Electric QUANTM diaphragm pump designed for efficient, hygienic fluid transfer while replacing traditional air-operated systems with energy-saving electric operation.
The Graco HE80-0416 Quantm Pump, QHD-HSFF2FL--FKFKSSASF21 is a high-performance electric diaphragm pump designed for hygienic and industrial fluid transfer applications. It is commonly integrated into systems requiring precise flow control, energy efficiency, and reliable continuous-duty operation.
| Compatible Machine / System Type | Typical Application Use | Integration Notes |
|---|---|---|
| Graco QUANTM H80 Series Pump Systems | Food, beverage, and personal care fluid transfer | Direct OEM replacement unit within QUANTM H80 platform configurations |
| Stainless Steel Hygienic Processing Lines | Sanitary liquid handling (syrups, creams, sauces) | 1.5" Tri-Clamp compatibility ensures seamless installation |
| Industrial Batch Processing Equipment | Continuous or batch fluid transfer operations | Supports variable flow control with electric drive system |
| Existing Pneumatic Diaphragm Pump Installations | Energy-efficient retrofit applications | Drop-in replacement for air-operated diaphragm pumps |
The Graco HE80-0416 Quantm Pump, QHD-HSFF2FL--FKFKSSASF21 is part of the advanced QUANTM electric diaphragm pump series engineered for efficient, low-maintenance fluid handling. It replaces traditional air-operated diaphragm pumps with an electric drive system that reduces energy consumption and improves process control.
This model features a 1.5-inch Tri-Clamp fluid connection, a 316L stainless steel wetted section, and a corrosion-resistant construction suitable for hygienic applications. According to technical specifications, it supports up to 80 GPM (303 L/min) flow rate and 100 psi pressure, making it suitable for demanding continuous-duty operations in food, beverage, and personal care industries. :contentReference[oaicite:0]{index=0}
The pump uses an advanced electric motor drive (380–480 VAC, 3-phase) and is designed to deliver consistent flow while minimizing pulsation, downtime, and maintenance requirements compared to pneumatic systems. :contentReference[oaicite:1]{index=1}
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