
KOLEBURG TB200L Horizontal Submersible Pump Series Product
No Clogging Centrifugal Pump
Specification
Parameter | Specification |
|---|---|
Flow Rate | 180-373 m³/h |
Head | 2.3-12.5 m |
Outlet Diameter | 200 mm |
Motor Power | 2.2-18 KW |
Motor Poles | 4/6 poles |
Rotational Speed | 940-1470 rpm |
Protection/Insulation Class | IP68 / Class F / IE3 |
Impeller Type | Single Helix Pump Impeller |
- ISO、CE、EAC
- L/C Accepted
- 7*24H Response
- Accept customization
KOLEBURG TB200L Horizontal Submersible Pump
Model & Information
Model parameter table, performance curves, drawings
| KOLEBURG TB200L Series Product Model | |||||||
| NO | Model | Flow (m3/h) | Lift (m) | Power(KW) | Speed( rpm) | Inlet (DN) | Motor Type |
| 1 | TB200L-Q180H2-3N2-2C940 | 180 | 2.3 | 2.2 | 940 | 200 | Six-stage motor |
| 2 | TB200L-Q216H3-4N4C960 | 216 | 3.4 | 4 | 960 | 200 | Six-stage motor |
| 3 | TB200L-Q238H4-6N5-5C960 | 238 | 4.6 | 5.5 | 960 | 200 | Six-stage motor |
| 4 | TB200L-Q313H6-5N7-5B1440 | 313 | 6.5 | 7.5 | 1440 | 200 | Four-stage motor |
| 5 | TB200L-Q333H8-5N11B1460 | 333 | 8.5 | 11 | 1460 | 200 | Four-stage motor |
| 6 | TB200L-Q356H10-5N15B1460 | 356 | 10.5 | 15 | 1460 | 200 | Four-stage motor |
| 7 | TB200L-Q373H12-5N18-5B1470 | 373 | 12.5 | 18 | 1470 | 200 | Four-stage motor |


Tailored to your exact needs, our centrifugal pumps are engineered with application-specific parameters to deliver optimized efficiency, durability, and operational reliability.
Materials & Surface Treatments
Pump body & impeller
KOLEBURG TB200L Horizontal Submersible Pump body and pump impeller main materials and heat treatment process
Pump Casing Material & Treatment
Material | Key Characteristics | Heat & Surface Treatment |
|---|---|---|
Cast Iron/Carbon Steel | Cost-effective, high rigidity | Annealing; anti-corrosion coating |
Basic corrosion resistance | Solution annealing; passivation | |
Superior chloride resistance | Solution annealing; passivation | |
Rubber Lined | Excellent abrasion resistance | Lining bonding; surface finishing |
Impeller Materials and Handling
Material | Key Characteristics | Heat & Surface Treatment |
|---|---|---|
ZG/20Cr13 | Wear-resistant, cost-effective | Quenching + tempering (HRC 48-52) |
316/316L | Corrosion & wear resistant | Solution annealing; edge hardening |
High strength & corrosion resistance | Solution treatment; precision grinding | |
Titanium Alloy | Extreme corrosion resistance | Solution annealing; surface cleaning |
Centrifugal pump
Application industry
KOLEBURG TB200L Horizontal Submersible Pump, industry applications and advantages

Municipal & Industrial Wastewater

Construction & Dewatering
Effective for tunnel dewatering, foundation pit drainage, and handling sand-laden water on construction sites .

Agricultural & Rural Wastewater
Recommended Material Combinations
According to the usage scenario, the final solution is to match the materials of the pump body and impeller.
Application Scenario | Pump Casing | Impeller |
|---|---|---|
Sewage Treatment Plant | Cast Iron | ZG/20Cr13 (Quenched & Tempered) |
Sewage Recycling | 304/304L | 316/316L (Solution Annealed) |
Construction Project | Rubber Lined | Duplex 2205 (Solution Treated) |
Agriculture | Carbon Steel | ZG/20Cr13 (Quenched & Tempered) |
Key Product Advantages
- Superior Large-Flow Performance: 180-373 m³/h high flow rate paired with 200mm large outlet minimizes flow resistance, meeting high-volume conveyance demands efficiently.
- Flexible Material Adaptability: Multiple high-quality material options combined with professional heat treatment processes enhance corrosion and wear resistance, adapting to diverse media conditions.
- Reliable & Energy-Saving Operation: IP68 waterproof rating and IE3 high-efficiency motor ensure long service life and low operational costs, with 4/6-pole motor options optimizing performance for different lift requirements.

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The world’s leading manufacturer of non-clogging pumps
User support
Provide different support solutions for OEM and KOLEBURG brands respectively.
I Want KOLEBURG brands
Professional technology. Unity, excellence, influence. Excellent service.
Total selection interval chart
Comprehensive reference
Provide you with a multi-caliber selection range reference

submersible pump manufacturers
Our advantages
Non-Clogging Technology
Flow Channel Optimization
The pump casing flow path is optimized through advanced CFD fluid analysis, ensuring minimal hydraulic resistance during operation. This design significantly reduces impurity adhesion and minimizes clogging risk — improving the efficiency and reliability of the wastewater pump system.
Excellent Solids Handling Performance
The impeller is designed with a wide flow passage, allowing large solid particles and fibrous materials to pass through easily. This ensures strong solids handling capability and non-clog performance, making it ideal for industrial sewage and wastewater applications.
Anti-Clog Balanced Hydraulic Structure
The inlet adopts an anti-vortex guide design, effectively preventing debris entanglement at the impeller inlet. This anti-clog structure maintains balanced flow, reduces blockage risk, and enhances the long-term durability of the submersible sewage pump.
Stable Application Performance
This pump is suitable for muddy water, suspended solids, fibrous materials, and lightly polluted wastewater, ensuring stable and continuous operation over long periods. It is widely used in industrial wastewater treatment, drainage systems, and municipal pumping stations.

Our advantages as a centrifugal pump manufacturer
With excellent performance, durability and high energy saving, we provide you with reliable fluid solutions.learn more
We specialize in the independent production of pump casings and impellers, which are the core components of the screw centrifugal pump.
The pump body is precisely cast and machined in-house, ensuring excellent dimensional accuracy and long-term durability.
The impeller adopts high-efficiency spiral and centrifugal geometry, manufactured using CNC machining and dynamic balancing to guarantee smooth operation and superior hydraulic performance.

Cooperation Advantages
Professional Manufacturing Experience
Over 23 years of experience in pump design and manufacturing, focusing on screw centrifugal pumps and wastewater equipment, ensuring reliable quality and stable performance.
Independent Core Component Production
We manufacture pump casings and impellers in-house, using advanced CNC machining and dynamic balancing technology, to ensure precise assembly and high hydraulic efficiency.

We provide custom-designed pump solutions tailored to the specific needs of each client.
Our professional engineering team can adjust key parameters — including flow rate, head, material, inlet/outlet interface, and sealing method — to achieve optimal performance for different working conditions.
Through advanced CFD hydraulic optimization and precision manufacturing, we ensure every customized pump delivers high efficiency, reliability, and durability even under complex environments.

Product application
Driving the lifeblood of industry and protecting urban circulation are the core missions of each of our pumps.
Pump Centrifugal Parts
Reliable parts supply provides worry-free guarantee and long-term operation and maintenance for your pumping system.
Frequently Asked Questions (FAQs)
Our engineering team provides free, expert selection support. Simply share your key parameters—such as fluid type, required flow rate (e.g., GPM or m³/h), total head (e.g., feet or meters), temperature, and system specifications—and we will recommend the optimal pump model for maximum efficiency and reliability.
For standard models, we often have stock available or can offer short production cycles. The exact lead time depends on the specific pump model and our current order schedule. We understand project urgency and offer expedited production options for critical needs whenever possible.
All our pumps come with a comprehensive warranty. We are committed to your long-term satisfaction through a robust support network, offering rapid technical assistance, readily available spare parts, and expert maintenance services to minimize downtime.
The longevity of critical parts like impellers and mechanical seals is our priority. We utilize high-performance materials (e.g., stainless steel, cast iron) and precision manufacturing, including dynamic balancing. Our mechanical seals are sourced from leading suppliers to ensure durability in demanding conditions.

Talk to Our Product Experts Today!
Related Submersible Pump FAQS
1. Core Concepts and Working Principles of Single Helix Impeller Submersible Pumps
1.1 What is a single helix impeller submersible pump and how does it work?
1.2 What are the key components of a durable large-diameter submersible pump?
| Core Component | Primary Function | Quality Assurance |
|---|---|---|
| Pump Body | Encloses internal components and guides large-flow media | High-rigidity casting with leak-proof sealing |
| Single Helix Impeller | Drives high-volume fluid movement | Wear-resistant materials and precision heat treatment |
| Motor | Powers impeller rotation for large-flow tasks | IE3 efficiency and Class F insulation for 2.2-18 KW loads |
| Mechanical Seal | Prevents media ingress into the motor | Corrosion-resistant design for long-term sealing |
2. Application Scenarios and Media Compatibility of Large-Flow Submersible Pumps
2.1 Which industries benefit from large-diameter submersible pumps like the KOLEBURG TB200L?
| Application Scenario | Key Product Advantage | Industry Alignment |
|---|---|---|
| Sewage Treatment Plant | 180-373 m³/h flow supports high-volume wastewater processing | Environmental Protection Industry |
| Sewage Recycling | Large-diameter outlet reduces flow resistance, optimizing recycling efficiency | Wastewater reuse standards |
| Construction Project | IP68 rating and high flow handle massive dewatering needs | Special projects |
| Agriculture | Low-lift (2.3-12.5m) design adapts to irrigation and drainage tasks | Industrial Productionk |
2.2 What types of media can single helix impeller large-flow pumps handle?
| Media Type | Key Characteristics | Recommended Material |
|---|---|---|
| Municipal Sewage | High volume, suspended solids | Cast Iron / ZG/20Cr13 |
| Recycled Sewage | Low-to-moderate corrosion, solid particles | 304/304l Material |
| Construction Dewatering | Sand-laden, abrasive | Rubber Lined |
| Agricultural Irrigation | Clean to slightly turbid water | Carbon Steel / Cast Iron |
3. Specifications and Performance Metrics of Large-Diameter Submersible Pumps
3.1 What are the critical performance parameters of the KOLEBURG TB200L?
| Performance Parameter | Specification | Industry Advantage |
|---|---|---|
| Flow Rate | 180-373 m³/h | Wide range for high-volume demands |
| Head | 2.3-12.5 m | Optimized for low-to-medium lift scenarios |
| Outlet Diameter | 200 mm | Extra-large size minimizes flow resistance |
| Motor Power | 2.2-18 KW | Scalable power for diverse large-flow tasks |
| Rotational Speed | 940-1470 rpm | Balanced speed reduces wear and energy consumption |
3.2 How do motor pole configurations affect large-flow submersible pump performance?
| Motor Poles | Rotational Speed | Performance Trait | Ideal Application |
|---|---|---|---|
| 4-pole | 1470 rpm | Maximum flow, lower torque | Ultra-high-volume, low-lift tasks |
| 6-pole | 940 rpm | Stable flow, higher torque | Medium-lift, high-viscosity media |
4. Material Selection and Heat Treatment for Pump Casings and Impellers
4.1 What material options are available for large-diameter pump components?
| Component | Material Options | Key Advantage |
|---|---|---|
| Pump Casing | Cast Iron, Carbon Steel, 304/304L, 316/316L, Rubber Lined | Balances cost, durability, and corrosion resistance |
| Impeller | ZG/20Cr13, 316/316L, Duplex 2205, Titanium Alloy | Optimized for wear and media compatibility |
4.2 How do heat treatment processes enhance large-flow pump durability?
| Heat Treatment Method | Application Component | Core Benefit |
|---|---|---|
| Annealing | Cast Iron Casings | Relieves internal stress, prevents cracking |
| Solution Annealing | Stainless Steel Parts | Enhances corrosion resistance and ductility |
| Quenching + Tempering | ZG/20Cr13 Impellers | Hardens material (HRC 48-52), improves wear resistance |
5. Installation, Operation, and Maintenance of Large-Flow Submersible Pumps
5.1 What are the key steps for installing a large-diameter horizontal submersible pump?
| Installation Step | Key Operation | Safety & Performance Note |
|---|---|---|
| Site Preparation | Ensure level, load-bearing installation area | Reduces vibration during high-flow operation |
| Pipeline Connection | Use 200mm diameter pipes with secure Coupling | Prevents leakage under large-flow pressure |
| Motor Wiring | Connect to compatible power supply, verify insulation | Complies with electrical safety standards (IEC 60034) |
| Submersion Check | Ensure full submersion without air entrapment | Optimizes suction and motor cooling for high loads |
5.2 What maintenance schedule is recommended for large-flow submersible pumps?
| Maintenance Interval | Core Tasks | Purpose |
|---|---|---|
| Monthly | Inspect mechanical seal for leaks, clean intake | Prevents clogging and media leakage |
| Quarterly | Check motor temperature, lubricate Bearing | Reduces friction during balanced-speed operation |
| Semi-Annually | Inspect impeller wear, test insulation resistance | Ensures efficient large-flow performance |
| Annually | Replace worn parts (O-rings, seals), full performance test | Restores optimal capacity, complies with maintenance standards |
6. Industry Standards and Certifications for Submersible Pumps
6.1 What international standards do large-diameter submersible pumps comply with?
| Industry Standard | Compliance Aspect | User Benefit |
|---|---|---|
| IP68 Protection | Waterproof/dustproof performance | Safe operation in fully submerged conditions |
| IE3 Efficiency | Motor energy consumption | Lower operational costs for continuous use |
| ISO 9001 | Quality management system | Consistent product reliability |
| Class F Insulation | Motor temperature resistance | Safe operation at 2.2-18 KW loads |
6.2 Why is the IP68 rating critical for large-flow submersible pump safety?
- IP6X (Dust Protection): Complete dust ingress prevention, protecting electrical components from corrosion and short circuits in industrial environments.
- IPX8 (Water Protection): Safe operation in continuous submersion (customizable depth), suitable for long-term use in large sewage tanks, construction pits, and irrigation reservoirs.
7. Customization and After-Sales Services for Large-Flow Pumps
7.1 Can large-diameter submersible pumps be customized for specific needs?
| Customization Option | Available Choices | Application Scenario |
|---|---|---|
| Material Selection | 304/304L, 316/316L Material, Rubber Lined | Corrosive/abrasive media |
| Motor Power Adjustment | 2.2-18 KW range | Specific flow/lift demands |
| Accessories | Special Electrical Cabinet, automatic coupler | Automated or remote operation |
7.2 What after-sales support is provided for KOLEBURG large-flow pumps?
- 1-year warranty on pump body and motor, covering manufacturing defects.
- 24/7 technical support for installation, operation, and troubleshooting of large-flow systems.
- Fast delivery of genuine spare parts (e.g., mechanical seals, impellers) to minimize downtime.
- Annual performance inspection and maintenance guidance for large-flow operation.
8. Safety and Applicability in Large-Flow Environments
8.1 How to ensure safe operation of large-flow pumps in corrosive media?
- Choose corrosion-resistant materials (316/316L, Duplex 2205, Titanium Alloy) based on media chemistry.
- Opt for sealed components (e.g., mechanical seals) to isolate electrical parts from corrosive media.
- Conduct regular corrosion inspections per industry guidelines (e.g., ASTM G48).
8.2 Are large-diameter submersible pumps suitable for 24/7 continuous operation?
- The 2.2-18 KW motor is designed for long-running durability with Class F insulation, supporting high-volume loads.
- IP68 protection prevents overheating and moisture damage during extended use.
- Wear-resistant materials and heat treatment withstand prolonged stress from 180-373 m³/h flow and 2.3-12.5m lift.



















