text.skipToContent text.skipToNavigation

Malvern Panalytical 100.0mic/15ml POLYMER STA LTX4310A

Malvern Panalytical -- Item TECPIM000004868
Please add to cart & request for quote to see the price
Reserve Now    

A polystyrene polymer size standard supplied as a 15 mL aqueous suspension for instrument verification and calibration. The material consists of highly uniform polystyrene (latex) spheres with a certified diameter of 100.0 µm, provided in a dropper‑tipped bottle and supplied with a Certificate of Calibration and Traceability to NIST. The suspension is formulated at 1% solids and is optimized for easy dispersal and colloidal stability, intended for use in particle size and zeta potential checks and routine instrument performance verification.

Key Features:

  • Particle diameter: 100.0 µm
  • Packaged volume: 15 mL dropper‑tipped bottle
  • Material: Polystyrene (latex) polymer standard
  • Formulation: Aqueous suspension, 1% solids, optimized for easy dispersal and colloidal stability
  • Calibration: Supplied with Certificate of Calibration and Traceability to NIST

Advantages:

  • NIST‑traceable calibration standard enables traceable instrument verification and regulatory confidence
  • Highly uniform particle size supports accurate and repeatable particle sizing and zeta potential measurements
  • Ready‑to‑use 15 mL dropper bottle simplifies sample preparation and controlled dispensing
  • 1% solids aqueous formulation is optimized for easy dispersal and colloidal stability, reducing preparation variability

Product Details

Overview
Model
Product Type Consumables
Part Number LTX4310A
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.