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Portable Micro-Viscometer
The MiniVis 445 is the clever combination of a rolling ball viscometer, an advanced density meter, and an automatic filling system: Precise determination of dynamic and kinematic viscosity over a wide temperature range, all in a rugged instrument fit for heavy duty environments, yet precise enough for the lab bench. The use of reflection sensors makes it possible to cover a wider range of applications: even samples as dark as used or heavy-oil can be measured with highest accuracy and repeatability.
Users appreciate the small sample volume and the automatic sample feeding, the measurement cell is easily accessible and eliminates the usual cleaning problems of other viscometers. Temperature control with the built-in Peltier elements eliminates large water baths and allows for quick determination of viscosity indices.
Easy Cleaning
An automatic rinsing cycle with solvent or a new sample cleans the entire system, that's why we use 25 mL of sample, when only 5 mL are needed for measuring. Due to its bayonet enclosure, the viscosity cell is also easily removable for inspection and cleaning in an ultrasonic bath. You can confirm cleanliness before your results are wrong. The instrument is delivered with a couple of viscosity cells to avoid any down time during cleaning.
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Portable Micro-Viscometer
Features
- Excellent correlation to ASTM D445 and ISO 3104
- Viscosity range of 0.2 –2000 mm²/s (mPa.s)
- Viscosity index (ASTM D2270)
- Only 25 mL sample for measurement and cleaning
- Only 3 min. turnaround time for a sample with 100 cSt at 40°C
- Automatic sample introduction
- Cleaning cycles automatically programmable
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Technical Data
Temperature Range
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0 -110 °C (32 -230 °F) with built-in thermoelectric Peltier system
down to -20 °C (-4 °F) with 4 °C water counter cooling |
| Measuring Range |
kinematic (dynamic) viscosity: 0.2 - 2000 cSt/mm²/s (mPa.s)
density: 0.62 to 2 g/cm³ |
| Resolution |
viscosity: 4 significant digits
density: 0.0001 g/cm³ |
| Repeatability |
viscosity: 0.3 % of measured value
density: 0.0005 g/cm³
thermostat: 0.02 °C |
| Required Sample Volume |
25 mL |
| Sample Throughput at Constant Temperature |
20 samples per hour, including rinsing; samples with 100 cSt/mm²/s (mPa.s) |
| Sample Throughput Viscosity Index |
4 samples per hour (each measured at 40 °C and 100 °C) |
| Environmental Conditions |
temperature: +5 to 35 °C (40 to 95 °F)
relative humidity: 10% to 90% r.h., non condensing |
| Interfaces |
2 RS232 interfaces for printer and PC
1 interface for external keyboard |
| Power Supply |
100 -240 V AC, 50/60 Hz, 85W |
| Field Application |
12 V/4A DC (vehicle battery) |
| W x H x D |
200 x 320 x 240 mm (7.8" x 12.6" x 9.4") |
| Weight |
11 kg (24 lb) |
Principle
The measuring chamber (1) is a rugged glass tube (2) containing a metal ball (3). The sample is fed into the glass tube by the automated sample introduction system or manually with a syringe. The temperature of the whole sample cell and sample introduction system is controlled by a thermoelectric (Peltier) system. The sample cell is automatically rotated within angles from -80° to 80°. In this range, three angles are used and pre-calibrated for standard viscosity measurements. After the ball accelerates to a constant velocity, the time of descent is measured with two reflection sensors (4). The whole procedure is repeated by rotating the sample cell and measuring the opposite direction.
Continuous product development may make it necessary to change product specifications without notice. |
![]() ASTM D445
Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquids (and Calculation of Dynamic Viscosity)
ASTM D2270
Standard Practice for Calculating Viscosity Index From Kinematic Viscosity at 40 and 100°C
ISO 3104
Standard Practice for Calculating Viscosity Index From Kinematic Viscosity at 40 and 100°C
ISO 12058
Plastics -- Determination of viscosity using a falling-ball viscometer -- Part 1: Inclined-tube method
DIN 53015
Viscometry - Measurement of viscosity by means of the rolling ball viscometer by Höppler
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