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www.fairchildsemi.com FAN8727 Spindle + 4CH Motor Drive IC Features !"#$" %&' ( ($)*&'+,-&'.&'% & ./.0" Description #123,3 % - - -. (& $"4$43#06#6!1 7 / 48-QFPH-1414 Typical Applications $ 7 7 & 7 &7 Ordering Information Device Package Operating Temperature -35!C ~ +85!C FAN8727 48-QFPH-1414 Rev. 1.0.1 (c)2000 Fairchild Semiconductor Corporation FAN8727 Pin Assignments BTLSNGD MUTE12 MUTE3 38 48 47 46 45 44 43 42 41 40 39 37 VH MUTE4 AVM4 BIAS H3 + H2 + H1 + H3 " H2 " H1 " 1 36 DO4 + DO4 " AVM3 FG ECR 2 35 34 3 EC 4 33 DO3 + DO3 " BTLPGND2 VCC2 PC1 5 32 6 31 FAN8727 SIGGND 7 30 BTLPGND1 VM CS1 8 9 29 28 DO2 + DO2 " SS 10 11 27 DO1 + DO1 " DI1 DIR SB 26 25 12 13 PWRGND 14 A3 15 A2 16 A1 17 OPIN+ 18 OPIN" 19 OPOUT 20 VCC1 21 AVM12 22 DI4 23 DI3 24 DI2 2 FAN8727 Pin Definitions Pin Number 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 Pin Name VH FG ECR EC VCC2 PC1 SIGGND VM CS1 S/S DIR SB PWRGND A3 A2 A1 OPIN+ OPINOPOUT VCC1 AVM12 DI4 DI3 DI2 DI1 DO1DO1+ DO2DO2+ BTLPGND1 BTLPGND2 DO3DO3+ I/O I O I I - - - - I I O I - O O O I I O - - I I I I O O O O - - O O HALL BIAS FG SIGNAL OUTPUT TORQUE CONTROL REFERENCE TORQUE CONTROL SIGNAL SUPPLY VOLTAGE PHASE COMPENSATION CAPACITOR SIGNAL GROUND MOTOR SUPPLY VOLTAGE CURRENT SENSOR START/STOP 3-PHASE ROTATIONAL DIRECTION OUTPUT SHORT BRAKE POWER GROUND 3-PHASE OUTPUT 3 3-PHASE OUTPUT 2 3-PHASE OUTPUT 1 OP AMP INPUT (+) OP AMP INPUT (-) OP AMP OUTPUT SUPPLY VOLTAGE BTL CH-1, 2 MOTOR SUPPLY VOLTAGE BTL DRIVE INPUT 4 BTL DRIVE INPUT 3 BTL DRIVE INPUT 2 BTL DRIVE INPUT 1 BTL DRIVE 1 OUTPUT (-) BTL DRIVE 1 OUTPUT (+) BTL DRIVE 2 OUTPUT (-) BTL DRIVE 2 OUTPUT (+) BTL POWER GROUND 1 BTL POWER GROUND 2 BTL DRIVE 3 OUTPUT (-) BTL DRIVE 3 OUTPUT (+) Pin Function Descrition 3 FAN8727 Pin Definitions (Continued) Pin Number 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 Pin Name AVM3 DO4DO4+ MUTE4 MUTE3 MUTE12 AVM4 BIAS BTLSGND H1H1+ H2H2+ H3H3+ I/O - O O I I I - - - I I I I I I Pin Function Descrition BTL CH3 MOTOR SUPPLY VOLTAGE BTL DRIVE 4 OUTPUT (-) BTL DRIVE 4 OUTPUT (+) BTL DRIVE MUTE CH 4 BTL DRIVE MUTE CH 3 BTL DRIVE MUTE CH 1, 2 BTL CH 4 MOTOR SUPPLY VOLTAGE BTL BIAS VOLTAGE BTL DRIVE SIGNAL GROUND HALL1(-) INPUT HALL1(+) INPUT HALL2(-) INPUT HALL2(+) INPUT HALL3(-) INPUT HALL3(+) INPUT 4 FAN8727 Internal Block Diagram 38 48 47 46 45 44 43 42 41 40 39 1 37 MUTE12 Hall Bias FG Generator TSD 36 MUTE3 2 MUTE4 35 Hall Amp AVM4 3 34 4 33 Detection 5 32 Logic 6 AVM3 31 Absolute Values VM CS1 Current Sense Amp Reverse Rotation AVM12 Output Current Limit 7 30 8 AVM12 9 29 Short Brake Distributor 28 10 27 11 26 12 25 13 14 15 16 17 18 19 20 21 22 23 24 5 FAN8727 Equivalent Circuits HALL BIAS FG SIGNAL OUTPUT TORQUE CONTROL REFERENCE & SIGNAL PHASE COMPENSATION CAPACITOR CURRENT DETECTOR START/STOP 6 FAN8727 Equivalent Circuits (Continued) 3-PHASE ROTATIONAL DIRECTION OUTPUT SHORT BRAKE 3-PHASE OUTPUT OP AMP INPUT OP AMP OUPUT BTL DRIVE INPUT 7 FAN8727 Equivalent Circuits (Continued) BTL DRIVE OUTPUT BTL DRIVE MUTE BTL BIAS VOLTAGE HALL INPUT 8 FAN8727 Absolute Maximum Ratings ( Ta=25!C) ! Parameter Supply Voltage (BTL SIGNAL) Supply Voltage (SPINDLE SIGNAL) Supply Voltage (MOTOR) Supply Voltage (BTL MOTOR) Power Dissipation Operating Temperature Range Storge Temperature Range Maximum Output Current (SPINDLE part) Maximum Output Current (BTL part) Symbol VCC1max VCC2max VMmax VMBTLmax Pd Topr Tstg IOMAXS IOMAXB Value 15 7 15 15 3.0note -35 ~ +85 -55 ~ +150 1.3 1 Unit V V V V W !C !C A A NOTE: 1. When mounted on 70mm # 70 mm # 1.6mm PCB (Phenolic resin material) $$ 2. Power dissipation is reduced 24 mW/!C for using above Ta=25!C 3. Do not exceed Pd and SOA. Pd [mW] 3,000 2,000 1,000 0 0 25 50 75 100 125 150 175 Ambient Temperature, Ta [!C] Recommended Operating Conditions ( Ta=25!C) ! Parameter Operating Supply Voltage (BTL SIGNAL) Operating Supply Voltage (SPINDLE SIGNAL) Operating Supply Voltage ( SPINDLE MOTOR) Operating Supply Voltage (BTL MOTOR) Symbol VCC1 VCC2 VM VMBTL Min. 4.5 4.5 4.5 4.5 Typ. Max. 13.2 5.5 13.2 VCC1 Unit V V V V 9 FAN8727 Electrical Characteristics (Ta=25!C, VCC2=5V, VM=12V) Parameter Circuit Current 1 Circuit Current 2 START/STOP On Voltage Range Off Voltage Range HALL BIAS Hall Bias Voltage HALL AMP Hall Bias Current In-phase in Voltage Range Minimum in Level TORQUE CONTROL In Voltage Range Offset Voltage (-) Offset Voltage (+) In Current In/output Gain FG FG Output Voltage (H) FG Output Voltage (L) Input Voltage Range OUTPUT BLOCK Saturation Voltage (upper TR) Saturation Voltage (lower TR) Torque Limit Current DIRECTION DETECTOR Dir Output Voltage (H) Dir Output Voltage (L) SHORT BRAKE On Voltage Range Off Voltage Range VSBON VSBOFF 2.5 0 VCC 0.5 V V VDIRH VDIRL IFG=-10uA IFG=10uA 3.0 VCC 0.5 V V VOH VOL ITL IO= -300mA IO=300mA RCS=0.5% 560 0.9 0.2 700 1.6 0.6 840 V V mA VFGH VFHL VFGR IFG= -10uA IFG=10uA Hn+, Hn- input D-range 3.0 1.5 VCC 0.5 4.0 V V V EC ECOFFECOFF+ ECIN GEC ECR=2.5V ECR=2.5V EC=ECR=2.5V ECR=2.5V, RCS=0.5% 0.5 -100 20 -5 0.41 -50 50 -1 0.51 3.3 -20 100 0.61 V mV mV uA A/V IHA VHAR VINH 1.5 60 1 5 4.0 uA V mVpp VHB IHB=20mA 1.2 1.8 V VPSON VPSOFF L-H Circuit On H-L Circuit Off 2.5 0.5 V V Symbol ICC 1 ICC2 Condition Power Save=0V Power Save=5V Min. Typ. 0.3 4.5 Max. 1 6 Unit mA mA 10 FAN8727 Electrical Characteristics (continued) BTL Drive Part (Ta=25!C, VCC1=12V, VMBTL=12V, RL=24%) Parameter Quiescent Circuit Current Output Offset Voltage Maximum Output Amplitude Voltage Voltage Gain Ripple Rejection Ratio Slew Rate CH Mute Off Voltage CH Mute On Voltage NORMAL OP- AMP Input Offset Voltage Input Bias Current High Level Output Voltage Low Level Output Voltage Output Sink Current Output Source Current Open Loop Voltage Gain Ripple Rejection Ratio Slew Rate Common Mode Rejection Ratio VOF IB1 VOH1 VOL1 ISINK ISOU1 GVO1 RR1 SR1 CMRR1 f=1kHz, VIN=-75dB f=120Hz, VIN=-20dB f=120Hz, 2Vp-p f=1kHz, VIN=-20dB -20 11 10 5 25 8 75 65 1 80 +20 600 0.1 mV nA V V mA mA dB dB V/us dB Symbol ICC VOO VOM GVC RR SR VMOFFCH VMONCH Condition VIN=0.1Vrms, 1kHz VIN=0.1Vrms, 120kHz 120Hz, 2Vpp pin37, 38, 39 = Variation pin37, 38, 39 = Variation Min. -40 9.5 10.5 2.5 Typ. 18 10.5 12.0 60 1.0 Max. 25 40 13.5 1.0 Unit mA mV V dB dB V/us V V 11 FAN8727 Calculation of Gain & Torque Limit Current VM IO VM " VS Output RS Current sense + CS1 (Pin 9) Current / Voltage Convertor " Vin EC ECR & Gm Absolute Values + + + + Vmax " VM R1 " Negative Feedback loop U V W IO Driver Power Transistors Commutation Distributor H1 H2 H3 Max. output current limiting 8/,99 $ 5+: 6&/ 0.255 Gain RS 0: .980/ Vmax 350 ' mV ( Itl ' mA ( RS RS 12 FAN8727 Application Information 1. Mute Function + $ &0 & ; - / MUTE ON Voltage MUTE OFFVoltage 2.5[V] above OPEN or 0.5[V] below Mute function operation Normal operation , & $ / ; .3-.2.< !"*1 8/9=0>- ( 7/ ; .3-.2.< ,/9=0>- ( / 6 ? +@9!&- %&'( . (& / 2. 4-CH Balanced Transformerless (Btl) Driver VCC Q1 DRIVE AMP X2 Q3 27 29 33 36 M 26 28 32 35 Q2 DRIVE AMP X2 Q4 GND 41 Vbias Vin Rextern 22 23 24 25 10k + AMP1 " LEVEL SHIFT -0- 7 : %+/ -0- ,,-,.-,%,9 +8A45 : / 0 7 0/ B)6)6 / 5 0/ ( - 7 5C+ 5C%/! -5C,5C. - / ; 0- ,,-,.-,%,9 0- / 13 FAN8727 ; 0- ,,-,.-,%,9 0- / 67 - 7 : D 5 : 3. Torque & Output Current Control E &F! & & VM VM RNF + Torque sense amp VAMP ECR + " + " Current sense amp " VRNF IO Driver M Gain Controller TSD EC 7 7 ** 6&- E #$" 0 #$"/ #$" 6 7 0- 6 7 5 0 / 6 - 6& 7 7 6 / ; ? +@9!&- / E / VRNF [V] Reverse Forward Rotation Ec < ECR Forward rotation Stop after detecting reverse rotation Ecoff" Ecoff+ Ec > ECR 3 mV 0 ECR-EC[V] * E #$"8/90G./.0 14 FAN8727 4. Power Save Function Bias block VCC 100k Start Stop 30K% 10 50K% Q1 / 7 5C+/ ; 4 +80- 5C+ /! - 4 +8! (1- 5C+ / 7 +8 H Pin#10 HIGH OPEN/LOW FAN8727 START STOP 5. Short Brake Function VM Drive logic VCC OFF MOTOR 14 ON OFF 20K% 12 4K% Q1 ON 15 16 ; $- 7 7 7 /' - 7- 7 6&/ 7- #123,3/; - " " - 7 / 7 +,- / Pin#12 HIGH LOW SHORT BRAKE ON OFF 15 FAN8727 6. Thermal Shutdown (Tsd) Function ; ? +@9!&- - ? +%8!&- 7 /6 7 ,9!&/ 7. Rotational Direction Detecting Function VCC H2+ H2" + " D R 11 Q DIR Rotation EC < ECR Forward Reverse DIR Low High CK H3+ H3" + " D-F/F EC > ECR $ 7 - / $ 7 4 /( '+-','. 7/6 -'+*',*$'.- - / H1 H2 H3 ( a) 6 7- -'.*$',*$'+- - : / 16 FAN8727 H1 H2 H3 ( b) 6 - ', '.( IJ- ' IJ/ / 8. Reverse Rotation Preventing Function EC ECR + " Current Sense Amp H2+ H2" + " D CK D-F/F Gain Controller Driver M Q H3+ H3" + " - -7 / & E 7 - 4 C ( # - / ; $ -*J* 4 $/# *J* -$- - / $ - E /6 / Rotation Forward Reverse H2 H L H3 H *$L H *$L D-F/F H L Reverse Rotation Preventer EC 17 FAN8727 9. Fg Output Function - $- 7K / / + H1 " + H2 " FG OUTPUT + H3 " 10. Hall Sensor Connection *: ' / VCC VCC HALL 1 HALL 1 HALL 2 HALL 3 HALL 2 HALL 3 1 VH 1 VH 18 FAN8727 11. Hall Input Output Timming Chart . : - /# - - / - - / H1 + H2 + H3 + A1 output current A1 output voltage A2 output current A2 output voltage A3 output current A3 output voltage 12. Power Supply Sequence VM must be supplied faster than VCC2, 19 FAN8727 Test Circuits 1 BTL Drive Part 10+F 12V VMUTE VMUTE 39 MUTE2 38 MUTE3 2.5V 48 H3+ 47 H3" 46 H2+ 45 H2" 44 H1+ 43 H1" 42 BTLSGND 41 BIAS 40 MUTE1 VMUTE 37 MUTE4 V RL4' DO4+ 36 SW4 DO4" 35 AVM3 34 DO3+ 33 SW3 RL3' RL3 V V BTLPGND1 30 SW2 DO2+ 29 DO2" 28 DO1+ 27 DO1" 26 SW1 RL1 V RL2 DO3" 32 BTLPGND2 31 12V 10+F RL4 DI1 25 D13 23 24 SERVO AMP D12 1 VH 2 FG 3 ECR 4 EC 5 VCC2 6 PC1 FAN8727 7 SIGGND 8 VM 9 CS1 10 SS 11 DIR PWRGND AVM12 21 OPIN+ OPIN" VCC1 12 SB OPOUT 13 14 15 16 17 18 19 20 22 12V BTL SVCC A 10+F 10+F 12V CONTROL TRAY D14 A3 A2 A1 TRACKING FOCUS SLED OPIN (+) V OPIN (") V 1 SW6 10+F 3 VIN3 2 VIN3 + " Vs1 1M% OPOUT VCC SW5 1 V 1M% 3 2 1.2k% 1 SW7 2 3 V VIN1 Vp1 20 FAN8727 Test Circuits 2 Spindle Motor Drive Part H3+ H3" H2+ H2" H1+ H1" A V V 48 H3+ SW12 1 2 2.5V SW13 3 EC SW14 5 5V A 6 VCC2 PC1 4 VH FG ECR EC A A A A A 47 H3" 46 H2+ 45 H2" 44 H1+ 43 H1" 42 BTLSGND 41 BIAS 40 MUTE1 39 MUTE2 38 MUTE3 37 MUTE4 DO4+ 36 DO4" 35 AVM3 34 DO3+ 33 DO3" 32 DO2+ 29 DO2" 28 DO1+ 27 DO1" 26 DI1 25 24 D12 BTLPGND2 31 FAN8727 SW15 12V 7 8 V 9 SW16 10 SS V SW17 11 DIR PWRGND OPOUT OPIN+ OPIN" VCC1 12 SB AVM12 SIGGND VM CS1 BTLPGND1 30 D14 22 IFR SW18 13 14 15 16 17 18 19 20 21 23 VSB SW19 SW20 D13 A3 A2 A1 21 FAN8727 Application Circuits FOCUS TRACKING MUTE HALL3 HALL2 HALL1 BTL BIAS VOLTAGE +5V 48 H3+ 47 H3" 46 H2+ 45 H2" 44 H1+ 43 H1" 42 BTLSGND 41 BIAS 40 MUTE1 39 MUTE2 38 MUTE3 37 MUTE4 1 FG SIGNAL SERVO TORQUE CONTROL VCC 2 3 4 5 6 0.1+F VH FG ECR EC VCC2 PC1 TRAY MUTE DO4+ 36 DO4" 35 AVM3 34 +5V DO3+ 33 DO3" 32 SLED MOTOR TRAY MOTOR DO2+ 29 DO2" 28 DO1+ 27 DO1" 26 FAN8727 7 12V 8 9 SYSTEM CONTROL ROTATE DIRECTION SHORT BREAK SIGGND VM CS1 BTLPGND1 30 FOCUS ACTUATOR 10 SS 11 DIR PWRGND AVM12 OPIN+ OPIN" VCC1 12 SB OPOUT SLED MUTE BTLPGND2 31 TRACKING ACTUATOR DI1 25 D14 D13 23 D12 24 SERVO AMP A3 A2 15 13 14 16 A1 17 18 19 20 21 22 VCC +5V TRACKING FOCUS SLED CONTROL TRAY S/S 22 FAN8727 23 FAN8727 DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. LIFE SUPPORT POLICY FAIRCHILD'S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR CORPOTATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user. www.fairchildsemi.com 5/7/01 0.0m 001 Stock#DSxxxxxxxx , 2001 Fairchild Semiconductor Corporation 2. A critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. |
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