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Электродвигатель масляного насоса EP-XL16LTBX 1600 Вт 12 В

The EP-XL16LTBX is a high-performance oil pump motor engineered for demanding mobile and industrial applications. Operating at a nominal voltage of 12V DC and delivering a continuous output of 1600W, this electric oil pump motor is built to drive hydraulic and lubricating oil circuits in vehicle power units, aerial work platforms, boarding bridges, and specialised lifting equipment. As a direct-current permanent magnet motor, it combines a compact body with high starting torque — reaching a rated torque of 6 N·m — ensuring reliable and immediate response even under heavy load starts.

Designed with an IP54 ingress protection rating and Class F insulation, the EP-XL16LTBX withstands the vibration, moisture, and temperature fluctuations found in real-world operating environments. Its 9-tooth gear interface and clockwise (CW) rotation allow precise coupling with standard hydraulic gear pump assemblies. Optional voltage configurations of 24V and 48V are available, giving system integrators flexibility without redesigning the mechanical interface. =

DC Motor Series · Oil Pump Motor

Электродвигатель масляного насоса EP-XL16LTBX 1600 Вт 12 В

Model: XL16LTBX-12V  |  Power: 1600W  |  Voltage: 12V DC  |  Rated Current: 190A

Technical Specifications — XL16LTBX-12V

The table below summarises the complete electrical and mechanical parameters of the EP-XL16LTBX oil pump motor. All values are measured under standard laboratory conditions (25 °C ambient, sea-level pressure). Engineers specifying this motor for a hydraulic oil pump motor application should verify duty-cycle derating against the performance curves supplied at the end of this page.

Параметр Value Примечания
Motor Model XL16LTBX-12V Standard 12V variant
Rated Voltage 12 V DC 24V / 48V optional
Номинальная мощность 1600 W Continuous at rated duty
Rated Current 190 A At rated load
Rated Torque 6 N·m At rated speed
Duty Cycle S2 min – 9% ED Intermittent / short-duty
Insulation Class Class F Max winding temp 155 °C
Ingress Protection IP54 Dust-protected, splash-proof
Количество зубов 9 Gear interface
Shaft Rotation CW (Clockwise) Viewed from output end
Overall Length 181 mm Refer to outline drawing
Frame Diameter Ø98.5 mm +0.1 / +0.03 tolerance
Mounting Flange Height 90.5 mm To centreline
Bolt Circle / PCD 81 mm Mounting bolt pattern
Scope of Application Vehicle power units, lifts, boarding trucks, specialised equipment

superiortransmissioninc-products-EP-XL16LTBX 1600W 12V Oil Pump Motor-draft

Пять ключевых преимуществ продукта

① High Power Density

Delivering 1600W from a compact, lightweight housing, this gear oil pump motor achieves an excellent power-to-size ratio. The permanent magnet DC design maximises magnetic flux without the bulk of field windings, making it the ideal choice where installation space is constrained.

② Robust Weatherproof Construction

An IP54 protection rating seals this hydraulic oil pump motor against dust ingress and water splashes from any direction. Combined with Class F insulation (rated up to 155 °C), it maintains performance stability across outdoor and semi-enclosed mobile machinery environments.

③ Flexible Multi-Voltage Options

While the standard model runs on 12V, configurable options for 24V and 48V are available on request. This makes the motor compatible with a wide spectrum of vehicle electrical architectures — from compact 12V material-handling equipment to 48V industrial systems — without mechanical redesign.

④ Direct Gear-Pump Interface

The 9-tooth gear output and clockwise shaft rotation are purpose-designed to mate with industry-standard gear oil pump with motor assemblies. This factory-matched interface eliminates the need for adapter couplings, shortening assembly time and reducing potential leak points in the hydraulic circuit.

⑤ Short-Duty / Intermittent-Duty Optimised

Rated at S2 min–9% ED (intermittent duty), the motor is thermally engineered for the cyclic start-stop profiles of lifts, loading ramps, and emergency pump circuits. Its thermal margin under intermittent operation is generous, making unexpected duty spikes manageable without tripping thermal protection.

How This DC Oil Pump Motor Works

At its core, the EP-XL16LTBX is a permanent magnet dc motor. When 12V DC is applied across the motor terminals (A1 to D2 as shown on the wiring diagram), current flows through the wound armature. The interaction between the armature's electromagnetic field and the field generated by the permanently magnetised stator creates a tangential force on the rotor conductors, producing rotational torque — this is the foundational dc motor working principle that governs all brush-type DC machines.

Because the stator flux is fixed (permanent magnets require no excitation current), the motor delivers high torque immediately on start-up without the lag associated with separately-excited or series-wound machines. Speed is primarily governed by back-EMF: as rotor speed increases, the back-electromotive force rises and limits current draw, naturally stabilising the operating point at a given load. This self-regulating behaviour means the motor works reliably across a range of hydraulic load conditions without requiring closed-loop electronic feedback in simple on/off pump circuits.

The 9-tooth gear output on the drive shaft couples directly to the inlet gear of a hydraulic gear pump. As the motor turns, the pump draws fluid from a reservoir and delivers it at pressure to the hydraulic circuit — whether that is a scissor-lift cylinder, a dock leveller ram, or a vehicle stabiliser leg. The S2 / 9% ED duty rating reflects that most such pump circuits operate in short bursts, allowing the motor's thermal mass to absorb heat during operation and dissipate it during the off period, keeping winding temperatures within the Class F limit.

Materials & Construction Quality

The housings and end shields of the EP-XL16LTBX are precision-machined from cast aluminium alloy, balancing structural rigidity with low overall weight — a critical factor in mobile equipment where every kilogram affects payload capacity. The aluminium surface is treated with a conversion coating to resist corrosion even in the misting environments encountered around hydraulic power packs.

The armature core is laminated from high-grade cold-rolled silicon steel punched to tight dimensional tolerances. Lamination minimises eddy-current losses and keeps the motor running cool during the repeated start cycles typical of lift and ramp applications. The commutator segments are made from electrolytic copper for low contact resistance and prolonged brush-life under the high current demands — up to 190A — of this high torque dc motor.

Carbon brushes are selected for their low friction coefficient and self-lubricating properties. Brush holders maintain consistent spring pressure across the commutator surface to prevent arcing and voltage spikes. Output shaft bearings are deep-groove ball bearings with sealed grease packs rated for extended maintenance-free intervals, and the shaft itself is manufactured from precision-ground alloy steel to handle both the radial loads imposed by the gear pump coupling and the thrust loads generated during start-up transients. Every major component meets ISO 9001:2015 process controls from incoming inspection through final run-in testing.

Сценарии применения

The EP-XL16LTBX oil pump motor covers a broad range of mobile and stationary hydraulic power applications. Its compact form factor, high starting torque, and weather-resistant construction make it particularly well-suited for the following sectors:

🚛 Vehicle Power Units

Used as the prime mover in truck-mounted hydraulic power packs, tipper-body systems, and tail-lift units, this electric oil pump motor delivers the immediate torque necessary to pressurize circuits quickly, reducing cycle time on loading docks.

🏗️ Scissor Lifts & Aerial Platforms

The motor powers the hydraulic pump driving scissor-lift cylinders in material handling and maintenance platforms. Its IP54 rating and intermittent-duty optimisation match the typical lift-and-lower cycle of aerial work equipment used in warehouses and construction sites.

✈️ Boarding Bridges & Airport GSE

Ground support equipment including boarding ramps, luggage carts, and push-back tractors rely on compact dc electric motors for reliable, battery-powered hydraulic actuation. The XL16LTBX-12V is a well-proven fit for such applications.

🌡️ Transformer Oil Cooling Pumps

As a transformer oil pump motor, the EP-XL16LTBX drives circulating pumps that move dielectric oil through transformer cooling loops. Its sealed construction and stable low-speed performance make it compatible with continuous low-load circulation duties in electrical substations.

🔩 Industrial Lubrication Systems

Centralised lube systems for gear-driven machinery, press tooling, and CNC machining centres use a hot oil pump motor to maintain oil viscosity and delivery pressure. The motor's tolerance for intermittent bursts aligns with the demand cycles of automated lubrication controllers.

🏥 Specialised Medical & Emergency Equipment

Ambulance stretcher lift mechanisms, hospital bed adjusters, and emergency rescue spreaders require a small dc motor that responds instantly and operates quietly on battery power. The XL16LTBX-12V meets these requirements while fitting within tight enclosure dimensions.

О нашем производственном предприятии

With over a decade of accumulated expertise in mechanical power transmission engineering, we operate a vertically integrated manufacturing facility dedicated to precision electromechanical components. Our oil pump motor assembly lines, gear machining centres, and hydraulic component workshops are managed under ISO 9001:2015 certified quality systems, ensuring that every product leaving our floor meets documented process standards from raw material traceability through final functional testing.

Our production portfolio spans a wide range of industrial and agricultural drivetrain components — agricultural gearboxes, worm gear reducers, planetary gear drives, power take-off shafts, hydraulic oil pump motor units, precision gears, roller chains, and both standard and custom mechanical assemblies. Housing and structural components are cast in ductile iron, grey cast iron, cast steel, precision investment-cast steel, and aluminium alloy depending on the application's weight, load, and corrosion requirements.

Мастер-класс

Заводской цех
Cylinder bore rolling machining
Drilling and milling composite machining center
Cylinder assembly line

Compatible Products & System Solutions

A hydraulic power circuit is only as reliable as its weakest component. To simplify sourcing and guarantee interface compatibility, we supply a full range of drivetrain and electrical components that pair directly with this oil pump motor set — enabling one-stop procurement and reducing integration risk.

Электродвигатели

Электродвигатели

Our full range of Электродвигатели includes brushed DC, brushless dc motor (BLDC), and dc servo motor variants covering 12V to 96V DC and powers from fractional-kilowatt units to multi-kilowatt traction motors. Whether you need a dc motor high speed variant for a pump application or a low-speed high-torque unit for a winch, the range provides direct compatibility with the XL16LTBX mechanical interface — same flange, same gear pitch, same rotation convention.

Червячная коробка передач

Червячная коробка передач

When an application demands speed reduction and torque multiplication downstream of an oil pump electric motor, our Червячная коробка передач series offers ratios from 5:1 to 100:1 in worm-and-wheel aluminium or cast-iron housings. These reducers are engineered to connect directly to our motor output flanges, providing a plug-and-play power transmission solution that saves design time and ensures matched performance across the entire powertrain.

Часто задаваемые вопросы

Q1. What type of hydraulic system is the EP-XL16LTBX 12V oil pump motor best suited for in a mobile lifting application?

The EP-XL16LTBX is optimised for oil pump motor assembly configurations in mobile hydraulic systems where the pump operates in short, repeated bursts rather than continuously. Its S2 / 9% ED intermittent duty rating aligns with scissor lifts, dock levellers, and tail lifts, where the hydraulic pump pressurises the circuit for a few seconds, holds load, then cycles again. Systems requiring continuous-duty pump operation should consider our higher-duty BLDC motor variants or add a thermal management strategy such as a heat sink or forced-air cooling shroud.

Q2. How do I find a reliable oil pump motor replacement that fits an existing gear pump flange on my vehicle power unit?

Finding a correct oil pump motor replacement starts with three measurements on your existing unit: the frame diameter, the bolt-circle (PCD), and the gear tooth count on the drive spline. The XL16LTBX-12V has a Ø98.5 mm body, an 81 mm bolt-circle, and a 9-tooth output gear. If these match your pump's interface — which is common across European and North American standard hydraulic gear pump housings — the motor can be swapped directly. Always confirm the shaft rotation direction (CW on this model, viewed from the output end) before installation to avoid reverse pump flow.

Q3. Which industries across Europe and Australia most commonly use a 12V DC high torque oil pump motor for hydraulic equipment?

In Europe and Australia, the most active markets for a high torque dc motor in hydraulic service are construction equipment, agricultural machinery, tail-lift truck manufacturing, and airport ground support. Warehouse automation is also a growing sector, where battery-powered AGVs and order-picking machines use compact electric oil pump motor units to power their steering and lift cylinders. The EP-XL16LTBX is specifically designed to meet CE-applicable electromagnetic compatibility and electrical safety requirements relevant to these markets.

Q4. What is the DC motor working principle behind a permanent magnet oil pump motor and why does it produce high starting torque?

Он dc motor working principle in a permanent magnet machine is straightforward: a fixed magnetic field from the stator magnets interacts with the current-carrying armature conductors, generating a force (Lorentz force) that rotates the armature. At the moment of start-up, back-EMF is zero, so the full supply voltage drives current through the armature resistance. Because torque is proportional to current and field flux — and field flux is constant in a permanent magnet design — the result is maximum torque at standstill. This is exactly what an oil pump motor needs: the ability to build circuit pressure from rest against a static load without stalling.

Q5. Where can I source a complete gear oil pump with motor kit for a scissor-lift rebuild project in North America or the UK?

Полный gear oil pump with motor kit — motor, pump, manifold, and mounting bracket — can be ordered as an oil pump motor set directly from our export team. We ship to North America, the UK, continental Europe, and the Asia-Pacific region via established freight partners. Our technical team can assist with motor-pump matching calculations, wiring diagram support, and duty-cycle verification before you commit to a configuration. Contact us through the product enquiry form or the link above for lead-time and configuration details specific to your lift model.

Q6. How does a brushless DC motor compare to the brushed permanent magnet design used in this oil pump motor for industrial use?

А brushless dc motor (BLDC) eliminates the carbon brush and commutator assembly, replacing mechanical commutation with electronic switching via a controller. This extends service life in continuous-duty or high-cycle applications, reduces electromagnetic interference, and enables more precise speed control via a dc motor drive. The brushed permanent magnet design used in the EP-XL16LTBX, by contrast, requires no external controller, making it simpler and lower-cost for straightforward on/off pump circuits. For applications where the motor starts and stops infrequently and simplicity is valued over longevity or precision, the brushed design remains the preferred and more economical choice.

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