S3055 KODENSHI | Alldatasheet
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SEPT., 2010 REV . 01 5CH BTL Motor Drive IC S3055 ▲ Marking Detail Information ① Device Code ② Year & Week Code Product Marking Package S3055 S3055 SSOPH-28N
Description
The S3055 contains 4 channels voltage-type BTL drivers for Tracking and focus, sled, spindle motors and it contains also 1 channel of bi-directional tray motor. Furthermore it embraces 2 independent precision voltage regulators with adjustable range from 1.24V to 4V . It supports various applications with pb free and heat-sink package. Application ◈ CD-Player ◈ CD-ROM ◈ DVD-Player Features and Benefits ◈ 1 Channel is bi-directional DC motor driver for tray. ◈ 4 Channels are voltage-type BTL drivers for actuators, sled and spindle motors. ◈ Separating power of Vcc1 and Vcc2 is to improve power efficiency. ◈ Built in Level shift circuit. ◈ Built in Thermal shut down circuit. ◈ Built in Mute mode. ◈ Built in 2 Regulator controllers. Adjustable range [ 1.25V to 4V ] ◈ Dual Actuator drivers A general purpose input OP Provides differential input for signal addition. The output structure is two power OPAMPS in bridge configuration. ◈ Sled motor driver A general purpose input OP provides differential input for signal addition. The output structure is one power OPAMP in bridge configuration. ◈ Spindle driver Single input linear BTL driver. The output structure are two power OPAMPS in bridge configuration. ◈ Tray Bi-directional driver The DC motor driver supports forward/reverse control for tray motor. SSeemmiiccoonndduuccttoorr http:// www.auk.co.kr SSSSOOPPHH--2288NN With Heat-sink
ORDERING INFORMATION
S3055(①) Y Y W W ( ②)
SEPT., 2010 REV . 01 ◈ Internal Block Diagram & Pin Assignment S3055
SEPT., 2010 REV . 01 NO SYMBOL I/O DESCRIPTION
1 VINFC I Input for focus driver
2 TRB_1 O Connect to exte rnal transistor base
3 REG02 I Regulator voltage feedback, Connect to external bias resistor.
4 VINSL I Input for sled driver
5 REG01 I Regulator voltage feedback, Connect to external bias resistor.
6 FWD I Tray driver input signal for forward direction
7 REV I Tray driver input signal for reverse direction
8 V CC1 PWR V CC for pre-drive block and power block of sled & tray
9 VOTR- O Tray driver output (-)
10 VOTR+ O Tray driver output (+)
11 VOSL+ O Sled driver output (+)
12 VOSL- O Sled driver output (-)
13 VOFC- O Focus driver output (-)
14 VOFC+ O Focus driver output (+)
15 VOTK+ O Tracking driver output (+)
16 VOTK- O Tracking driver output (-)
17 VOLD+ O Spindle driver output (+)
18 VOLD- O Spindle driver output (-)
19 V CC2 PWR V CC for power block of focus, tracking and spindle
20 NC I No Connection
21 VCTL - Speed control input of tray driver
22 GND - Ground
23 VINLD I Input for spindle driver
24 NC - No Connection
25 TRB_2 O Connect to external transistor base
26 VINTK I Input for tracking driver
27 BIAS I Input for reference voltage
28 MUTE I Input for mute control
Symbol of + and – [ output of drives ] means polarity to input pin. For example : if voltage leve l of pin1 is high, pin14 is high ◈ Pin Description S3055
SEPT., 2010 REV . 01 Parameter Symbol Limits Unit Supply V oltage V CC1/VCC2 13.5 V Power Dissipation P d 1.7 W Operate Temperature Range T opr -35 ~ +85 ℃ Storage Temperature Range T stg -55 ~ +150 ℃ [ Pd ] When mounted on a 70mm×70mm×1.6mm glass epoxy board. Reduced by 13.6mW for each increase in T a of 1℃ [ T stg ] Should not exceed Pd or SOA and Tj=150℃ values Parameter Symbol Limits Unit VCC1 4.3 ~ 13.2 V Power Supply V oltage VCC2 4.3 ~ V CC1 V ◈ Absolute Maximum Ratings ( Ta = 25℃ ) ◈ Guaranteed Operating Conditions ( Ta = 25℃ ) ◈ 70mm×70mm×1.6mm glass epoxy board . ◈ De-rating is done at 13.6mW/℃ for operating above Ta=25℃ ◈ Power Dissipation Curve [ Pd ] S3055
SEPT., 2010 REV . 01 ( Unless otherwise specified Ta=25 ℃, Vcc1=12V , Vcc2=5V , BIAS=2.5V , RL=8Ω/12Ω/20Ω/45Ω) Specification NO Characteristics Symbol Condition MIN. TYP. MAX. Unit
1 Quiescent current Iqc - 30 - mA
2 Voltage for Mute on Vston 0 - 0.5 V
3 Voltage for Mute off Vstoff 2 - 5 V
< Actuator Driver: Focus, Tracking >
4 Output Offset Voltage Voo -50 - 50 mV
5 Maximum output Voltage Vom @12 Ω Load 3.6 4 - V 6 Voltage Gain Gv VIN=BIAS+0.2Vpp ac @1khz 21.5 23.5 25.5 dB < Sled Motor Driver >
7 Output Offset Voltage Voosl -100 - 100 mV
8 Maximum output Voltage Vomsl @20 Ω Load 7.5 9.0 - V 9 Voltage Gain Gvsl VIN=BIAS+0.2Vpp ac @1khz 18.0 20.0 22.0 dB < Spindle Motor driver >
10 Output Offset Voltage Voold -50 - 50 mV
11 Maximum output Voltage Vomld @8 Ω Load - 3.5 - V 12 Voltage Gain Gvld VIN=BIAS+0.2Vpp ac @1khz 13.5 15.5 17.5 dB < Tray Motor driver >
13 Output saturation Voltage1 Vsat1 Upper + Lower saturation
IL=200mA 0.7 1.1 1.5 V
14 Output saturation voltage
between F&R △Vsat1 Output saturation voltage1 between FWD and REV - - 0.1 V
15 Output saturation Voltage2 Vsat2 Upper + Lower saturation
IL=500mA 1 1.55 2.2 V
16 Output adjustable gain on
"H" side voltage VvtrH VCTL=2V 7.4 9.2 11 dB < Tray Motor driver input logic > 17 High level input voltage VIH 1.5 - Vcc V 18 Low level input voltage VIL -0.3 - 0.5 V 19 High level input current IIH VFWD=VREV=5V - 180.0 270.0 uA < Regulator > 21 Load Regulation Vld IL=0~500mA -50.0 0.0 50.0 mV 22 Line Regulation Vle Vcc=4.5~8V, IL=500mA -25.0 0.0 25.0 mV [Regulator] It is based on STA353 PNP application. Vreg can be set to other voltage with 5% deviation. ◈ Electrical characteristics S3055
SEPT., 2010 REV . 01
Application Information
- Thermal Shut Down Circuit 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.) 2. Regulator Circuit -. The Ref. V oltage is generated by the internal circuit [Band gap reference] -. It needs to attach an external power TR [* AUK PNP Power TR : STA353*] -. The output voltage of the regulator is calculated depend on R1 and R2’s values. 2.5V [R1: 10K / R2 : 10K] Reg. Bandgap V oltage [ 1.25V ] Focus, Tracking, Tray, Spindle, Sled , Con. Current R4IHys Vo u t STA353 Ref. V oltage [ 1.25V ] Internal Circuit External Circuit S3055
SEPT., 2010 REV . 01 3. Bias & Mute Circuit Bias pin (pin 27) should be pulled up to more than 1.2V . In case the bias pin’s voltage is pulled down below 1.2V (typ.), the output current is muted, also Mute pin is same as Bias pin. [Except Tray, Regulator, Comparator, those are only controlled by Vcc1. ] Focus, Tracking, Sled Spindle Con. Current Bias Mute S3055
SEPT., 2010 REV . 01 4. BTL Driver Circuits [Focus, Tracking, Sled, Spindle] BTL Driver Circuits are composed of VI-Converter, Level Shifter and Output power AMP. VI-Converter converts voltage of Vin into current [Iconv ] Iconv = (Vin – Bias ) / R1[10KΩ] [ Closed loop Voltage Gain Calculation ] Va(+) = (R2×Iconv ) + Pref Va(-) = (-R5 ×Iconv) + Pref Focus, Tracking closed loop Voltage Gain [ R2 = 25KΩ, R3 = 10KΩ, R4 = 20KΩ ] Gain = 20 log [{ V o(+) - V o(-) } / (Vin - Bias) ] = 2 0 l o g [ { ( R 2×Iconv ) + Pref }×( 1 + R4/R3 )]– [{(-R5×Iconv) + Pref }×( 1 + R7/R6 )] (Vin – Bias ) = 23.5 [dB] Sled closed loop Voltage Gain [R2 = 25KΩ, R3 = 10KΩ, R4 = 10KΩ ] Gain = 20 log [2× (25K/10K)×{1+(10K/10K)} ] = 2 0 [ d B ] Spindle closed loop Voltage Gain [R2 = 15KΩ, R3 = 10KΩ, R4 = 10KΩ] Gain = 20 log [2× (25K/10K)×{1+(10K/10K)} ] = 15.5 [dB] VI-Converter Level Shift Iconv Iconv(+) Iconv(-) Va(+) Va(-) Pref V o(+) PAMP1 V o(-) PAMP2 Vin Bias S3055
SEPT., 2010 REV . 01 5. Tray driver logic input FWD [pin6] REV [pin7] VOTR+ [pin10] VOTR- [pin9] FUNCTION L L OPEN OPEN Open mode L H L H Reverse mode H L H L Forward mode H H L L Brake mode Input circuit of pin6 [FWD] and pin7 [REV] is designed to avoid simultaneous activation of upper and lower output power TR. however, in order to improve reliability, apply motor forward/reverse input once through open mode. We recommend that the time Period of open state is longer than 10msec. “H” side output voltage on output voltage [VOL+, VOL-] varies depending on output control terminal for tray. [pin21]“H” side output voltage is set three times (9.3dB typ.) VTCL [pin21], and “L” side output voltage is equal to output saturation voltage. VCTL FWD REV VOTR(+) VOTR(-) Speed Control Switching Logic Driver 1 Driver 2 S3055
SEPT., 2010 REV . 01 Characteristic Diagrams Ω ΩΩ Fig.4 V OM - VCC Fig. 3 VOM - VCC Fig. 1 VCC - IQC Fig. 2 Temperature - I QC Fig. 5 VOM - VCC S3055
SEPT., 2010 REV . 01 ◈ Testing Circuit S3055
SEPT., 2010 REV . 01 ◈ Package Dimension SSSSOOPPHH--2288NN With Heat-sink S3055
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. S3055