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2279 products
Metolab 502 Vickers Hardness Tester
Metolab 502 Vickers Hardness Tester
The stationary METOLAB 502 hardness tester is a modification of the METOLAB 501 series device, equipped with a display and a digital micrometer that allows you to automatically read values without the need for conversion tables. The device also automatically calculates the hardness of the samples. The METOLAB 502 microhardometer is designed to measure the hardness of various samples and products (steels, cast iron, non-ferrous metals and soft alloys) according to the Vickers (HV) and Knup (HK) scales in full compliance with GOST R ISO 6507-1-2007. The device has high accuracy, performs measurements in a wide range and with high repeatability. The stationary automatic METOLAB 502 hardness tester is included in the State Register of Measuring Instruments of the Russian Federation (GRSI) under the number 66668-17 and comes with a certificate of primary verification (on request). Distinctive features of the stationary METOLAB 502 Micro-Vickers hardness tester: Built-in digital micrometer that allows you to automatically read readings without the need for translation tables; Automatic hardness calculation; Simple and intuitive control of the device, fully Russified menu; Wide range of measured values – from 5 to 2500 HV; A wide range of applied test loads - 0.09807 N (10 g), 0.2452 N (25 g), 0.4903 N (50 g), 0.9807 N (100 g), 1.961 N (200 g), 2.942 N (300 g), 4.904 N (500 g), 9.80 N (1 kg); Large and bright LCD display. Basic delivery package: Stationary METOLAB 502 Micro-Vickers Hardness Tester; Standard hardness sample – 2 pcs.; Flat desktop; Large flat desktop; V-shaped desktop; Micrometer; Diamond indenter with an angle of 136°; User Manual.
Metolab
Moscow
Produced in: Moscow
Generator of test pulses G9-1A
Generator of test pulses G9-1A
The generator is capable of operating both autonomously and as part of automated measuring systems with interfaces such as RS-232 and ITHERNET. Technical specifications The range of setting the pulse duration at the outputs: - τ1 from 100 ns to 10 s - t2 from 101 ns to 10.1 s - t3 from 10 ns to 3600 s The range of setting the time interval between the pulse fronts at outputs t1 and t2 (∆tx) is from 0 to 3600 s The main error in setting the pulse duration at outputs t1 and t2 ± (δ0 • t1,2 + 1•10-8 c) The basic error of setting the pulse duration at the output is τ3 ± (δ0 •τ3 + 2 •10-9 s) The main error in setting the duration of the time interval (∆tx): ∆tx from 0 to 1000 s ± (δ0 •∆tx + 2•10-10 s) ∆tx from 1000 to 3600 s ± (δ0 •∆tx + 2•10-9 s) Pulse amplitude at outputs τ1 , τ2 and τ3 at a load of 50 ohms, not less than 1.2 V The nominal frequency value of the reference quartz oscillator is 10 MHz Relative error in the frequency of the quartz oscillator (δ0 ), no more than ± 2x10-7 in 24 months The pulse repetition frequency setting range at outputs τ4 and τ5 is from 0.1 Hz to 300 MHz The main error in setting the pulse repetition frequency at outputs τ4 and τ5 ± δ0 •F = τ4.5 Pulse amplitude setting range at outputs τ4 and τ5 from 0.05 to 1 V The main error in setting the pulse amplitude at outputs τ4 and τ5 ± 20% Fixed values of pulse durations at the output of τ6 1 and 5 microseconds The basic error of setting the pulse duration at the output is τ6 ± (0.2•τ6 + 3 •10-7 s) The nominal value of the pulse repetition frequency at the output is τ6 100 kHz The main error in setting the pulse repetition frequency at the output is τ6 ± δ0 •F = τ6 Fixed values of the pulse amplitude at the output of τ6 minus 10 V; minus 2.5 V; 2.5 V; 10 V The main error in setting the pulse amplitude at the output is τ6 ± 20% Operating temperature range from 5°C to 40 °C AC power supply 220 V, 50 Hz Power consumption, not more than 100 VA Overall dimensions, mm 442x160x452 Weight, not more than 10 kg
Produced in: Moscow
Gas radiometer UDG-03D
Gas radiometer UDG-03D
Installation for continuous measurement and transmission over the information network of the value of the volumetric activity of beta-emitting gases (argon, krypton, xenon). It is used in gas-aerosol control systems at nuclear power and fuel cycle facilities. Purpose: measurement of the volumetric activity of beta-emitting gases (argon, krypton, xenon).
Doza
Zelenograd
Produced in: Moscow
Electronic milk viscometer "Expert Somatos - 02"
Electronic milk viscometer "Expert Somatos - 02"
from 69 000 ₽
1 supp.
Exclusive benefits: • version with one or two flasks, which allows up to 60 measurements per hour • optionally equipped with an integrated or external printer • * thanks to the new verification method developed from a blank sheet, it can be checked at any standardization and metrology center As a rule, it is used: • Dairy farms — for the timely prevention and treatment of mastitis in cows, which ensures stable supplies of high-grade milk (accordingly increases the cost of products). • Veterinary laboratories, SBBS, points for receiving farm milk from the population to determine the grade and calculate the cost of raw milk. • In the laboratories of milk processing enterprises to control incoming raw milk.
LABORATORIKA
Krasnoobsk
Produced in: Novosibirsk region
Portable Electrical Laboratory for Cable Damage Detection by Acoustic and Induction method Athlete KAI-1.501
Portable Electrical Laboratory for Cable Damage Detection by Acoustic and Induction method Athlete KAI-1.501
Appointment Athlete KAI-1.501 • Search for a live cable. • Detection of the passage of hidden communications (metal pipelines, cable lines). • Preliminary detection of the distance to the place of damage. • Search for places of cable damage in an acoustic way. • Search for places of cable damage by electromagnetic means. • The presence of a "Friend-Foe" mode.
Produced in: Kolomna, Moscow region
The PKN-2 device
The PKN-2 device
The PKN-2 device is designed to determine the swelling coefficient of clays. Device indicators: Indicator division price, mm — ( 0.01 ) Working stroke of the indicator rod, mm — ( 11.5 ) Overall dimensions, mm — ( 60x85x415 ) Weight, kg — ( 0,7 )
Produced in: Krasnodar
Field strength meter small-sized microprocessor IPM-101M
Field strength meter small-sized microprocessor IPM-101M
Purpose: The device is designed to monitor compliance with the maximum permissible levels of high-frequency radiation (alternating electric field strength, alternating magnetic field strength and electromagnetic field energy flux density) at the workplaces of personnel servicing electrical and radio engineering installations and systems emitting an electromagnetic field, in accordance with GOST 12.1.006, GN 2.1.8./2.2.4.019 and San-PiN 2.2.4/2.1.8.055.
Doza
Zelenograd
Produced in: Moscow
Oscilloscope S1-176
Oscilloscope S1-176
It is intended for the study of periodic electrical signals by visual observation and measurement of their amplitude and time parameters on the scale of the CRT screen in the frequency band 0-50 MHz, as well as for monitoring the parameters of two- and three-pole devices using a component tester. Technical specifications: Number of channels 2 Bandwidth 0 - 50 MHz Deviation coefficients of 2 mV/div - 20 V/div (step1-2-5) Installation error ± 3%, ± 4% with a 1:10 divider Rise time of PH <= 7 nsec Input impedance is 1 mOhm/25 pF, with a divider of 1:10 - 10 mOhm/23 pF Harsh operating conditions (-10°C to +40°C) Bandwidth 0 - 50 MHz Two channels Indication of deviation and sweep coefficients on LED matrices Tenfold stretching of the sweep Calibrator 0.6 V, 1 kHz (± 1%) X-Y mode Built-in Component Tester Screen 80x100 mm Weight 6,8 kg
MNIPI
Minsk
Produced in: Belarus, Minsk
Vibration velocity sensors with current output DVST-4
Vibration velocity sensors with current output DVST-4
Vibration velocity sensors with a current output DVST-4 are designed to convert the RMS value of the vibration velocity of an object into a standard current signal of 4-20 mA.
VIBROPRIBOR
Yaroslavl
Produced in: Yaroslavl
GABI-01 Aeroion generator bipolar
GABI-01 Aeroion generator bipolar
from 15 000 ₽
It is used to correct and create in the workplace the necessary concentrations of light aeroions of both negative and positive polarity in accordance with sanitary rules and regulations of the SanPiN 2.2.2/2.4.1340-03 . It is used for local antistatic treatment of charged surfaces during various technological processes.
Produced in: Moscow