Large Current MF73T-1 10/15 10k Ohm Ntc Thermistor
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MF73T 10/15 Series High Power NTC Inrush Current Limiter10 ohm 15A Thermistor for Power Supplies and Battery Charrs
The most important performance of NTC negative temperature coefficient thermal sensor is life
NTC thermistors are divided into: Power type NTC thermistor Compensated NTC Thermistor Temperature measuring NTC thermistor • Small Size and fast response • High Power handling capability • Fast response to surge current • High material constant (B value) • Low residual resistance • Wide operating temperature range -55 to +200C • R25 allowable tolerance is ±20% • Long-term Stability and Reliability 2.5D-20 Ptc 10K Ntc ThermistorShapec Structure Picture
Can be installed into the power circuits of:
• Power supplies and inverters • Uninterruptible Power Supplies • Energy saving lamps • Electronic Ballasts • Filament Protection of various types of lamps • Some types of heaters • For higher power circuits ask about the MF73 and MF74 series surge suppressors.
MF72 Power NTC ThermistorThe main function of the MF72 series power NTC thermistor is to provide surge current suppression for sensitive electronics. Connecting the MF72 in series with the power supply will limit the current surge that is usually created when turning on. Once the circuit is powered on, the MF72 power NTC thermistor will quickly drop to a very low value, the power dissipation can be ignored and will not affect the normal operating current. Using the MF72 power NTC thermistor is one of the most cost-effective ways to suppress surge current and protect sensitive electronics from damage.
Applications: • Can be installed in power circuits of: • Power supplies and inverters • Uninterruptible power supplies • Energy-saving lamps • Electronic ballasts • Filament protection for various lamps • Some types of heaters • For higher power circuits compared to MF73 high power NTC thermistor
Product Features: • Small size and fast response • High power handling capability and long-term stability and reliability • Fast response to surge current • High material constant (B value) • Low residual resistance • Wide operating temperature range -55 to + 200C • R25 tolerance of ±20%
Specifications and dimensions:
Specifications:
Main technical parameters:
Note: Multiple resistance values and pin types can be customized on demand.
What is an inrush current suppression power type NTC thermistor A power NTC thermistor can be a cost-effective device for limiting the amount of inrush current in a switching power supply or other equipment when power is first applied. A power NTC thermistor limits inrush current by acting as a power resistor that drops from a high cold resistance to a low hot resistance when heated by the current flowing through it. The inrush current limiter supplies the NTC thermistor protection circuit with unnecessarily high current, suppressing high inrush current surges while its resistance remains negligible during continuous operation. Due to its low resistance in the operating state, power thermistors dissipate much less power than fixed resistors commonly used in this application. Application of Inrush Current Suppression Power Type NTC Thermistor Limiting inrush current, suitable for protection of switching power supplies, UPS power supplies, transformers, motors, various electric heating appliances, energy-saving lamps, ballasts, various power circuits, amplifiers, color displays, monitors, color TVs, filament protection, etc. Power thermistor elements can also be used for soft starting of motors, for example, in vacuum cleaners with a continuous current of up to 20 A. Inrush current suppression power type NTC thermistor advantages: · Low-cost solid-state device for suppressing inrush current. · Minimizes line current distortion and radio noise. · Protects switches, rectifier diodes and smoothing capacitors from premature failure. · Prevents false fuse blowing. Inrush current suppression power type NTC thermistor features: · Resin coated disc thermistor with non-insulated leads. · Suitable for AC and DC circuits up to 265 V (rms). · Wide range of resistances, currents and sizes. · Excellent mechanical strength. · Suitable for PCB mounting.
Several factors to consider when selecting an inrush current suppression power NTC thermistor 1) Maximum operating current > actual operating current in the power circuit 2) At 25°CRated zero power resistance, E: loop voltage, Im: surge current For conversion power, recovery power, switching power, UPS power, Im = 100 times the operating current For filaments, heaters, Im = 30 times the operating current 3) The larger the B value, the smaller the residual resistance and the lower the operating temperature. 4) Generally speaking, the larger the time constant and dissipation coefficient, the larger the NTC thermal capacity, and the stronger the surge current suppression capability of the NTC thermistor. Inrush Current Suppression Power Type NTC Thermistor Application Notes 1) For inrush current limiting, the NTC thermistor must be connected in series with the load circuit. Several inrush current limiters can also be connected in series for higher damping. Inrush current limiters must not be connected in parallel. 2) Generally, inrush current limiters need time to return to a cold state, where they can provide adequate inrush current limiting due to their high resistance. The cooling time depends on the ambient conditions. 3) It should be taken into account that the surrounding area of the NTC thermistor may become hot. Make sure that adjacent components are kept at a sufficient distance from the thermistor to ensure a proper cooling time for the thermistor. 4) Make sure that the design operating temperature of the adjacent materials is comparable to the surface temperature of the thermistor. Make sure that the surrounding components and materials can withstand this temperature. 5) Ensure that the thermistor is adequately ventilated to avoid overheating. 6) Avoid contamination of the thermistor surface. 7) Avoid contact of the NTC thermistor with any liquids and solvents. M
Product parameters
The matters needing attention in the use of NTC are as follows
1. Be sure to add a suitable series resistor, otherwise the thermal collapse will occur when the NTC is in use, because the current flowing through the NTC will generate heat, if the heat cannot be dissipated in time, the temperature of the NTC will rise, and then the resistance will drop, at this time The current will increase significantly, and the NTC will get hotter, so that cycling can eventually cause the NTC to burn out, or even catch fire. 2. The end electrode of NTC is usually composed of Ag, and silver migration will occur when it is used improperly, resulting in short circuit of NTC. Avoid NTC contact with water during use. 3. The high temperature during welding will cause the irreversible resistance drift of NTC. In some cases, it may cause a 5% drift, so try to avoid high temperature welding.
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