Blaze Technology Pte Ltd
BSP-330D Cartridge Pump
BSP-330D Cartridge Pump
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The BSP-330D is a specialized dual-cylinder pressure pump engineered for high-demand industrial environments. This system is specifically designed to handle cartridge-type fluids with extreme viscosities—ranging up to 600,000 cps—while ensuring a completely air-free and lossless dispensing process.
The defining advantage of the BSP-330D is its continuous-operation architecture, which utilizes an automated switching mechanism between dual cartridges to eliminate production downtime.
Key Technical Features & Operational Advantages
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Dual-Cylinder Continuous Flow: The integrated dual-cartridge system allows for seamless fluid transfer. As one cartridge nears depletion, the system automatically transitions to the secondary cylinder, ensuring an uninterrupted production cycle.
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Air-Free Precision: Engineered to maintain vacuum-sealed fluid integrity, this pump prevents bubble formation and material oxidation, ensuring high-reliability dispensing for sensitive electronic or automotive components.
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Extreme Viscosity Management: Robust mechanical pressure allows for the efficient processing of high-viscosity silicones, RTVs, and thermal pastes that would stall conventional dispensing equipment.
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Automation-Ready Integration: With a streamlined interface and compact footprint, the BSP-330D is optimized for integration into multi-axis robotic workcells and high-speed automated assembly lines.
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Zero-Waste Material Preservation: The pressurized delivery system ensures near-total evacuation of the cartridges, significantly reducing expensive material loss and lowering the total cost of ownership.
Product specifications
Model BSP-330D Air pressure Min. 2kgf/cm² Air consumption 80ml/min(max) Pump sending ratio 10:1, 20:1(For high pressure) Max. dispensing pressure 50kgf/cm2 Min. dispensing pressure 0.005cc/shot Applied viscosity 10,000~600,000cps Applied container 300ml,310ml,330ml cartridge Power AC220V 50/60Hz (110V:Option) Drawing

Leadtime
Leadtime
4 to 6 weeks ARO
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