text.skipToContent text.skipToNavigation

Malvern Panalytical ZETA POTENTIAL TRANSFER STD (1-SYRINGE) DTS1233

Malvern Panalytical -- Item TECPIM000447350
Please add to cart & request for quote to see the price
Reserve Now    

ZETA POTENTIAL TRANSFER STD (1-SYRINGE) DTS1233 is a ready-to-use zeta potential transfer standard supplied in a single prefilled syringe for instrument verification. It is intended to provide a reliable means of checking and documenting the zeta-potential measurement performance of Zetasizer instruments and other electrophoretic light scattering systems. The product is supplied as part of consumable packages for Zetasizer Nano series instruments and is used to verify correct zeta-potential measurement as part of routine performance validation.

Key Features:

  • Form: prefilled, ready-to-use single syringe
  • Packaging: 1 syringe (single-use)
  • Primary purpose: zeta potential transfer standard for instrument verification
  • Compatibility: supplied for use with Zetasizer Nano S and Nano ZS consumable kits
  • Included in consumable kit composition alongside standard latex and cuvettes

Advantages:

  • Provides a reliable, manufacturer-supported means to check and document zeta-potential performance for accreditation or regulatory conformance
  • Prefilled single-syringe format requires no dilution or preparation prior to use
  • Supplied as part of consumable kits to simplify routine verification and installation testing

Product Details

Overview
Model
Product Type Consumables
Part Number DTS1233
Brand Malvern Panalytical
Gross Dimensions (WxDxH cm)
Net Dimensions (WxDxH cm)
Gross Weight (kg)
Net Weight (kg)
Specifications
More options are available. Please contact us for more information.
Document
More options are available. Please contact us for more information.
Videos

Malvern Panalytical

Malvern Panalytical instruments blend cutting-edge engineering with the latest advancements in data analytics and AI. This combination empowers industries and researchers to comprehend the world with unparalleled precision, from biomolecular structures to quantum dots.