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 M54HC4066
RAD-HARD QUAD BILATERAL SWITCH
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HIGH SPEED: tPD = 7ns (TYP.) at VCC = 6V LOW POWER DISSIPATION: ICC = 1A(MAX.) at TA=25C LOW "ON" RESISTANCE: RON = 50 TYP. AT VCC = 9V, II/O = 100 A WIDE OPERATING VOLTAGE RANGE VCC (OPR) = 2V TO 12V SINE WAVE DISTORTION: 0.042% at VCC = 4V f = 1KHz HIGH NOISE IMMUNITY: VNIH = VNIL = 28% VCC (MIN.) PIN AND FUNCTION COMPATIBLE WITH 54 SERIES 4066 SPACE GRADE-1: ESA SCC QUALIFIED 50 krad QUALIFIED, 100 krad AVAILABLE ON REQUEST NO SEL UNDER HIGH LET HEAVY IONS IRRADIATION DEVICE FULLY COMPLIANT WITH SCC-9408-052
DILC-14
FPC-14
ORDER CODES
PACKAGE DILC FPC FM M54HC4066D M54HC4066K EM M54HC4066D1 M54HC4066K1
The C input is provided to control the switch; the switch is on when the C input is held high and off when C is held low.
DESCRIPTION The M54HC4066 is an high speed CMOS QUAD BILATERAL SWITCH fabricated with silicon gate C2MOS technology.
PIN CONNECTION
May 2004
Rev. 1
1/11
M54HC4066
Figure 1: IEC Logic Symbols
Figure 2: Logic Diagram
Table 1: Pin Description
PIN N 1, 4, 8, 11 2, 3, 9, 10 13, 5, 6, 12 7 14 SYMBOL 1 to 4 I/O 1 to 4 O/I 1C to 4C GND VCC NAME AND FUNCTION Independent Inputs/Outputs Independent Outputs/ Inputs Enable Inputs (Active High) Ground (0V) Positive Supply Voltage
Table 2: Truth Table
CONTROL H L SWITCH FUNCTION ON OFF
Table 3: Absolute Maximum Ratings
Symbol VCC VIN VI/O IOK IIOK IO PD Tstg TL Supply Voltage DC Input Voltage DC Input/Output Voltage Control Input DC Diode Current I/O DC Diode Current DC Output Source Sink Current Per Output Pin Power Dissipation Storage Temperature Lead Temperature (10 sec) Parameter Value -0.5 to +13 -0.5 to VCC + 0.5 -0.5 to VCC + 0.5 20 20 25 50 300 -65 to +150 265 Unit V V V mA mA mA mA mW C C
ICC or IGND DC VCC or Ground Current
Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these conditions is not implied
2/11
M54HC4066
Table 4: Recommended Operating Conditions
Symbol VCC VIN VI/O Top Supply Voltage Input Voltage (Control) I/O Voltage Operating Temperature Input Rise and Fall Time tr, tf VCC = 2.0V VCC = 4.5V VCC = 6.0V VCC = 10.0V Parameter Value 2 to 12 0 to VCC 0 to VCC -55 to 125 0 to 1000 0 to 500 0 to 400 0 to 250 ns Unit V V V C
Table 5: DC Specifications
Test Condition Symbol Parameter VCC (V) 2.0 4.5 9.0 12.0 2.0 4.5 9.0 12.0 4.5 VI = VIHC 9.0 VI/O = VCC to GND II/O 1mA 12.0 4.5 VI = VIHC 9.0 VI/O = VCC or GND II/O 1mA 12.0 4.5 VI = VIHC 9.0 VI/O = VCC or GND II/O 1mA 12.0 VOS = VCC or GND 12.0 VIS = VCC or GND VIN = VILC 12.0 6.0 6.0 9.0 12.0 VOS = VCC or GND VIN = VIHC VI = VCC or GND VI = VCC or GND TA = 25C Min. 1.5 3.15 6.3 8.4 0.5 1.35 2.7 3.6 170 85 80 100 75 70 Typ. Max. Value -40 to 85C Min. 1.5 3.15 6.3 8.4 0.5 1.35 2.7 3.6 200 100 90 130 95 90 Max. -55 to 125C Min. 1.5 3.15 6.3 8.4 0.5 1.35 2.7 3.6 250 150 120 160 115 110 Max. Unit
VIHC
High Level Control Input Voltage
V
VILC
Low Level Control Input Voltage
V
RON
ON Resistance
RON
Difference of ON Resistance between switches Input/Output Leakage Current (SWITCH OFF) Switch Input Leakage Current (SWITCH ON, OUTPUT OPEN) Control Input Current Quiescent Supply Current
96 55 45 70 50 45 10 5 5
IOFF
0.1
1
2
A
IIZ
0.1 0.1 1 4 8
1 1 10 40 80
2 1 20 80 160
A A A
IIN ICC
3/11
M54HC4066
Table 6: AC Electrical Characteristics (CL = 50 pF, Input tr = tf = 6ns)
Test Condition Symbol Parameter VCC (V) TA = 25C Min. Typ. 10 4 3 3 18 8 6 6 20 10 8 8 30 30 30 30 Max. 50 10 8 7 100 20 12 12 115 23 20 18 Value -40 to 85C Min. Max. 65 13 10 9 125 25 22 18 145 29 25 22 -55 to 125C Min. Max. 75 15 13 10 150 30 27 25 175 35 30 27 Unit
I/O
tPZL tPZH
tPLZ tPHZ
2.0 4.5 9.0 12.0 Output Enable Time 2.0 4.5 9.0 12.0 Output Disable 2.0 Time 4.5 9.0 12.0 Maximum Control 2.0 Input Frequency 4.5 9.0 12.0
Phase Difference Between Input and Output
ns
RL = 1K
ns
RL = 1K
ns
RL = 1K CL = 15 pF VOUT = 1/2 VCC
MHz
Table 7: Capacitive Characteristics
Test Condition Symbol Parameter VCC (V) TA = 25C Min. Typ. 5 6 0.5 15 Max. 10 Value -40 to 85C Min. Max. 10 -55 to 125C Min. Max. 10 pF pF pF pF Unit
CIN CI/O CIOS CPD
Input Capacitance Switch Terminal Capacitance Feed Through Capacitance Power Dissipation Capacitance (note 1)
1) CPD is defined as the value of the IC's internal equivalent capacitance which is calculated from the operating current consumption without load. (Refer to Test Circuit). Average operating current can be obtained by the following equation. ICC(opr) = CPD x VCC x fIN + ICC
4/11
M54HC4066
Table 8: Analog Switch Characteristics (GND = 0V;TA = 25C)
Symbol Parameter VCC (V) Sine Wave Distortion (THD) fMAX Frequency Response (Switch ON) Feed through Attenuation (Switch OFF) Crosstalk (Control Input to Signal Output) Crosstalk (Between Any Switches) 4.5 9.0 4.5 9.0 4.5 9.0 4.5 9.0 4.5 9.0 VIN (Vp-p) 4 8 fIN = 1 KHz RL = 10 K, CL = 50 pF Adjust fIN voltage to obtain 0 dBm at VOS. Increase fIN Frequency until dB meter reads -3dB RL = 50, CL = 10 pF VIN is centered at VCC/2. Adjust input for 0 dBm RL = 600 CL = 50 pF, fIN = 1MHz sine wave RL = 600, CL = 50 pF, fIN = 1MHz square wave (tr = tf =6ns) Adjust VIN to Obtain 0 dBmat input RL = 600, CL = 50 pF, fIN = 1MHz sine wave Test Condition Value Typ. 0.05 0.04 200 200 -60 -60 60 100 -60 -60 % Unit
MHz
dB
mV dB
5/11
M54HC4066
Figure 3: Switching Characteristics Test Circuit
CROSSTALK (control to output)
CROSSTALK BETWEEN ANY TWO SWITCHES
BANDWIDTH AND FEEDTHROUGH ATTENUATION
MAXIMUM CONTROL FREQUENCY
6/11
M54HC4066
Figure 4: Channel Resistance (RON) Figure 5: ICC (Opr.)
7/11
M54HC4066
DILC-14 MECHANICAL DATA
mm. DIM. MIN. A a1 a2 B b b1 D E e e1 e2 F I K L 10.90 1.14 1.27 15.11 7.62 7.11 2.1 3.00 0.63 1.82 0.40 0.20 18.79 7.36 0.88 2.03 0.45 0.254 19.00 7.62 2.54 15.24 7.87 15.37 8.12 7.75 3.70 12.1 1.5 0.429 0.045 0.050 0.595 0.300 0.280 TYP MAX. 2.54 3.70 1.14 2.39 0.50 0.30 19.20 7.87 MIN. 0.083 0.118 0.025 0.072 0.016 0.008 0.740 0.290 0.035 0.080 0.018 0.010 0.748 0.300 0.100 0.600 0.310 0.605 0.320 0.305 0.146 0.476 0.059 TYP. MAX. 0.100 0.146 0.045 0.094 0.020 0.012 0.756 0.310 inch
0016173H
8/11
M54HC4066
FPC-14 MECHANICAL DATA
mm. DIM. MIN. A B C D E F G H L M N 18.75 0.38 4.31 0.38 6.75 9.76 1.49 0.10 7.50 0.127 7.62 1.27 0.43 6.0 22.0 0.738 0.015 0.170 0.48 0.015 TYP 6.91 9.95 MAX. 7.06 10.14 1.95 0.15 7.75 MIN. 0.266 0.384 0.059 0.004 0.295 0.005 0.300 0.050 0.017 0.236 0.866 0.019 TYP. 0.272 0.392 MAX. 0.278 0.399 0.077 0.006 0.305 inch
F
G
D
H
14
8
A
N
L
1
7
H
E
B
M
C
016029E
9/11
M54HC4066
Table 9: Revision History
Date 14-May-2004 Revision 1 First Release Description of Changes
10/11
M54HC4066
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics. The ST logo is a registered trademark of STMicroelectronics All other names are the property of their respective owners (c) 2004 STMicroelectronics - All Rights Reserved STMicroelectronics GROUP OF COMPANIES Australia - Belgium - Brazil - Canada - China - Czech Republic - Finland - France - Germany - Hong Kong - India - Israel - Italy - Japan Malaysia - Malta - Morocco - Singapore - Spain - Sweden - Switzerland - United Kingdom - United States. http://www.st.com
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