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619 products
A set of LAB-CTT devices for determining the flow temperature of petroleum products
A set of LAB-CTT devices for determining the flow temperature of petroleum products
The composition of the kit: LOIP FT-311-80 cryostat cover of special design 1 pc. A flat-bottomed test tube with a label of 2 pcs. Rubber ring-shaped gasket 4 pcs. Stopper with a hole for a thermometer 2 pcs. A disk made of cork 2 pcs. Cooling bath cover 2 pcs.
LOIP
Saint Petersburg
Produced in: Saint Petersburg
Chlorine and Sulfur Analyzer SPECTROSCAN CLSW
Chlorine and Sulfur Analyzer SPECTROSCAN CLSW
The device is developed on the basis of the analyzer SPECTROSCAN SW-D3, allows you to determine the mass fraction of organochlorine compounds in oil according to GOST R 52247-2004 (method B) and GOST 33342-2015 (method B), the sulfur content in automotive fuel, oil and liquid petroleum products in accordance with GOST R 52660-2006 / GOST ISO 20884-2016 and GOST R 53203-2008 / GOST 33194-2014, as well as to determine the mass fraction of chlorine and sulfur in any liquid samples in accordance with standardized techniques (methods). Implements arbitration methods for determining the mass fraction of organochlorine compounds in oil and the sulfur content in automobile fuel. The analyzer has successfully passed the interlaboratory tests under the guidance of JSC "VNII NP" (TK31). As a result of the tests, the accuracy of the method for determining the mass fraction of organochlorine compounds using the SPECTROSCAN CLSW analyzer was found to comply with the requirements of GOST R 52247-2004, method B, and the accuracy of the method was determined in the range of the mass fraction of organochlorine compounds from 1 ppm to 50 ppm. Determination of the mass fraction of organochlorine compounds in oil involves sampling of oil, distillation of naphtha fraction (204 ° C), washing of naphtha from hydrogen sulfide and inorganic chlorides. An internal standard is introduced into naphtha extracted from oil – a solution of bismuth in a non-polar solvent and an analysis is carried out. When determining the sulfur content, the analysis is carried out without additional sample preparation. The analyzer is a proprietary development of NPO "SPEKTRON". The device is manufactured in St. Petersburg mainly from domestic components. There is a conclusion of the Ministry of Industry and Trade on the production of products in the territory of the Russian Federation. The operator's actions when performing measurements are minimized: - the number/name of the sample is entered from the built-in keyboard; - the sample is poured into two cuvettes; - the obtained samples are placed in the analyzer and measurements are started. The analyzer performs all subsequent actions automatically without operator involvement: - calculates and displays the chlorine and/or sulfur content in the sample; - calculates convergence - the difference in determining the mass fraction of an element in the first and second samples; - prints measurement results on the built-in printer.
NPO Spektron
Saint Petersburg
Produced in: Saint Petersburg
Frequency meters Ch3-81, Ch3-81/1
Frequency meters Ch3-81, Ch3-81/1
Designed to measure the frequency or single and averaged period of sinusoidal and pulse signals, as well as to measure the pulse duration and frequency ratio, with a guaranteed measurement error of up to 10-7za year. Description: Ch3-81 (inputs A, B, C) – range 0.1 Hz–2.5 GHz Ch3-81/1 (inputs A, B) – range 0.1 Hz–200 MHz Frequency measurement, frequency ratios Measurement of the period, duration of 1 microsecond–10000 s Signal level 30 mV–10 V (eff.), pulse up to 30 V Thermostated quartz 5 MHz: ±10-7 (year) ±7.5X10-9(day) Frequency temperature departure: ±2.5X10-8 (+5...+40 °C) Number of averaged periods: 1-104 Timestamps 10-7-10-3 s RS-232 interface 8-bit SD indicator Dimensions, weight 80X220X300 mm, 3 kg Power supply: ~ 220V, 20V
MNIPI
Minsk
Produced in: Belarus, Minsk
PKV-IB-7,2×3,4
PKV-IB-7,2×3,4
Basic properties Wide frequency range; Small VSWR values. Operating conditions Operating temperature range from minus 10 to 50 ° C; The relative humidity of the air is up to 98% at a temperature of 25 ° C. Technical specifications Waveguide cross section, mm 7.2×3.4 Type of coaxial connector (according to GOST RV 51914-2002) IB Frequency range, GHz 25.96-37.50 VSWR 1.35
Produced in: Moscow
Contact thermometer TK-5.01MS
Contact thermometer TK-5.01MS
from 14 352 ₽
The digital contact thermometer TK-5.01MS is designed to measure the temperature of liquid, bulk meterials by direct contact of the probe with the measuring object. The digital contact thermometer consists of an electronic unit and a non-replaceable submersible probe. Thermoelectric converters (TP) with NSH according to GOST R 8.585 are used as a thermosensitive element in the probe. •
Produced in: Moscow region
MI-10X Magnetic Indicator
MI-10X Magnetic Indicator
from 22 500 ₽
Distinctive features. Compactness Autonomy Maximum ease of handling Energy saving mode Technical specifications Indication of induction levels, MT,: weak magnetization 0...2 average magnetization 2...10 strong magnetization more than 10 Power supply 1 accumulator unit or PP3 battery Current consumption, mA, no more than 8 Operating temperature range, °C -30...+50 Dimensions of the electronic unit, mm 90x50x32 Dimensions of the converter, mm 14x50
Produced in: Moscow
PKV-IP-5,2×2,6
PKV-IP-5,2×2,6
Basic properties Wide frequency range; Small VSWR values. Operating conditions Operating temperature range from minus 10 to 50 ° C; The relative humidity of the air is up to 98% at a temperature of 25 ° C. Technical specifications Waveguide cross section, mm 5.2×2.6 Type of coaxial connector (according to GOST RV 51914-2002) IP Frequency range, GHz 37.50-50.00 VSWR 1.45
Produced in: Moscow
VD-90NP Eddy current flaw detector in the basic configuration
VD-90NP Eddy current flaw detector in the basic configuration
from 398 250 ₽
The principle of operation of the device: The principle of operation of the flaw detector is based on the excitation of eddy currents in the controlled product and the subsequent release of a signal at the output of the converter, the amplitude and phase of which are determined by the secondary field of eddy currents. Design features and advantages of the VD-90NP flaw detector. The device has a small-sized case, which ensures its lightness, ergonomics and allows you to mount it on your belt or on your arm. The measurement is performed using a remote converter connected by a flexible cable. There are several types of converters for eddy current flaw detection of products made of different materials and different geometries. The large and bright display displays the selected operating modes and measurement results in text and graphic form. The VD-90NP is also characterized by: high sensitivity (it detects cracks starting from 0.1 mm in size); dust–and-moisture-proof housing, which makes it applicable for work in the field; large operating frequency range; maximum working clearance up to 10mm; Bluetooth connection; the ability to control products with high surface roughness, up to Rz320 class; light and sound indication of defect detection; wide operating temperature range from –30°C to +50°C; autonomous low-voltage power supply; long continuous operation time from one set of batteries; compliance with the standard GOST R ISO 15549-2009 (ISO 15549:2008). The use of a microprocessor-based hardware and software platform provide it with the following operational characteristics: automatic adjustment when measuring conditions change, including compensating the influence of the gap; built-in calibration modes; saving the measurement results in the internal memory of the device; a large number of stored programs: sets of parameters and measurement modes, both preset and saved by the user so as to repeatedly monitor the same type of products; The Bluetooth 2.0 wireless communication module allows the device to be used in conjunction with an external laptop or mobile device for remote control, transmission of measurement results for further storage, printing, documentation and analysis. Scope of application: The eddy current method is suitable for non-destructive testing and detection of microcracks in products and parts made of any metals and alloys of complex shape, with high surface roughness, through non-conductive coatings, as well as for checking welded joints. The flaw detector can be used to control parts and assemblies of aviation equipment. The VD-90NP eddy current flaw detector is used for quality control and preventive examination of: - components and parts of rolling stock at railway transport enterprises: wheel sets, auto coupler housings, side frames, spring beams, labyrinth rings, pulleys; - pipes, profiles, rods at rolling mills at the output control, and at the input control of consumers of products; - products made of aluminum and titanium alloys with multilayer coatings at enterprises of the aviation and aerospace industry; - cables, beams, critical components of equipment (cranes, lifts) in construction; - main pipelines in order to detect stress corrosion. A wide range of operating temperatures, dust and moisture protection (IP54 degree of protection), autonomous low-voltage power supply, a long time of continuous operation of the device allows it to be used in the field at low temperatures and under precipitation (rain, snow). Basic kit: • 1 electronic unit for the VD-90NP eddy current flaw detector; • 1 Ia5.125.052 (Type-2) eddy current converter; • 1 converter cable; • 1 charger with batteries; • 1 hand strap; • 1 Ia8.896.104 sample with artificial defects; • 1 Ia8.896.035 coating sample; • 1 storage and carrying case; • 1 documentation set.
Produced in: Moscow
Blue DPSS Laser 445nm KLM-445-x
Blue DPSS Laser 445nm KLM-445-x
DPSS lasers of the KLM-445/x series are optimal sources of coherent radiation for the construction of control and automation systems, alignment and marking devices, for scientific and medical purposes. Technical specifications Radiation output power: up to 120W Radiation wavelength: 445 nm Output beam diameter: 1.5mm Divergence of the radiation beam: 1.3 mrad Instability of radiation power: 5% Type of modulation: TTL or analog Time to enter the mode: 15min Spectral line width: 0.1nm
FTI-Optronik
Saint Petersburg
Produced in: Saint Petersburg
IPEP-1 Electrostatic Field Parameter Meter
IPEP-1 Electrostatic Field Parameter Meter
Designed to measure the potentials of electrostatically charged objects, the strength of the electrostatic field and the surface density of electric charges. Technical specifications: Measuring range 0.02-50 kV The error is 5-10% The intensity of the electrostatic field Measuring range 2-1000 kV/m Error 5% Surface density of electric charges Measuring range 0.02-10 µcl/m2 Error 5% Measurement of the electrostatic field strength (2-1000 kV/m) Measurement of the potential of charged objects (0.02–50 kV) Measurement of surface charge density (2x10-8–1x10-5Kl/m2) Measurement error ±(5-10) % Laser pointer of the distance to the object (2, 10 cm) 3.5-digit indicator (LCD with image flip) RS-232C interface Dimensions, weight 40x106x268 mm, 0.7 kg Built-in battery for 8 hours of operation Power supply: ~220, 5 VA, 4.5–5.5 VA battery
MNIPI
Minsk
Produced in: Belarus, Minsk
Optical Transceiver WDM OC-12/STM-4 (622 Mbps)
Optical Transceiver WDM OC-12/STM-4 (622 Mbps)
from 5 373 ₽
Optical transceivers are available in 9-pin plastic cases with a combined optical input/output for SC type connectors.
FTI-Optronik
Saint Petersburg
Produced in: Saint Petersburg