160+
Countries Served
30+
Years Manufacturing
6
Industry Sectors
Six Sectors,
One Manufacturer.
LEO designs and manufactures pumping systems purpose-built for each sector's unique hydraulic, fluid, and operational requirements.

Industrial Process Pumping
LEO industrial pumps serve manufacturing facilities, chemical processing plants, HVAC systems, cooling towers, and power generation. Multistage centrifugal, API process, and split-case designs handle continuous-duty requirements with VFD compatibility and explosion-proof motor options.
Applications
- Manufacturing Facilities
- Chemical Processing
- HVAC & Cooling Towers
- Power Generation
- Mining Operations
- Industrial Water Circulation
Pump Types
- Multistage Centrifugal
- API Process Pumps
- Split Case Pumps
- Vertical Turbine Pumps

Agricultural Irrigation Systems
High-flow irrigation pumps for center pivot systems, drip irrigation, flood irrigation, and canal pumping. LEO agricultural solutions support farmland water transfer, livestock watering, greenhouse operations, and reservoir pumping — delivering up to 5,000+ GPM from deep wells or open water sources.
Applications
- Center Pivot Irrigation
- Drip & Flood Irrigation
- Farmland Water Transfer
- Livestock Watering
- Greenhouse Systems
- Canal & Reservoir Pumping
Pump Types
- Vertical Turbine Pumps
- Submersible Well Pumps
- End Suction Centrifugal
- Solar Pumps
- Booster Pumps

Municipal Water Systems
Municipal-grade pumping solutions for water treatment plants, pressure boosting stations, raw water intake, and distribution infrastructure. LEO municipal pumps meet EPA compliance and NSF certification requirements, supporting populations from small communities to major metropolitan systems.
Applications
- Water Treatment Plants
- Pressure Boosting Stations
- Raw Water Intake
- Flood Control
- Distribution Infrastructure
- SCADA-Compatible Systems
Pump Types
- Split Case Pumps
- Vertical Turbine Pumps
- Axial Flow Pumps
- Booster Pumps
- Submersible Pumps
Mining & Heavy Industry
Mining operations demand pumps that handle abrasive slurries, high solids content, and extreme operating conditions. LEO mining pumps feature stainless steel hydraulic components, corrosion-resistant coatings, and heavy-duty seals engineered for dewatering, process water transfer, and tailings management.
Applications
- Mine Dewatering
- Process Water Transfer
- Tailings Management
- Slurry Handling
- Mining Camp Water Supply
- Industrial Firefighting
Pump Types
- Slurry Pumps
- Submersible Dewatering Pumps
- Multistage High-Pressure
- Vertical Turbine Pumps

Wastewater & Sewage Systems
Submersible sewage pumps and lift station solutions engineered for solids-handling in municipal wastewater, industrial effluent, and stormwater management. LEO wastewater pumps handle fibrous materials, high solids concentrations, and corrosive fluids with extended service intervals.
Applications
- Municipal Lift Stations
- Industrial Effluent
- Sewage Transfer
- Stormwater Management
- Wastewater Treatment Plants
- Flood Control Pumping
Pump Types
- Submersible Sewage Pumps
- Dry-Pit Centrifugal
- Chopper Pumps
- Axial Flow Pumps

Infrastructure & Solar Systems
LEO has expanded aggressively into solar-powered deep well pumps and remote infrastructure projects. Off-grid pumping systems for rural water supply, mining camps, and developing-region infrastructure reduce fuel dependency and grid power requirements — critical for EPC and municipal rural water programs.
Applications
- Solar Deep Well Pumping
- Remote Agricultural Systems
- Off-Grid Water Transfer
- Rural Infrastructure
- Mining Camp Supply
- Developing Region Projects
Pump Types
- Solar VFD Pumps
- Submersible Solar Pumps
- Booster Systems
- Fire Pump Systems
Built for Scale,
Priced to Win.
01
Cost-Competitive Alternative
LEO is positioned as a lower-cost alternative to Grundfos, Xylem, KSB, and Sulzer — reducing capital expenditure for EPC firms, infrastructure projects, and fleet standardization without sacrificing performance.
02
Broad Product Portfolio
Centrifugal, multistage, vertical turbine, sewage, submersible, fire, and solar pumps — all from one supplier. Simplifies procurement, spare parts management, and technical support across complex projects.
03
Global Manufacturing Scale
Five manufacturing bases across China, Indonesia, and Hungary deliver competitive lead times and scalability for large infrastructure, municipal, and mining projects with international distribution support.
04
Energy Efficiency & VFD Ready
High-efficiency motors, variable frequency drive compatibility, and solar integration capability reduce operating costs and improve sustainability metrics across agricultural, municipal, and industrial applications.
05
Corrosion-Resistant Engineering
Stainless steel hydraulic components, corrosion-resistant coatings, heavy-duty seals, and thermal protection extend service intervals and improve reliability in water treatment, mining, and industrial environments.
06
Solar Pumping Leadership
A rapidly growing product line for agriculture, mining, and remote water supply. LEO solar pumps eliminate fuel dependency, reduce generator operating costs, and enable grid-independent water access globally.
How Pumps
Are Sized.
Correct pump selection requires hydraulic, fluid, and operational inputs. The three most critical factors — flow rate, total dynamic head, and fluid characteristics — determine 80% of the pump selection process.
Required Flow Rate
GPM · MGD · m³/hr — Agriculture: 500–5,000+ GPM · Municipal: 2–50+ MGD · Industrial cooling: 1,000–20,000+ GPM
Total Dynamic Head (TDH)
Static head + friction loss + pressure head. Measured in feet, meters, or PSI equivalent.
Fluid Characteristics
Clean water vs. dirty water, solids content, temperature, corrosiveness, viscosity, and chemical composition.
1
Define Flow Rate
GPM, MGD, or m³/hr — continuous vs. peak demand
2
Calculate TDH
Static head + friction loss + pressure head in feet or meters
3
Identify Fluid
Clean water, solids content, temperature, corrosiveness, viscosity
4
Suction Conditions
Source elevation, well depth, NPSH available vs. required
5
Duty Cycle
Continuous 24/7, intermittent, redundancy requirements
6
Power Availability
Voltage, phase, diesel, electric, solar, or PTO-driven
7
Select Pump Type
Match hydraulic requirements to correct pump family
8
Verify Efficiency
Confirm operating point on pump curve, NPSH margin
Ready to Specify
Your System?
Enter your flow rate, TDH, fluid characteristics, and industry requirements. Our team will match you with the right LEO pump for your application.
Request a Quotation