This is a multi-part message in MIME format. ------=_NextPart_000_0341_01C89187.91480D90 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: 7bit > Does anyone have a suggestion on what the easiest way to spin > this thing back up would be? Ian, I have a web page for that but it's down. Working with my ISP to find out why Attached is my circuit for using components and below is the text from the page and my old old code. It was written for an F84 (just before I started using MPLAB. It's will be easy enough to re-jigger for MPLAB). The motor is a Shinano Tokki Corp or Sankyo from a Conner CP3010. FETs from the original HDD PCB. External clock is a pot + 4011 oscillator. As you're wanting a fairly constant speed, ramp up with s/w instead -------------------------------- Hard drives have high-speed low-profile motors that can be re-used. More often than not it's the logic board that fails in a hard drive and the motors are OK This is a simple program for a PIC16F84 that changes the bit pattern for switching the FET coil drivers. The most important part of this program is the table of values stored in the EEPROM, because this pattern sets the phase relationships between the FETs and consequently the voltage waveforms that the coils see. The oscillator speed of the PIC is not important in this particular program as the changes are being instigated by an external clock. The motor needs to be started at a low speed (less than about 6 revs/ second) and slowly accelerated to the final required speed. You can hear this acceleration as a rising whine in a working drive in a PC when it powers up after being shut down. If the final speed is always to be the same then a routine could be written in the micro that slowly decreases the interruption of a timer loop to accelerate the motor from low power- up speed to final speed. Hard drives with this motor usually run at 3000rpm (50 revs/second) when working in a PC, but the speed can be set anywhere from a few revs/sec up to about 55 rps, at which point the motor will not be able to keep up with the driving wave and stop. At 12V the torque is not too bad, and the bolt holes that are used to attach the platters can be used to fix a pulley or gear wheel for a step-down motion drive. Other uses could be spinning a propellor clock, fan, or sensor. At 5V supply the motor will still spin at the same speed as it would at 12V (because it's being driven by a frequency) but has very low torque. It will not self- start at 5V. Current consumptions are ; 12V 10rps ( 600rpm) 200mA 12V 50rps (3000rpm) 110mA 5V 10rps ( 600rpm) 40mA 5V 50rps (3000rpm) 20mA The motor should be mounted on a heatsinking chassis to help keep it cool if run for extended periods. The FETs (rated at 0.7A to 1.1A) will normally run cool ;hddmotor.asm - driver for 3-coil HDD motor ;13/12/2000 ;Look for external clock on a3 and change FET-driving bit pattern clock equ porta.3 ;i/p clock ;EEPROM bit patterns ee1 dbee 24h ;100 100 ee2 dbee 36h ;110 110 ee3 dbee 12h ;010 010 ee4 dbee 1bh ;011 011 ee5 dbee 09h ;001 001 ee6 dbee 2dh ;101 101 index rb ;RAM byte for counter setup movlw 08h tris porta movlw 00h tris portb movlw 80h option clrf index movlw 24h movwf portb clocklo ;main loop btfss clock ;wait for ext clock to go high goto clocklo change ; movf index,w ;get next bit pattern from EE movwf eeadr call readee movwf portb incf index,f movlw 06 ;loop for 6 EE locations xorwf index,w btfss zero goto clockhi clrf index clockhi ; btfsc clock ;wait for clock low goto clockhi goto clocklo ;next clock, next pattern readee ;get next pattern bsf rp0 bsf rd bcf rp0 movf eedata,w return ------=_NextPart_000_0341_01C89187.91480D90 Content-Type: image/gif; name="hdd_drive.gif" 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