OEM / ODM Custom Interconnect Solutions
Custom Magnetic Cable Assembly

2 Pin Slim Rectangular Magnetic Fast Charging Cable

A custom 2 pin magnetic fast charging cable with a slim rectangular cable head, two contacts in a linear arrangement and a separate device-side mating component. Voltage, continuous current, Pin Map, cable construction, contact travel, magnetic retention and mating geometry are defined according to the approved project requirements.

Confirm the Complete Cable Assembly
Magnetic End Pin count, shape and mating direction
Cable Construction Length, conductor and outer jacket
Opposite Termination USB, Type-C, DC or custom wire end
Electrical Functions Power, signal, detection or control

A Magnetic Cable Is More Than the Connector End

The finished assembly must define the magnetic mating component, internal conductor arrangement, cable construction and the opposite-end connection as one complete electrical system.

01

Magnetic Mating Interface

Confirm Pin count, contact allocation, magnet arrangement, connector shape, polarity control and mating direction.

02

Cable Construction

Define cable length, conductor count, wire specification, shielding requirements, jacket and flexibility.

03

Opposite-End Termination

Select USB, Type-C, DC plug, bare wire, terminal, PCB connection or another customized termination.

04

Device-Side Integration

Confirm installation space, outlet direction, strain relief, exposed-contact state and user operation.

2 PIN SLIM MAGNETIC FAST CHARGING CABLE

Engineering Summary

This 2 pin magnetic fast charging cable uses a slim rectangular cable-side head with two electrical contacts arranged in a linear interface. A separate narrow mating component completes the detachable magnetic connection on the device side.

Fast charging is the intended application direction, while the actual voltage, continuous current, peak current, cable conductor specification and device charging architecture must be defined for the project.

Magnets primarily assist capture and retention during mating. Final position, alignment and seating should be established by the mating housings and mechanical datums rather than magnetic attraction alone.

Slim Bar-Style Charging Interface

The reference configuration uses an elongated narrow housing that concentrates the two electrical contact positions along the centerline of the mating interface.

This slim geometry can be evaluated for products where connector width is limited and a detachable cable-side charging interface must fit within a narrow device area.

Pin Count 2 Pin

Contact Layout Single row / linear

Head Geometry Slim rectangular / bar-style

Application Direction Fast charging

2-Pin Charging Pin Map

Two electrical contact positions are visible, but polarity should not be assigned from physical position alone.

The approved drawing should identify Pin 1, viewing direction, positive and return functions and any reverse-connection or polarity-control requirement.

Pin 1 Orientation → Defined by Approved Drawing
Positive / Return Allocation → Defined by Approved Pin Map
Reverse-Connection Strategy → To Be Confirmed

Cable-side and device-side drawings should use the same viewing reference to prevent mirrored polarity assignments during electrical and mechanical integration.

Fast Charging and Complete Conductive Path

Fast-charging capability cannot be determined from the two-pin interface or visible contact size alone.

The complete charging path should be reviewed from the power source through the cable and magnetic interface to the device charging circuit.

Power Source → Opposite-End Termination → Cable Conductors → Magnetic Cable Head → 2-Contact Mating Interface → Device-Side Contact → PCB / Charging Circuit → Battery / Load

Vdrop = I × Rpath
Ploss = I² × Rpath

Cable length, conductor gauge, termination resistance, contact resistance, mating condition and device-side PCB resistance all contribute to voltage drop and power loss.

Continuous current and peak current should therefore be defined together with the permitted voltage drop, temperature rise and charging duty condition.

Fast Charging Is a System Requirement

The magnetic cable provides the removable electrical path, but the cable itself does not define a charging protocol.

Source capability, device charging circuitry, cable conductor specification, connector resistance and thermal limits should be compatible with the required charging condition.

A voltage or current rating should only be released after the complete path has been reviewed for the approved cable length, termination and mating configuration.

Magnetic Capture and Mechanical Seating

Magnetic attraction assists the slim cable head during approach and helps retain the mating interface after engagement.

Capture force, retention force, axial separation force and peel force describe different mechanical conditions and should be specified separately where relevant.

Final position and electrical contact compression should be controlled by the mating housing and mechanical geometry.

Stronger magnetic retention is not automatically better. The required magnetic behavior should be selected according to cable direction, device mass, housing strength and intended removal behavior.

Contact Compliance, Working Stroke and Mechanical Stop

Two contact positions are visible, but the internal contact mechanism should be confirmed by the approved contact drawing.

If spring-loaded pogo contacts are used, working stroke, total travel, spring force and installed compression should be defined separately.

Working stroke represents the intended operating compression. Total travel represents the available mechanical movement and should not be treated as the same parameter.

The housing should establish the final mechanical seated position. Spring-loaded contacts should provide electrical contact and controlled Z-axis compliance rather than act as the primary mechanical hard stop.

Cable Construction and Opposite-End Termination

The magnetic head is only one part of the complete fast-charging cable assembly.

Cable length, conductor gauge, conductor count, cable outer diameter, jacket material, flexibility and strain relief should be selected according to the required electrical load and mechanical routing.

USB-A, USB-C, DC plug, terminal, bare wire or another source-side interface should only be specified after the approved cable drawing confirms the required termination.

Device-Side Mating Integration

The product image shows a separate slim mating component corresponding to the cable-side charging head.

Its PCB, FPC, wire, housing or other termination method should be confirmed by the device-side drawing.

Available X, Y and Z space, mating direction, mounting tolerance and mechanical seating surfaces should be defined before the final connector geometry is approved.

Electrical and Environmental Validation

Fast-charging performance should be validated using the approved cable length, conductor specification, source termination, magnetic interface and device-side load.

Cycle life, salt-spray performance, operating temperature, contact plating and environmental protection should be stated only after the corresponding project requirements and test conditions are confirmed.

An IP rating should apply only to a defined and tested complete assembly or device enclosure.

Product Specifications

SpecificationDetails
Product Type2 Pin Magnetic Fast Charging Cable Assembly
Pin Count2 Pin
Primary FunctionCharging
Charging ApplicationFast Charging
Head ShapeSlim Rectangular / Bar-Style
Contact ArrangementSingle Row / Linear
Pin MapDefined by Approved Drawing
Contact TypeTo Be Confirmed
Working StrokeTo Be Confirmed
Total TravelTo Be Confirmed
Spring ForceTo Be Confirmed
Cable LengthProject-Specific
Wire GaugeTo Be Confirmed
Opposite-End TerminationTo Be Confirmed
Device-Side MountingTo Be Confirmed
VoltageProject-Specific
Continuous CurrentTo Be Confirmed
Peak CurrentTo Be Confirmed
Current CapabilityValidate Complete Conductive Path
Magnetic FunctionCapture + Retention
Final Position / AlignmentControlled by Mechanical Mating Geometry
Magnetic RetentionProject-Specific
Material / PlatingTo Be Confirmed
Cycle LifeTo Be Confirmed
Operating TemperatureTo Be Confirmed
IP RatingTo Be Confirmed at Complete Assembly Level

Customization Options

  • 2-pin Pin Map and polarity
  • Operating voltage and continuous / peak current
  • Cable length and wire gauge
  • Opposite-end termination
  • Slim charging-head dimensions
  • Contact pitch and mating depth
  • Contact structure and working stroke
  • Device-side mounting structure
  • Magnetic retention and release behavior
  • Cable jacket and strain-relief structure

Explore related 2 Pin Magnetic Cable Connectors for alternative two-contact magnetic cable architectures.

Information Engineers Should Provide

  • 2-pin Pin Map and polarity
  • Pin 1 orientation and viewing direction
  • Required source voltage
  • Continuous and peak charging current
  • Required charging protocol if applicable
  • Allowed voltage drop and temperature rise
  • Cable length and wire gauge
  • Opposite-end termination
  • Available X / Y / Z installation space
  • Contact pitch and mating depth
  • Contact type, working stroke and total travel
  • Device-side mounting and mating geometry
  • Retention, separation and peel requirements
  • Environmental requirements
  • 2D / 3D drawings when available
  • Expected project volume

FAQ

What is a 2 pin magnetic fast charging cable?

It is a detachable magnetic cable assembly using two electrical contact positions for a project-defined charging path. This version uses a slim rectangular cable head and a separate mating component.

What are the two contacts used for?

The two contact functions are defined by the approved Pin Map. Polarity should not be assumed from physical position alone.

What makes this cable suitable for fast-charging applications?

Fast-charging suitability depends on the complete conductive path, including source capability, cable conductor gauge, cable length, termination resistance, magnetic contact interface, device charging circuit and allowable temperature rise.

Does this 2 pin cable automatically support 3A charging?

No fixed current should be inferred from the two-pin structure alone. Continuous and peak current must be confirmed for the approved cable construction, mating interface and device load.

Does the magnetic cable itself define a fast-charging protocol?

No. The cable provides the electrical connection path. Charging protocol and power negotiation, when required, depend on the source, device electronics and complete system architecture.

Are the contacts spring-loaded pogo pins?

Two contact positions are visible, but the internal spring-loaded mechanism, working stroke and total travel should be confirmed by the approved contact drawing.

How should magnetic retention be specified?

Capture force, retention force, axial separation force and peel force should be distinguished. The required values depend on the device structure and intended cable-removal behavior.

Can the cable length and source-side termination be customized?

Yes. Cable length, conductor construction and opposite-end termination can be defined for the project, but voltage drop and thermal performance should be reviewed together with the required charging current.

What information is required for a custom fast-charging magnetic cable?

Provide the Pin Map, voltage, continuous and peak current, charging requirements, cable length, wire gauge, opposite-end termination, installation dimensions, mating geometry, magnetic requirements and available drawings.

CUSTOM FAST-CHARGING MAGNETIC CABLE DEVELOPMENT

Request an Engineering Review

Send CTP your 2-pin Pin Map, voltage, continuous and peak current, charging requirements, cable length, wire gauge, opposite-end termination, available X/Y/Z installation space, contact dimensions, mating geometry, magnetic retention requirements and available 2D or 3D drawings. Request Custom Quote & Samples

Engineering Review for 2 Pin Slim Rectangular Magnetic Fast Charging Cable

This product page presents a CTP magnetic cable assembly 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

  • source-side interface and device-side magnetic head
  • pin definition, current, voltage and signal requirements
  • cable length, conductor, jacket, shielding and strain relief
  • magnetic retention, polarity, sealing, color and packaging
  • 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 cable assembly 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.

Information Required Before Cable Development

A reference product image is not enough to define a cable assembly. Confirm the following information before drawing, sampling or quotation review.

1. Pin Map Define power, return, signal, control, detection and unused contacts.
2. Voltage and Current Provide voltage, continuous current, peak current and operating cycle.
3. Cable Length Confirm finished length, tolerance, moving conditions and routing path.
4. Wire Construction Define conductor count, wire requirement, shielding and outer-jacket conditions.
5. Opposite-End Interface Confirm USB, Type-C, DC, terminal, bare wire or custom connection.
6. Mechanical Conditions Provide available space, outlet direction, strain relief and mating requirements.

From Cable Requirements to Project Validation

The exact project route depends on whether an existing product can be used, modified or requires a new cable assembly design.

01

Requirement Review

Confirm product scope, Pin Map, cable length, termination, quantity and application conditions.

02

Cable and Connector Mapping

Match magnetic contacts to conductors, source-side wiring and device-side functions.

03

Drawing and Sample Scope

Confirm dimensions, outlet direction, cable construction and required sample configuration.

04

Validation and Production Review

Review electrical, mechanical and environmental conditions before production approval.

Have a Cable Drawing, Pin Map or Device Requirement?

Submit the magnetic-end structure, electrical functions, cable length, conductor requirements, opposite-end interface, installation space and available drawings for project review.

Submit Magnetic Cable Requirements