Details, datasheet, quote on part number: TC642EV
PartTC642EV
CategoryPower Management => PWM Controllers
DescriptionPWM Fan Speed Controller With Fansense Technology
CompanyMicrochip Technology, Inc.
DatasheetDownload TC642EV datasheet
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Features, Applications
Features

Temperature Proportional Fan Speed for Acoustic Control and Longer Fan Life Efficient PWM Fan Drive to 5.5V Supply Range: - Fan Voltage Independent of TC642 Supply Voltage - Supports any Fan Voltage FanSenseTM Fault Detection Circuits Protect Against Fan Failure and Aid System Testing Shutdown Mode for "Green" Systems Supports Low Cost NTC/PTC Thermistors Space Saving 8-Pin MSOP Package Over-temperature Indication

The is a switch mode fan speed controller for use with brushless DC fans. Temperature proportional speed control is accomplished using pulse width modulation (PWM). A thermistor (or other voltage output temperature sensor) connected to the VIN input furnishes the required control voltage to 2.65V (typical) for to 100% PWM duty cycle. Minimum fan speed is set by a simple resistor divider on the VMIN input. An integrated Start-up Timer ensures reliable motor start-up at turn-on, coming out of shutdown mode or following a transient fault. A logic low applied to VMIN (Pin 3) causes fan shutdown. The TC642 also features Microchip Technology's proprietary FanSenseTM technology for increasing system reliability. In normal fan operation, a pulse train is present at SENSE (Pin 5). A missing pulse detector monitors this pin during fan operation. A stalled, open or unconnected fan causes the TC642 to trigger its Start-up Timer once. If the fault persists, the FAULT output goes low and the device is latched in its shutdown mode. FAULT is also asserted if the PWM reaches 100% duty cycle, indicating a possible thermal runaway situation, although the fan continues to run. See Section 5.0, "Typical Applications", for more information and system design guidelines. The TC642 is available in the standard 8-pin plastic DIP, SOIC and MSOP packages and is available in the commercial, extended commercial and industrial temperature ranges.

Applications

Power Supplies Personal Computers File Servers Telecom Equipment UPSs, Power Amps, etc. General Purpose Fan Speed Control

3 x TPWM Timer Clock Generator VMIN VSHDN

*Stresses above those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only and functional operation of the device at these or any other conditions above those indicated in the operation sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.

Absolute Maximum Ratings* Supply Voltage......................................................... 6V Input Voltage, Any Pin.... (GND 0.3V) to (VDD +0.3V) Package Thermal Resistance: PDIP (RJA)............................................. 125C/W SOIC (RJA)............................................ 155C/W MSOP (R JA).......................................... 200C/W Specified Temperature Range........... to +125C Storage Temperature Range.............. to +150C

Electrical Characteristics: TMIN TA < TMAX, VDD to 5.5V, unless otherwise specified.

Symbol VDD IDD IDD(SHDN) Parameter Supply Voltage Supply Current, Operating Supply Current, Shutdown Mode Min 3.0 Typ 0.5 25 Max 5.5 1.0 Units mA A Pins 6, 7 Open, = 1 F, VIN = VC(MAX) Pins 6, 7 Open, = 1 F, VMIN = 0.35V, Note 1 Note 1 Test Conditions

IIN VOUT Output tR tF tSHDN IOL IOH VIN , VMIN Inputs VC(MAX), VOTF VC(SPAN) VSHDN VREL

VIN , VMIN Input Leakage VOUT Rise Time VOUT Fall Time Pulse Width (On VMIN ) to Clear Fault Mode Sink Current at VOUT Output Source Current at VOUT Output Input Voltage at VIN or VMIN for 100% PWM Duty Cycle VC(MAX) - VC(MIN) Voltage Applied to VMIN to ensure Shutdown Mode Voltage Applied to VMIN to Release Shutdown Mode

IOH = 5 mA, Note 1 IOL = 1 mA, Note 1 VSHDN , VHYST Specifications, Note 1 VOL 10% of VDD VOH 80% of VDD

Pulse Width Modulator FPWM SENSE Input VTH(SENSE) FAULT Output VOL tMP tSTARTUP tDIAG Output Low Voltage Missing Pulse Detector Timer Start-up Timer Diagnostic Timer 0.3 V Sec IOL 2.5 mA SENSE Input Threshold Voltage with Respect to GND 90 mV Note 1 PWM Frequency 1.0 F


 

Some Part number from the same manufacture Microchip Technology, Inc.
TC642VOA The TC642 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC646 The TC646 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC646B The TC646B is a Version of The Existing TC646 Fan Speed Controller
TC646E The TC646 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC646EPA PWM Fan Speed Controller With Auto-shutdown And Fansense Technology
TC646EUA The TC646 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC647 The TC647 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC647B The TC642B is a Version of The Existing TC642 Fan Speed Controller
TC647E The TC647 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC647EPA PWM Fan Speed Controller With Fansense Technology
TC647EUA The TC647 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC648 The TC648 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC648B The TC646B is a Version of The Existing TC646 Fan Speed Controller
TC648E The TC648 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC649 The TC649 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC649B The TC646B is a Version of The Existing TC646 Fan Speed Controller
TC649E The TC649 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC649EPA PWM Fan Speed Controller With Auto-shutdown And Fansense Technology
TC649EUA The TC649 is a Switch Mode Fan Speed Controller For Use With Brushless DC Motors
TC650 The TC650/651 Are Integrated Temperature Sensors And Brushless DC Fan Speed Controllers
TC6501 The TC6501 Through TC6504 Are SOT-23 Temperature Switches That Require no External Components And The Design is Facilitated With Factory Programmed Temperature Thresholds
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