A dedicated place for power.
A slim, structured sleeve keeps the battery together with its protective layers and closure.
TACTICAL LiPo BATTERY SLEEVES
Your spare batteries ride with you.
Build thermal separation and a deliberate way to release them into your loadout.
01 / ON-BODY ENERGY
PURPOSE-BUILT CARRIAGE CONCEPTSpare LiPo batteries are part of the UAS operator’s kit. LiPOD brings the sleeve, material stack, and release interface together around one priority: separation between carried energy and the person carrying it.
A slim, structured sleeve keeps the battery together with its protective layers and closure.
Stainless-steel sheathed cables route through the rear attachment interface. The cables are intended to secure the sleeve and withdraw when released.
The red-tipped RIPCORD tab identifies the deliberate pull interface. The intended result is separation of the complete sleeve and battery.
THE SLEEVE, UP CLOSE
BATTERY → LINER → CLOSURESee where the battery sits, what surrounds it, and what stays accessible. The reflective inner barrier is visible before the pack goes in.
01The raised flap reveals the empty lined compartment.
02The battery sits inside the material stack.
03The top flap closes over the battery compartment.
04The distinct red pull point remains above the sleeve.
Illustrated design sequence. Final loading, routing, and use instructions will follow validation.
02 / MATERIAL ARCHITECTURE
FOUR LAYERS. DISTINCT ROLES.A deliberate stack of textile, structure, thermal barrier, and lining. Each layer has a role in the proposed separation architecture.

OUTER LAYER
The proposed abrasion-resistant nylon exterior for the demands of worn equipment.
STRUCTURAL LAYER
A semi-rigid layer intended to hold shape and add physical separation around the pack.
THERMAL PROTECTION MATERIAL
LiPo storage-type thermal protection material proposed between the battery and outer structure.
BATTERY-FACING LAYER
The contact surface around the pack, intended to limit wear and separate the battery from the shell.
DESIGN INTENT, CLEARLY STATED. Complete-assembly thermal behavior, impact response, and release performance remain to be validated. Material selection alone does not establish fire containment or ballistic protection.
03 / RAPID-RELEASE ARCHITECTURE
RIPCORD™When a carried battery becomes hazardous, opening the sleeve is not the design goal. RIPCORD is intended to release the sleeve and battery together, away from the operator.

The top-mounted red tab provides a distinct interface for a deliberate upward pull.

The cables are intended to disengage from the MOLLE interface so the complete load can separate.
THE INTERFACE
Mechanical attachment cables link the sleeve to the MOLLE interface. They are separate from the battery’s electrical leads.
COMPLETE SLEEVE + ENCLOSED BATTERY
Release direction, retention, snag resistance, and separation under load are development validation requirements.
Discuss an evaluationRelease visualization explains the intended architecture. It is not a validated emergency procedure.
THE LiPOD FAMILY
MATCH THE PACK. CHOOSE YOUR QUANTITY.1300, 2200, and 5000 mAh capacity classes. Confirm fit against your actual pack, cell count, dimensions, and connector layout.
COMPACT CARRIAGE
For compact LiPo packs and lighter UAS loadouts.
MID-CAPACITY CARRIAGE
For mid-capacity LiPo packs and versatile UAS loadouts.
HIGH-CAPACITY CARRIAGE
For larger LiPo packs that need a dedicated place on kit.
Illustrative product and battery pairings. Capacity is not a fit guarantee. Batteries shown for context; supply scope is confirmed in the quote.
ORDERS & QUOTES
YOUR MODEL. YOUR QUANTITY.One sleeve or a larger loadout. Choose the quantities you need, and we’ll confirm battery fit, pricing, availability, and delivery before your order is finalized.
LiPOD is a product in development. The imagery illustrates the intended design. Final materials, pack fit, thermal performance, release loads, and attachment behavior require prototype validation. No certified fire containment, ballistic protection, or field-proven performance is claimed.
No. The 1300, 2200, and 5000 names identify intended battery capacity classes in mAh. Pack dimensions, cell count, connector layout, and stored energy also matter. Include your battery make, model, and dimensions so fit can be reviewed before a configuration is confirmed.
The intended architecture releases the complete sleeve and enclosed battery from the MOLLE interface. A deliberate pull of the red-tipped tab withdraws the stainless-steel sheathed attachment cables. The release concept is subject to validation; these illustrations are not an operating procedure.
Yes. Enter any whole-number quantity for each model you need, from a single sleeve to a larger order. You can mix LiPOD 1300, 2200, and 5000 in one request. Fit, pricing, availability, and delivery timing will be confirmed before the order is finalized.
Review your order request, then open the prepared email addressed to contact@lipod.tech. You send it from your own email app. You can also copy or download the brief. This page does not upload your contact information or send an email automatically.