


Hamilton Polilyte Plus H Arc 120mm P/N: 242428-1313
Product Number: 242428-1313
The Polilyte Plus Arc sensor offers durable, maintenance-free pH measurement in harsh industrial settings like chemical, petrochemical, and wastewater treatment. Its clog-resistant Single Pore junctions, long-lasting Everef-L reference, and integrated Liquid Earth technology ensure stable performance.
The Polilyte Plus Arc sensor is engineered for demanding industrial applications, providing reliable pH measurement in chemical, petrochemical, process water, and wastewater treatment environments. Its maintenance-free design incorporates dual Single Pore junctions that prevent clogging, ensuring consistent and accurate readings even in challenging media. The sensor is optimized for highly alkaline solutions and low-conductivity samples, delivering precise results with minimal maintenance. The Everef-L reference cartridge extends the sensor's lifespan, reducing replacement needs, while the integrated Liquid Earth technology stabilizes the sensor signal and enhances diagnostics. This combination of features makes the Polilyte Plus Arc a robust, cost-effective choice for continuous pH monitoring in tough industrial settings. Available in Hamilton Type PHI, H, HB, or HF glass.
Reliable performance in harsh environments
Low maintenance and long lifespan
Integrated Liquid Earth Technology
Maintenance-free design
Product Number: 242428-1313
The Polilyte Plus Arc sensor offers durable, maintenance-free pH measurement in harsh industrial settings like chemical, petrochemical, and wastewater treatment. Its clog-resistant Single Pore junctions, long-lasting Everef-L reference, and integrated Liquid Earth technology ensure stable performance.
The Polilyte Plus Arc sensor is engineered for demanding industrial applications, providing reliable pH measurement in chemical, petrochemical, process water, and wastewater treatment environments. Its maintenance-free design incorporates dual Single Pore junctions that prevent clogging, ensuring consistent and accurate readings even in challenging media. The sensor is optimized for highly alkaline solutions and low-conductivity samples, delivering precise results with minimal maintenance. The Everef-L reference cartridge extends the sensor's lifespan, reducing replacement needs, while the integrated Liquid Earth technology stabilizes the sensor signal and enhances diagnostics. This combination of features makes the Polilyte Plus Arc a robust, cost-effective choice for continuous pH monitoring in tough industrial settings. Available in Hamilton Type PHI, H, HB, or HF glass.
Reliable performance in harsh environments
Low maintenance and long lifespan
Integrated Liquid Earth Technology
Maintenance-free design
Product Number: 242428-1313
The Polilyte Plus Arc sensor offers durable, maintenance-free pH measurement in harsh industrial settings like chemical, petrochemical, and wastewater treatment. Its clog-resistant Single Pore junctions, long-lasting Everef-L reference, and integrated Liquid Earth technology ensure stable performance.
The Polilyte Plus Arc sensor is engineered for demanding industrial applications, providing reliable pH measurement in chemical, petrochemical, process water, and wastewater treatment environments. Its maintenance-free design incorporates dual Single Pore junctions that prevent clogging, ensuring consistent and accurate readings even in challenging media. The sensor is optimized for highly alkaline solutions and low-conductivity samples, delivering precise results with minimal maintenance. The Everef-L reference cartridge extends the sensor's lifespan, reducing replacement needs, while the integrated Liquid Earth technology stabilizes the sensor signal and enhances diagnostics. This combination of features makes the Polilyte Plus Arc a robust, cost-effective choice for continuous pH monitoring in tough industrial settings. Available in Hamilton Type PHI, H, HB, or HF glass.
Reliable performance in harsh environments
Low maintenance and long lifespan
Integrated Liquid Earth Technology
Maintenance-free design