Computers and modern gadgets

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Manufacturer TM "Infrakar" is a manufacturer of multifunctional devices such as a gas analyzer and a smoke meter.

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The price list does not contain the entire range of products offered. You can find out prices for goods not included in the price list by contacting the managers. You can also get detailed information from our managers on how to cheaply and profitably buy measuring instruments wholesale and retail. Telephone and email for consultations on purchasing, delivery or receiving a discount are listed above the product description. We have the most qualified employees, high-quality equipment and competitive prices.

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The META plant is a manufacturer of the most reliable instruments for technical inspection. The STM brake tester is produced at this plant.

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At the customer's request, verification or metrological certification is provided for each measuring device. Our employees can represent your interests in such metrological organizations as Rostest (Rosstandart), Gosstandart, Gospotrebstandart, CLIT, OGMetr.

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LLC "Zapadpribor" is a supplier of ammeters, voltmeters, wattmeters, frequency meters, phase meters, shunts and other instruments from such measuring equipment manufacturers as: PA "Electrotochpribor" (M2044, M2051), Omsk; OJSC Instrument-Making Plant Vibrator (M1611, Ts1611), St. Petersburg; OJSC Krasnodar ZIP (E365, E377, E378), LLC ZIP-Partner (Ts301, Ts302, Ts300) and LLC ZIP Yurimov (M381, Ts33), Krasnodar; JSC “VZEP” (“Vitebsk Plant of Electrical Measuring Instruments”) (E8030, E8021), Vitebsk; JSC "Electropribor" (M42300, M42301, M42303, M42304, M42305, M42306), Cheboksary; JSC "Electroizmeritel" (Ts4342, Ts4352, Ts4353) Zhitomir; PJSC "Uman plant "Megommeter" (F4102, F4103, F4104, M4100), Uman.

And one more thing: K71 polystyrene is not the best. You can try K70-7. This is foil polystyrene (and not sprayed like K71), the only thing is that its dimensions are rather large.
Alexey Shalin

PMs play well in filters.


Of the polystyrene ones, the most successful are foil K71-4, K71-5 and PM, the worst are K71-7 (due to the very low quality of winding of the original capacitor
elements)


It doesn't have the same type. In general, K71-7 is a very poor choice for a shunt capacitor. they often consist of several sections connected in parallel to adjust the container during production. The quality of the sections themselves, incl. dielectric breaks during winding are extremely low. Because of this, they have a significant number of resonant frequencies even in the audio range, and although the quality factor of such “circuits” is low, they have a very detrimental effect on the audible result.
In this regard, containers of types PM, K71-4, K71-5 are much better, and Wima FKP is even better.


K71 (polystyrene) - not detailed enough and a bit dirty


Tell me, what is the sound of the MPGTM 1 µF capacitors at 250 V that are in the P-40 radar? Maybe someone has encountered this?
They are in a gray case, large, with military approval.
What is the material of the electrical material?
Class of 1966.

This is polystyrene. Similar to MPGC. I don't like that sound too much.


In short, not for everybody. Or who will fit into the system.
Shalin

Has anyone tried MPG? It’s a very good thing, you just need to pull the guts out of the iron case and replace the leads with a twisted pair wire or PET-200 wire. You just need to solder carefully so that the polystyrene does not melt.

What kind of air conditioner is C5 - 40 microfarads. in displacement? I really need this place
Everyone likes K71-4 3.3 µF x 160 V.
Uri

Of the polystyrene ones, K71-7 is the worst, both in terms of objective quality (losses, absorption) and sound. K70-8 b K71-4, K71-5 are much better.
but all domestic capacitors suffer from one drawback - the low quality of mechanical winding of the capacitive element, which determines both mechanical and electrical resonances in the audio range.
lynx

> Posted by sashkooo

> who can say anything about K71-7 as a separator??

I haven’t tried it as a separator, but I’ve used it in a correction circuit in a lamp limit for vinyl. In principle, they play well, they are just accurate, there are 1% and even 0.5%. Those with a larger capacity sometimes bypassed the electrolytes in the power supply. The voltage is just too low.
Triod

If only he could fit in. K71-4 is better than any foreign car. Definitely. At least in the price category up to $50 per case. (to pass)
Odessa

> How does the K71-4 sound compared to the K71-7 to your ears?

No matter how much I poked at the K71-7, nothing good came of it.
But I like K71-4, I really like it. Now they are standing
last in a fixed displacement, that is, according to the variable short-circuit
draw the end of the interstage secondary to the ground. Maybe I'll leave it like that. We are talking about capacitors K71-4 3.3 microfarads x 160 V.
To be honest, they really surprise me. All my attempts
connect the film with electrolytes or paper capacitors
in anode feeding were unsuccessful. Namely, these, precisely in this place, give an amazing result (in front of them is a P-filter from MBGO).
So I highly recommend trying K71-4.
Good luck, Yura. Uri

I really like PM-type polystyrene in correction circuits, but no matter how much I tried to use K71-7, I eventually removed it from everywhere. I'll definitely try K71-4.


Sincerely,
Igor semigor

What I know well about the use of polystyrene: in RIAA correctors the best “CIS-available” styrene is PO Riga RZ (yes, but they were almost swept out), and K70-7 (this is also foil, not to be confused with K71-7 , which is not like that); in AC filters - again K70-7, a little worse - K71-4.
Igor Gaponov

MPGT is foil polystyrene - thick foil and the same dielectric.
You need to listen first, and then decide whether to make boxes out of them
Shalin

Yes, I liked MBGT too...
Eduard Rusanov

> Is K70-7 still polystyrene?

All manufacturers AAT AB Semicon ABB Abracon Accutek Actel Adaptec A-Data Advanced Micro Systems Advanced Photonix Aeroflex Agere Agilent AHA AIC Aimtec AKM ALD ALi Allegro Alliance Alpha Alpha Micro. Alpha&Omega Altera AMCC AMD AME American Bright LED AMI AMICC Amplifonix AMS AMSCO Anachip Anadigics Anadigm Analog Devices Analogic AnalogicTech Anaren Andigilog Anpec Apex API Delevan Aplus A-Power APT Arizona Microtek ARM Artesyn ASI Asiliant ASIX Astec ATMEL AudioCodes AUK Auris Austin Authentec Avalon Photonics AverLogic AV G AvicTek AVX AZ Displays B&B Electronics Barker Microfarads BCD BEL Fuse BI Tech. Bicron BitParts Bivar Boca Bookham Bourns Broadcom BSI Burr-Brown Bytes C&D CalCrystal Calex CalMicro Calogic Capella Carlo Gavazzi Catalyst CDI Diodes CDIL CEL Centillium Central Century Ceramate Cermetek CET Cherry Chinfa Chingis Chipcon Chrontel Cirrus CIT Clairex Clare C-Media CML CML Micro Cologne Comchip Composite Modules Conexant Connor-Winfield COSEL COSMO Cree Crydom CSR CTS Cyntec Cypress Cystech Daesan Daewoo DAICO Dallas Data Delay Datel DB Lectro DCCOM Delta Densei-Lambda Dialight Digital Voice Sys Diodes Dionics Diotec DPAC Dynex EIC Eichhoff E-Lab Elantec Electronic Devices EliteMT ELM Elmos Elpida EM Microelectronic EMC Enpirion E-OEC Eon Silicon EPCOS EPSON Ericsson ESS Tech. E-Tech Etron Eudyna Eupec Everlight Exar Excelics ExcelSemi Fagor Fairchild FCI Filtran Filtronic Fitpower Formosa Fox Electronics Freescale Frequency Devices Frequency Management FTDI Chip Fuji Fujitsu Galaxy Gamma GEC General Semiconductor Genesis Microchip Genesys Logic Gennum GHzTech Gilway G-Link GMT Golledge GOOD-ARK Grayhill Green Power GSI Hamamatsu Hanamicron Hanbit Harris HB HexaWave Hifn High Tech Chips Hirose Hi-Sincerity Hitachi Hitachi Metals Hittite HN Electronic Holtek HoltIC Honeywell Humirel HV Component Hynix Hytek Hyundai IBM IC Haus ICC I-Chips ICOM ICSI ICST IDT IK Semi. IMP Impala Infineon Initio InnovASIC Int Power Sources INTEL InterFET Interpion Interpoint Intersil Intronics IOtech IRF Isahaya ISD Isocom ISSI ITE Itran ITT IXYS Jess JGD Jiangsu Kawasaki KEC Kemet Kentron King Billion Kingbright Knox KOA Kodak Kodenshi Kyocera Kinseki Lambda Lattice Ledtech LEDtronics Legerity LEM Leshan Radio Level One LG Linear Linear Dimensions Designs Linear IS Lite-On Littelfuse Logic Devices LSI LSI Logic Lumex M.S. Kennedy M/A-COM Macroblock Macronix MagnaChip Marktech Martek Power Marvell MAS Oy MAXIM Maxwell MAZeT MCC MCE KDI MDTIC Melexis Memphis Memsic Micrel Micro Electronics Micro Linear Microchip MicroMetrics Micron Micronas Micronetics Wireless Micropac Microsemi Mimix Mindspeed Mini-Circuits Minilogic Minmax MIPS Mitel Mitsubishi Mitsumi MOSA Mosel Mospec MoSys Motorola M-pulse MtronPTI Murata Music Myson Nais NanoAmp Nanya National Instruments National Semiconductor NEC NEL NetLogic NeuriCam NHI Nichicon NIEC NJRC Noise/Com Nordic VLSI Novalog Novatek NPC NTE NTT NVE NVIDIA O2Micro Octasic OEI OKI OmniVision Omron ON Semiconductor OPTEK Opto Diode Optolab Optrex OSRAM OTAX Oxford MDi Pacific Mono Pan Jit Panasonic Para Light Patriot Scientific PCA PEAK Peregrine Performance Tech. Pericom PerkinElmer PhaseLink Philips Picker Pixim PLX PMC-Sierra PMD Motion Polyfet Power Innovations Power Integrations Power Semiconductors Powerchip Powerex Power-One Powertip Precid-Dip Promax-Johnton Pronics Protek PTC Pulse Pyramid QLogic QT Qualcomm Quantum QuickLogic R&E Raltron Ramtron Raytheon RD Alfa RDC Realtek Recom Rectron Renesas RF Monolithics RFE RFMD Rhopoint RichTek RICOH Rohm Rubycon Saifun SAMES SamHop Samsung SanDisk Sanken SanRex Sanyo SCBT Seiko SemeLAB Semicoa Semikron SemiWell Semtech Sensitron Sensory Shanghai Lunsure Shanghai Lunsure SHARP Shindengen Siemens SiGe SigmaTel Signetics Silan Silicon Image Silicon Lab. Silicon Power Siliconians Silonex Simtek Sipex Sirenza SiRF Sitronix Skyworks SLS Smartec SMSC Solid State Solitron Solomon Systech SONiX SONY Spansion SSDI SSE SST Stanford Stanley Stanson Statek STATS STMicroelectronics Sumida Summit SunLED Supertex Surge Sussex Swindon Symmetricom Synergy Synsemi Syntec System General Systron Donner Tachyonics Taiyo Yuden Talema TAOS inc TDK Teccor Tekmos TelCom Teledyne Temex TEMIC Thaler THAT Thermtrol THine TI TLSI TMT TOKO Tontek Topro Torex Toshiba Total Power Traco Transmeta Transys Trinamic Tripath TriQuint Triscend TSC Turbo IC Ubicom UMC UMS Unisem Unitra UOT Us Digital USHA UTC Utron Vaishali Valpey-Fisher Varitronix Vectron VIA Vicor VIS Vishay Vitesse Voltage Multipliers Waitrony WDC WEDC Weida Weitron Weltrend Westcode Winbond Wing Shing Winson Winstar Wisdom WJ Wolfgang Knap Wolfson WTE Xecom Xicor Xilinx YAMAHA Yellow Stone YEONHO Zarlink Z-Communications Zenic Zetex Zettler Zilog ZMD Zoran Zowie

From 10.08.2019 to 07.09.2019 technical break.
We will resume accepting parcels from 09/08/2019.

Catalog of radio components with photos that are currently not suitable for scrap

It is worth explaining that at the moment, the market for purchasing radio components is in demand for parts with the so-called high and medium content of precious metals in their composition.

Parts with a reduced content are not particularly needed and are called cuttings from boards. The fact is that at present, practically no organization buys cuttings from boards. There are quite a lot of parts with high and medium content and no one wants to bother with the so-called substandard ones. This situation will most likely change in the near future, because the volumes of purchased radio scrap will fall every year and in order to maintain a certain level, organizations will still have to buy other radio components, which most of them are now turning away from.

Therefore, here are photos of radio parts and components with appropriate comments: Waiting. And also photos of radio components that are already starting to be accepted with the Buy mark. The price for such used radio components will be calculated per kilogram.

It is worth noting that there are parts whose recycling is not economically feasible. Next to the photo there will be a note Not profitable. See some markings of radio components that cannot be recycled.

Other radio components are suitable for recycling, some to a greater extent, others to a lesser extent. And the only question is when other private enterprises, as well as organizations for purchasing, primary processing and preparation of parts for refining at factories, will begin to purchase them.

According to the calculations presented here, radio components will be in greater demand in 3-5 years, possibly earlier. Some companies began to introduce new items in the price list for radio components for parts with a reduced content of precious metals in their composition. But so far these are isolated cases that show that a start has been made.

We start with the most common radio components - capacitors of various designs, produced in the Soviet Union.

Photos of radio components from printed circuit boards, capacitors

All materials on this site are subject to copyright (including design). Copying, distribution, including by copying to websites on the Internet, or any other use of information and objects without the prior consent of the copyright holder is prohibited.

Appearance Marking Appearance Marking
!}
High voltage
!}
Ceramic capacitors. Expectation.
!} Tantalum or niobium capacitors
K53-22. Expectation.
!}
Ceramic
!}
Ceramic capacitors. Expectation.
!}
Expectation.
!}
Capacitors produced by CMEA
!}
Analogues of capacitors K53-19. Tantalum or niobium. Expectation.
!}
!}
Capacitors produced by CMEA. Expectation.
!}
Metal paper capacitors. Analogues of MBM. Not profitable.
!}
Ceramic capacitors. Expectation.
!}

terephthalate. Expectation.
!}
Capacitors made in the USSR. Expectation.
!}
Polyethylene foil capacitors
terephthalate. Expectation.
!}
Soviet capacitors. Expectation.
!}
!}
Mica capacitors. Expectation.
!}
Film capacitors. Not profitable.
!}
Capacitors polyethylene
low-voltage terephthalate. Expectation.
!}
Polyethylene foil capacitors
terephthalate. Expectation.
!}
Analogue of capacitors KD-1, KD-2. Expectation.
!}
Mica capacitors. Epoxy body. Expectation.
!}
Imported ceramic capacitors. Analogue K10-7. Expectation.
!}
Capacitors polyethylene
terephthalate metallized. Expectation.
!} KD
Ceramic disk capacitors. Expectation.
!}
Sealed mica capacitors. Not profitable.
!}

terephthalate. Expectation.
!} KT-1, KT-2, KTK
Tubular ceramic capacitors. Material: Ag. Purchase
!}
Small-sized metal paper capacitors. Not profitable.
!}
Glass ceramic capacitors. Expectation.
!}
Ceramic capacitors, “Flags”, produced in the USSR. Expectation.
!}
Sealed paper capacitors. Not profitable.
!}
Polyethylene film capacitors
terephthalate. Expectation.
!}
!}
Capacitors made in the USSR. Expectation.
!}
Metallized capacitors. Expectation.
!}
High voltage ceramic capacitors. Expectation.
!}
Low frequency paper capacitors. Not profitable.
!}
Polyethylene film capacitors
terephthalate. Expectation.
!}
Low-frequency varnish-film capacitors. Expectation
PM-1
Small-sized polystyrene capacitors. Expectation.
!}
Capacitors made in the USSR. Expectation.
!}
Electrolytic aluminum capacitors. Not profitable.
!}
Pressed mica capacitors. Ag. Expectation.
!}
Capacitors made in the USSR. Expectation.
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3.1. Consent of the subject of personal data to the processing of his personal data
The subject of personal data decides to provide his personal data and consents to their processing freely, of his own free will and in his own interest. Consent to the processing of personal data can be given by the subject of personal data or his representative in any form that allows confirmation of the fact of its receipt, unless otherwise provided by federal law. The obligation to provide evidence of obtaining the consent of the subject of personal data to the processing of his personal data or proof of the existence of the grounds specified in Federal Law-152 rests with the Operator.

3.2. The subject of personal data has the right to receive from the Operator information regarding the processing of his personal data, unless such right is limited in accordance with federal laws. The subject of personal data has the right to demand from the Operator clarification of his personal data, blocking or destruction of it if the personal data is incomplete, outdated, inaccurate, illegally obtained or is not necessary for the stated purpose of processing, as well as take measures provided by law to protect his rights . Processing of personal data for the purpose of promoting goods, works, and services on the market by making direct contacts with potential consumers using means of communication, as well as for the purposes of political propaganda, is permitted only with the prior consent of the subject of personal data.

The specified processing of personal data is considered to be carried out without the prior consent of the subject of personal data, unless the Company proves that such consent has been obtained. The operator is obliged to immediately stop, at the request of the personal data subject, the processing of his personal data for the above purposes.

It is prohibited to make decisions based solely on automated processing of personal data that give rise to legal consequences in relation to the subject of personal data or otherwise affect his rights and legitimate interests, except in cases provided for by federal laws, or with the written consent of the subject of personal data.

If the subject of personal data believes that the Operator is processing his personal data in violation of the requirements of Federal Law-152 or otherwise violates his rights and freedoms, the subject of personal data has the right to appeal the actions or inaction of the Operator to the Authorized Body for the Protection of the Rights of Personal Data Subjects or in court .

The subject of personal data has the right to protect his rights and legitimate interests, including compensation for losses and (or) compensation for moral damage in court.

4. ENSURING THE SECURITY OF PERSONAL DATA

The security of personal data processed by the Operator is ensured by the implementation of legal, organizational and technical measures necessary to ensure the requirements of federal legislation in the field of personal data protection.
To prevent unauthorized access to personal data, the Operator applies the following organizational and technical measures:
appointment of officials responsible for organizing the processing and protection of personal data;
limiting the number of persons who have access to personal data;
familiarization of subjects with the requirements of federal legislation and regulatory documents of the Operator for the processing and protection of personal data;
organization of accounting, storage and circulation of information carriers;
identification of threats to the security of personal data during their processing, generation of threat models based on them;
development of a personal data protection system based on a threat model;
checking the readiness and effectiveness of using information security tools;
restriction of user access to information resources and software and hardware for information processing;
registration and recording of actions of users of personal data information systems;
use of anti-virus tools and recovery tools for the personal data protection system;
application, where necessary, of firewalling, intrusion detection, security analysis and cryptographic information protection tools;
organization of access control to the Operator’s territory, security of premises with technical means for processing personal data.

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