S3313 KODENSHI | Alldatasheet

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SEPT., 2010 REV . 01 3 phase BLDC Motor Driver IC S3313 ▲ Marking Information ① Device Code ② Year & Week Code Product Name Marking Package Name S3313 S3313 SSOPH-28

Description

The S3313 is a three phase brushless DC motor driver for DVD-P/R/RW. It contains various function for driving BLDC motor in safety. Especially, it contains 3 phase hall input terminal for computing the motor status with hall amps and FG, F-F. it makes a stable movement. Especially, it supports DVD-RW applications with pb free and heat-sink package. Application ◈ DVD-Player ◈ DVD-R ◈ DVD-RW Features and Benefits ◈ Three-phase full-wave pseudo linear driving system. ◈ Built in power save, thermal shut down circuit [ TSD ]. ◈ Built in current limit, Hall Bias circuit. ◈ Built in FG-output, FG 3phase synthesize output. ◈ Built in rotation detect. ◈ Built in reverse protection circuit. ◈ Built in Gain switch pin. ◈ Built in Short Brake pin. ◈ Built in Brake Mode pin. SSeemmiiccoonndduuccttoorr http:// www.auk.co.kr SSSSOOPPHH--2288 With Heat-sink

ORDERING INFORMATION

S3313(①) AUK YYWW( ②)

SEPT., 2010 REV . 01 ◈ Pin Assignment 1613 14 15 S3313 S3313

SEPT., 2010 REV . 01 NO SYMBOL I/O DESCRIPTION 1 N.C. - N.C.

2 A 3 O Output3 for motor

3 N.C. - N.C.

4 A 2 O Output2 for motor

5 N.C. - N.C. 6 N.C. - N.C.

7 A 1 O Output1 for motor

8 GND - Ground

9 H 1

+ I Positive input for hall input AMP1

10 H 1

  • I Negative input for hall input AMP1

11 H 2

+ I Positive input for hall input AMP2

12 H 2

  • I Negative input for hall input AMP2

13 H 3

+ I Positive input for hall input AMP3

14 H 3

  • I Negative input for hall input AMP3

15 V H O Hall bias terminal

16 BR I Brake Mode terminal

17 C NF I Capacitor connection pin for phase compensation

18 SB I Short brake terminal

19 FG2 O 3phase synthesized FG signal output terminal

20 FR O Rotation detect signal output terminal

21 E CR I Torque control standard voltage input terminal

22 E C I Torque control voltage input terminal

23 PS I Start & Stop switch

24 FG O FG signal output terminal

25 V CC PWR Power supply for signal division

26 GSW I Gain switch

27 V M PWR Power supply for driver division

28 R NF I Resistance connection pin for output current sense

◈ Pin Description S3313

SEPT., 2010 REV . 01 Parameter Symbol Limits Unit VCC 7 V Supply V oltage VM 15 V Power Dissipation P d 2.2 W Operate Temperature Range T opr -20 ~ +75 ℃ Storage Temperature Range T stg -55 ~ +150 ℃ [ Pd ] When mounted on a 70mm×70mm×1.6mm glass epoxy board. Derating in done 17.6mW/ ℃ for operating above Ta=25℃ [ T stg ] Should not exceed Pd or SOA and Tj=150℃ values Parameter Symbol Limits Unit VCC 4.5 ~ 5.5 V Power Supply V oltage VM 3.0 ~ 14 V ◈ Absolute Maximum Ratings ( Ta = 25℃ ) ◈ Guaranteed Operating Conditions ( Ta = 25℃ ) ◈ 70mm×70mm×1.6mm glass epoxy board . ◈ De-rating is done at 17.6mW/℃ for operating above Ta=25℃ ◈ Power Dissipation Curve [ Pd ] S3313

SEPT., 2010 REV . 01 ( Unless otherwise specified Ta=25 ℃, Vcc=5V , VM=12V ) Specification NO Characteristics Symbol Condition MIN. TYP. MAX. Unit 1 Circuit Current 1 I CC1 PS=L, GSW=Open - 0 0.2 mA 2 Circuit Current 2 I CC2 PS=H, GSW=Open - 6.2 9.1 mA < Power Save > 3 On Voltage Range V PSON Circuit OFF - - 1.0 V 4 OFF Voltage Range V PSOFF Circuit ON 2.5 - - V < Hall Bias > 5 Hall Bias Voltage V HB I HB=10mA 0.5 0.9 1.5 V < Hall AMP > 6 Input Bias Current I HA - 0.7 3.0 uA 7 In-phase Input Voltage Range V HAR 1.0 - 4.0 V

8 Minimum Input Level V INH 50 - - mV PP

9 H 3 Hysteresis Level V HYS 5 20 40 mV

< Torque Control > 10 Input Voltage Range E C, ECR Linear Range 0.5 ~ 3.3V 0 - 5.0 V 11 Offset Voltage (-) E COFF- ECR=1.65V, GSW=L -75 -45 -15 mV 12 Offset Voltage (+) E COFF+ ECR=1.65V, GSW=L 15 45 75 mV 13 Input Current E CIN EC=ECR 7.4 9.2 11 uA 14 Input-Output Gain L G ECL GSW=L, RNF=0.5Ω 0.52 0.65 0.78 A/V 15 Input-Output Gain M G ECM GSW=OPEN, RNF=0.5Ω 1.04 1.30 1.56 A/V 16 Input-Output Gain H G ECH GSW=H, RNF=0.5Ω R 2.24 2.80 3.36 A/V < Gain Switch > 17 Low Voltage Range V GSWL - - 1.0 V 18 Open Voltage Range V GSWOP - 2.0 - V 19 High Voltage Range V GSWH 3.0 - - V < FG > 20 FG Output High Voltage V FGH IFG=-20uA 4.5 4.8 - V 21 FG Output Low Voltage V FGL IFG=3mA - 0.2 0.4 V < FG2 > 22 FG2 Output High Voltage V FG2H IFG2=-20uA 4.6 4.9 - V 23 FG2 Output Low Voltage V FG2L IFG2=3mA - 0.2 0.4 V

24 Duty ( Reference ) DU - 50 - %

◈ Electrical Characteristics 1 S3313

SEPT., 2010 REV . 01 ( Unless otherwise specified Ta=25℃, Vcc=5V , VM=12V ) Specification NO Characteristics Symbol Condition MIN. TYP. MAX. Unit < Rotation Detector > 25 FR Output Voltage H V FRH IFR = -20uA 4.1 4.4 - V 26 FR Output Voltage L V FRL IFR = 3mA - 0.2 0.4 V < Output > 27 Saturation Voltage H V OH IO= -600mA - 1.0 1.35 V 28 Saturation Voltage L V OL IO= 600mA - 0.4 0.65 V

29 Pre-drive Current I VML EC=5V, Output = Open - 35 70 mA

30 Torque Limit Current I TL RNF= 0.5Ω 560 700 840 mA < Short Brake > 31 On Voltage Range V SBON BR=0V 2.5 - - V 32 OFF Voltage Range V SBOFF BR=0V - - 1.0 V < Brake Mode > 33 On Voltage Range V BRON EC 〉ECR, SB=OPEN 2.5 - - V 34 OFF Voltage Range V BROFF EC 〉ECR, SB=OPEN - - 1.0 V ◈ Electrical Characteristics 2 S3313

SEPT., 2010 REV . 01

Application Information

  1. Input-Output circuits 1) Power Save ( Pin 23 ) 2) Torque control input ( Pin 21, Pin 22 ) 3) 3phase output Power TR Structure ( A1:Pin 7, A2:Pin 4, A3:Pin 2 ) 1KΩ 1KΩ Pin 21 Pin 22 RNF RNF Resistance VM 2 4 7 15KΩ 10KΩ Pin 23 All Circuit On/Off S3313

SEPT., 2010 REV . 01 2. Thermal Shut Down ( TSD ) The built-in thermal shutdown circuit mutes the output current when the chip temperature reaches 175 ℃ (typ.). The hysteresis is set to 25 ℃ (typ.) by IHys, so the circuit will start up again when the chip temperature falling to 150 ℃ (typ.) 3. Brake Mode & Short Brake Mode Input “H” voltage to BR pin, change brake type at EC > ECR. Input “H” to Short Brake pin. Short Brak e operates to output-upper-Power Tr off and Output-lower-Power Tr on. Current Sense Amp. Output Band-gap Voltage TSD Circuit Current Sense Amp. Gain Control REV FWD BR SB Brake Mode & Short Brake Circuit S3313

SEPT., 2010 REV . 01 4. Gain Switch We can determine the value of input-output gain G EC by RNF-resistance, and calculate it with the following formula. G EC=0.325/RNF [ A / V ] ( G S W = L o w : 0 V ) G ECM=0.65/RNF [ A / V ] ( G S W = O P E N ) G ECH=1.40/RNF [ A / V ] ( G S W = H i g h : 3 V↑) Torque Sense Amp VCC GSW Va Vb Vc S3313

SEPT., 2010 REV . 01 5. Reverse Rotation Detector Case 1] Forward Rotation ( EC<ECR ) Hall input H1+ and H2+ have phase relation as shown Reverse Rotation Detector circuit. In this case, reverse detection don’t operate. Case 2] Reverse Rotation ( EC>ECR ) Hall input H1+ and H2+ have oppo site relation to forward rotation. So detective circuit operate, make output open. Actual motor rotation at reverse detection Forward Rotation at EC< ECR Rotating speed is decreased due to reverse torque at EC >ECR When motor starts to reverse, reverse detection operates and output become open Rotating reverse at short time due to inertia Stop H1+ H1- CK EC ECR H2+ H2- FR S3313

SEPT., 2010 REV . 01 6. Rotation Speed Detection DSP chip can detect rotation speed by this circuit, show us FG and FG2’s output pulse. H1+ H2+ H3+ H1- H2- H3- FG2 FG Output Wave Output Wave H3 (FG) Output Wave FG2 S3313

SEPT., 2010 REV . 01 7. Power Output Forward rotation and Reverse rotation are decided by Torque Sense Amp. Forward rotation [ EC<ECR ] Reverse rotation [ EC >ECR ] The Power Output’s Current is controlled limita ry, according to Torque Sense Amp’s sink current and Current Sense Amp’s source current, when EC and ECR have potential difference. Maximum Current : Ilimit = VRNF / 0.5Ω ( VRNF = VM-V A ) [ Input-Output Table ] Output Input Condition Forward Rotation Reverse Rotation Pin no. 9 10 11 12 13 14 7 4 2 7 4 2 H1+ H1- H2+ H2- H3+ H3- A1 A2 A3 A1 A2 A3 Notice Condition 1 L M H M M M H L L L H H Pin 7 [ H ] Condition 2 H M L M M M L H H H L L Pin 7 [ L ] Condition 3 M M L M H M L H L H L H Pin 4 [ H ] Condition 4 M M H M L M H L H L H L Pin 4 [ L ] Condition 5 H M M M L M L L H H H L Pin 2 [ H ] Condition 6 L M M M H M H H L L L H Pin 2 [ L ] VM VM VM EC ECR RNF 0.5Ω VM Torque Sense Amp Current Sense Amp Negative Feedback Output Power TR Structure VA S3313

SEPT., 2010 REV . 01 8. Input-Output Timing Chart H1+ H2+ H3+ Output Current Output Voltage Output Current Output Voltage Output Current Output Voltage S3313

SEPT., 2010 REV . 01 Characteristic Diagrams Fig.4 V GSW - Vrnf [ In-Output Gain] Fig. 3 VEC - VECOFF Fig. 1 VCC - IQC Fig. 2 Temperature - I QC Fig.6 I O – VOsat [Upper/Lower] Fig. 5 VPS - Iqc S3313

SEPT., 2010 REV . 01 ◈ Application Circuit + - + - + - + - + - + - - + + - S3313

SEPT., 2010 REV . 01 ◈ Package Dimension SSSSOOPPHH--2288 With Heat-sink S3313

SEPT., 2010 REV . 01 The AUK Corp. products are intended for the use as components in general electronic equipment (Office and co mmunication equipment, m easuring equipment, home appliance, etc.). Please make sure that you consult with us before you use these AUK Corp. products in equipments which require high quality and / or reliability, and in equipments which could have major impact to th e welfare of human life(atomi c energy control, airplane, spaceship, transportation, co mbustion control, all types of safety device, etc.). AUK Corp. cannot accept liability to any damage which may occur in case these AUK Corp. products were used in the mentioned equi pments without prior consultation with AUK Corp.. Specifications mentioned in this publication are subject to change without notice. S3313