LZZ-THOR-100 Tethered UAV System | 100m Altitude 8H+

LZZ-THOR-100 Tethered UAV System | 100m Altitude 8H+

Four ways to buy a drone — only one gets you a factory-tuned airframe. The routes below are the ones buyers compare when they shortlist drone manufacturers, and the table further down shows what each route leaves with the drone manufacturer once the airframe ships.
Up to 100 mTethered flight altitude
≥ 8 hoursContinuous working time
Up to 2.5 kgLoad capacity
≤ 4 minutesDeployment time
LZZ-THOR-100 Tethered UAV System | 100m Altitude 8H+ Continuous Flight Professional Drone

The Four Supply Models You Will Actually Meet

Each model owns a different part of the aircraft and a different part of the risk. Read the “choose this if” line before you read the capability matrix.

01

OEM / Factory

Controls the airframe, the structural tooling and the acceptance test that clears each unit.

  • Owns Airframe design, assembly, firmware baseline
  • Customization Deep — structure, payload bay, branding
  • MOQ shape Tooling-amortized batches
  • Lead time Tooling plus batch scheduling

Choose this if your requirement is defined and you need the airframe itself changed, not just labelled.

02

ODM Platform Provider

Sells an existing, already-validated platform with its flight control and power architecture.

  • Owns Proven airframe, powertrain, firmware
  • Customization Moderate — mounting, labels, parameters
  • MOQ shape Stock to short batch
  • Lead time Shortest of the four

Choose this if schedule beats bespoke and you can adapt your mission to a proven envelope.

03

Systems Integrator

Treats the aircraft as one component of a wider system — sensors, links, mission software, site works.

  • Owns Payload integration, comms, commissioning
  • Customization Software- and interface-led
  • MOQ shape One-off project scope
  • Lead time Integration sprints

Choose this if your deliverable is an output — a monitoring service or a control room feed — not an aircraft.

04

Export Dealer / Trading Company

Owns the commercial and logistics layer: sourcing, documentation, freight and the spares channel.

  • Owns Export documents, freight, consolidation
  • Customization Limited to configuration choices
  • MOQ shape Container or consolidated order
  • Lead time Freight-driven

Choose this if you need one invoice, one shipping schedule and multi-item sourcing in a single transaction.

Capability Matrix: Parameters Against Supply Model

Rating language only — “typically”, “negotiable”, “rarely”. No brand names, no league table. Footnotes point to the platform where that parameter is published.

Parameter OEM / Factory ODM Platform Systems Integrator Export Dealer
Owns the airframe design Typically Typically Rarely Rarely
Owns firmware and flight-control configuration Typically Typically Negotiable Rarely
Payload integration depth Negotiable Limited Typically Rarely
Declared payload ceiling [1] Typically Typically Per project Per project
Published endurance figures [2] Typically Typically Per project Per project
Authority over tethered vs. battery power [3] Typically Typically Negotiable Rarely
IP rating and environmental declaration Typically Typically Negotiable Rarely
Customization depth (structure, branding) Deep Moderate Software-led Rarely
MOQ shape Tooling-amortized batch Stock to short batch One-off project Consolidated order
Lead-time shape [4] Tooling + batch schedule Shortest Integration sprint Freight schedule
Export documentation ownership Typically Usually shared Negotiable Typically
Long-term spares channel Typically Typically Negotiable Supplier-dependent

[1] Load capacity is published as up to 2.5 kg, with a maximum take-off weight for the flying platform of 10–12 kg. Open the platform page

[2] Continuous working time is published as ≥ 8 hours on tether power, with a 120 m cable. Open the platform page

[3] The published architecture is ground-powered DC via a specialised tethered cable, with a 5200 mAh 35C backup battery. Open the platform page

[4] Deployment is published as ≤ 4 minutes, with fixed-point hovering accurate to ± 1 m. Open the platform page

LZZ-THOR-100 Tethered UAV System | 100m Altitude 8H+ Continuous Flight Professional Drone

Tethered class platform: LZZ-THOR-100, published on the Tinko Trade catalogue.

Verified Platform: The Tethered Class

Of the four supply models above, only the factory and platform-provider models publish parameters you can design to. The LZZ-THOR-100 is the platform on this catalogue whose parameters are published in full, so it is the reference point for everything the matrix rates as “typically”.

Input voltageAC220V ± 10% @ 50 Hz
Output voltageDC375V / DC400V ± 5V
Max take-off weight10–12 kg
Safety backup battery5200 mAh 35C

Buyer decision: if your site has mains power and you need an uninterrupted view rather than repeated battery cycles, the tethered class is the class to price. If you need to move between unpowered sites all day, this is not the right class — say so in your enquiry and we will tell you what is.

Scenario to Specification: Route Your Requirement

Match the operational sentence on the left to the published parameter on the right. Every line ends in a decision you have to make, not a promise.

“We need the same view for the whole shift, not in twenty-minute bursts.”

Published parameter Continuous working time ≥ 8 hours on tether power.

Decide: confirm you can leave the ground unit powered for the full shift before you size the mission.

“The camera has to be at height, above the structures we are inspecting.”

Published parameter Tethered flight altitude up to 100 m, cable length 120 m.

Decide: if your inspection height exceeds 100 m, discuss the requirement before ordering.

“We are carrying a real sensor, not a phone camera.”

Published parameter Load capacity up to 2.5 kg, airframe take-off weight 10–12 kg.

Decide: weigh the payload, its mount and its cabling together before you confirm the envelope.

“The team arrives on site and the window is short.”

Published parameter Deployment time ≤ 4 minutes with a modular ground unit.

Decide: whether the four minutes is a one-person task on your site or needs a second technician.

“We need repeatable framing for before-and-after records.”

Published parameter Fixed-point hovering with ± 1 m accuracy.

Decide: whether ± 1 m is tight enough for your comparison overlay, or you need site datum marks.

“We operate from vessels and mobile platforms, not just fixed plants.”

Published context Maritime surveillance is a stated use scenario; the reel, tether and stabilising module are one compact ground unit.

Decide: how the ground unit will be secured and powered on a moving deck, and raise it in the RFQ.

Lifecycle Reality: What You Maintain After Delivery

Ignoring these four items is how a cheap airframe becomes an expensive programme.

Cable and reel wear

A 120 m tether running through a synchronised winding reel is a wear item. Ask how cable inspection and replacement are handled before you commit to daily flight cycles.

Battery as backup, not as endurance

The 5200 mAh 35C pack is published as a safety backup against power interruptions. Treat endurance as the ground power supply plus cable, not the pack.

Site power and stabilisation

Input is AC220V ± 10% @ 50 Hz and the output is stabilised at DC375V / DC400V ± 5V. If your site cannot deliver that input cleanly, plan for a generator or conditioner.

Spares depth and crew training

Spares availability is a supply-model question from the matrix above. The platform is described as optimised for quick setup by technical teams — plan who that team is.

Prepare These Six Items Before You Ask for a Quote

  1. Payload mass and type. Total the sensor, mount and cabling against the published 2.5 kg load capacity.
  2. Required altitude and duration. State your working height and shift length against the 100 m tethered altitude and ≥ 8 h continuous working time.
  3. Site power. Confirm AC220V ± 10% @ 50 Hz is available where the ground unit will stand.
  4. Mobility. Say whether the unit stays at one plant or moves between sites, vessels and events.
  5. Configuration questions. Ask about payload mounting, labelling, firmware parameter sets and documentation scope — these are the points where an OEM, ODM, integrator or dealer answer differs most.
  6. Destination and compliance. Give the delivery country so export documentation and freight timing can be quoted properly.

Related Reading

Three notes to help clarify product requirements before contacting the supplier.

100m Tethered Flight Height in Industrial UAV Operations

A tethered drone's 100m figure describes a fixed working height above its ground station, not a radius it can roam, and that difference shapes what the system can do.

Read article

Persistent Aerial Surveillance Keeps Industrial Sites in Continuous View

Persistent aerial surveillance replaces short battery-powered patrol windows with a stable, long-duration view of fixed industrial assets.

Read article

Tethered UAV Operations on Moving Vessels at Sea

Automatic follow and keyed reel response are what let a tethered UAV stay with a moving vessel and keep observing without a pilot chasing every turn.

Read article

Frequently Asked Questions

what does “tethered” actually mean on the lzz-thor-100?

the aircraft is powered from the ground through a specialised tether cable rather than flying on its own battery alone. a high-voltage dc stabilising module feeds the platform, and an embedded 5200 mah 35c battery acts as a safety backup against power interruptions.

how high and how long can it stay airborne?

tethered flight altitude is published as up to 100 meters, with a cable length of 120 meters, and continuous working time is ≥ 8 hours. that continuous figure is what removes battery-replacement downtime from the operating day.

how much payload can it carry?

load capacity is published as up to 2.5 kg, with a maximum take-off weight for the flying platform of 10–12 kg. weigh your sensor, its mount and its cabling together against that figure.

what power supply does the ground unit need?

input is ac220v ± 10% @ 50 hz, and output is stabilised at dc375v / dc400v ± 5v. the reel, tether cable, stabilising equipment and backup battery are integrated into one compact ground unit for deployment in ≤ 4 minutes.

where is this class of platform commonly used?

published use scenarios cover industrial site monitoring and inspection such as construction sites, manufacturing plants and infrastructure facilities, emergency response and communication relay, maritime surveillance, and broadcast support at events.

how do i start a quotation, customization or bulk-order conversation?

use the quote button on the product page or reach us through the contact page. share your payload mass, working altitude, required duration, available site power, mobility needs and delivery destination, and mention any oem, odm or configuration questions so they can be answered in the same reply.

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