Debes estar logueado
-
moreX
-
Componentes
-
-
Category
-
Semiconductores
- Diodos
- Tiristores
-
Módulos con aislamiento eléctrico
- Módulos con aislamiento eléctrico | VISHAY (IR)
- Módulos con aislamiento eléctrico | INFINEON (EUPEC)
- Módulos con aislamiento eléctrico | Semikron
- Módulos con aislamiento eléctrico | POWEREX
- Módulos con aislamiento eléctrico | IXYS
- Módulos con aislamiento eléctrico | POSEICO
- Módulos con aislamiento eléctrico | ABB
- Módulos con aislamiento eléctrico | TECHSEM
- Go to the subcategory
- Rectificadores de puente
-
Transistores
- Transistores | GeneSiC
- Módulos SiC MOSFET | Mitsubishi
- Módulos SiC MOSFET | STARPOWER
- Módulos ABB SiC MOSFET
- Módulos IGBT | MITSUBISHI
- Módulos de transistores | MITSUBISHI
- Módulos MOSFET | MITSUBISHI
- Módulos de transistores | ABB
- Módulos IGBT | POWEREX
- Módulos IGBT | INFINEON (EUPEC)
- Elementos semiconductores de carburo de silicio (SiC)
- Go to the subcategory
- Controladores de puerta
- Bloques de energía
- Go to the subcategory
-
Convertidores de corriente y tensión LEM
-
Transductores de corriente | LEM
- Transductor de corriente con bucle de retroalimentación cerrado (C / L)
- Transductor de corriente con bucle de retroalimentación abierto (O / L)
- Transductor de corriente alimentado por voltaje unipolar
- Transductores en tecnología Eta
- Transductores de corriente de alta precisión serie LF xx10
- Transductores de corriente de la serie LH
- HOYS y HOYL: dedicados para el montaje directamente en un riel conductor
- Convertidores de corriente en la tecnología SMD de las series GO-SME y GO-SMS
- Transductores de corriente AUTOMOCIÓN
- Go to the subcategory
-
Transductores de voltaje | LEM
- Convertidores de voltaje de la serie LV
- Convertidores de voltaje de la serie DVS
- Convertidores de tensión de precisión con doble núcleo magnético serie CV
- Convertidores de tensión de precisión con doble núcleo magnético serie CV
- Convertidores de voltaje de la serie DVM
- Transductor de voltaje - DVC 1000-P
- Transductores de voltaje - Serie DVC 1000
- Go to the subcategory
- Transductores de corriente de precisión | LEM
- Go to the subcategory
-
Transductores de corriente | LEM
-
Componentes pasivos (condensadores, resistencias, fusibles, filtros)
- Resistencias
-
Fusibles
- Fusibles miniatura para circuitos electrónicos, serie ABC y AGC
- Fusibles tubulares de acción rápida
- Eslabones fusibles de retardo de tiempo con características GL / GG y AM
- Eslabones fusibles ultrarrápidos
- Fusibles de acción rápida (estándar británico y estadounidense)
- Fusibles de acción rápida (estándar europeo)
- Fusibles de tracción
- Eslabones fusibles de alto voltaje
- Go to the subcategory
-
Condensadores
- Condensadores de motor
- Condensadores electrolíticos
- Condensadores de película
- Condensadores de potencia
- Condensadores para circuitos de CC
- Condensadores de corrección del factor de potencia
- Condensadores de alto voltaje
- Condensadores de calentamiento por inducción
- Condensadores de almacenamiento de energía y pulsos
- Condensadores de ENLACE CC
- Condensadores para circuitos AC/DC
- Go to the subcategory
- Filtros EMI
- Supercondensadores
-
Protección contra sobretensiones
- Protección contra sobretensiones para aplicaciones coaxiales
- Protección contra sobretensiones para sistemas de videovigilancia
- Protección contra sobretensiones para cableado de potencia
- Pararrayos para LED
- Descargadores de sobretensiones para energía fotovoltaica
- Protección del sistema de pesaje
- Protección contra sobretensiones para Fieldbus
- Go to the subcategory
- Go to the subcategory
-
Relés y contactores
- Teoría de relés y contactores
- Relés semiconductores de CA trifásicos
- Relés semiconductores de CA trifásicos
- Reguladores, controles y accesorios
- Arranques suaves y contactores de inversión
- Relés electromecánicos
- Contactores
- Interruptores giratorios
-
Relés semiconductores de CA monofásicos
- Relés semiconductores CA monofásicos, serie 1 | D2425 | D2450
- Relés semiconductores CA monofásicos, series CWA y CWD
- Relés semiconductores CA monofásicos de las series CMRA y CMRD
- Relés semiconductores de CA monofásicos, serie PS
- Relés semiconductores de CA dobles y cuádruples, serie D24 D, TD24 Q, H12D48 D
- Relés de estado sólido monofásicos, serie gn
- Relés semiconductores de ca monofásicos, serie ckr
- Relés AC monofásicos SERIE ERDA Y ERAA para carril DIN
- Relés AC monofásicos para corriente 150A
- Relés dobles de estado sólido integrados con disipador de calor para carril DIN
- Go to the subcategory
- Relés semiconductores CA monofásicos para PCB
- Relés de interfaz
- Go to the subcategory
- Núcleos y otros componentes inductivos
- Radiadores, varistores, protecciones térmicas
- Aficionados
- Aire Acondicionado, Accesorios para Armarios Eléctricos, Neveras
-
Baterías, cargadores, fuentes de alimentación de búfer e inversores
- Baterías, cargadores - descripción teórica
- Baterías de iones de litio. Baterías personalizadas. Sistema de gestión de batería (BMS)
- Pilas
- Cargadores de baterías y accesorios
- Fuente de alimentación de respaldo de UPS y fuentes de alimentación de búfer
- Convertidores y accesorios para fotovoltaica
- Almacen de energia
- Celdas de combustible
- Baterías de iones de litio
- Go to the subcategory
-
Automaticas
- Futaba Drone Parts
- Finales de carrera, microinterruptores
- Sensores, transductores
- Pirometría
- Contadores, temporizadores, medidores de panel
- Dispositivos de protección industrial
- Señalización luminosa y sonora
- Cámara termográfica
- Pantallas LED
- Botones e interruptores
-
Grabadores
- Grabadora AL3000
- Grabadora KR2000
- Grabadora KR5000
- Medidor HN-CH con función de registro de humedad y temperatura
- Consumibles para registradores
- Grabadora 71VR1
- Grabadora KR 3000
- Grabadores de PC de la serie R1M
- Grabadores de PC de la serie R2M
- Grabador de PC, 12 entradas aisladas - RZMS-U9
- Grabador de PC, USB, 12 entradas aisladas - RZUS
- Go to the subcategory
- Go to the subcategory
-
Cables, alambres Litz, conductos, conexiones flexibles
- alambres
- cables Litz
-
Cables para aplicaciones especiales
- Los cables de extensión y compensación
- Cables para termopares
- Los cables de conexión a PT czyjnków
- Multicore cables temp. -60 ° C a + 1400 ° C
- cables de media tensión SILICOUL
- ignición alambres
- Los cables calefactores
- temp núcleo único. -60 ° C a + 450 ° C
- conductores de trenes
- El calentamiento de los cables en el Ex
- Go to the subcategory
- camisas
-
trenzas
- trenzas planas
- trenzas ronda
- trenza muy flexible - plana
- trenza muy flexible - Ronda
- Copper cilíndrico trenzado
- Copper protector de la trenza y cilíndrica
- cintas de conexión flexibles
- Trenzas cilíndrico galvanizado y acero inoxidable
- Aislamiento de PVC trenzas de cobre - Temperatura 85 ° C
- aluminio trenzado plano
- Kit de conexión - trenzas y tubos
- Go to the subcategory
- Accesorios para la tracción
- Terminales de cable
- barras flexibles aisladas
- carril flexible multicapa
- sistemas de gestión de cables
- Conductos, tuberías
- Go to the subcategory
- View all categories
-
Semiconductores
-
-
- Suppliers
-
Applications
- Accionamientos de CA y CC (inversores)
- Automatización HVAC
- Automatización industrial
- Automatización industrial
- Calentamiento por inducción
- Componentes para atmósferas potencialmente explosivas (EX)
- Dispositivos de protección industrial
- Energy bank
- Equipos para Armarios de Distribución, Control y Telecomunicaciones
- Fuentes de alimentación (UPS) y sistemas rectificadores
- Impresión
- Máquinas de soldar y máquinas de soldar
- Máquinas herramientas CNC
- Máquinas para secar y procesar madera
- Máquinas para termoformado de plásticos
- Medición y regulación de temperatura
- Medición y regulación de temperatura
- Minería, metalurgia y fundación
- Motores y transformadores
- Tracción de tranvía y ferrocarril
-
Instalación
-
-
Montaż urządzeń
- Instalación de armarios
- Diseño y montaje de armarios
- Instalación de sistemas de energía
- Componentes
- Máquinas construidas por encargo
- Trabajo de investigación y desarrollo de I+D.
-
Probadores industriales
- Probadores de semiconductores de potencia
- Comprobadores de aparatos eléctricos
- Comprobadores de varistores y descargadores de sobretensiones
- Probador de fusibles automotriz
- Probador qrr para medir cargas transitorias en tiristores y diodos de potencia
- Comprobador de rotores de interruptores automáticos de la serie FD
- Comprobador de auditoría de dispositivos de corriente residual
- Probador de calibración de relés
- Probador de pruebas visuales de vástagos de resortes de gas
- Interruptor de tiristor de alta corriente
- Probador de rotura de malla
- Go to the subcategory
- View all categories
-
-
-
Inductores
-
-
Modernizacja induktorów
- Reparación de inductores usados
- Modernización de inductores
-
Producción de nuevos inductores.
- Endurecimiento de cigüeñales
- Endurecimiento de los dientes de la sierra de cinta
- Calentamiento de elementos antes de pegar
- Endurecimiento de pistas de rodadura de cojinetes de cubo de rueda de automoción
- Endurecimiento de los componentes de la transmisión motriz
- Endurecimiento de ejes escalonados
- Calentamiento en juntas de contracción
- Endurecimiento de escaneo
- Soldadura blanda
- Calentadores de palanquilla
- Go to the subcategory
- Base de conocimientos
- View all categories
-
-
-
Dispositivos de inducción
-
-
Urządzenia indukcyjne
-
Generadores de calentamiento por inducción
-
Generadores de calentamiento por inducción Ambrell
- Generadores: potencia 500 W, frecuencia 150-400 kHz
- Generadores: Potencia 1,2 - 2,4 kW, frecuencia 150 - 400 kHz
- Generadores: potencia 4.2 - 10 kW, frecuencia 150 - 400 kHz
- Generadores: potencia 10-15 kW, frecuencia 50-150 kHz
- Generadores: potencia 30-45 kW, frecuencia 50-150 kHz
- Generadores: potencia 65-135 kW, frecuencia 50-150 kHz
- Generadores: potencia 180-270 kW, frecuencia 50-150 kHz
- Generadores: potencia 20-35-50 kW, frecuencia 15-45 kHz
- Generadores: cнага 75-150 кВ, фреквенција 15-45 кХз
- Generadores: potencia 200-500 kW, frecuencia 15-45 kHz
- Generadores: potencia 20-50 kW, frecuencia 5-15 kHz
- Go to the subcategory
- Generadores de calentamiento por inducción Denki Kogyo
-
Generadores de calentamiento por inducción JKZ
- Generadores de la serie CX, frecuencia: 50-120kHz, potencia: 5-25kW
- Generadores de la serie SWS, frecuencia: 15-30kHz, potencia: 25-260kW
- Generadores (hornos) para conformar y forjar serie MFS, frecuencia: 0.5-10kHz, potencia: 80-500kW
- Hornos de fusión MFS, frecuencia: 0,5-10 kHz, potencia: 70-200 kW
- Generadores de la serie UHT, frecuencia: 200-400kHz, potencia: 10-160kW
- Go to the subcategory
- Generadores de lámparas para calentamiento por inducción
- Generadores de calentamiento por inducción Himmelwerk
- Go to the subcategory
-
Generadores de calentamiento por inducción Ambrell
- Reparaciones y modernización
- Periféricos
-
Aplicaciones
- Aplicaciones médicas
- Aplicaciones para la industria automotriz
- Soldadura blanda
- Soldadura
- Soldadura fuerte de aluminio
- Soldadura de herramientas magnéticas de acero inoxidable
- Soldadura de precisión
- Soldadura fuerte en atmósfera protectora
- Soldadura de tapas de disipadores de calor de latón y acero
- Soldadura de carburos sinterizados
- Soldar la punta de cobre y el cable
- Go to the subcategory
- Base de conocimientos
- View all categories
-
Generadores de calentamiento por inducción
-
-
-
Servicio
-
-
asd
- Servicio de enfriadores de agua y aires acondicionados industriales
- Reparaciones y modernización de máquinas
-
Reparaciones de electrónica de potencia, electrónica y dispositivos de automatización
- Servicio de inversores, servoaccionamientos y reguladores DC
- Servicio de inversores fotovoltaicos
- Servicio de rectificadores de galvanoplastia FLEXKRAFT
- Oferta de reparación de equipos
- Lista de dispositivos reparados
- Reparación de máquinas de laminado de billetes
- Normativa para la reparación de dispositivos.
- Go to the subcategory
- Fuentes de alimentación de alto voltaje para precipitadores electrostáticos
- Impresoras y etiquetadoras industriales
- Certificates / Entitlements
- View all categories
-
-
- Contact
- Zobacz wszystkie kategorie
Las fotos son solo para fines informativos. Ver especificaciones de producto
please use latin characters
Reparación, modernización, generadores de transistores, generadores de tubo, triodo, generación de lámparas
Repair and modernization of high frequency tube generators
Tube generators
Tube generator (the lamp is a triode) are devices used for surface heat treatment with a working frequency from 100kHz to 4MHz. However, the most common devices in the industry work with a frequency of about 400kHz. By modernizing lamp generators, it is important to exchange essential components of the device. The replacement of these components is aimed at repairing or improving the functioning of the device in a technical sense as well as achieving better technological effects by these devices. Generators subject to modernization are usually devices designed and constructed by both domestic and foreign producers in the 50's, 60's, 70's and 80's of the last century. Tube generators are now often (due to the fact that high-speed semiconductor switches have appeared on the market) replaced by transistor generators (with IGBT or MOSFET type transistors).
The advantages of transistor generators
Transistor generators have the following advantages:
- Greater efficiency by approx. 20% (transistor converter: 90% -95%, triode: 70% -75%).
- Lower and safer work (transistor generator: approx. 0.5kV, tube generator: approx. 10kV).
- Cheaper transistor bridges at a relatively high cost of the generation lamp. The limited life span of the triode, although with proper operation, i.e. efficient protections and efficient water and air cooling systems, the work shall be guaranteed in a two-shift mode, even above 5 years.
- Very good operation (in terms of exploitation) in case of homogeneous heating in technological lines and in highly automated processes.
The advantages of tube generators
Tube generators have the following advantages:
- Generator lamp (triode) is resistant to all kinds of interferences and overloads (in semiconductor generators usually do damage transistor bridges, although their price is definitely lower than the price of triodes, but not without significance for operating costs though).
- Tube generator is a self-excited device, so that it is very versatile, i.e. it easily starts and works very well when overloaded and underloaded. In addition, it does not require any special adjustments when changing the inductors as well as changes in the workpieces. It is very easy to heat the details from the outside as well as from the inside, flat surfaces like the teeth of the gears.
- In semiconductor generators, when changing inductors, the interference in the connections (taps) as well as adjusting the settings in the control panel is needed.
The construction of tube generators
Tube generator consists essentially of two blocks:
- High voltage power supply with output voltage adjustment from 0.5kV to 10kV.
- The proper generator system that works most often in a self-excited system of the Meissner, Hartley or Colpitts type.
The process of modernisation of generators
Modernization of generator should be considered in several aspects:
- In the high voltage power supplier.
- Substitution of a thyratron regulator with a thyristor controller and diode bridge (diode stacks):
- The safety of the device's operation is increased due to the operations at the level of the mains voltage, not the increased voltage.
- The accuracy of the output power regulation is significantly improved and the possibility of connecting to modern control panels and coupling with the entire heat treatment process line.
- After installing systems with increased sensitivity for overloading and other unfavorable working conditions, the durability and service life of components is improved.
- Installing a modern thyristor controller.
- The accuracy of the output control is significantly improved, and the ability to connect to modern control panels and interface with the entire heat treatment process line is achieved.
- Substitution of a thyratron regulator with a thyristor controller and diode bridge (diode stacks):
- In the system of the generator itself.
- Replacement of a generative lamp that is no longer produced, to the lamp that is easily available on the domestic market:
- Triodes used so far - they were usually triodes of domestic production, placed in a special cooling jacket (or pot). Currently produced lamps have an integrated cooling system. It involves mechanical, hydraulic and electrical overbuilding. The advantage is the availability on the domestic market of a wide range of triodes with integrated cooling.
- Modernization of the resonant circuit:
- Rebuilding of the resonant circuit leads to an increase in electrical efficiency, reduction of thermal losses in the resonant circuit and increase in the output power of the device from a few to a dozen or so percent.
- Replacement of a generative lamp that is no longer produced, to the lamp that is easily available on the domestic market:
Conducting the modernization activities, means that tube generators produced several decades ago can still be very useful for applications even in technologically demanding heat treatment processes and with much smaller financial outlays than would be required by investments in modern transistor generators.
The DACPOL company offers a comprehensive selection of replacements for the non-manufactured LAMINA lamps: T-25W, T-25P, T26W/22, T26W/23, T-26P/22, T-26P/23, T-10P/22, T-12W/21, T-60W/12, T-60W/22, T-60V/12. We select the lamp, make a replacement and comprehensive service and start the generator.
The attached drawing shows the basic schematic diagram of the modernized GIS-10 generator; after modernization the generator was named GIS-10RT (RT - thyristor controller). Numerals (in a circle) 1, 3 indicate the high voltage power circuit of the high voltage power supply. The number 4 indicates the correct block of the induction generator. Figures 2 and 5 indicate the control, measuring, protecting and supplying cathodes of the triodes. GIS generators were produced in the 1960s and early 1970s at WAREL plants and after modernization they have been working successfully in small factories to this day. Prior to the modernization, the thyratron rectifier on the side of the 3TM1 high voltage transformer was used to regulate the power (3V1 diode rectifier is now in place). Modernization consisted in removing the thyratron controller and installing a 2U1 thyristor regulator with the 2U2 control panel and the diode rectifier (diode stacks) on the high voltage side 3V1. If necessary, the resonance system 4V1, 4T3, 4T4, 4T2 shall be modernized.
An example description of the modernisation
The modernization of the HFG / J40 generator was carried out in 2017 in FAMUR S.A. company that produce equipment for mining. Generator HFG/J40 was produced in 1962 in the austrian company ELIN. Its operating frequency: 400kHz, and power (guaranted by the manufacturer) on output terminal: 40kW. At the beginning of the 90s of the last century, the ELCAL company modernized the generator, which consisted of replacing the BBC triode, the triode of national production type T26W, and replacing the thyratron regulator with the thyristor regulator type: PRW 210/440 and rectifying diode stacks. Selected photos showing the device before modernization are presented below.
Modernization consisted of:
- Replacement of the lamp type T26W with the lamp type RD35ZM, available on the domestic market.
- Replacement of the lamp glow supply system.
- Replacement of the output transformer by an air transformer with a higher apparent power.
- Replacing the filter (replacement of high frequency choke and addition of low induction capacitors).
- Changing the old diode rectifier to a rectifier with a higher current load with a surge protector.
- Replacing the PRW 210/440 type regulator with a modern RP3 controller.
- Exchange overcurrent protectors.
- Use of water-cooled high current wires.
After modernization, the output power of the generator increased by approx. 20%.
Selected photos showing the device after modernization are presented below.
Envíe una consulta
¿Estás interesado en este producto? ¿Necesita información adicional o precios individuales?
Contacta con nosotras
Usted debe estar conectado
Repair and modernization of high frequency tube generators
Tube generators
Tube generator (the lamp is a triode) are devices used for surface heat treatment with a working frequency from 100kHz to 4MHz. However, the most common devices in the industry work with a frequency of about 400kHz. By modernizing lamp generators, it is important to exchange essential components of the device. The replacement of these components is aimed at repairing or improving the functioning of the device in a technical sense as well as achieving better technological effects by these devices. Generators subject to modernization are usually devices designed and constructed by both domestic and foreign producers in the 50's, 60's, 70's and 80's of the last century. Tube generators are now often (due to the fact that high-speed semiconductor switches have appeared on the market) replaced by transistor generators (with IGBT or MOSFET type transistors).
The advantages of transistor generators
Transistor generators have the following advantages:
- Greater efficiency by approx. 20% (transistor converter: 90% -95%, triode: 70% -75%).
- Lower and safer work (transistor generator: approx. 0.5kV, tube generator: approx. 10kV).
- Cheaper transistor bridges at a relatively high cost of the generation lamp. The limited life span of the triode, although with proper operation, i.e. efficient protections and efficient water and air cooling systems, the work shall be guaranteed in a two-shift mode, even above 5 years.
- Very good operation (in terms of exploitation) in case of homogeneous heating in technological lines and in highly automated processes.
The advantages of tube generators
Tube generators have the following advantages:
- Generator lamp (triode) is resistant to all kinds of interferences and overloads (in semiconductor generators usually do damage transistor bridges, although their price is definitely lower than the price of triodes, but not without significance for operating costs though).
- Tube generator is a self-excited device, so that it is very versatile, i.e. it easily starts and works very well when overloaded and underloaded. In addition, it does not require any special adjustments when changing the inductors as well as changes in the workpieces. It is very easy to heat the details from the outside as well as from the inside, flat surfaces like the teeth of the gears.
- In semiconductor generators, when changing inductors, the interference in the connections (taps) as well as adjusting the settings in the control panel is needed.
The construction of tube generators
Tube generator consists essentially of two blocks:
- High voltage power supply with output voltage adjustment from 0.5kV to 10kV.
- The proper generator system that works most often in a self-excited system of the Meissner, Hartley or Colpitts type.
The process of modernisation of generators
Modernization of generator should be considered in several aspects:
- In the high voltage power supplier.
- Substitution of a thyratron regulator with a thyristor controller and diode bridge (diode stacks):
- The safety of the device's operation is increased due to the operations at the level of the mains voltage, not the increased voltage.
- The accuracy of the output power regulation is significantly improved and the possibility of connecting to modern control panels and coupling with the entire heat treatment process line.
- After installing systems with increased sensitivity for overloading and other unfavorable working conditions, the durability and service life of components is improved.
- Installing a modern thyristor controller.
- The accuracy of the output control is significantly improved, and the ability to connect to modern control panels and interface with the entire heat treatment process line is achieved.
- Substitution of a thyratron regulator with a thyristor controller and diode bridge (diode stacks):
- In the system of the generator itself.
- Replacement of a generative lamp that is no longer produced, to the lamp that is easily available on the domestic market:
- Triodes used so far - they were usually triodes of domestic production, placed in a special cooling jacket (or pot). Currently produced lamps have an integrated cooling system. It involves mechanical, hydraulic and electrical overbuilding. The advantage is the availability on the domestic market of a wide range of triodes with integrated cooling.
- Modernization of the resonant circuit:
- Rebuilding of the resonant circuit leads to an increase in electrical efficiency, reduction of thermal losses in the resonant circuit and increase in the output power of the device from a few to a dozen or so percent.
- Replacement of a generative lamp that is no longer produced, to the lamp that is easily available on the domestic market:
Conducting the modernization activities, means that tube generators produced several decades ago can still be very useful for applications even in technologically demanding heat treatment processes and with much smaller financial outlays than would be required by investments in modern transistor generators.
The DACPOL company offers a comprehensive selection of replacements for the non-manufactured LAMINA lamps: T-25W, T-25P, T26W/22, T26W/23, T-26P/22, T-26P/23, T-10P/22, T-12W/21, T-60W/12, T-60W/22, T-60V/12. We select the lamp, make a replacement and comprehensive service and start the generator.
The attached drawing shows the basic schematic diagram of the modernized GIS-10 generator; after modernization the generator was named GIS-10RT (RT - thyristor controller). Numerals (in a circle) 1, 3 indicate the high voltage power circuit of the high voltage power supply. The number 4 indicates the correct block of the induction generator. Figures 2 and 5 indicate the control, measuring, protecting and supplying cathodes of the triodes. GIS generators were produced in the 1960s and early 1970s at WAREL plants and after modernization they have been working successfully in small factories to this day. Prior to the modernization, the thyratron rectifier on the side of the 3TM1 high voltage transformer was used to regulate the power (3V1 diode rectifier is now in place). Modernization consisted in removing the thyratron controller and installing a 2U1 thyristor regulator with the 2U2 control panel and the diode rectifier (diode stacks) on the high voltage side 3V1. If necessary, the resonance system 4V1, 4T3, 4T4, 4T2 shall be modernized.
An example description of the modernisation
The modernization of the HFG / J40 generator was carried out in 2017 in FAMUR S.A. company that produce equipment for mining. Generator HFG/J40 was produced in 1962 in the austrian company ELIN. Its operating frequency: 400kHz, and power (guaranted by the manufacturer) on output terminal: 40kW. At the beginning of the 90s of the last century, the ELCAL company modernized the generator, which consisted of replacing the BBC triode, the triode of national production type T26W, and replacing the thyratron regulator with the thyristor regulator type: PRW 210/440 and rectifying diode stacks. Selected photos showing the device before modernization are presented below.
Modernization consisted of:
- Replacement of the lamp type T26W with the lamp type RD35ZM, available on the domestic market.
- Replacement of the lamp glow supply system.
- Replacement of the output transformer by an air transformer with a higher apparent power.
- Replacing the filter (replacement of high frequency choke and addition of low induction capacitors).
- Changing the old diode rectifier to a rectifier with a higher current load with a surge protector.
- Replacing the PRW 210/440 type regulator with a modern RP3 controller.
- Exchange overcurrent protectors.
- Use of water-cooled high current wires.
After modernization, the output power of the generator increased by approx. 20%.
Selected photos showing the device after modernization are presented below.
Artículos relacionados
Su agradecimiento a la reseña no pudo ser enviado
Reportar comentario
Reporte enviado
Su reporte no pudo ser enviado
Escriba su propia reseña
Reseña enviada
Su reseña no pudo ser enviada