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- fusible térmico 32
- fusibles de montaje en superficie 12
- termistor 17
- Portafusibles de montaje en PCB 27
- Arnés de cableado 4
- Portafusibles de cuchilla 17
- termostato 46
- Fusible eléctrico 14
- Disyuntor térmico 20
- Portafusibles 36
- Sensor de temperatura 58
- Interruptor térmico 64
- Fusible del coche 19
- Fusibles atornillados 7
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sensor de termopares blindados
portafusibles de cuchilla
Fusible de cuchilla para coche
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Fusible de tubo de cerámica
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Sensor de temperatura Ds18b20
fusible electrico
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Termostato de disco limitador
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Protector de sobrecarga del motor
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sensor NTC
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Portafusibles de montaje en PCB
Fusible reiniciable PPTC
Sensor de temperatura PT100
termistor PTC
arnés del conector del sensor
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termostato capilar de una etapa
Microfusible de acción lenta
Termostato inteligente
Fusibles de montaje en superficie
Enlace de corte temporal
Interruptor de control de temperatura
Fusible de temperatura
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Cable del sensor de temperatura
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interruptor de temperatura
corte térmico
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protector térmico
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Sonda del sensor del termistor
Mensajes recientes
Enlace y cable de fusible térmico integrados a medida
El fusible térmico es un protector térmico.. Los fusibles térmicos se componen principalmente de masas fundidas y tubos., más rellenos externos. Al usar, conectar el fusible térmico en serie con el circuito protegido. Cuando la corriente del circuito protegido excede el valor especificado, y después de un cierto período de tiempo, la masa fundida generada por la propia masa fundida fusiona la masa fundida, rompiendo el circuito, protegiendo así el circuito. Los aparatos eléctricos que utilizan un conductor metálico como masa fundida para romper un circuito están conectados en serie en el circuito..
Categoría: fusible térmico
Etiquetas: Fusible de temperatura, corte térmico, Fusible térmico
The Built thermal fuse is a thermal protector. Temperature Fuse link cable are mainly composed of melts and tubes, más rellenos externos. Al usar, connect the thermal fuse link cable in series with the protected circuit. Cuando la corriente del circuito protegido excede el valor especificado, y después de un cierto período de tiempo, la masa fundida generada por la propia masa fundida fusiona la masa fundida, rompiendo el circuito, protegiendo así el circuito. Los aparatos eléctricos que utilizan un conductor metálico como masa fundida para romper un circuito están conectados en serie en el circuito.. When an overload or short-circuit current passes through the melt, the melt itself will heat up and melt. Por lo tanto, it has played a certain role in protecting the power system, various electrical equipment and household appliances. With anti-delay characteristic, when the overload current is small, the fusing time is long; When the overload current is large, the fusing time is short. Por lo tanto, within a certain range of overload current until the current returns to normal, the thermal fuse Wire harness will not blow and can continue to be used. The Temperature Fuse link is mainly composed of a melt, a housing and a support. Entre ellos, hot melt is the key element to control the fusing characteristics.
In the import and export tariffs, they are classified as 8535 o 8536.
principio de funcionamiento
A metal conductor is used as a melt in series in the circuit. When an overload or short-circuit current flows through the melt, it is fused because of its own heat, thereby breaking the circuit. Temperature Fuse link are simple in structure and easy to use. They are widely used as protection devices in power systems, various electrical equipment and household appliances.
Características
The rated fuse current is not equal to the rated current of the fuse. The rated current of the melt is selected according to the load current of the protected equipment. The rated current of the fuse shall be greater than the rated current of the fuse, and shall be determined in cooperation with the main electrical appliance.
The Built Temperature Fuse link cable is mainly composed of a melt, a housing and a support. Entre ellos, the melt is the key component to control the fusing characteristics. The material, size and shape of the melt determine the fusing characteristics. Melt materials are divided into two types, low melting points and high melting points. Low-melting materials such as lead and lead alloys have low melting points and are easy to melt. Because of its large resistivity, the cross-sectional size of the melt is large, and more metal vapor is generated during melting. Only for fuses with low breaking capacity. High melting point materials such as copper and silver have high melting points and are not easy to melt. Sin embargo, due to its low resistivity, it can be made smaller in cross-section size than a low melting point melt, and less metal vapor is generated during melting. Suitable for fuses with high breaking capacity. The shape of the melt is divided into two types: filament and ribbon. Changing the shape of the variable cross section can significantly change the fuse characteristics of the fuse.
Thermal fuses have anti-delay characteristics, eso es, when the overload current is small, the fuse time is long; When the overload current is large, the fusing time is short. Por lo tanto, within a certain overload current range, when the current returns to normal, the thermal fuse link cable will not blow and can continue to be used. Thermal fuse link cable have various different fuse characteristic curves, which can be adapted to the needs of different types of protection objects.
effect
Electrical components installed in a circuit to ensure safe operation of the circuit. When the circuit is faulty or abnormal, the current is constantly increasing, and the increased current may damage some important or valuable components in the circuit, o puede quemar el circuito o incluso provocar un incendio.. If the thermal fuse link cable is correctly installed in the circuit, the thermal fuse link will fuse itself to cut off the current when the current abnormally rises to a certain height and a certain time. So as to protect the safe operation of the circuit. Thermal cutoff cuts off the current, protegiendo así el funcionamiento seguro del circuito.
Inter-level cooperation
In order to prevent over-level fusing and expand the scope of the accident, there should be good coordination between the thermal fuse link of the upper and lower levels (ie, power supply trunks and branch lines). When selecting, the fuse rated current of the upper stage (power supply main line) thermal fuse link cable should be 1 a 2 stages larger than that of the lower stage (power supply branch line). Commonly used thermal fuses are tubular thermal fuses R1 series, Spiral thermal fuse RLl series, Packed closed thermal fuse link RT0 series and fast thermal fuse RSO, RS3 series, etc..
Related introduction
Use and maintenance
Thermal fuse in low-voltage power distribution system is an electrical appliance that plays a role in safety protection. Thermal fuse link cable are widely used in power grid protection and electrical equipment protection. When short circuit or overload occurs in the power grid or electrical equipment, the circuit can be automatically cut off to avoid damage to electrical equipment and prevent accidents from spreading.
Thermal fuse is composed of insulating base (or support), contactos, melt and so on. The fuse is the main working part of the fuse. The melt is equivalent to a special wire connected in series in the circuit. When the circuit is short-circuited or overloaded, the current is too large, and the melt melts due to overheating, cortando así el circuito. The melt is often made into filaments, grids or flakes. Melt materials have the characteristics of low relative melting point, stable characteristics and easy melting. Generally use lead-tin alloy, silver-plated copper sheet, zinc, silver and other metals. In the process of melting and cutting off the circuit, an arc will be generated. In order to extinguish the arc safely and effectively, the melt is generally installed in the fuse housing, and measures are taken to quickly extinguish the arc.
Fuses have the advantages of simple structure, convenient use, and low price, and are widely used in low-voltage systems.
Temperature fuse Brand: TAMURA / tamura, Albemarle, Comité ejecutivo nacional, emerson, Panasonic / Matsushita, Xingyu, JingKe, PANASONIC
First, the design and operation principle of a Temperature Fuse
● Temperature Fuse has detected abnormal temperature and cut off the circuit function. It can detect the temperature of household or industrial electrical products abnormal rise in temperature and quickly cut off the circuit, can be achieved to prevent the effects of fire in unburned.
● temperature fuse wire type with axial and radial lead type two. Using a thermal particles (organic matter).
● Safety Certification: UL, CSA, VDE, BEBA, PSE, JET, CCC ... certificate, EU ROHS environmental directives
● Current Product: 1A, 2A, 3A, 5A, 10A, 15A, 20A
Second, the application of various types of household appliances products; such as iron, hair dryer (hair dryer), horno, straight hair, aspiradoras, calentadores electricos, electric fans Juicers, blenders, power supplies, motores, printers, copiers, fax machine, HID ballasts, fluorescent lighting ballasts, transformadores, charger, battery pack, heating appliances, calentadores electricos, ollas arroceras, electric thermos, cafeteras, ventilation fans, fans, sewing machines, calentadores de agua, power converter , power plugs and sockets, refrigeradores, acondicionadores de aire, car air conditioners, instruments, equipment, and so do overheat protection.
modelo | Temperatura de funcionamiento nominal (tf) | Actual operating temperature (Ct) | Maintaining the temperature (Th) | Limit temperature (tm) | Tensión nominal (Ur) |
RF90 | 90℃ | 86±3℃ | 55℃ | 180℃ | 250V |
RF100 | 100℃ | 96±3℃ | 68℃ | 180℃ | 250V |
RF110 | 110℃ | 105±3℃ | 75℃ | 180℃ | 250V |
RF115 | 115℃ | 110±3℃ | 75℃ | 180℃ | 250V |
RF120 | 120℃ | 116±3℃ | 85℃ | 180℃ | 250V |
RF125 | 125℃ | 121±3℃ | 90℃ | 180℃ | 250V |
RF130 | 130℃ | 125±3℃ | 92℃ | 180℃ | 250V |
RF135 | 135℃ | 131±3℃ | 95℃ | 180℃ | 250V |
RF140 | 140℃ | 136±3℃ | 100℃ | 180℃ | 250V |
RF145 | 145℃ | 141±3℃ | 105℃ | 180℃ | 250V |
RF150 | 150℃ | 146±3℃ | 113℃ | 180℃ | 250V |
RF155 | 155℃ | 150±3℃ | 113℃ | 200℃ | 250V |
RF158 | 158℃ | 155±3℃ | 113℃ | 200℃ | 250V |
RF160 | 160℃ | 157±3℃ | 125℃ | 200℃ | 250V |
RF165 | 165℃ | 161±3℃ | 125℃ | 200℃ | 250V |
RF170 | 170℃ | 165±3℃ | 125℃ | 230℃ | 250V |
RF172 | 172℃ | 167±3℃ | 135℃ | 230℃ | 250V |
RF175 | 175℃ | 170±3℃ | 135℃ | 230℃ | 250V |
RF180 | 180℃ | 177±3℃ | 140℃ | 230℃ | 250V |
RF185 | 185℃ | 181±3℃ | 148℃ | 230℃ | 250V |
RF188 | 188℃ | 184±3℃ | 148℃ | 230℃ | 250V |
RF190 | 190℃ | 187±3℃ | 148℃ | 230℃ | 250V |
RF192 | 192℃ | 189±3℃ | 155℃ | 230℃ | 250V |
RF195 | 195℃ | 192±3℃ | 155℃ | 250℃ | 250V |
RF200 | 200℃ | 197±3℃ | 160℃ | 280℃ | 250V |
RF210 | 210℃ | 205±3℃ | 172℃ | 280℃ | 250V |
RF216 | 216℃ | 212±3℃ | 175℃ | 280℃ | 250V |
RF230 | 230℃ | 227±3℃ | 185℃ | 300℃ | 250V |
RF240 | 240℃ | 235±3℃ | 190℃ | 300℃ | 250V |
RF250 | 250℃ | 247±3℃ | 208℃ | 320℃ | 250V |
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