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TA2058FTOSN/a730avaiPOWER DRIVER IC FOR CD PLAYER


TA2058F ,POWER DRIVER IC FOR CD PLAYERTA2058FTA7nl§RFPOWER DRIVER IC FOR CD PLAYERTA2058F is a power driver IC developed for CD players. ..
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TA2058F
POWER DRIVER IC FOR CD PLAYER
TOSHIBA
TA2058F
TOSHIBA BIPOLAR LINEAR INTEGRATED CIRCUIT SILICON MONOLITHIC
TA2058F
POWER DRIVER IC FOR CD PLAYER
TA2058F is a power driver IC developed for CD players.
This IC have built-in 4 channel BTL power amplifiers
which drives focus-coil and tracking coil for 3-beam pick-
up head, disc motor and feed motor.
FEATURES
4 channel BTL linear divers
Few external parts
Fixed voltage gain
: Gv=15dB (Typ.)
High output power
: V0M1=5Vp-p (Typ.) Vcc=5V, RL=50HM
: V0M2=6Vp-p (Typ.) Vcc=6V, RL=50HM
Thermal shut down protector
Input reference voltage short protector
Small Package
: Power-flat package 1mm pitch 20pins
Operation Supply Voltage Range
: 1/cc(opr)=4o-1ih01/ (Ta=25°C)
HSOP20-P-450-1.00
Weight
: 0.8g (Typ.)
TOSHIBA TA2058F
BLOCK DIAGRAM
OUT1 +
OUT1 -
V7 V7 A
PW GND
OUT2 -
OUTZ +
2 2001-06-25
TOSHIBA
TERMINAL EXPLANATION
TA2058F
TERmNAL SYMBOL FUNCTION EQUIVALENT CIRCUIT
1 SVCC Supply terminal of small signal
2 INI Input for CH1
0 Not biased inside. IN
3 PVcc1 Supply terminal of output stage for CH1
0 Supply terminal of output stage are SVcc - C) PVcc
not connected to other channel J
terminal. 'h-t
4 OUT1 + Non-inverted output for CH1 fa
5 OUT1 - Inverted output for CH1 " OUT
FIN1 PGND Power GND
. Connected to FIN2 and substrate. PGND
6 OUT2- Inverted output for CH2 Same as CH1
7 OUT2 + Non-inverted output for CH2
8 PVCC2 Supply terminal of output stage for CH2
9 IN2 Input for CH2
10 VRI Input reference voltage
0 Under condition of l/RIS 1.8V, VRI Cl
internal bias circuit is shut off. éig
SGNDO . m
11 VCI Output reference voltage SVCC
o I/OUT-i-NCC-UF)" E
l/ty (i,
12 IN3 Input for CH3 Same as CH1
13 PVCC3 Supply terminal of output stage for CH3
14 OUT3 + Non-inverted output for CH3
15 OUT3- Inverted output for CH3
FIN2 PGND Power GND Connected to FIN1
16 OUT4- Inverted output for CH4 Same as CH1
17 OUT4+ Non-inverted output for CH4
18 PVCC4 Supply terminal of output stage for CH4
19 IN4 Input for CH4
20 SGND Small signal GND
TOSHIBA TA2058F
MAXIMUM RATINGS (Ta = 25°C)
CHARACTERISTIC SYMBOL RATING UNIT
Supply Voltage VCC 14 V
Power Dissipation PD (Note 1) 2 (Note 2) W
Operating Temperature Topr -30--85 "C
Storage Temperature Tstg - 55--150 "C
(Note 1) : Mounted on 50mmx50mmx1.6mm size board with copper area 60% over.
(Note 2) : Derated above Ta=25°C, in the proportion of 62.5mW/°C.
ELECTRICAL CHARACTERISTICS
(Unless otherwise specified, VCC = 5V, RL = 50, Rg = 6200, VRI = 2.1V, f=1kHz, Ta = 25°C)
CHARACTERISTIC SYMBOL CIR- TEST CONDITION MIN. TYP. MAX. UNIT
Operating Voltage VCC - 4.0 - 10.0 V
Quiescent Current Iccto - Vin =0, RL=OPEN 20 35 60 mA
Input Offset Current 'IN - VIN = 2.1V - 250 800 nA
" Terminal Offset Current I10 - VRI =2.1V - 35 120 pA
vo OSI - VCC=5V, Rg :00 -30 - 30
Output Offset Voltage vo OS2 - Vcc=8V, Rg :00 - 50 - 50 mV
vo OS3 - VCC = 12V, Rg =00 - 100 - 100
Reference Output Voltage VOUT - - 2.1 - V
. VOM1 - VCC = 5V 4.0 5.0 -
Maximum Output Voltage VOM2 - VCC = 6V 5.0 6.0 - Vp-p
Voltage Gain Gv - Vin =100mVrms 14.5 15.5 16.5 dB
Frequency Response fc - Vin =100mVrms - 100 - kHz
Total Harmonic Distortion THD - Vin =100mVrms - - 50 - dB
Slew Rate S.R. - Vout = 2Vp-p - 1.0 - V/ps
Cross Talk C.T. - Vout =1Vrms - - 60 - dB
. . . . frip =100Hz
R I R R R.R. - ' - - - B
Ipp e ejection atio Vrip=100mVrms 60 d
Thermal Shut Down . 0
Temperature TTSD - Chip temperature - 150 - C
VR|~GND Short Protection
Voltage VRI OFF - 1.4 1.6 1.8 V
4 2001-06-25
TOSHIBA TA2058F
TEST CIRCUIT
Vcc t2
HSOP 20 POWER DISSIPATION
PD - Ta
C) NO HEAT SINK
© 30X30x1.6mm PC BOARD
A Cs) MOUNTING OCCUPIED COPPER
_i..?.. 2.0 AREA IN EXCESS OF 60%.
© 50x50x1.6mm PC BOARD
f? © 'Ns MOUNTING OCCUPIED COPPER
'sc AREA IN EXCESS OF 60%.
a 1.5 \ "N
r: "s, "s,
g co 's, ,
Q 1.0 "s,
E "ss. "ssc,
t 0 "s, s2tr,
n. -5 F,
"s2.rh, (Note) In case of normal use,
0 s?it. power dissipation of IC
0 25 50 75 100 125 150 only is oblique line
AMBIENT TEMPERATURE Ta (°C) portion.
5 2001-06-25
TOSHIBA
'CCQ (mA)
QUIESCENT CURRENT
DC VOLTAGE vdC (V)
RIPPLE REJECTION RATIO R.R.
ICCQ - Vcc
RL= 0°
RL= 59
Ta =25°C
0 2 4 6 8 10 12
SUPPLY VOLTAGE Vcc (V)
Vdc - Vcc
Ta = 25°C /
w''(jc,
/ |N1~|N4
0 1 2 3 4 5 6 7 8 9 10 11 12
SUPPLY VOLTAGE VCC (V)
R.R. - f
Vcc= 5V
RL= 50
Rg =10kQ
Vrip = 0075me15 (- 20dBm)
1 0 1 00 1 000 1 0000
RIPPLE FREQUENCY, FRIP (Hz)
OUTPUT DC VOLTAGE VOUT(DC) (V)
VOLTAGE GAIN Gv (dB)
TA2058F
VOUT (DC) - Vcc
SUPPLY VOLTAGE Vcc (V)
Vcc= 5V
RL= SQ
Vin =100mvrms
10 100 1000 10000 100000
FREQUENCY f (Hz)
TOSHIBA TA2058F
THD - VOUT THD - VOUT
f=10kHz
TOTAL HARMONIC DISTORTION THD (%)
TOTAL HARMONIC DISTORTION THD
0.2 0.4 1 2
OUTPUT VOLTAGE VOUT (vrms)
0.2 0.4 1 2
OUTPUT VOLTAGE VOUT (vrms)
7 2001-06-25
TOSHIBA TA2058F
THD I VOUT THD I VOUT
f=10KHz Fact
TOTAL HARMONIC DISTORTION THD (%)
TOTAL HARMONIC DISTORTION THD (%)
0.01 0.01
o.N ob l 2 0.2 on l 2
OUTPUT VOLTAGE VOUT (Vrms) OUTPUT VOLTAGE VOUT (l/rms)
VOUT I VIN VOUT I VIN
l 2 w p m m l 2 w a m m
INPUT VOLTAGE VIN (V) INPUT VOLTAGE VIN (V)
m 2001-06-25
TOSHIBA
TA2058F
VOUT - VIN
.5.ii.'
1 2 3 4 5 6
INPUT VOLTAGE VIN (V)
IOUT(DC) - Vcc
1400 OUT REVERSE
E, 1300 RL--SQ
9, 1100
's 1000
cu 600
's 400
SUPPLY VOLTAGE VCC (V)
OUTPUT VOLTAGE Vow (V)
QUIESCENT CURRENT
VOUT - VIN
1 2 3 4 5 6
INPUT VOLTAGE VIN (V)
ICCQ - VRI
1.4 1.5 1.6 1.7 1.8 1.9 2 2.1 2.2
INPUT REFERENCE VOLTAGE VRI (V)
TOSHIBA TA2058F
PRECAUTION USE
Input Stage
q Input stages are consisted of differential circuit of NPN Tr, and have built-in IB compensation
circuit.
Built-in Driver
. Each channel driver consists of BTL configuration linear amplifier.
. Voltage gain is fixed : GV=15.5dB (Typ.)
q Voltage loss for output stage is 21/BE+VCE (sat) for positive cycle, VCE (sat) for negative cycle,
because of no-bootstrap circuit. So, output DC voltage is designed as less than 1/2Vcc.
" Terminal
. VRI is reference voltage terminal for input signal.
. If reference voltage from servo IC drop less than 1.8V, protection circuit operates and shut off
bias circuit inside. This operation is to prevent load from moving undesirably in case of VRI drop
for accident or some reason.
I/ty Terminal
. Output DC voltage is determined by circuit of this terminal inside as ;
VCI =VOUT(DC) = (Vcc-VF)/ 2
. Output signal dynamic range is depend on VCC- On the other hand, input signal dynamic range
is determined by VRI as mentioned and voltage gain is fixed inside. So, maximum output voltage
does not increase as VCC increases.
. Because of BTL configuration, Ripple Rejection Ratio does not improve not much when capacitor
is connected to VCI terminal to GND.
. Large signal GND is for output stage and smallsignal GND is for stages from input circuit to
pre-output stage.
. These GND pins are not connected inside.
. Phin0) and Phin© are connected to Bedflame, and it is connected to substrate.
. It is advised that you make a Printed Board layout of small signal GND and large signal GND
should be isolated each other.
Oscillation preventive capacitor
q We recommend to use the capacitor of 0.1pF, between each output terminals. But perform the
temperature test to check the oscillation allowance, since the oscillation allowance is varied
according to the causes described below.
1) Supply voltage
2) Ambient temperature
3) Load impedance
4) Capacity value of condenser
5) Kind of condenser
6) Layout of Printed board
We recommend to connect Pass-condenser, which is about 10 to 100pF between VRI terminal and
VCI terminal is recommend to use "OPEN".
10 2001-06-25
TOSHIBA TA2058F
PACKAGE DIMENSIONS
HSOP20-P-450-1.00 Unit : mm
4.4ur0.1
'ihpidri1rzihwv,
'il/lic,,',:,:.,,",',,:"')',",,,",',",,,).)," s'
1.07m l" JiiIil - 0.5:t0.1 EIEQ
CEB..,
F, 16.5MAX
L 16.0i0.2
0.13135 ‘2.3iO.2
I 0.92:0.2
Weight : 0.8g (Typ.)
11 2001-06-25
TOSHIBA TA2058F
RESTRICTIONS ON PRODUCT USE
000707EBA
OTOSHIBA is continually working to improve the quality and reliability of its products.
Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent
electrical sensitivity and vulnerability to physical stress. It is the responsibility of the buyer,
when utilizing TOSHIBA products, to comply with the standards of safety in making a safe
design for the entire system, and to avoid situations in which a malfunction or failure of such
TOSHIBA products could cause loss of human life, bodily injury or damage to property.
In developing your designs, please ensure that TOSHIBA products are used within specified
operating ranges as set forth in the most recent TOSHIBA products specifications. Also, please
keep in mind the precautions and conditions set forth in the "Handling Guide for
Semiconductor Devices," or "TOSHIBA Semiconductor Reliability Handbook" etc..
OThe TOSHIBA products listed in this document are intended for usage in general electronics
applications (computer, personal equipment, office equipment, measuring equipment, industrial
robotics, domestic appliances, etc.). These TOSHIBA products are neither intended nor
warranted for usage in equipment that requires extraordinarily high quality and/or reliability or
a malfunction or failure of which may cause loss of human life or bodily injury ("Unintended
Usage"). Unintended Usage include atomic energy control instruments, airplane or spaceship
instruments, transportation instruments, traffic signal instruments, combustion control
instruments, medical instruments, all types of safety devices, etc.. Unintended Usage of TOSHIBA
products listed in this document shall be made at the customer's own risk.
0 The products described in this document are subject to the foreign exchange and foreign trade
OThe information contained herein is presented only as a guide for the applications of our
products. No responsibility is assumed by TOSHIBA CORPORATION for any infringements of
intellectual property or other rights of the third parties which may result from its use. No
license is granted by implication or otherwise under any intellectual property or other rights of
TOSHIBA CORPORATION or others.
0 The information contained herein is subject to change without notice.
12 2001-06-25
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