FynoriX PF Output Cable for FynoriX1511

$6.99

500 in stock

SKU: FynoriXPF Category:

Description

Product Name:  FynoriX PF Output Cable
Compatible Power Module: FynoriX1511
Power Source Connection: FynoriX1511 dedicated 9 V output port
Output Voltage: Regulated 9 V DC supplied by FynoriX1511
PF Output Stacking: Supported with multiple FynoriX1511 modules
Main Function: Connects FynoriX1511 to PF-compatible electrical components
Charging Function: No
Recommended Age: 14+
Cable Length: 15 cm / 6 in

 

The Dedicated Output Connection for FynoriX1511

The FynoriX PF Output Cable is the dedicated connection between the FynoriX1511 energy module and PF-compatible electrical components.

It carries the regulated 9 V output supplied by FynoriX1511 to switches, receivers, controllers, motors, lights and other compatible loads.

Use it as a replacement cable, an additional cable for another FynoriX1511 module, or as part of a Multi-Battery Stacked PF Output configuration.

Key Features

  • Designed specifically for FynoriX1511
  • Connects the dedicated 9 V output to PF-compatible components
  • Stackable PF-compatible output connector
  • Supports Multi-Battery Stacked PF Output
  • Suitable for switches, receivers, controllers, motors and lights
  • Useful as a replacement or additional output cable
  • Keeps the battery, controller and load as separate modular components
  • No separate PF parallel adapter is required for output stacking

Recommended Connection

For normal operation, we recommend placing a PF-compatible switch, receiver or controller between the FynoriX1511 and the motor or other load:

FynoriX1511 → PF Output Cable → PF Switch / Receiver / Controller → Motor or Load

Recommended FynoriX1511 connection through a PF controller to a motor

This arrangement provides more predictable control over the connected motor or load and helps prevent unintended low-speed movement when FynoriX1511 is switched off.

Multi-Battery Stacked PF Output

Some models create greater short-duration power demand when motors start. This can occur with:

  • several motors starting simultaneously;
  • heavy wheeled or tracked vehicles;
  • mechanisms beginning operation under load;
  • rapid acceleration;
  • aggressive gear ratios;
  • drivetrains with substantial initial resistance;
  • motors operating briefly close to stall.

For these applications, connect each FynoriX1511 module using its own FynoriX PF Output Cable, then stack the PF output connectors directly together.

Connect a PF-compatible switch, receiver or controller to the same stacked connection, followed by the motor or load.

Multiple FynoriX1511 modules → One PF Output Cable per module → Stacked PF connection → Controller → Motor or Load

Two FynoriX1511 energy modules with their PF output connectors stacked directly and connected to a compatible PF receiver for additional startup-current support.

This allows multiple FynoriX1511 modules to contribute to the same PF circuit and can increase the available output power for short-duration startup demand compared with a single module.

The regulated output voltage remains 9 V, and no separate PF parallel adapter is required.

Actual power contribution depends on:

  • the charge level of each module;
  • internal resistance;
  • cable and connector resistance;
  • temperature;
  • manufacturing tolerances;
  • the connected motors;
  • the mechanical load of the model.

The available output power should not be assumed to increase linearly with the number of connected modules. For example, two modules do not automatically provide exactly twice the current or power under every condition.

PF Output Stacking vs. InfiLinX

These two connection methods serve different purposes.

InfiLinX

When used with FynoriX1511, InfiLinX connects multiple energy modules to increase total battery capacity and runtime.

In this configuration, it does not increase:

  • the regulated output voltage, which remains 9 V;
  • the peak current available from a single PF output;
  • the available power of a single PF output connection.

Stacked PF Output

PF Output Stacking connects the outputs of multiple FynoriX1511 modules to the same PF circuit.

It is intended to provide greater available power for applications with higher short-duration startup demand.

In a FynoriX1511 power configuration, use InfiLinX to increase capacity and extend runtime, and use Stacked PF Output to provide greater available power during startup.

Important Power-Off Behavior

FynoriX1511 uses a specific output-control architecture. When switched on, its dedicated output provides regulated 9 V power.

When FynoriX1511 is switched off, the regulated 9 V output is disabled, but the output is not completely isolated electrically. A small residual voltage may therefore remain at the PF connector.

As a result, a motor connected directly to the FynoriX PF Output Cable may rotate slowly while FynoriX1511 is switched off. This is a normal operating characteristic, not a fault or full-power operation.

For predictable control, connect the motor through a PF-compatible switch, receiver or controller. Disconnect the output cable before storage, transport or maintenance.

Compatibility

Designed for:

  • FynoriX1511 Power Brick
  • PF-compatible switches
  • PF-compatible receivers
  • PF-compatible controllers
  • PF-compatible motors
  • PF-compatible lights and other loads

The battery-side connector is designed specifically for the dedicated output port of FynoriX1511.

This cable is not designed as:

  • a USB-C charging cable;
  • a USB-C power input cable;
  • a generic PF extension cable;
  • a Powered Up adapter;
  • a replacement for the USB-C to PF Adapter.

FynoriX PF Output Cable vs. USB-C to PF Adapter

The two products have different power sources and must not be confused.

Product Power Source Purpose
FynoriX PF Output Cable FynoriX1511 dedicated output Connects FynoriX1511 to a PF-compatible circuit
USB-C to PF Adapter USB-C PD charger or power bank Converts a compatible USB-C power source into PF-compatible 9 V output

The FynoriX PF Output Cable does not accept USB-C input and does not perform USB-C PD negotiation.

Never connect a FynoriX1511 and a USB-C to PF Adapter to the same powered PF circuit.

How to Use

  1. Make sure FynoriX1511 is switched off and the connected motor or load is stopped before making any connection.
  2. Insert the cable into the dedicated 9 V output port of FynoriX1511.
  3. Connect the PF end to a compatible switch, receiver or controller.
  4. Connect the motor, light or other load to the switch, receiver or controller.
  5. Press and hold the FynoriX1511 power button for approximately two seconds to switch it on.
  6. Disconnect the cable when storing, transporting or servicing the model.

Multi-Battery Safety

When stacking PF outputs:

  • Use only FynoriX1511 modules in the same stacked output configuration.
  • Fully charge each module separately before connecting them.
  • Make sure all connected modules have a similar state of charge.
  • Use one FynoriX PF Output Cable for each module.
  • Switch off and disconnect all modules before changing the connection.
  • Do not short, modify, crush or use a damaged cable.

Never connect another type of battery box, a USB-C to PF Adapter or an external power source to the same powered PF circuit.

Best Used For

  • Replacing a lost or damaged FynoriX1511 output cable
  • Adding another FynoriX1511 module to a model
  • Multi-Battery Stacked PF Output configurations
  • Compact PF-compatible vehicles
  • Tracked models with higher startup demand
  • Multi-motor mechanisms
  • Models requiring flexible battery placement
  • Modular electrical system development

What’s Included

1 × FynoriX PF Output Cable

FynoriX1511 modules, InfiLinX cables, motors, controllers and other components shown in product images are not included.

Related Products and Resources

 

FAQ

Q: Is this cable included with FynoriX1511?
A: Yes. Each FynoriX1511 Single Battery Set includes one FynoriX PF Output Cable. This separate listing is intended for replacement cables, additional modules and custom multi-battery configurations.

Q: Can I connect a motor directly to the cable?
A: Yes, but a PF-compatible switch, receiver or controller is recommended between the battery and motor. Because a small residual voltage can remain when FynoriX1511 is switched off, a directly connected motor may rotate slowly. A controller provides more predictable operation.

Q: Does this cable increase the output voltage?
A: No. The output remains regulated at 9 V.

Q: Does one cable increase the available power?
A: No. The cable carries the output supplied by one FynoriX1511 and does not increase voltage, current or power by itself. Greater available startup power can be achieved by using multiple FynoriX1511 modules, one PF Output Cable per module, and stacking their PF output connectors together.

Q: Does stacking two outputs exactly double the power?
A: Not necessarily. Multiple modules can provide greater available power than a single module, but the actual increase depends on charge level, resistance, temperature and the connected load.

Q: Do I need a separate parallel adapter?
A: No. The PF-compatible connectors can be stacked directly together.

Q: Is PF Output Stacking the same as InfiLinX?
A: No. When used with FynoriX1511, InfiLinX increases total battery capacity and runtime. PF Output Stacking allows multiple FynoriX1511 modules to contribute power to the same PF circuit.

Q: Can I use this cable with a USB-C charger or power bank?
A: No. This cable is only for the dedicated output port of FynoriX1511. Use the separately available USB-C to PF Adapter when the power source is a compatible USB-C PD charger or power bank.

Q: Can I connect another type of battery box to the same stacked PF circuit?
A: No. Never connect another type of battery box, a USB-C to PF Adapter or an external power source to the same powered PF circuit.

Q: Is the low voltage present when switched off a fault?
A: No. It is a normal characteristic of the FynoriX1511 output-control architecture. The regulated 9 V output is disabled when switched off, but a small residual voltage may remain. This is not full-power operation.

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