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TC9184APTOSHIBAN/a1467avaiHIGH PERFORMANCE ELECTRONIC TONE CONTROL


TC9184AP ,HIGH PERFORMANCE ELECTRONIC TONE CONTROLTC9184APT(‘Q1RAAPvTC9184AP is electronic tone control ICs developed foraudio equipment. These ICs c ..
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TC9184AP
HIGH PERFORMANCE ELECTRONIC TONE CONTROL
TOSHIBA TC9184AP
TOSHIBA CMOS DIGITAL INTEGRATED CIRCUIT SILICON MONOLITHIC
TC91l84,AP
HIGH PERFORMANCE ELECTRONIC TONE CONTROL
TC9184AP is electronic tone control ICs developed for
audio equipment. These ICs can control bass and treble
with serial data externally.
FEATURES
0 Allows 13-step variable control lr-o---) by 2dB
o Bass and treble of 2 channels are built in.
0 Being in CMOS structure, wide dynamic ranges and low
distortion rate are obtained. DlP16-P-300-2.54A
o A dual power supply of (+) and (-) is applicable, and Weight : 1.00g (Typ.)
then the serial input data operates in a logic level of 0
to 5V, so the interface with a micro computer is easily
available.
It Package type.
TC9184AP DIP-16pin
PIN CONNECTION
TC9184AP
vsst 1 V 16 EIVDD
BASS + ta 15 [IBAss +
BASS - te 14 IBAss -
COM[ 4 13 [lccivi
TREBLE - t 5 12 [ITREBLE -
TREBLE + t 6 11 UTREBLE +
GNDIJ 7 10 Jsrs
CKI a 9 TDATA
1 2001-06-19
TC9184AP
TOSHIBA
CK DATA STB
-C) BASS -
-C) TREBLE -
-() TREBLE +
HOLSISEU HBGCIV‘I
HOLSISSH MBGCIV'I
HDJJMS DOTVNV
--C) COM
HDLIMS DOTVNV
LEVEL SHIFT
.LIFDHD
.LIfDHD 831993}! .LJIHS uqoz DNUDELLEK]
LIODHD HDLVW MQEL
JJFDHD HDLV1 MCIEI.
HDJJMS DOTVNV
HDJJMS DOTVNV
HOLSISEH HSGGV'I
HOLSISSH HBGGV'I
BASS + o-
BASS - o-
COM o-
TREBLE - o-
TREBLE + O-
TOSHIBA TC9184AP
PIN FUNCTION
PIN No. SYMBOL FUNCTION DESCRIPTION REMARKS
1 vss . .
Power supply voltage terminals (Analog section) -
16 VDD
2/15 BASS + Volume terminal
BASS +
3/14 BASS -
BASS -
5/12 TREBLE - COM -
TREBLE-
6/11 TREBLE +
" 1)3 COM TREBLE +
7 GND GND terminal (Digital section) -
8 CK Clock input terminal.
Clock input for receiving data from DATA terminal.
Data input terminal.
9 DATA Input 20bit tone control data by synchronizing to the rise of OCMOS input
CK signals. 0 Level shift
Strobe input terminal. circuit is
The tone control data received from DATA and CK terminals built in.
10 STB are transferred into IC by turning this terminal to "H" level.
Previous data are kept stored so long as "H" level is not
applied to this terminal.
3 2001-06-19
TOSHIBA TC9184AP
DESCRIPTION ON OPERATION
1. Setting of tone control position
The tone control position can optionally be set by inputting specified data to DATA, CK, and STB
terminals.
Input data are composed of 20 bits in the following manner :
It Serial data format
DATA B T "0" +12 +10 +8 +6 +4 +2 0 -2 -4 -6 -8 -10-12 "1" "1" "1" "1"
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20
I TONE CONTROL DATA 1
TREBLE VOLUME 1 SELECT CODE f
BASS VOLUME
0 The 4th to the 16th DATA are tone control data and can be used for setting in 13 steps for the
range of 12--0---12dB.
o The 1st and the 2nd DATA are for selecting data of BASS VOLUME/TREBLE VOLUME.
When 3: 1, BASS VOLUME is set, T-- 1, TREBLE VOLUME, and B=T= 1, BASS+TREBLE VOLUME.
It Two channels of BASS/TREBLE VOLUME and change simultaneously.
(Note) The two channels of each BASS/TREBLE VOLUME can not be set independently.
o The received data are transffered into each volume synchronously to the rise of STB signals.
DATA-l-el [T] -6 -8
CK Il---il ll---il Il---il Ilmil
(VOLUME LEVEL)
4 2001-06-19
TOSHIBA TC9184AP
2. Input to DATA, CK, and STB
Although TC9184AP is usually used in a dual power supply of (+) and (-), DATA CK, and STB
terminals are operated only by the single power supply of (+) by means of a built-in level shift
circuit.
Furthermore, the threshold level of the input to these three terminals is designed to low, they can
be operated at a logical level of 5V.
VDD (9V)
VIH (4V)
VIL (1V)
GND(0V)
vss (-9V)
_-v--' u-v.-"
DIGITAL SIGNAL ANALOG SIGNAL
Input data to DATA, CK, and STB in the following timing.
DATA / x x;; l
CK C l 'f, l
a> IO/s (fCK< 500kHz) b> 2,5
0 DATA signals are read at the rise of CK.
o The input data are latched inside at the rise of STB and change the volume values.
5 2001-06-19
TOSHIBA TC9184AP
3. Power supply and correlations
Although TC9184P is usually used in dual power supply, they can be operated even in a single
power supply, where it should be noted that when VDD-GND>9.0V, the threshold input voltage
level (VIH/VIL) at DATA, CK, and STB terminals becomes as follows :
VIH ZVDDXOB (V) 18V2 VDD-GND>9V
VIL "sVDDx0.1(1/) GND=VSS=0V
0 Use of dual power supply
STB DATA CK
”Ll VDD
' STB DATA
, I GND
VSS u j k 1
DIGITAL SIGNALS ANALOG SIGNALS
ct Use of single power supply
STB DATA CK
VDD STB DATA
(1/2 VDD) _.-.-.-.-.-.-.-.-.-.-.-'.-.-.-.--
Vss -FLFlll-
GND V J u J
DIGITAL SIGNALS ANALOG SIGNALS
6 2001-06-19
TOSHIBA TC9184AP
4. Variable resistance
The tone control volume consists of diffused resistors and analog switches.
Two sets of BASS/TREBLE VOLUME, in total four volumes, are built-in.
BASS Volume
BASS +/ +12 - CD -5-
'- +8 - 100-
N +6 _ 90-
+4 - 80-
+2 - A 70-
' COM 2
0 C) 60-
: -2 - 50-
Z -4 _ 40-
-6 _ 30-
F -8 _ 20-
'- -10 _ 10-
BASS -l cr) -12 - c ' ' ' I ' l
-12 0 +12
(STEP)
7 2001-06-19
TOSHIBA
TC9184AP
TREBLE Volume
TREBLE + +12 :1) %
+8 100-
+6 90-
+4 80-
+2 A 70-
0 O 60-
-2 50-
-4 40-
-6 30-
-8 20-
-10 10-
TREBLE - C -12 c i ' I
-12 0 +12
(STEP)
8 2001-06-19
TOSHIBA TC9184AP
MAXIMUM RATINGS (Ta = 25°C)
CHARACTERISTIC SYMBOL RATING UNIT
Power Supply Voltage (1) VDD-I/SS -0.3--36 V
Power Supply Voltage (2) VDD-GND -0.3-20 V
GND Block Input Voltage VIN(1) -0.r-VDD+0.3 v
I/SS Block Input Voltage VIN(Z) VSs-0.3--VDD+0.3 v
Power Dissipation PD 300 mW
Operating Temperature Topr -40--85 °C
Storage Temperature Tstg -65--150 ''C
ELECTRICAL CHARACTERISTICS (Unless otherwise specified, 1/DD--15V, vss-- -15V, Ta=25°C)
CHARACTERISTIC SYMBOL CIR- TEST CONDITION MIN. TYP. MAX. UNIT
Operating Supply - - - ~
Voltage (1) VDD I/SS 12 34 V
Operating Supply
V - ND - - . '"- 1 V
Voltage (2) DD G 6 0 8
Operating Supply . -
Current IDD 1 No input, No load 0.5 1.0 mA
Input "H" Level VIH CK, DATA, STB 4.0 - VDD V
Voltage "L" Level VIL VDD=6.0~18V GND - 1.0
Input "H" Level IIH CK, DATA VIH =VDD - 1.0 - 1.0 A
Current "L" Level IIL STB VIL=0V - 1.0 - 1.0 /1
Volume Resistance R - - 70 100 130 k0
Relative Resistance AR - - -5.0 - 5.0 %
Max. Input Amplitude VIN - - - - 10 Vrms
Max. Clock Frequency fCK - - - - 500 kHz
Min. Clock Pitch TCK - - 2 0 - - ps
T(?tal Prmonic THD 1 STEP=12dB, hN=1kHz - 0.005 0.01 %
Distortion VIN =1.0Vp-p
TEST CIRCUIT
A STB DATA CK
"ssicrcgiij,d
o I ' DISTORTION
Cg +> TC9184AP c} ANALYZER
”WWW‘L" ”E
OSCILLATOR Vss
9 2001-06-19
TOSHIBA TC9184AP
APPLICATION CIRCUIT (Dual power supply)
|NP8T-1 OUTCP)UT-1
a ta,' 39km 562m 27km I
An, '- +
crt; 120k§282k§2
'i," -0--lr--
0.068/1F 0.012yF
5.6km 10/“:
>-I= 'a- -
pF IPF 4762 1 Lil J,
g 5 rN STB
VDDC . :J-j :t'i DATA
d) Ct 67 2 m db (iso (it ca 12 ll 10 (5. '
3t u. +
GNDOj, P _ g P
t,, t + .
Q) (2) (9Q? o (Pg) g3) La.) 5 e 7 b
VSSC - " t t CK
1.7“!) 'ri,' g"
27pF +1/1F J" : EC;
I g- . Q
ct 120k!) 82km 0.0§8#F 00.12/11: m mm J,
_ - " " + u.
53: LL I I 1
F + 39142 SSOkQ 27m F
INPUT-Z OUTPUT-2
OP AMP : TA75558P, TA75559P or equivalent
10 2001-06-19
TOSHIBA TC9184AP
APPLICATION CIRCUIT (Single power supply)
u. I k k 27k
Cl {a 39 n Mit? Q Q
tt, JVV- t
gt' +4714) 8 k9. I o
q 'A'A' "tt _ "--"- Ps + + -
47pF 0.068PF 0.012pF N -i-Q OUTPUT-1
I 'g - g w 10pF
1/1F ' T u.
47m c: g.
. “' g E o STB
VDDC - m s-' DATA
dy 7) C6) C2 ol,: 15 61) 63 12 11 J cl]
m 1 (2) C3) 4 l ", ", b? C2) (3) <4)
5 6 7 tll
C: Cl CK
47m ii. c? LI,
' m‘ P J;
47pF W5 5 u, o
, +n . C) :tt,t
47m v,ral 0.0.6.8,uF 0.0'1'2/1F C) + l -'g--ooUTPUT-2
Ci . " " " " d, 10pF
I I c)
PF + u. F
t :1 -AAN--Nh6-
'T F 39kQ 560kQ 27kQ
|NPUT-2
OP AMP : TA75558P, TA75559P or equivalent
VZ (Zener voltage) =1/2 VDD
11 2001-06-19
TOSHIBA TC9184AP
PACKAGE DIMENSIONS
DIP16-P-300-2.54A Unit : mm
16 9 3,
r1 F-n m r1 l_| W r-n r-1 d
‘ 19.75MAX _,
19.25i0.2 g
c-eethl
0.735TYP
Weight : 1.00g (Typ.)
12 2001-06-19
TOSHIBA TC9184AP
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.
13 2001-06-19
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