Präzisionswaage PS 200/2000.R2.H

Radwag Elektronische Waagen
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Präzisionswaage PS 200/2000.R2.H

Produktcode: WL-221-1001
Modell ändern (10)
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Max: 200 / 2000gd: 0,001 / 0,01g

 ø100mm
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Max: 210gd: 0,001g

 ø100mm
Max: 360gd: 0,001g

 ø100mm
Max: 600gd: 0,001g

 ø100mm
Max: 750gd: 0,001g

 ø100mm
Max: 1000gd: 0,001g

 ø100mm
Max: 2100gd: 0,01g

 195×195mm
Max: 3500gd: 0,01g

 195×195mm
Max: 4500gd: 0,01g

 195×195mm
Max: 6100gd: 0,01g

 195×195mm
Wägebereich [Max]: 200 / 2000 g
Ziffernschritt [d]: 0,001 / 0,01 g

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Modell ändern:
Präzisionswaage PS 200/2000.R2.H
Präzisionswaage PS 210.R2.H
Präzisionswaage PS 360.R2.H
Präzisionswaage PS 600.R2.H
Präzisionswaage PS 750.R2.H
Präzisionswaage PS 1000.R2.H
Präzisionswaage PS 2100.R2.M.H
Präzisionswaage PS 3500.R2.M.H
Präzisionswaage PS 4500.R2.M.H
Präzisionswaage PS 6100.R2.M.H
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Beschreibung
 

Präzisionswaage PS 200/2000.R2.H

 
Die PS R2.H Waage setzt neue Maßstäbe bei Standardpräzisionswaagen. Sie verbindet alle Vorteile der R-Waagen und ist zur Nutzung unter schweren Umgebungsbedingungen bereit, Schutzart IP 54 (Wasserniederschlag und große Staubmengen).
 
 
 

LCD-Display

Die Waagen sind mit einem neuen, übersichtlichen LCD-Display ausgestattet, der eine noch bessere Präsentation der Wägeergebnisse ermöglicht.

Auf dem Display wurde eine Informationszeile hinzugefügt, auf der zusätzliche Meldungen und Informationen z.B. Warenbezeichnungen oder Tarawerte eingeblendet werden.
 
 
 
 

Schnittstelle

Die Waage, angeschlossen über die USB-Schnittstelle kann mit einem Rechner zusammenarbeiten, für diese Betriebsart ist jedoch zusätzliche Software (Treiber) erforderlich, die auf der Webseite unter "Software" oder "SUPPORT" zur Verfügung steht.

Die Waage ist mit vielen Kommunikationsschnittstellen ausgestattet, die in einem dichten, separaten Gehäuse untergebracht sind. Das Gehäuse besteht aus Kunststoff und die Waagschale aus Edelstahl.
Die Waage arbeitet mit der E2R Wäge-Erfassungssoftware.
 


 
Unterschalenwägung
Waagen, die nach dem 15.02.2023 gekauft wurden, ermöglichen Unterflurwägung zu einem beliebigen Zeitpunkt nach dem Kauf des Geräts. Alles, was Sie tun müssen, ist, einen speziellen Haken zu erwerben.
 
 
 
Edelstahl in RADWAG-Produkten
Erfahren Sie mehr über die Verwendung und Pflege von Edelstahlprodukten:
Rostfreier Stahl in RADWAG-Produkten. Standard- und Spezialanwendungen
Technische Daten
Wägebereich [Max]

200 / 2000

 g

Min. Belastung

20

 mg

Ziffernschritt [d]

0,001 / 0,01

 g

Tarierbereich

-2000

 g

Wiederholbarkeit (Max)

0,001 / 0,01

 g

Wiederholbarkeit (5% Max)

0,0005 / 0,005

 g

Linearität

±0,002 / 0,02

 g

Stabilisierungszeit

2 / 1,5

 s

Justierung

intern (automatisch)

 

Nivelliersystem

manuell

 

Display

LCD (hinterleuchtet)

 

Waagschale

ø100

 mm

Verpackungsgröße

475×380×345

 mm

Nettogewicht

4,5

 kg

Bruttogewicht

6,5

 kg

Schutzart

IP 54

 

Schnittstellen

2×RS232¹, USB-A, USB-B, Wi-Fi® (optional)

 

Stromversorgung

Adapter: 100 – 240V AC 50/60Hz 0,6A; 12V DC 1,2A
Waage: 12 – 15V DC 0,4A max

 

Leistungsaufnahme des Geräts

4 W

 

Umgebungstemperatur

+10 – +40

 °C

Relative Luftfeuchtigkeit

40% – 80%

 

CE
Wiederholbarkeit wird als Standardabweichung von 10 Wägezyklen ausgedrückt.
Die Stabilisierungszeit ist abhängig von den Umgebungsbedingungen und der Geschwindigkeit bei Auflegen der Last auf der Waagschale; für FAST-Profil definiert.
1 Die als Zubehör erhältlichen Barcode-Scanner arbeiten mit der Waage nur über die RS232-Schnittstelle.
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Funktionen
Autotest

Autotest

Diagnostic function aiming at metrological parameters determination (repeatability), the parameters are determined for the actual conditions of use. When speaking of repeatability it may be also used for weighing time optimization. Autotest is operated in an automatic mode thus operator’s time is saved.
Dosing

Dosing

Weighing process for which reference mass has been determined together with tolerance for its determination. Dosing tolerance is given in [%] and it is calculated in relation to the reference value thus being a permissible deviation of this process. This solution is used for weighing powders, liquids and loose materials. Dosing function performance is often supported with bargraph - load indicator. For industrial scales it is possible to use a control systems of dosing process.
Percent Weighing

Percent Weighing

Percent Weighing function is used for comparision of measured products with mass standard. Mass of a mass standard may be a numeric value taken from a database or it may be determined through a measurement process. Each measured product is compared to mass standard, mass of which is presumed as a model 100% ideal mass. For products weighing less than the mass standard, obtained results are lower than 100%, for products weighing more, the obtained results are greatly  exceeded.
Totalizing

Totalizing

Function adding new mass value to already obtained one. This allows to determine mass content of the mixture, being a composition of number of different consistence components. Totalizing is limited by maximum capacity parameter.
Parts counting

Parts counting

Function using mass measurement for determination of  measured items quantity. Mass of a single item is required for this process. It may be either estimated through weighment or taken from a database. For items counting the following algorithm is used: all items mass / single item mass = quantity. Function operation is supperted by a mechanism of Automatic Correction of Accuracy. This allows to update single item mass in course of the process. To a certain extend Automatic Correction of Accuracy eliminates error which may be a result of different mass values of seemingly alike single elements. For industry solutions items counting may be simultaneously carried out with checkweighing and dosing thus industry solutions feature audio signalling base informing that specified number of items has been weighed. It is possible to apply weighing systems using few platfroms of different MAX capacities and different accuracies.
Peak hold

Peak hold

Function registering the greatest temporary indication occurring in course of the weighing process. It is most often used in medical scales in order to hold the measurement indication.
Statistics

Statistics

Statistiscs function registers and analyses performed measurements. This supplies the user withthe following information: Max and Min standard deviation, average value, variance, range et.
Checkweighing

Checkweighing

Checkweighing function is used for checking whether the measured sample mass is within the predefined threshold values, Low [LO] and Hgh [HI]. The thresholds are given in [g] and [kg] units. Current state of a sample being measured is signalled by means of pictorgams located on a display for laboratory balances, for industrial scales Stackligt System is used. This visual +/- inspection is in operation during segregation, control or packing process of products for which mass has bees determined with a specifaied tolerance, eg. 12860 g 961
Under-pan weighing

Under-pan weighing

The solution enables weighing with use of a stand, which is advisable for loads of non-standard shapes and dimensions and those that generate magnetic field.
GLP Procedures

GLP Procedures

Diagnostic function allowing to objectively document performed measurements. GLP procedures may be either presented in a short report form or extended one.
Animal weighing

Animal weighing

Process of mass determination for a product which may unwillingly reposition within the weighing pan. Mass determination in such cases requires much longer period of time when compared to typical weighing process. It is the user who defines period of time needed for control of measured product mass. The user can thus optimize the function depending on the measured product characteristics.
Density determination

Density determination

Liquid or solid body density function uses the Archimedes principle and it requires a special kit to be applied. The kit when used, replaces a weighing pan. For solids mass of the sample must be determined first in the air, next in the liquid of specified density. For liquids the so called sinker, density of which has been determined, must be measured first in the air, next in the tested liquid. The density determination process is disturbed by air bubbles which may stick either to the measured sample or the sinker. In case of laboratory equipment very light solids may be measured. For industry, solid bodies density may be determined by means of  under-pan weighing. Tested load of significant size may be measured this way.
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Polen
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