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DG506AAKHARN/a27avaiMonolithic CMOS Analog Multiplexers
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DG506ACWI ,Monolithic CMOS Analog MultiplexersGeneral Description Maxim's DG506A and DG507A are monolithic CMOS analog multiplexers. The DG50 ..
DG506ADN ,Monolithic CMOS Analog MultiplexersApplications Control Systems Data Logging Systems Aircraft Heads Up Displays Data Acquisition S ..
DG507ACJ ,Monolithic CMOS Analog MultiplexerslVl/J X IIVI Monolithic CMOS Analog Multiplexers
DG507ACK ,Monolithic CMOS Analog MultiplexersFeatures . Improved 2nd Source! . Pin compatible with Harris, Siliconix, Intersil . Operable wit ..
DG507ACWI ,Monolithic CMOS Analog MultiplexersApplications Control Systems Data Logging Systems Aircraft Heads Up Displays Data Acquisiti ..
DG508A ,Analog Multiplexer, 8-Channel, CMOSFeatures Improved Second SourceMaxim’s DG508A and DG509A are monolithic CMOSanalog multiplexers (m ..
DS1000-25 ,5-Tap Silicon Delay LineELECTRICAL CHARACTERISTICS (0°C to 70°C; V = 5.0V ± 5%)CCPARAMETER SYM TEST MIN TYP MAX UNITS NOTES ..
DS1000-25 ,5-Tap Silicon Delay LineELECTRICAL CHARACTERISTICS (0°C to 70°C; V = 5.0V ± 5%)CCPARAMETER SYM TEST MIN TYP MAX UNITS NOTES ..
DS1000-250 ,5-Tap Silicon Delay LinePIN DESCRIPTIONTAP 1-TAP 5 - TAP Output NumberV - +5 VoltsCCGND - GroundNC - No ConnectionIN - Inpu ..
DS1000-250 ,5-Tap Silicon Delay LineDS10005-Tap Silicon Delay Linewww.dalsemi.com
DS1000-30 ,5-Tap Silicon Delay LineFEATURES PIN ASSIGNMENT All-silicon time delayIN 1 14 VCC 5 taps equally spaced1IN 8 VCCNC 2 13 N ..
DS1000-35 ,5-Tap Silicon Delay LinePIN DESCRIPTIONTAP 1-TAP 5 - TAP Output NumberV - +5 VoltsCCGND - GroundNC - No ConnectionIN - Inpu ..


DG506AAK-DG506ABK-DG506ACJ-DG506ACK-DG506ACWI-DG507ACJ-DG507ACK-DG507ACWI
Monolithic CMOS Analog Multiplexers
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Monolithic CMOS Analog Multiplexers
General Description
Maxim's DG506A and DG507A are monolithic CMOS
analog multiplexers, The DG506A is a single 16
channel (1 of 16) multiplexer, and the DG507A is a
differential 8 channel (2 of 16) multiplexer.
Both devices feature break-before-make switching.
Maxim guarantees that these multiplexers will not
latch-up if the power supplies are turned off with the
input signals still present as long as absolute maxi-
mum ratings are not violated. The multiplexers operate
over a wide range of power supplies from dr4.51/
to i18v
Compared to the original manufacturer's devices,
Maxim's DG506A and DG507A consume significantly
less power, making them ideal for portable equipment.
Maxim's DG506A and DG507A meet or exceed the
specifications of, and are drop-in replacements for,
Intersil's IH6116 and IH6216, Siliconix’s DG506A and
DG507A, and Harris' H1506 and HI507.
- _ A pplications
Control Systems
Data Logging Systems
Aircraft Heads Up Displays
Data Acquisition Systems
Signal Routing
Typical Operating Circuit
-15V -15it
I T ET
v' GND V"
Da ---C)
o-- $33 ANALOG
Amgbqre IMAXI/VI OUTPUT
(OUTPUTS) DG507A 0NPUTS)
o- Stts
I +1sv Db --<)
th-- Sun
t Ao A1 A2 EN
It' ___J
IN o- Brn th:
DM7493OD
NC - AHI
I a, --NC
I rm rit2GND
ENABLE
(MUX ON-OFF
CONTROL)
8 Channel Sequential Differential MUX/DEMUX
- - Features
. Improved 2nd Source!
. Pin compatible with Harris, Siliconix, Intersil
. Operable with i4.5V to i18V Supplies
. Symmetrical, Bl-Dlrectional Operation
. Logic and Enable inputs, TTL and CMOS
Compatible
. Latch-Up Proof Construction
. Monolithic, Low-Power CMOS Design
Ordering Information
PART TEMP. RANGE PACKAGE
DG506AAK -55''C to +125°C 28 Lead CERDIP
DG506ABK -20°C to +85°C 28 Lead CERDIP
DG506AC/D 0°C to '70oC Dice
DG506ACJ J'C to +70°C 28 Lead Plastic DIP
- DGEQGACK 0°C to +70°C 28 Lead CERDIP
DGSOSACWI 0°C to +70°C 28 Lead Wide so
DG507AAK "35.0 to +125°c 20 Lea_d_CERDIP__ -
DG507ABK -20"C to +85°C 28 Lead CERDIP
DG507AC/D 0°C to +70°C Dice
DG507ACJ 0°C to +70°C 28 Lead Plastic DIP
DG507ACK 0°C to 40°C 28 Lead CERDIP
DG507ACWI 0''C to ‘70°C 28 Lead Wide so
Pin Configurations
v FE . E D v‘ T . V Ta] Da
NC La, E] v’ th, CE El v
NC E E] h NC LE E So
" LT CEr] s, Stu, [2 E Sm
" if E Ss Srs E Te] Sa,
" 6 23 Ss San E :5] ssa
513 _ MAXI/M 22 s. Su, Z lVI/JXl/Vl Z] Saa
512 E DGSOGA 21 83 San LC DG507A E Sa,
Sol E CE] S2 Sat, E E sa
510 LE El s, Sat, [E "ity ss
59 LE YE EN Su, LE ll EN
GND 12 YE Ao GND [E E An
NC t3 YE A. NC E CE A1
A314 EIAz NCE EAz.
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Maxim Integrated Products 1
MAXIM is a registered trademark of Maxim Integrated Products,
VZOSW/VQOSQU
DG506A/DG507A
Monolithic CMOS Analog Multiplexers
ABSOLUTE MAXIMUM RATINGS
Voltage Referenced to V"
................................................ 44V
GND .............................................. 25V
Digital Inputs Vs, VD (Note 1) ........ -2V to (V' + 2V) or
20mA, whichever occurs first.
Current, Any Terminal Except S or D ............. 30mA
Continuous Current, s or D ...................... 20mA
Peak Current, s or D
(Pulsed at 1msec, 10% duty cycle max) ......... 40mA
Storage Temperature (A & B Suffix) ...... -65''C to 150°C
(C Suffix) .......... -65'C to 125°C
Operating Temperature (A Suffix) ........ -55°C to 125°C
(B Suffix) ......... -25''C to 85°C
(C Suffix) ........... 0°C to 700C
Power Dissipation (Package)'
28 Pin Ceramic DIP" .......................... 1200mW
28 Pin Plastic DIP"' ............................ 625mW
'All leads soldered or welded to PC board.
"Derate 16mW/°C above 75°C
"HDerate 8.3mW/°C above 75°C
Stresses listed under "Absolute Maximum Ratings" may be applied (one at a time) to devices without resulting In permanent damage. These are
stress ratings only, and functional operation ofthe device at these or any other conditions above those indicated in the operational sections of the
specifications is not implied. Exposure to absolute maximum ratings conditions for extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS (v' = 15V, V" = -15V, GND = OV, TA = 25''C, unless otherwise indicated.)
DGSOGAA DG506AB/C
PARAMETER SYMBOL TEST CONDITIONS DG507AA DGSOMB/c UNITS
MIN TYP MAX MIN TYP MAX
(Note 2)(Note 3) (Note 2)(Note 3)
SWITCH
Analog Signal Range VANALOG -15 15 -15 15 V
Sequence Each VD = 10V,
. Switch On IS = -200PA 270 400 270 450
9yyt-sryce rosmr) VAL = 0.8V, - 1 Q
ON Resistance Vars = 2.4V, YD=___2&VA 230 400 230 450
VEN = 2.4V s "
Greatest Change in r MAX-r MIN
Drain-Source ON Ar Arosion) = (r-ro-sy":,:-,'-::"" 6 6 0/
Resistance Between Ds(on) ros(on) Q
Channels -10V S' VS S 10V
Source OFF Is ff Vs = 10v, VD = -10V -l 0.002 1 -5 0.002 5
Leakage Current (0 ) Vs = -10V, VD = 10V -l -0.005 1 -5 -0.005 5
VEN _- 0.8V Vo - 10v, Vs = -10v -10 0.02 10 -20 0.02 20
F DG506A
Drain OFF VAL = 0.81/ VD = -10V, Vs = 10V -10 -0.03 IO -20 -0.03 20
Leakage Imam
Current VD - 10V, Vs = -10V -5 0.007 5 -10 0.007 10
DG507A
VD = -10V, Vs = 10V -5 -0.015 5 -10 -0.015 10 nA
Sequence Each Vsuo, = Vo = 10V -10 0.03 10 -20 0.03 20
DGSOGA _
Channel ON 4 Switch On v39", = vD = -10V -10 -006 10 -20 Ah06 20
Leakage |D(onl VAL = 0.8V.
Current DG507A VAH = 2.4V, Vswo = VD = 10V -5 0.015 5 -10 0.015 10
VEN = 2.4V vslan) " Vo = -10V -5 A103 5 -10 A103 IO
Address Input Current, IAH VA = 2.4V -10 -0.002 -10 A1002
Input Voltage High VA = 15V 0.006 10 0.006 10 A
Address Input Current, IAL All VA = 0 VEN = 2.4V -10 -0.002 -I -0,002
Input Voltage Low VEN = 0 -10 -0.002 -10 -0.002
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