evaluate This Connector

Product specifications should be reviewed together with the customer device, PCB, electrical assignment and mechanical mating conditions.

01
Pin Map and Contact Functions

Define the function of each power, return, signal, control or detection contact.

02
Electrical Conditions

Provide voltage, continuous current, peak current and required signal conditions.

03
Mechanical Integration

Provide available length, width, height, PCB area and required mating orientation.

04
Project and Validation Scope

Provide application, expected quantity, environment and customer validation requirements.

Product Engineering Details

Technical Specifications, Structure and Integration

Review the product-specific description, technical parameters, contact arrangement, mechanical structure and project conditions below.

Engineering Summary: The CTP 2 Pin Magnetic Pogo Pin Connector uses two independent spring-loaded electrical contacts in a compact magnet-assisted mating structure. The two contacts can be assigned as a power and return pair or used for other project-specific electrical functions. Final polarity, voltage, current, contact pitch, working stroke, magnetic retention, mating life and environmental performance must be confirmed using the approved connector drawing and complete customer assembly.

2 Pin Magnetic Pogo Pin Connector Overview

This 2 pin magnetic pogo pin connector is designed for compact devices that require a removable two-contact electrical interface with magnet-assisted attachment.

The product shown contains two independent spring-loaded pogo pin contacts. The surrounding magnetic and structural elements assist mating and help position the connector relative to the opposing interface.

Because the connector provides only two electrical contacts, the electrical architecture is comparatively simple, but correct polarity, contact sequencing, working stroke and fault protection become especially important.

Final connector performance must be reviewed together with the customer PCB, mating targets, enclosure, electrical load and mechanical mating conditions.

Visible Connector Structure

Connector ElementVisible StructureEngineering Requirement
Electrical ContactsTwo independent spring-loaded pogo pinsDefine polarity, contact function and electrical load
Contact ArrangementTwo separated contact positionsConfirm center distance and mating-target dimensions by drawing
HousingCompact molded insulating structureConfirm dimensions, material and enclosure integration
Magnetic ElementsMultiple metallic or magnetic features around the contact areaDefine magnetic function and polarity using the approved drawing
Peripheral StructureGreen outer feature visible around part of the housingConfirm whether it provides sealing, location or assembly support
TerminationProject-specific internal connectionConfirm PCB, FPC, wire or solder termination

What Can Two Contacts Do?

Two electrical contacts are commonly used when the interface only requires a simple electrical path.

Possible ArchitectureContact 1Contact 2Primary Engineering Review
DC PowerPositive supplyPower returnPolarity, current, voltage drop and temperature rise
Detection CircuitDetection signalElectrical referenceThreshold, contact sequence and fault state
Control InterfaceControl signalSignal referenceLogic voltage and protection
Test InterfaceTest nodeReference nodeFixture alignment and test current

These allocations are examples only. The final Pin Map must be defined from the actual customer circuit.

For Power Applications, Polarity Must Be Explicit

When the two contacts are used as a DC power pair, one contact normally provides the supply path and the other provides the return path.

The design should not rely only on user orientation to prevent reversed polarity.

Polarity control may include:

  • Asymmetric housing geometry
  • Magnetic polarity arrangement
  • Mechanical keying
  • Contact spacing and target geometry
  • Reverse-polarity protection in the circuit

The electrical response to a wrong, offset or partially seated mating state should be defined before the connector is released for production.

Magnetic Capture Is Not the Same as Final Electrical Alignment

Magnets may pull the two connector halves together, but magnetic attraction should not be the only feature controlling the final contact position.

Mating FunctionRecommended Control
Initial CaptureMagnet arrangement and approach geometry
OrientationHousing geometry and magnetic polarity
Final AlignmentMechanical datums, guides and mating surfaces
Pogo Pin CompressionMechanical stops and dimensional tolerance stack
Seated RetentionMagnetic structure and customer-device support
RemovalDefined separation direction and release-force requirement

Initial capture, seated retention and separation force should be measured separately because they describe different mechanical behaviours.

Control the Pogo Pin Working Stroke

Both spring-loaded contacts must operate inside their approved working stroke at the final seated position.

A simplified working-stroke calculation is:

S = Hfree - Hseated

where:

  • S is the actual pogo pin compression
  • Hfree is the installed free contact height
  • Hseated is the final distance to the mating target

The tolerance stack may include:

  • Pogo pin free-height tolerance
  • Target height and flatness
  • Contact spacing
  • Housing dimensions
  • Magnet position
  • Mechanical-stop position
  • PCB or termination height
  • Customer-enclosure deformation
  • Surface contamination
Stroke ConditionPossible Result
Insufficient CompressionIntermittent power or unstable contact resistance
Approved Working StrokeIntended contact force and electrical condition
Excessive CompressionSpring bottoming, target indentation or housing stress
Unequal CompressionDifferent resistance between the two electrical paths

Evaluate the Complete Power Path

The electrical performance of a 2 pin connector cannot be determined from the pogo pins alone.

A simplified complete power path is:

Rpath = Rsource-PCB + Rtermination1 + Rpogo + Rinterface + Rtarget + Rtermination2 + Rreturn-PCB

The voltage drop is:

Vdrop = I × Rpath

The resistive loss is:

Ploss = I² × Rpath

The project should define:

  • Operating voltage
  • Continuous current
  • Peak current and duration
  • Permitted voltage drop
  • Permitted connector temperature rise
  • Inrush current
  • Short-circuit protection
  • Reverse-polarity response
  • Power-enable sequence
  • Behaviour during removal under load

Current capability must be confirmed through complete-path voltage-drop and temperature-rise testing.

Two Pins Do Not Automatically Mean Fast Charging

A two-contact magnetic connector may be used as part of a charging system, but the connector itself does not define a fast-charging protocol.

Complete charging performance depends on:

Power Source → Charging Controller → Connector → Device Power Management → Battery

The connector should therefore be specified using measurable electrical requirements such as current, voltage drop and temperature rise rather than a generic fast-charging claim unless the complete charging system has been validated.

Partial Mating Is Especially Important in a 2 Pin Power Interface

Magnetic attraction can hold the connector close to the final seated position before both contacts reach their intended working stroke.

ConditionPossible RiskRequired Review
Only One Contact TouchesIncomplete circuit or unexpected electrical stateContact-height tolerance and mating angle
Laterally Offset ConnectionContact misses target or reaches unintended conductive areaTarget size and maximum credible offset
Magnetically Retained but Not Fully SeatedUnstable power or resistance variationFull-seating verification
Reverse OrientationReversed polarityMechanical and electrical polarity protection
Conductive Foreign ObjectShort circuit between exposed contactsCurrent limiting and exposed-contact protection
Removal Under LoadTransient voltage or contact arcingPower-disable sequence and powered-endurance testing

Exposed Contacts Require Fault-State Review

A surface magnetic connector may leave the electrical contacts accessible when the mating part is removed.

Possible foreign objects include:

  • Metal fragments
  • Coins or tools
  • Conductive dust
  • Moisture
  • Cleaning residue

For energized contacts, the product should evaluate current limiting, normally de-energized states, short-circuit protection and power-enable logic.

Environmental Protection Is Assembly-Specific

The visible housing and peripheral structure do not independently establish an IP54 or other ingress-protection rating.

The complete protection boundary may include:

  • The connector housing
  • The pogo pin insert
  • The connector-to-device joint
  • The peripheral gasket or sealing feature
  • The termination area
  • Adhesive, potting or overmolding
  • The mated and unmated conditions
  • Other openings in the finished device

Any IP, corrosion or salt-spray statement should identify the exact tested assembly, test condition and acceptance criteria.

Product Selection Parameters

ParameterProduct Definition
Product Type2 pin magnetic pogo pin connector
Electrical Contact CountTwo independent spring-loaded contacts
Primary ArchitectureTwo-conductor project-specific electrical interface
Pin MapPower/return or other project-specific contact assignment
Connector ShapeCompact molded contact-style housing
Magnetic StructureMagnet-assisted capture and retention
Overall DimensionsConfirm using the approved drawing
Contact PitchConfirm center distance using the approved drawing
Working StrokeConfirm minimum, nominal and maximum pogo pin compression
Contact ForceReport at a defined working stroke
VoltageModel- and circuit-specific
Continuous CurrentConfirm through complete-path voltage-drop and temperature-rise testing
Contact ResistanceReport with test current, stroke, target and measurement method
Magnetic PerformanceCapture, seated retention and separation force are specified separately
Mating LifeDefined by stroke, electrical load, target and acceptance criteria
Ingress ProtectionApplies only to a defined and tested connector or complete device assembly

Possible Application Areas

ApplicationPossible Connector RolePrimary Engineering Focus
Portable ElectronicsTwo-wire power or charging interfacePolarity, exposed contacts and repeated mating
Smart-Home DevicesPower, docking or detachable module interfaceContact stability and user interaction
Charging DocksPositive and return charging pathVoltage drop, temperature rise and partial mating
Consumer ElectronicsCompact removable power interfaceSpace, polarity and fault protection
Industrial Handheld EquipmentCharging or low-complexity electrical interfaceVibration, contamination and contact wear
Custom Electronic ModulesProject-specific two-contact connectionElectrical architecture and mechanical integration

These applications are examples. Final suitability depends on the electrical load, polarity architecture, mechanical design and complete device validation.

Recommended Validation Plan

RequirementRecommended Evaluation
Pin MapConfirm the exact function and polarity of both contacts
Contact PitchVerify contact center distance and target positions
Working StrokeVerify minimum, nominal and maximum compression of both contacts
Contact ResistanceMeasure under a defined current, target and working stroke
Voltage DropMeasure the complete positive and return path
Temperature RiseEvaluate contacts, targets, terminations and PCB
Reverse PolarityEvaluate reversed or unintended orientation
Magnetic CaptureEvaluate connector approach and alignment behaviour
Retention and ReleaseMeasure force in intended use and removal directions
Partial MatingTest one-contact-first, offset and retained-but-unseated states
Short CircuitEvaluate conductive objects, moisture and adjacent-contact bridging
Mechanical EnduranceUse defined stroke, target, speed and acceptance criteria
Powered EnduranceEvaluate mating and separation under intended electrical load
Environmental ExposureTest representative moisture, dust, vibration and cleaning conditions

Information Required for Engineering Review

InputInformation to Provide
Pin MapFunction and polarity of both contacts
Electrical ConditionsVoltage, continuous current and peak current
Mechanical SpaceMaximum length, width, height and restricted regions
Contact PitchRequired center distance and mating-target dimensions
Mating DirectionApproach, final seating and removal direction
Working StrokeMinimum, nominal and maximum pogo pin compression
TerminationPCB, FPC, wire or project-specific connection
Magnetic RequirementCapture, seated retention and separation conditions
EnvironmentTemperature, moisture, dust, vibration and cleaning exposure
Project Files2D drawing, 3D model, schematic, PCB layout or device assembly
CommercialPrototype quantity, annual forecast and project stage

Frequently Asked Questions

What is a 2 pin magnetic pogo pin connector?

It is a magnetic connector with two independent spring-loaded electrical contacts. The two contacts can form a power and return pair or perform another project-specific two-conductor electrical function.

Can the two contacts be used for charging?

Yes, they may be used as a positive and return path in a charging system. The final current, voltage drop, temperature rise and charging behaviour must be validated with the complete device.

Does a 2 pin connector automatically support fast charging?

No. Fast charging depends on the power source, charging controller, battery-management system and complete electrical path.

How is polarity controlled?

Polarity can be controlled through housing geometry, magnetic polarity, mechanical keying and circuit-level reverse-polarity protection.

What happens if only one pogo pin makes contact?

The circuit may remain open or enter an unintended electrical state, depending on the system design. One-contact-first and partial-mating conditions should therefore be tested.

Is the connector automatically rated for 2 A and 12 V?

No universal rating should be assumed. Current and voltage depend on the contact geometry, working stroke, mating targets, termination, PCB routing and thermal environment.

Does the housing automatically provide IP54 protection?

No. An ingress-protection rating must apply to a defined and tested connector or complete customer assembly under stated conditions.

How is magnetic force specified?

Initial capture, seated retention and separation force should be specified and measured separately in their defined directions.

What information is needed for engineering review?

Provide the two-contact Pin Map, polarity, voltage, current, available space, contact pitch, working stroke, magnetic requirements and available drawings.

Request a 2 Pin Magnetic Connector Engineering Review

Review additional custom magnetic connector components for different pin counts and mating structures.

Submit the Pin Map, voltage, current, available space and project drawings through the Get Quote & Samples page .

CTP can review the two-contact electrical architecture, polarity, pogo pin working stroke, mating targets, magnetic arrangement, housing and PCB, FPC or wire termination. Final electrical ratings, magnetic retention, mating life, environmental protection and complete device performance must be confirmed through approved drawings and project-specific validation.

Engineering Review for 2 Pin Magnetic Pogo Pin Connector with Dual Spring Contacts

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.

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