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HPTLC PRO
Module DERIVATIZATION

Fully automated derivatization with micro-droplet spraying and plate heating, ensuring consistent, precise, and reproducible derivatization.

CAMAG® HPTLC PRO
Module Application

Fully automated derivatization with micro-droplet spraying and plate heating, ensuring consistent, precise, and reproducible derivatization.
CAMAG HPTLC_PRO
In a nutshell

micro-droplet spraying and plate heating in a single device

The HPTLC PRO Module DERIVATIZATION is designed for the fully automatic derivatization of HPTLC glass plates (20 x 10 cm) and uniquely combines two steps in a single device: high-precision spraying of derivatization reagents and heating of the plate.

  • 2
    steps in one instrument
  • 4
    different droplet sizes

Using patented micro-droplet spraying technology, the HPTLC PRO Module DERIVATIZATION achieves maximum uniformity in applying derivatization reagents, while the integrated plate heating unit ensures even heat distribution across the plate.

  • Part of the fully automated HPTLC PRO SYSTEM
  • Nozzle changer to choose nozzles from three parking positions
  • Integrated plate heating unit
  • Handling of two different derivatization reagents
  • HPTLC glass plates (20 x 10 cm)
  • Software-controlled by visionCATS
01

Stand-alone operation

With HPTLC PRO, users have the choice to either operate a module as stand-alone or together with other modules in a SYSTEM MODE.

02

SYSTEM
 MODE

If two or more modules are connected to form a system, a conveyor moves the HPTLC plate from one Module to the other, eliminating manual intervention between individual process steps.

HOW IT WORKS

SMOOTH & PRECISE OPERATION


HPTLC PRO Module DERIVATIZATION Detail

01

The HPTLC PRO Module DERIVATIZATION features four spraying nozzles generating different droplet sizes to suit the properties of the selected reagent.

HPTLC PRO Module DERIVATIZATION Detail

02

A sophisticated gripper mechanism inserts the nozzle into the nozzle adapter prior to spraying and subsequently moves it to the integrated cleaning station.

HPTLC PRO Module DERIVATIZATION Detail

03

Employing the patented micro-droplet spraying technology, the reagent spraying nozzles generate an extremely fine reagent mist, which evenly distributes in the derivatization chamber and gradually settles down on the plate.

HPTLC PRO Module DERIVATIZATION Detail

04

The cleaning station washes the nozzle from the inside and the outside. Meanwhile, the HPTLC plate is moved to the subsequent heating step.

KEY benefits

Spraying and heating in a single device

Highest user safety through automation and fume hood connection

Optimal cleaning procedure between nozzle changes

Low reagent consumption (3 mL)

Maximum homogeneity in reagent and heat distribution

Technical specifications

  • Classification of installation and use
    Class I, installation category II, protection class IPX0, Pollution degree 1
  • Nitrogen or clean air pressure
    5 – 8 bar (73 – 116 psi)
  • Operating temperature
    15 – 30 °C
  • Recommended working temperature
    20 – 25 °C
  • Humidity
    Maximum relative humidity 80 % for temperatures up to 30 °C (Humidity and temperature conditions must not cause condensation!)
  • Plate types
    HPTLC glass plates 20 x 10 cm, layer thickness 200 µm
  • Operating voltage
    100 – 240 VAC; 50 / 60 Hz Fluctuations ±10 % of the nominal voltage Overvoltage category II
  • Power consumption
    250 W
  • Fuses
    4.0 AT, 250 VAC
  • Max. supply current from power outlet
    8 A
  • Dimensions (W x D x H):
    384 x 550 x 510 mm
  • Weight
    ~ 35 kg

What you need to get started

Ordering Information

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Related documents

Download manuals for in-depth device guidance
Instruction Manual HPTLC PRO Module DERIVATIZATION
July 25, 2023
Brochure HPTLC PRO Module DERIVATIZATION
June 13, 2022
Declaration of Conformity HPTLC PRO Module DERIVATIZATION
October 12, 2022