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 ADVANCED LINEAR DEVICES, INC.
ALD4201/ALD4202M
CMOS LOW VOLTAGE, LOW CHARGE INJECTION QUAD SPST ANALOG SWITCHES
GENERAL DESCRIPTION The ALD4201/ALD4202M are quad SPST CMOS analog switches specifically developed for 3 to 12 volt applications where low charge injection and low leakage currents are important analog switch operating characteristics. The main features are precision matching, charge compensation circuitry, fast switching, low on-resistance and micropower consumption. The ALD4201 operates in break-before-make switching whereas the ALD4202M operates in make-before-break switching. The ALD4201/ALD4202M are designed for precision applications such as charge amplifiers, sample and hold amplifiers, data converter switches, and programmable gain amplifiers. These switches are also excellent for general purpose switching applications for micropower battery operated systems. APPLICATIONS INFORMATION The ALD4201/ALD4202M are designed to operate with standard single or dual power supplies of +3V to 10V or 1.5V to 5V. Functionality extends down to +2V or 1V power supply, making it suitable for lithium battery or rechargeable battery operated systems where power efficiency and performance are important design parameters. These switches feature nA quiescent current and interface directly to CMOS logic levels from microprocessor or logic interface circuits. Built- in level shifters at the input stage provide for dual supply analog signal switching. On the board level, low charge injection and fast operation can be obtained by using short leads, minimizing input and output capacitances, and by adequate bypass capacitors placed on the board at the supply nodes. For more information, see Application Note AN4200. The ALD4201/4202M are manufactured with Advanced Linear Devices' enhanced ACMOS silicon gate CMOS process, and are also part of the linear elements in Advanced Linear Devices' "Function-Specific" ASIC. ORDERING INFORMATION
Operating Temperature Range -55C to +125C 0C to +70C 0C to +70C 16-Pin CERDIP Package ALD4201 DC ALD4202M DC 16-Pin Plastic Dip Package ALD4201 PC ALD4202M PC 16-Pin SOIC Package ALD4201 SC ALD4202M SC
FEATURES * * * * * * * * * * 3V, 5V & 10V supply operation 1.5V, 2.5V & 5V supply operation 0.1W power dissipation 1pC charge injection Rail-to-rail signal range Low on-resistance pA leakage current 4201 break-before-make switching 4202M make-before-break switching Built-in dual supply level translator
BENEFITS Fast effective signal throughput Low switching transients Low signal loss Essentially no DC power consumption Full analog signal range over power supply rail * Flexible power supply range for battery operated systems APPLICATIONS * * * * * * * * * * * Low level signal conditioning circuits Portable battery operated instruments Computer peripherals PCMCIA Fast sample and hold Analog signal multiplexer Programmable gain amplifiers Switched capacitor circuits Micropower based systems Video/audio switches Feedback control systems * * * * *
PIN CONFIGURATION / BLOCK DIAGRAM
IN1 D1 S1 VGND IN2 D2 S2 V+ NC S3 D3 IN3
1 2 3 4 5 6 7 8
16 15 14 13 12 11 10 9
LOGIC TABLE
Input Logic ALD4201 0 1 On Off Switch State ALD4202M Off On
S4 D4 IN4
DC, PC, SC PACKAGE
* Contact factory for industrial temperature range. (c) 2005.1 Advanced Linear Devices, Inc. 415 Tasman Drive, Sunnyvale, California 94089 -1706 Tel: (408) 747-1155 Fax: (408) 747-1286 http://www.aldinc.com
ABSOLUTE MAXIMUM RATINGS
Supply voltage, V+ referenced to V GND Terminal voltage range (any terminal) Note 1 Power dissipation Operating temperature range PC, SC package DC package Storage temperature range Lead temperature, 10 seconds DC current (any terminal) -0.3V to +13.2V -0.3V to +13.2V (V- -0.3)V to (V+ +0.3)V 600 mW 0C to +70C -55C to +125C -65C to +150C +260C 10mA
POWER SUPPLY RANGE
4201/4202M (PC,SC) Parameter Supply Voltage Symbol VSUPPLY Min 1.5 3.0 Typ Max 6.0 12.0 Min 1.5 3.0 4201/4202M (DC) Typ Max 6.0 12.0 Unit V V Dual Supply Single Supply
DC ELECTRICAL CHARACTERISTICS TA = 25C V+ = +5.0V, V- = -5.0V GND = 0.0V unless otherwise specified
4201/4202M (PC,SC) Parameter Analog Signal Range On - Resistance Symbol VA RON Min -5.0 90 120 Typ Max 5.0 135 180 Min -5.0 90 140
Change of On-Resistance from -VS to +VS Change of On-Resistance with Temperature
4201/4202M (DC) Typ Max 5.0 135 210 % Unit V VA = 0V I A = 1mA 0C to +70C -55C to +125C Test Conditions
RON RON/T
16
16
0.43
0.43
%/C
RON Match Between Switches Source Off Leakage Current IS(OFF)
2
2
%
50
100 500
50
100 4000
pA pA pA pA pA pA pA pA pA
VS = +/-4.0V, VD = -/+4.0V 0C to +70C -55C to +125C VD = +/-4.0V, VS = -/+4.0V 0C to +70C -55C to +125C
Drain Off Leakage Current
ID(OFF)
50
100 500
50
100 4000
Channel On Leakage Current
ID(ON)
50
100 500
50
100 4000
0C to +70C -55C to +125C Logic "1"
Input High Voltage Input Low Voltage Input High or Input Low Current Supply Current
VIH VIL IIH IIL ISUPPLY
4.0 0.8
4.0 0.8 V
Logic "0" 1.5 VSUPPLY 5.0V
10 0.01 1 0.01
10 1
nA A
ALD4201/ALD4202M
Advanced Linear Devices
2
AC ELECTRICAL CHARACTERISTICS TA = 25C V+ = +5.0V, V- = -5.0V, GND = 0.0V unless otherwise specified
Parameter Turn On Delay time Turn Off Delay time
Break-Before-Make
Symbol t ON t OFF t BD t MD Q INJ
4201/4202M (PC) Min Typ Max 150 60 60 100 20 90 240 110 130 180
4201/4202M (DC) Min Typ Max 150 60 60 100 20 90 240 110 130 180
4201/4202M (SC) Min Typ Max 150 60 60 100 20 90 240 110 130 180
Unit ns ns ns ns ns
Test Conditions 4201 (Note 2) 4202M 4201 (Note 2) 4202M 4201 (Note 3)
Delay Time
Make-Before-Break
15
40
15
40
15
40
ns
4202M (Note 3)
Delay Time Charge Injection 2 1 75 90 THD C S(OFF) CD(OFF) CDS(ON) CPP 0.05 0.01 5 2.5 2 1 75 90 0.05 0.01 5 2.5 1 0.7 75 90 0.05 0.01 2.5 2.0 pC pC dB dB % 4201 (Note 3) (Note 4) 4202M At f = 100KHz, (Note 5) At f = 100KHz, (Note 6) RL = 10K RL = 100K
Off Isolation Crosstalk Total Harmonic Distortion Source/Drain Off Capacitance Channel On Capacitance Pin to Pin Capacitance
3.0 5.7
3.0 5.7
3.0 5.7
pF pF
0.5
0.6
0.25
pF
DC ELECTRICAL CHARACTERISTICS TA = 25C V += +5.0V, V- = GND = 0.0V unless otherwise specified
ALD4201/4202M (PC,SC) Parameter Analog Signal Range On - Resistance Symbol VA RON Min 0.0 195 240 Typ Max +5.0 280 350 ALD4201/4202M (DC) Min 0.0 195 270
Change of On-Resistance from -VS to +VS Change of On-Resistance with Temperature
Typ
Max +5.0 280 390
Unit V
Test Conditions
VA = +2.5V IA = 1mA 0C to +70C -55C to +125C
RON RON/T
20
20
%
0.43
0.43
%/C
RON Match Between Switches Input High Voltage Input Low Voltage Notes: VIH VIL 4.0
2
2
%
4.0 0.8 0.8
V V
1. Voltage on any terminal must be less than (V+) + 0.3V and greater than (V-) - 0.3V, at all times including before power is applied and V+ = V- = 0.0V. Vsupply power supply needs to be sequenced on first on power turn-on and sequenced off last during power turn-off. 2. See Switching Time Test Circuit. 3. Guaranteed by design . 4. See Charge Injection Test Circuit 5. See Off Isolation Test Circuit 6. See Crosstalk Test Circuit
ALD4201/ALD4202M
Advanced Linear Devices
3
DC ELECTRICAL CHARACTERISTICS TA = 25C V+ = +3.0V, V- = GND = 0.0V unless otherwise specified
4201/4202M (PC,SC) Parameter Analog Signal Range On - Resistance Symbol VA RON Min 0.0 500 620 Typ Max 3.0 700 880 4201/4202M (DC) Min 0.0 500 680 Change of On-Resistance
from -VS to +V S
Typ
Max 3.0 700 1000
Unit V
Test Conditions
VA = 1.5V I A = 1mA 0C to +70C -55C to +125C
RON RON/T
43
43
%
Change of On-Resistance
with Temperature
0.27
0.27
%/C
RON Match Between Switches Input High Voltage Input Low Voltage VIH VIL 2.4
2 2.4 0.8
2
% V 0.8 V
TYPICAL PERFORMANCE CHARACTERISTICS
POWER DISSIPATION AS A FUNCTION OF FREQUENCY
1.0
POWER DISSIPATION (mW)
240 200 160 125C 120 80 40 85C 25C -25C -55C VSUPPLY = 10V
ON RESISTANCE AS A FUNCTION OF SIGNAL VOLTAGE
VSUPPLY = 5V
0.6 0.4 0.2 0 0 1 10 100 1000 10000
ON - RESISTANCE ()
0.8
0
2
4
6
8
10
FREQUENCY (KHz)
SIGNAL VOLTAGE (V)
ON RESISTANCE AS A FUNCTION OF SIGNAL VOLTAGE
500
ON RESISTANCE AS A FUNCTION OF SIGNAL VOLTAGE
850
ON - RESISTANCE ()
300
125C
ON - RESISTANCE ()
400
VSUPPLY = 5V
700 550 400 250 100
VSUPPLY = 3V
200 100 0 0 1 2 3 4
85C 25C - 25C - 55C
125C 85C 25C - 25C - 55C 0 0.6 1.2 1.8 2.4 3.0
5
SIGNAL VOLTAGE (V)
SIGNAL VOLTAGE (V)
ALD4201/ALD4202M
Advanced Linear Devices
4
TYPICAL PERFORMANCE CHARACTERISTICS
SUPPLY CURRENT AS A FUNCTION OF INPUT VOLTAGE
2.0
SUPPLY CURRENT AS A FUNCTION OF INPUT VOLTAGE
100
SUPPLY CURRENT (mA)
SUPPLY CURRENT (A)
1.6 1.2 0.8 0.4 0 0 2 4 6
VSUPPLY = 10V
80 60 40 20 0
VSUPPLY = 5V
8
10
0
1
2
3
4
5
INPUT VOLTAGE (V)
INPUT VOLTAGE (V)
10
TOTAL HARMONIC DISTORTION(%)
SUPPLY CURRENT AS A FUNCTION OF INPUT VOLTAGE
TOTAL HARMONIC DISTORTION AS A FUNCTION OF FREQUENCY
100 10 1 0.1 0.01 RL = 10K 0.001 0.1 1.0 10 100 VSUPPLY = 5V VS = 0.355 VRMS RL = 10K
SUPPLY CURRENT (A)
8 6 4 2 0 0 0.6 1.2 1.8
VSUPPLY = 3V
2.4
3.0
INPUT VOLTAGE (V)
FREQUENCY (KHz)
SWITCH DELAY TIME AS A FUNCTION OF SUPPLY VOLTAGE
500
SWITCH DELAY TIME AS A FUNCTION OF SUPPLY VOLTAGE
500
SWITCH DELAY TIME (ns)
SWITCH DELAY TIME (ns)
400 300 200 100
ALD4201
400 300 200 100
ALD4202M
TURN ON DELAY TIME
TURN OFF DELAY TIME
TURN OFF DELAY TIME 0 3 4 5 6 7 8 9 10
TURN ON DELAY TIME 0 3 4 5 6 7 8 9 10
SUPPLY VOLTAGE (V)
SUPPLY VOLTAGE (V)
ALD4201/ALD4202M
Advanced Linear Devices
5
TEST CIRCUITS
SWITCHING TIME TEST CIRCUIT CROSSTALK TEST CIRCUIT
+5V -5V
+5V
-5V
Vi = 1Vrms 100KHz
V+ VS = 3V Logic Input 100KHz 4.5V 0V S1 IN1 GND
VD1 VO CL = 35pF RL = 1K
S1 S2
V+
V-
D1 D2 RL = 1K CL = 15pF
VO CL = 15pF
50
GND RL = 1K
tr = tf 20ns
CCRR = 20 log [ VO/Vi ]
Logic Input VO
50%
50%
90%
10%
TOTAL HARMONIC DISTORTION TEST CIRCUIT
+5V
-5V
ton / toff
toff / ton
Vi = 1Vpp 100KHz
S1 IN1
V+
V-
D1 RL = 1K
VO CL = 15pF
50
GND
CHARGE INJECTION TEST CIRCUIT
+5V
-5V
OFF ISOLATION TEST CIRCUIT
V+ S1 IN1 GND 4.5V 0.5V Logic Input 100KHz VD1 VO CL = 1000pF
+5V -5V
Vi = 1Vrms 100KHz
S1 IN1
V+
V-
D1 RL = 1K
VO CL = 15pF
50
GND
Logic Input VO Q = CLVO
VO
ALD4201/ALD4202M
Advanced Linear Devices
6


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