PTB 302 Manual Tablet Hardness Testing Instrument with Integrated Report Printer

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PTB 302 Manual Tablet Hardness Testing Instrument with The digital tablet hardness testing instrument PTB 302 features an integrated report printer. It is a single force mode hardness test apparatus adjusted for linear force increase while tablet hardness is tested. It offers a multiple point validation procedure for the built-in digital load cell. The instrument is made in strict compliance with the EP <2.9.8> and USP <1217> Pharmacopoeia. Select the unit to measure, KP (Kilopond), N (Newton) or Sc (Strong Cobb), now place the sample onto the sample dish and start the test. The driven jaw will run forward, touch and force the tablet until it breaks to measure the hardness (tablet breaking force). No change of tools is required; the design of the jaws does handle most kind of tablet shapes. The result is immediately displayed and printed via the integrated report printer. Repeat this until your series has been tested, get a full print-out including each individual result, date, time, serial number of the instrument, mean value and deviations of the test series. The flexibility and the reproducibility of the results have made this and other models, like the PTB 311E series become one of the most sold tablet hardness testing instruments worldwide. By using an integrated report printer, the bench space requirements to of this instrument are even lower than other instruments from the PTB series, since no additional external printer is required. Furthermore, the report printer requires less paper than a standard printer and by this helps to preserve our precious natural resources. Pharma Test Apparatebau AG Siemensstr. 5 63512 Hainburg/Germany PTAG_28-00100_PTB302_v1.0E.docx Page 1 of 6 P: +49 6182 9532 600 F: +49 6182 9532 650 info@pharma-test.de www.pharma-test.com

Operating Principle Even in the existing USP and EP monographs there is no standard force setting or force increase mode established, but it is recommended to use a linear force increase rate of 20N/s. Different force settings usually cause problems when comparing results received by different supplier's instruments when testing the same tablet. The hardness result is directly influenced by the contact speed and force increase rate. Faster operated test jaw means lower reproducibility and often higher results. In order to offer the possibility to select an operating mode which will offer you similar results as the instruments you may already use, adjust the linear force increase rate to be the same or a similar rate as the one on the units you are using already. Also touch and detection force may be altered to suit the sample design specification. When the sample is touched the instrument switches to the selected mode and linear increasing rate. Which Force Rate Should Be Selected? For more than 18 years all Pharma Test hardness testing instruments offer the possibility to select a linear force increase rate. Linear force increase is the recommended setting as it offers the most accurate control, as the rate of increase is directly controlled by the electronic load cell used to read the force. Also it is quite simple to validate the correct and linear operation as a tablet having a hardness of 100 Newton will be broken within 5 seconds if 20N/s had been set as force increase rate. To select a linear speed increase mode is impossible using the PTB 302 hardness test instrument. Calibration and Validation The current USP Pharmacopeia requires the force sensor of a tablet hardness testing instrument to be calibrated periodically over the complete measuring range (or the range used for measuring samples) with a precision of 1N. All Pharma Test tablet hardness testing instrument can be statically calibrated over the complete measuring range by the use of different traceable counterweights. All instruments support the checking of at least three different points during calibration to prove the linearity of the force sensor. Furthermore, Pharma Test offers the PT-MT magnetic tablets to calibrate the breakpoint detection of the whole tablet hardness testing instrument (force sensor and mechanics of the instrument). All Pharma Test tablet hardness testing instruments are fully compliant to the requirements of the current USP Pharmacopeia. PTAG_28-00100_PTB302_v1.0E.docx Page 2 of 6

PT-MT3 The PTB 302 offers a built-in calibration and validation program for the hardness test station. To validate the hardness test station the PT-MT magnetic tablet or different certified weights are used. Use the PT-MT to qualify the correct breakpoint detection, the PT-MT instrument works like a tablet, it withstands force and after breaks. For the two point adjustment (zero and reference) of the load cell inside the hardness station a certified reference weight of 10 kg is used. For validation purposes the use 5 up to 30kg certified weights is recommended. All adjustment and calibration results can be printed and countersigned. To prove the linearity of the instrument, the operator can program a print-out of the force curve recorded during a test. This will show the linear increase of the adjusted force mode. Also different weights, like the CAL-15 and CAL-30 which includes 5, 10, 15kg and also 30kg or the PTB-CAL30 using 2 additional 10kg weights for total 50kg, may be placed onto the load cell or the PT-MT shall be used to validate the linearity. All results will be printed at the internal Thermo Printer. Using the RS232 COM port, all results can be transmitted to software running on a computer system. PTAG_28-00100_PTB302_v1.0E.docx Page 3 of 6

PTB-CAL 30 Advantages Some of the highlights the PTB 302 offers are: No external printer required, this reduces the necessary bench space Documentation of all results using an integrated report printer Report printer uses less paper compared to a standard format printer Automatic re-start facility to speed up the testing sequence Validation and calibration program for the measurement station Dual point adjustment of the load cell for the hardness test station Multiple point validation (calibration) Data transfer via RS-232 interface Hardness testing in compliance with the EP <2.9.8> and USP <1217> Pharmacopoeia Features The main features of the PTB 302 are: Fully USP <1217> and EP <2.9.8> compliant Single force mode instrument Integrated thermal printer Multiple point validation procedure built-in PTAG_28-00100_PTB302_v1.0E.docx Page 4 of 6

Standard Scope of Supply The PTB 302 comes ready to use with the following standard scope of supply: Standard jaw to allow hardness test of nearly all size and shape samples Broken sample collector 10 rolls of printer paper Comprehensive documentation folder including: User manual IQ documentation OQ documentation Conformity Declaration CE/EMC Declaration Instrument logbook Options In addition to the standard scope of supply Pharma Test offers a broad range of accessories and options including: Ampoule Test Support 500N (PTB 502) Recommended spare part set Full range of certified validation tools available PTAG_28-00100_PTB302_v1.0E.docx Page 5 of 6

Technical Data Parameter Display Data Entry Standard Force Range Accuracy Resolution Force Settings Selectable Range Accuracy Maximum Sample Size Printer Interface Calibration Guidance Adjustments Calibrations Force Detection Reproducibility Instrument Housing Bench Space Requirement Certification CE / EMC Certification Validation Specification LED Display showing number of tests and hardness result Numerical and Functional keys 5.0 to approximately 300N < 1N 0.074N (300N model) - 0.1482N (500N model) Linear force increase 5.0-200 N/Second < 2% force 40 mm (Option 70mm) Internal thermal printer Serial RS232 COM port Built-in calibration procedures the digital load cell Two point adjustment - zero and 10kg Multiple point for load cell precision using certified weights (CAL15) PT-MT Magnetic Tablet Stainless Steel to meet GLP requirements L 53cm x W 24cm x H 18cm All components certified to USP / EP requirements All CE / EMC Certification provided All IQ & OQ documents included PTAG_28-00100_PTB302_v1.0E.docx Page 6 of 6