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TC7W66TOSHIBAN/a150avaiDUAL BILATERAL SWITCH
TC7W66N/a3683avaiDUAL BILATERAL SWITCH


TC7W66 ,DUAL BILATERAL SWITCHTC7W66F/FU/FKT(‘7WEEF T(‘7W66Fll T(‘7W66FKI-vvl-vv- v,vv-I‘The TC7W66 is a high speed CMOS DUAL BIL ..
TC7W66 ,DUAL BILATERAL SWITCHFEATURESHigh Speed B..... tpd=7ns (Typ.) at VCC=5VLow Power Dissipation lcc=1PA(Max.) at Ta =25°CH ..
TC7W66F ,DUAL BILATERAL SWITCHFEATURESHigh Speed B..... tpd=7ns (Typ.) at VCC=5VLow Power Dissipation lcc=1PA(Max.) at Ta =25°CH ..
TC7W66FK ,DUAL BILATERAL SWITCHFEATURESHigh Speed B..... tpd=7ns (Typ.) at VCC=5VLow Power Dissipation lcc=1PA(Max.) at Ta =25°CH ..
TC7W66FU ,DUAL BILATERAL SWITCHTC7W66F/FU/FKT(‘7WEEF T(‘7W66Fll T(‘7W66FKI-vvl-vv- v,vv-I‘The TC7W66 is a high speed CMOS DUAL BIL ..
TC7W74 ,D-TYPE FLIP FLOP WITH PRESET AND CLEARFEATURES0 High Speed ..... fMAX=77MHz(Typ.) at Vcc= 5V0 Low Power Dissipation ... lcc--2PA (Max.) a ..
TDA4862 ,Power Control ICsFeatures• IC for sinusoidal line-current consumption  Power factor approaching 1 Controls boost c ..
TDA4862 . ,Power Control ICs Power-Factor Controller (PFC) TDA 4862IC for High Power Factorand Active Harmonic FilterAdvanced ..
TDA4862G ,Power factor controllerFeatures• IC for sinusoidal line-current consumption  Power factor approaching 1 Controls boost c ..
TDA4862G .. ,Power factor controllerFeatures• IC for sinusoidal line-current consumption  Power factor approaching 1 Controls boost c ..
TDA4862G ... ,Power factor controllerFeatures• IC for sinusoidal line-current consumption  Power factor approaching 1 Controls boost c ..
TDA4863 ,Vertical deflection boosterTable of Contents Page1 Overview . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ..


TC7W66
DUAL BILATERAL SWITCH
TOSHIBA
TC7W66F/FU/FK
TOSHIBA CMOS DIGITAL INTEGRATED CIRCUIT SILICON MONOLITHIC
TC7W66F, TC7W66FU, TC7W66FIK
DUAL BILATERAL SWITCH
The TC7W66 is a high speed CMOS DUAL BILATERAL
SWITCH fabricated with silicon gate CMOS technology.
It consists of four independent high speed switches
capable of controlling either digital or analog signals
while maintaining the CMOS low power dissipation.
Control input (C) is provided to control the switch.
The switch turns ON while the C input is high, and the
switch turns OFF while low.
All inputs are equipped with protection circuits against
static discharge or transient excess voltage.
FEATURES
0 High Speed B....................... tpd=7ns (Typ.) at VCC=5V
0 Low Power Dissipation ......... lcc--1pA(Max.) at Ta =25°C
0 High Noise Immunity ............ 1/NIH=VNIL=28% VCC (Min.)
0 Low ON Resistance ............... R0N=SOQ(Typ.) at Vcc=9V
0 High Degree of Linearity ......... THD=0.05(Typ.) at VCC=5V
0 Pin and Function Compatible with TC4W66
MARKING
FM8 Type Name SM8 U58
E] El El Ia?" ‘Type Name
7W66F/ 7W66’mnnnrl
Lot No. / - xih
It D Ij/ O I O
tc] El lc] E] LlLllJU
TC7W66F
SOP8-P-1.27
TC7W66FU
SSOP8-P-O.65
TC7W66FK
SSOP8-P-0.50A
Weight
SOP8-P-1.27 : 0.05g (Typ.)
SSOP8-P-0.65 : 0.029 (Typ.)
SSOP8-P-0.50A : 0.019 (Typ.)
980910EBA1
OTOSHIBA is continually working to improve the quality and the 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 observe standards of safety, and to avoid
situations in which a malfunction or failure of a TOSHIBA product could cause loss of human life, bodily injury or
damage to property. In developing your designs, please ensure that TOSHIBA products are used within sdecified
operating ranges as set forth in the most recent products specifications. Also, please keep in mind the precautions
and conditions set forth in the TOSHIBA Semiconductor Reliability Handbook.
OThe products described in this document are subject to the foreign exchange and foreign trade laws.
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 propert
property or other rights of TOSHIBA CORPORATION or others.
OThe information contained herein is subject to change without notice.
or other rights of the third
parties which may result from its use. No license is granted by implication or ot erwise under any intellectual
1998-09-24 1/10
TOSHIBA
PIN ASSIGNMENT (TOP VIEW) TRUTH TABLE
CONT 1 INIOUT 2 CONTROL SWITCH FUNCTION
VCC OUT/IN 2
El H ON
1 L OFF
III E El
INIOUT l CONT 2
OUT/IN 1 GND
MAXIMUM RATINGS (Ta =25°C)
CHARACTERISTIC SYMBOL RATING UNIT
Supply Voltage Range VCC -0.r-13 V
Control Input Voltage VIN -0.5~Vcc+0.5 V
Switch l/O Voltage VOUT -0.5--Vcc+0.5 v
Control Input Diode Current lik 120 mA
I/O Diode Current lok -+20 mA
Switch Through Current IOUT 125 mA
DC Vcc/GND Current ICC 125 mA
P er Dissi ati n P 300 (FMS, SM8) mW
ow I IP IO D 200(US8)
Storage Temperature Tstg -65--150 "C
Lead Temperature(10s) TL 260 "C
LOGIC SYMBOL
IN /OUT 1
OUT/IN1
INIOUTZ OUT/IN2
LOGIC DIAGRAM (1/2 TC7W66)
INIOUT ES OUT/IN
CONT t,o-f-i>-V,o-"
TC7W66F/FU/FK
1998-09-24 2/10
TOSHIBA TC7W66F/FU/FK
RECOMMENDED OPERATING CONDITIONS
CHARACTERISTIC SYMBOL RATING UNIT
Supply Voltage VCC 2--12 V
Control Input Voltage VIN tr-uct: V
Switch I/O Voltage VI IO 0~VCC V
Operating Temperature Top, -40--85 'C
0-1000 (VCC = 2.0V)
O--500 V =4.5V
Input Rise and Fall Time tr, tf 0--400 EVE: =6 i,') ns
0-250 (Vcc =10.0V)
DC ELECTRICAL CHARACTERISTICS
Ta = 25°C Ta = - 40~85°C
CHARACTERISTIC SYMBOL TEST CONDITION VCC MIN. TYP. MAX. MIN. MAX. UNIT
2.0 1.5 - - 1.5 -
High-Level Control 4.5 3.15 - - 3.15 -
Input Voltage VIHC 9.0 6.3 - - 6.3 - V
12.0 8.4 - - 8.4 -
2.0 - - 0.5 - 0.5
Low-Level Control 4.5 - - 1.35 - 1.35
Input Voltage VILC 9.0 - - 2.7 - 2.7 V
12.0 - - 3.6 - 3.6
VIN =VIHC 4.5 - 96 170 - 200
VI /0 =VCC to GND 9.0 - 55 85 - 100
II/Og1mA 12.0 - 45 80 - 90
ON Resistance RON VIN =V|HC 2.0 - 160 - - - Q
VI/O=VCC or GND 4.5 - 70 100 - 130
||/o§1mA 9.0 - 50 75 - 95
12.0 - 45 70 - 90
Difference of VIN =VIHC 4.5 - 10 - - -
ON Resistance ARON VI /O =VCC to GND 9.0 - 5 - - - n
Between Switches II/oé1mA 12.0 - 5 - - -
Input/Output VOS=VCC or GND
Leakage Current IOFF V's = GND or Vcc 12.0 - - i 100 - l 1000 nA
(SWITCH OFF) VIN =V|LC
Switch Input
Leaka e Current V =V or GND
(SWITgH ON IIZ ('dsH==uffd 12.0 - - 1100 - 11000 nA
OUTPUT OPEN)
232:2: Input IIN V|N=VCC or GND 6.0 - - i 100 - i 1000 nA
. 6.0 - - 1.0 - 10.0
Quiescent Supply ICC lhN=Vcc or GND 9.0 - - 4.0 - 40.0 pA
Current
12.0 - - 8.0 - 80.0
1998-09-24 3/10
TOSHIBA TC7W66F/FU/FK
AC ELECTRICAL CHARACTERISTICS (CL=50pF, Input tr=tf=6ns)
Ta = 25°C Ta = - 40--85''C
SYMBOL TEST CONDITION
CHARACTERISTIC VCC MIN. TYP. MAX. MIN. MAX. UNIT
h iff 2.0 - 10 50 - 65
:3“.:.:re're 4.5 - 4 IO - 13 ns
aridwgit utpu ¢I/O 9.0 - 3 8 - 10
p 12.0 - 3 7 - 9
2.0 - 18 100 - 125
Qutput Enable thL RL=1kQ 4.5 - 8 20 - 25 ns
Time thH 9.0 - 6 12 - 22
12.0 - 6 12 - 18
2.0 - 20 115 - 145
Qutput Disable tpLZ RL=1kQ 4.5 - 10 23 - 29 ns
Time Wa 9.0 - 8 20 - 25
12.0 - 8 18 - 22
M . c I RL=1kQ fd - :8 - - -
aXImum ontro CL=15pF . - - - - MHz
Input Frequency V =1/21/ 9.0 - 30 - - -
OUT-- CC 12.0 - 30 - - -
Control Input
. - 1 - 1 F
Capacitance CIN 5 0 O p
Switch Terminal
Capacitance Cl /O - 6 - - - pF
Feed Through
Capacitance CIOS - 0.5 - - - pF
Power Dissipation C (Note I) 15 F
Capacitance PD p
(Note 1) : CPD is defined as the value of the internal equivalent capacitance which is
calculated from the operating current consumption without load.
Average operating current can be obtained by the equation :
ICC (opr) = CPD . Vcc . fIN + lcc / 2
1998-09-24 4/10
TOSHIBA TC7W66F/FU/FK
ANALOG SWITCH CHARACTERISTICS (GND=0V, Ta=25°C)
CHARACTERISTIC SYMBOL TEST CONDITION VCC TYP. UNIT
. . . fIN=1kHz. VIN =4.0Vp-p @Vcc=4-5V 4.5 0.05
Sine Wave Distortion RL=1OkQ, VIN =8.0Vp-p @VCC=9-0V %
(T.H.D) 9.0 0.04
CL = 50pF
Adjust le voltage to obtain OdBm at
Vos 4.5 200
Frequency Response Increase le Frequency until dB
(Switch ON) fMAX Meter reads -3dB MHz
RL= son, CL=10pF 9.0 200
W =1MHz, Sine Wave
Vin is centered at Nc.c.12 4
Feedthrough Attenuation Adjust input for OdBm .5 -60 dB
(Switch OFF) RL=6000, CL=50pF 9.0 60
le =1MHz, Sine Wave .
Crosstalk - - 4.5 60
(Control Input to Signal $16105? 1b,i=i',0e'''(,, (t =t =6 ) mV
Output) IN= Z, quare ave r- f= ns 9.0 100
Crosstalk Adjust VIN to obtain OdBm at Input 4.5 -60
(Between any switches) RL--600n, CL=50pF dB
le =1MHz, Sine Wave 9.0 -60
1998-09-24 5/10
TOSHIBA
SWITCHING CHARACTERISTICS TEST CIRCUITS
I. tpLz, tsz, thL, thH
2. CROSS TALK (CONTROL INPUT-SWITCH OUTPUT)
fin =1MHz, duty = 50%, tr=tf= 6ns
3. FEEDTHROUGH ATTENUATION
J_\_GND
- 0.1/1F
S1=Vcc
$2=GND
S1=GND
SZ=VCC
TC7W66F/FU/FK
I thH tsz
90% VOH
50% 'cs"s':i,ss,
I tpil tpLz
10% VOL
1998-09-24 6/10
TOSHIBA TC7W66F/FU/FK
4. Clos, CI/O
r ------.---.-- HF --------- -1
I Vcc l
l VCC l
l IIO , on l
cor) +CIIO
l GND l
A, nn A,
5. CROSS TALK (BETWEEN ANY TWO SWITCHES)
__0-1/1F 6000 OH
Si', La
6. FREQUENCY RESPONSE (SWITCH ON)
- oy" IIO rho/l ' . O
" f>AV 9, 13
GND m l"
1998-09-24 7/10
TOSHIBA TC7W66F/FU/FK
OUTLINE DRAWING
SOP8-P-1.27 Unit : mm
thlrn.l""
Weight : 0.05g (Typ.)
1998-09-24 8/10
TOSHIBA TC7W66F/FU/FK
OUTLINE DRAWING
SSOP8-P-0.65 Unit : mm
a '16:
0' 4 I
G? CD u
T" 'c',
0~O.‘|
Weight : 0.02g (Typ.)
1998-09-24 9/10
TOSHIBA TC7W66F/FU/FK
OUTLINE DRAWING
SSOP8-P-0.50A Unit : mm
u? fi'?
ci CD Ir
ts, C"
Cr'.' "
o~o.1 :
Weight : 0.01g (Typ.)
1998-09-24 10/10

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