High-torque, low-power motor modules specifically selected for rapid system integration in modern Australian lock designs.
In the commercial and residential security sectors, reliability is the baseline. Goaxis Pro (operating under the Shunli manufacturing brand) removes intermediary markups and supply chain volatility. We design, prototype, and manufacture high-efficiency micro DC motors, vibration motors, and gearboxes designed for global distribution and localized application across the Australian market.
Established engineering heritage since 2006 with highly automated and repeatable micro assembly lines.
Every production unit passes dynamic balancing, load limits, and acoustic testing before packaging.
Computer-Aided Design and Dynamic Simulation Suite
Melbourne's architectural shift is driving a transformation in access control technology. Suburbs like Docklands, Southbank, and the CBD are experiencing dense multi-residential high-rise developments. Meanwhile, traditional commercial districts in Richmond, Collingwood, and St Kilda are seeing the adaptational reuse of historical brick warehouses into modern tech offices. Each scenario calls for smart access platforms that fit distinct structural housings.
Crucially, lock motor installations in Victoria must handle specific environmental stressors:
The global lock motor industry is transitioning from mechanical keyways to touchless and biometric systems. Integrated facial recognition, fingerprint sensing, and Matter-over-Thread IoT protocols require components that wake instantly and operate on minimal battery power.
Modern smart lock manufacturers must design around energy budgets. A typical smart lock operates on 4x AA batteries (or Li-ion cells) and is expected to work reliably for 12 to 24 months. This places tight limits on motor efficiency. Every micro-joule counts. Our mini geared DC motors are engineered with low-friction gear trains and high-density permanent magnet brushes, minimizing starting current peaks and extending operating cycles.
Building an intelligent locking system requires balancing physical limits, materials, and cost. Here is the design path we employ:
Using micro hobbing machinery to maintain gear profile accuracy, reduce backlash, and ensure smooth meshing.
Residential locks demand silent operation. Our sound-insulated chambers help us design gear trains that run below 45 decibels.
Modifying magnetic flux paths and coil winding densities to deliver maximum torque in limited space.
By using high-precision horizontal gear hobbing and automated winding systems, our motors deliver consistent performance across high-volume production runs.
Optimized for high-cycle applications, industrial security, and harsh environments.
Step inside our facilities, showcasing the tooling, automated winding, and testing systems that ensure zero-defect production.
Select options from our high-performance production catalog, available for custom configurations to meet your torque and sizing specifications.
How our custom geared motors serve different mechanical security housings globally.
Designed for narrow-stile doors popular in modern Melbourne townhouses. Operating at 3V to 6V, these motor units deliver high starting torque to slide latchbolts smoothly, even against typical door warping.
Engineered for high-traffic entry systems, heavy-duty strikes, and drop-bolts. These 12V DC options are designed to handle millions of operating cycles with minimal wear, reducing long-term maintenance costs.
Specifically built for smart padlock and bike share locking systems. Features include weather-resistant housing seals, anti-vibration coin-motor options, and low power requirements to withstand outdoor exposure.
Answers to common engineering, integration, and logistical questions.
Get in touch with our engineering team to request datasheets, CAD files, or custom-built prototypes for your lock mechanisms.
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