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PTC305C2 датащи(PDF) 2 Page - Vishay Siliconix |
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PTC305C2 датащи(HTML) 2 Page - Vishay Siliconix |
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2 / 8 page ![]() PTC305C Series www.vishay.com Vishay Cera-Mite Revision: 11-Sep-15 2 Document Number: 23086 For technical questions, contact: ceramitesupport@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 ECONOMICAL SOLID STATE TORQUE ASSIST FOR HEAT PUMPS, ROOM AIR, COMMERCIAL AND RESIDENTIAL AIR CONDITIONING AND REFRIGERATION SYSTEMS Positive Temperature Coefficient Themistors (PTC) have been used for many years in millions of HVAC applications to provide starting torque assistance to Permanent Split Capacitor (PSC) single phase compressor motors. Sizes are available to cover the full range of 120 V/240 V PSC compressor motors. Safety Agency Recognition Vishay Cera-Mite motor start PTC thermistors are recognized by Underwriter Laboratories file E97640 in accordance with standard for controllers and refrigeration components UL 873 or UL 60730; and Canadian Standard C22.2 No. 24. All packages and accessories are RoHS-compliant. RELATIVE COMPARISON OF VARIOUS MOTOR STARTING METHODS Three methods have historically been employed to generate starting torque for PSC motors. All are well-proven technologies and may be compared relative to one another based upon categories shown below. The importance of each category is dependent upon the motor application and industry sector. In general, if the PTC starter produces sufficient starting torque, it is considered the simplest and most economical choice. Table 1 SIMPLIFIED PTC STARTING DIAGRAM Start Sequence When starting the compressor, contactor (M) closes; the PTC, which is at low resistance, provides starting current to the motor’s auxiliary winding. After time delay (t), the current passing through the PTC causes it to heat and “switch” to a very high resistance. At this point the motor is up to speed and the run capacitor (CR) determines the current in the auxiliary winding. The PTC remains hot and at high resistance as long as voltage remains on the circuit. When contactor (M) opens, shutting off voltage to the compressor, the PTC cools to its initial low resistance and is again ready to provide torque assist on the next startup. Restart It is important to provide time between motor starts to allow the PTC to cool to near its initial temperature. This time is usually 3 min to 5 min and is determined by the thermostat (THERM) or separate time-delay relay (TR). Attempts to restart in less time may be successful depending on compressor equalization, line voltage, temperature, and other conditions. If the motor were to stall in a locked-rotor state, overload device (PD or TS) would open the line and a further time delay would occur until the motor overload is reset. Motor start PTCs are applied to compressors having means to equalize pressure during shutdown. TYPICAL PTC CHARACTERISTICS AS A MOTOR START DEVICE STARTING METHOD MECHANICAL ELECTRICAL FINANCIAL EASE OF WIRING PANEL SPACE REQUIRED SENSITIVE TO MOUNTING DIRECTION ACCELERATION TORQUE PRODUCED ACCELERATION (SWITCH) TIME RESET TIME REQUIRED EMI/RFI GENERATED TECHNOLOGY INVENTORY MIX REQUIRED RELIABILITY PURCHASED COST PTC starter Simple 2 wire Lowest No Lowest Fixed 3 min to 5 min No Solid State Lowest Highest Lowest Start cap with PTC acting as a current relay Moderate 2 wire or 3 wire Medium Yes Medium Fixed 2 min to 5 min No Solid State Medium Medium Medium Start cap used with potential or current relay Difficult 4 wire or 5 wire Highest Yes Highest Variable based on motor speed None Yes Electro Mechanical Highest Lowest Highest Fig T-2 M Low Voltage Control Transformers Not Shown Protective Device Optional OFF Time Delay Relay Protective Device AC Line 120 or 240 VOLTS AC THERM Internal Motor Winding Overtemp Switch MAIN PSC MOTOR AUX. PTC TS TR TR PD M M M L 1 L 2 C R Fig T-3 RESISTANCE CURRENT Switch Time (t) 0.01 50 100 150 1000 10 000 10 100 PTC Temperature °C 0.1 1.0 10.0 |
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