Premium precision drives engineered for zero-defect integration inside high-security electromechanical locks.
Understanding the unique climatic, building code, and engineering requirements of the Australian market.
Engineered to exceed 200,000 continuous lock-and-unlock cycles under lateral friction loads typical of misaligned doors.
Rustproof structural treatments, lubricated sealed gear housings, and custom synthetic greases suited for high-humidity climates.
Designed specifically to operate on 3V to 6V battery cells, minimizing battery drain and avoiding thermal stress inside lock cavities.
Eliminating middlemen, trading company markups, and communication gaps for Australian and Global Lock Manufacturers.
Deep industry heritage since 2006, ensuring stable automated production lines and long-term supply security.
Every single motor is subjected to automated dynamic balancing and acoustic tests under real industrial loads before leaving our dock.
We don't shrink away from non-standard blueprints. We rapidly customize shafts, integrated encoders, and specialized gearheads to fit your device housing perfectly.
Our state-of-the-art ecology runs fully compliant with international ISO9001, CE, RoHS, and REACH safety standards.
A transparent look at the heavy machinery, precision lathing, and diagnostic testing equipment that powers Goaxis Pro.
From heavy commercial locks to luggage and office automation systems.
High-traffic corporate locks demand extremely low backlash and high positional repeatability. Our 12V geared motors deliver the necessary torque to compress door weather seals, ensuring a clean latch release every single time.
Running on 3V to 4.5V, these motors must start up smoothly from rest. Goaxis Pro micro motors feature low starting current limits (<150mA), extending lock battery lifespan by up to 18 months under normal usage cycles.
Ultra-compact form factors demand micromotors smaller than 10mm in diameter. Our customized coin-sized vibrating and geared motors provide high mechanical output without adding bulk or weight.
Widely applied in office filing systems, smart lockers, and safe deposit boxes throughout Sydney's commercial districts, our motors ensure secure mechanical locking with quiet operation.
The differences between carbon brush, precious metal brushes, and composite gear selection.
| Gearbox Type | Material Selection | Typical Application | Max Output Torque | Acoustic Rating |
|---|---|---|---|---|
| Full Carbon-POM Plastic | Engineering Polyoxymethylene | Biometric Cabinet Locks, Luggage Locks | 0.8 kg.cm | Ultra-Silent (<32dB) |
| Hybrid Metal & Plastic | Carbon Steel + Dupont POM Gears | Residential Residential Smart Locks | 2.0 kg.cm | Balanced (<38dB) |
| Full Sintered Steel / Brass | Sintered Iron-Bronze & Brass hobbed | Heavy Commercial Deadbolts & Safes | 5.0 kg.cm | Standard (<45dB) |
Retained original design series optimized for low-RPM, high-torque industrial lock applications.
How Goaxis Pro optimizes bulk deliveries, compliance, and factory communication for international clients.
Every batch of raw iron, copper wire, and steel alloys is fully traceable. Material certificates (RoHS, REACH) are supplied with every shipment, ensuring hassle-free clearance through customs.
Our proximity to deepwater ports allows us to offer flexible shipping terms (FOB, CIF, DDP) directly to Sydney, Melbourne, or major global distribution hubs with streamlined tracking.
You communicate directly with our engineers, not just salespeople. This direct access simplifies customization of gear profiles, shaft dimensions, and electrical terminals.
Answers to common engineering questions regarding torque, voltage, and environmental durability.
A: Motor burnout occurs when a deadbolt is physically jammed, causing the motor to stall while drawing peak current. This continuous draw leads to rapid thermal expansion and coil failure. Goaxis Pro prevents this by optimizing armature winding resistance, selecting high-temperature enameled wire (rated up to 155°C), and offering custom integrated overload protection or magnetic clutches that prevent internal gear stripping during stall events.
A: For high-traffic commercial environments, we recommend a hybrid gearbox design featuring carbon-steel or sintered metal gears on the high-torque output stages, and carbon-reinforced POM (polyoxymethylene) gears on the high-speed input stages. This combination provides the wear resistance and torque handling of steel while maintaining low operation noise.
A: To protect against humid and salt-laden air, we use stainless steel (SUS303/SUS304) output shafts, apply anti-oxidation coatings to the motor stator laminations, and use sealed, IP-rated outer gear housings filled with synthetic lubricants. These measures prevent moisture ingress and oxidation, maintaining smooth performance.
A: Under nominal load, our precious metal brush micro geared DC motors are designed to run for over 150,000 to 200,000 cycles. With carbon-brushed designs engineered for high-duty applications, we can customize parameters to meet and exceed 500,000 cycles, keeping pace with commercial lock standards.
A: Yes. We specialize in custom manufacturing. We can modify shaft length, add D-cuts, cross-holes, or knurled profiles, and supply custom wire harness assemblies with specified JST or Molex connectors to simplify integration into your existing assembly line.
A: We operate under strict ISO9001 quality guidelines. Every batch undergoes automated inspection throughout the process, including lathing verification, winding resistance tests, acoustic noise tests, and dynamometer torque tests. Before dispatch, random samples undergo climate-chamber aging and salt-spray testing.