ET-C Servo Triple Plunger Pump

The ET‑C Series Servo Triple Metering Pumps are engineered for the precise filling and transfer of low to medium viscosity liquids (up to 5000 cps). Utilising an advanced equispaced triple cam drive system, these pumps deliver exceptionally smooth, consistent output with highly accurate volume control. Designed for demanding industrial environments, the ET‑C Series combines high performance, flexibility, and ease of integration, making it ideal for a wide range of liquid filling applications with exceptional accuracy.

Key features of the ET-C Pump

Precise & Consistent Output

The equispaced triple cam system drives three plungers in a continuous reciprocating motion, ensuring smooth flow and highly accurate dispensing with filling accuracy up to ±0.3%.

Flexible & High-Performance Operation

Servo-controlled with full digital adjustment, the ET‑C Series offers non-limited filling volumes and flow rates up to 300 ml/s, suitable for both standalone and multi-pump systems.

Robust, Modular Design

Servo-controlled with full digital adjustment, the ET‑C Series offers non-limited filling volumes and flow rates up to 300 ml/s, suitable for both standalone and multi-pump systems.

Why choose our ET-C pumps?

The ET‑C Series is designed for applications requiring a combination of high accuracy, smooth flow, and scalable output. Its triple plunger system ensures consistent, pulse-reduced dispensing, making it ideal for sensitive filling processes where repeatable accuracy is critical.

With full servo control and flexible configuration options, the ET‑C can be integrated as a single unit or synchronised across multiple pumps, supporting both standalone machines and more complex automated systems. Its modular construction and wide material compatibility also make it well-suited to industries handling a variety of liquids, including chemicals, pharmaceuticals, cosmetics, and food products.

Built for performance and reliability, the ET‑C Series offers a dependable solution for manufacturers seeking precision metering at higher flow rates without compromising control or repeatability.