Metrology

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528 products
DOSIMETER‑RADIOMETER MKS‑AT1117M
DOSIMETER‑RADIOMETER MKS‑AT1117M
Depending on the set of detection units, the device is designed to measure: - ambient dose equivalent and ambient dose equivalent power of X-ray, gamma and neutron radiation; - kerma and kerma power in the air; - the directional dose equivalent and the power of the directional dose equivalent of continuous X-ray and gamma radiation; - the flux and fluence densities of alpha and beta particles from contaminated surfaces; - the flux and fluence densities of neutron radiation with a known energy distribution; - surface activity and number of decays of 239Pu and 90Sr + 90Y; - operational search for sources of ionizing radiation and radioactive materials.
Produced in: Belarus, Minsk
Metolab 421 Vickers Hardness Tester
Metolab 421 Vickers Hardness Tester
METOLAB 421 is a stationary Vickers hardness tester with an automatic loading system and digital display, designed to measure hardness parameters according to the specified method in accordance with GOST R ISO 6507-1-2007 of materials such as steel, cast iron, non–ferrous metals, soft alloys, etc. The stationary METOLAB-421 hardness tester is equipped with an electronic switch of the magnitude of the applied load, as well as allows you to enter diagonal length values from the control panel, followed by automatic calculation of hardness. The METOLAB 421 hardness tester has high accuracy and repeatability of results, a wide range of measurements. The device is included in the State Register of Measuring Instruments of the Russian Federation (GRSI) and comes with a certificate of primary verification (on request). The entry number in the GRSI is 67656-17. Distinctive features of the stationary METOLAB 421 Vickers hardness tester: Simple and intuitive control system; Wide range of measured values – from 5 to 2500 HV; Wide range of test loads: 0.3 kg (2.94 N); 0.5 kg (4.9 N); 1 kg (9.8 N); 2 kg (19.61 N); 3 kg (29.4 N), 5 kg (49 N), 10 kg (98 N); The price of dividing the scale of the reference microscope: 0.5 microns at 200x, 1 microns at 100x; The stationary METOLAB 421 hardness tester is equipped with an electronic switch of the magnitude of the applied load; A bright and clear LCD display provides a display of the selected scale, the set load, exposure time, test mode and other service information; The METOLAB 421 device is equipped with an electromechanical drive for applying and removing the main load; High accuracy and repeatability of measurements. Basic delivery package: Stationary METOLAB 421 hardness tester; Standard Vickers hardness test - 2 pcs.; Flat desktop; V-shaped desktop; 10x micrometer; 10x and 20x microscope lenses; Diamond indenter with an angle at the top of 136°; User Manual.
Metolab
Moscow
Produced in: Moscow
Oilman's Kit
Oilman's Kit
from 51 120 ₽
It measures temperature when checking the quality of fuel in samplers. •
Produced in: Moscow
Anemometer M-95-CM
Anemometer M-95-CM
from 54 789 ₽
Application range: 1.8 ... 55.0 m/s Alarm threshold setting range: wind speed from 12 to 40 m/s The range of setting alarm thresholds in time is from 2 to 5 seconds. Accuracy characteristics: PG±(0.5+0.05V) m/s Device weight: 4.5 kg The average service life is at least 8 years. The anemometer sensor is supplied with heating only. Application conditions: wind speed sensor from -60C to +50C the measuring panel is from -10C to +40C powered by a 220 V network or a DC 12V source. The modification of the M-95-CM "Dome" automatically disables alarm and emergency devices after the time desired by the customer after the weather conditions have improved to a safe level. The wind receiver is metal. Minor design changes are possible that do not remove the device from the approved type. It is possible to supply the device with a computer output (RS-232) on an additional order.
EMPGGO
Saint Petersburg
Produced in: Saint Petersburg
Digital two-channel contact thermometer TK-5.29 with universal inputs and logging function
Digital two-channel contact thermometer TK-5.29 with universal inputs and logging function
from 28 800 ₽
The digital contact thermometer TK-5.29 is designed to measure the temperature of liquid, bulk, gaseous materials by immersion of measuring probes of thermometers into the medium (immersion measurements), contact measurements of temperatures of surfaces of solids (surface measurements), measurement of relative humidity of gaseous non-aggressive materials, measurement of atmospheric pressure, measurement of air flow velocity, as well as for measuring the luminous flux incident on a small area of the surface to its area and other physical quantities by sensors with a unified current output. The contact thermometer TK-5.29, depending on the order, is equipped with replaceable probes for various purposes. A probe of any type can be simultaneously connected to the TK-5.29 thermometer to the 1st channel, a thermal resistance sensor or a sensor with a unified current output of 4 ...20 mA to the 2nd channel. The TK-5.29 thermometer has the function of automatically determining the type of connected probe.
Produced in: Moscow
Smart submersible reinforced probe  L=1000 mm SZPGU.1000P with built-in flash memory
Smart submersible reinforced probe L=1000 mm SZPGU.1000P with built-in flash memory
from 12 600 ₽
The smart submersible reinforced probe L=1000 mm SZPGU.1000P with built-in flash memory is designed to measure the temperature of various materials by direct contact of the probe with the measuring object and transmitting the measured value via Bluetooth to devices with the ThermoMonitor, Android program installed. Operating conditions of the SZPGU.1000P smart probe Ambient temperature, °C: -20...+55. Relative humidity, %: not more than 80 at T=35 °C. Atmospheric pressure, kPa: 86...106. Functionality of the SZPGU.1000P smart probe Measurement of physical quantities with a resolution of 0.01. Recording of measured values at intervals from 5 seconds to 23 hours 59 minutes 59 seconds (only smart probes with built-in memory). Transmitting data about measured physical quantities via Bluetooth to a device with the ThermoMonitor, Android program installed. Transmitting information about the state of charge of the built-in battery via Bluetooth to a device with the ThermoMonitor, Android program installed. Automatic transition to sleep mode after 50 seconds. The ability to connect an external power supply. Possibility of calibration.
Produced in: Kolomna, Moscow region
Anemometer AP1M with a wing sensor AP1M1
Anemometer AP1M with a wing sensor AP1M1
from 49 054 ₽
Range: 0.3-5.0 m/s; Accuracy Characteristics: (0.1+0.05V) m/s; Weight: 0.6 kg; Powered by a 4.8V rechargeable battery; Power consumption 0.1 VA; Application conditions: for primary measuring transducers: from minus 10C to plus 50C in the range of 0.3-5 m/s. for the digital measuring console: from minus 10C to plus 50C. Relative humidity 45-80% at temperature (25±10)With; Continuous operation time at negative temperatures up to minus 30C is no more than 1 hour;
EMPGGO
Saint Petersburg
Produced in: Saint Petersburg
Universal reader UZS-01D / UZS-02D
Universal reader UZS-01D / UZS-02D
Purpose: to provide bidirectional data exchange with individual dosimeters DKG-05D, DVS-02D.
Doza
Zelenograd
Produced in: Moscow
Rubidium frequency and time standards H1-1011
Rubidium frequency and time standards H1-1011
The modular construction principle makes it easy to adapt the devices to the specific requirements of the consumer. The standards are available in four versions – H1-1011, H1-1011/1, H1-1011/2 and H1-1011/3, which differ in metrological characteristics and a set of installed devices (modules). The built-in diagnostic system allows you to quickly determine the operability and condition of the main devices of the standards. On the front panel of the devices H1-1011 and H1-1011/2 there is an LCD display and a control panel, with which you can quickly receive information about the current parameters of the devices included in the devices and adjust the frequency of the output signals. The H1-1011 and H1-1011/2 standards can receive chronometric information from GLONASS and GPS satellite radio navigation systems and use it to synchronize the local time scale and automatically adjust the actual frequency value of the built-in highly stable rubidium frequency standard. The composition of the standards H1-1011 and H1-1011/2 includes: rubidium frequency standard H1-1014; MPR-01 satellite radio navigation systems receiver module; amplifier module for highly stable sinusoidal signals (at the customer's choice): MUS-01 (3 independent outputs 10 MHz, connector type SR-50-73FV); MUS-02 (3 independent outputs of 5 MHz, connector type SR-50-73FV); MUS-03 (3 independent outputs of 1, 5 and 10 MHz, connector type SR-50-73FV); MUS-04 (6 independent outputs of 1, 5 and 10 MHz in any combination at the customer's choice, SMA connector type); MS synthesizer module with software (SMA connector type) instead of an amplifier module (at the customer's request). The scope of delivery (at the request of the customer) includes an antenna for the SRNS receiver as part of: antenna unit; mounting device; antenna cable (maximum length 60 m). The H1-1011/1 and H1-1011/3 standards include: the rubidium frequency standard H1-1013; two modules of amplifiers of highly stable sinusoidal signals (at the customer's choice): MUS-01 (3 independent outputs 10 MHz, connector type SR-50-73FV); MUS-02 (3 independent outputs of 5 MHz, connector type SR-50-73FV); MUS-03 (3 independent outputs of 1, 5 and 10 MHz, connector type SR-50-73FV); MUS-04 (6 independent outputs of 1, 5 and 10 MHz in any combination at the customer's choice, SMA connector type); MS synthesizer module with software (SMA connector type) instead of an amplifier module (at the customer's request).
Ruknar
Nizhny Novgorod
Produced in: Nizhny Novgorod
Laser dosimeter LD-07
Laser dosimeter LD-07
from 125 000 ₽
LD-07 laser dosimeters are designed to measure the energy exposure and irradiance of scattered or reflected laser radiation in automatic mode, as well as to analyze the measurement results in accordance with current sanitary norms and regulations No. 580491, IEC 825-1-93 in order to determine the danger of radiation to the human body.
Produced in: Moscow