DG408LDY-E3 Vishay, DG408LDY-E3 Datasheet - Page 3

Multiplexer Switch ICs LV Single 8:1 3-bit Multiplexer/MUX

DG408LDY-E3

Manufacturer Part Number
DG408LDY-E3
Description
Multiplexer Switch ICs LV Single 8:1 3-bit Multiplexer/MUX
Manufacturer
Vishay
Type
Analog Multiplexerr
Datasheets

Specifications of DG408LDY-E3

Supply Current
0.2 mA
On Resistance (max)
80 Ohms
Propagation Delay Time
60 ns
On Time (max)
95 ns
Off Time (max)
100 ns
Supply Voltage (max)
12 V
Supply Voltage (min)
2.7 V
Maximum Power Dissipation
600 mW
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Package / Case
SOIC-16 Narrow
Mounting Style
SMD/SMT
Number Of Switches
Single
No. Of Circuits
1
On State Resistance Max
20ohm
Supply Voltage Range
3V To 6V
Operating Temperature Range
-40°C To +85°C
Analogue Switch Case Style
SOIC
No. Of Pins
16
Package
16SOIC N
Maximum On Resistance
80@2.7V Ohm
Maximum Propagation Delay Bus To Bus
60@12V|60@±5V|125@5V|150@3V ns
Maximum High Level Output Current
30 mA
Multiplexer Architecture
8:1
Maximum Turn-off Time
100@3V ns
Maximum Turn-on Time
95@3V ns
Power Supply Type
Single|Dual
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Notes:
a. Leakage parameters are guaranteed by worst case test condition and not subject to production test.
b. Room = 25 °C, Full = as determined by the operating temperature suffix.
c. The algebraic convention whereby the most negative value is a minimum and the most positive a maximum, is used in this data sheet.
d. Typical values are for DESIGN AID ONLY, not guaranteed nor subject to production testing.
e. Guaranteed by design, not subject to production test.
f. V
g. ΔR
h. Worst case isolation occurs on Channel 4 do to proximity to the drain pin.
i. R
Document Number: 71342
S09-1259-Rev. F, 13-Jul-09
SPECIFICATIONS Single Supply 12 V
Parameter
Analog Switch
Analog Signal Range
Drain-Source
On-Resistance
R
Between Channels
On-Resistance Flatness
Switch Off Leakage
Current
Channel On Leakage
Current
Digital Control
Logic High Input Voltage
Logic Low Input Voltage
Input Current
Dynamic Characteristics
Transition Time
Break-Before-Make Time
Enable Turn-On Time
Enable Turn-Off Time
Charge Injection
Off Isolation
Crosstalk
Source Off Capacitance
Drain Off Capacitance
Drain On Capacitance
Power Supplies
Power Supply Range
Power Supply Current
DS(on)
IN
DS(on)
DS(on)
= input voltage to perform proper function.
Matching
flatness is measured as the difference between the minimum and maximum measured values across a defined Analog signal.
e
= R
e, h
DS(on)
e
g
Max - R
e
e
e
i
e
DS(on)
V
R
Symbol
t
R
t
t
OFF(EN)
ANALOG
C
C
C
FLAT(on)
t
ON(EN)
OIRR
X
ΔR
TRANS
I
I
I
V
V
OPEN
DS(on)
D(off)
D(on)
S(off)
D(off)
D(on)
TALK
S(off)
V+
I
I+
INH
Q
INL
IN
DS
Min.
V
D
C
V
= 10.8 V, V
f = 1 MHz, V
f = 1 MHz, V
V
L
V
V
f = 1 MHz, V
Unless Otherwise Specified
S1b
AX
V
S1
AX
= 1 nF, V
V+ = 12 V, ± 10 %
V
Sequence Each Switch On
V
D
EN
AX
= 0 V, V
f = 100 kHz, R
= 8 V, V
= 8 V, V
= 0 V, V
V
V
= 10.8 V, V
V
S
EN
= 0 V, V
= V
V
EN
Test Conditions
V
= V
S(all)
(DG409L only)
S
See Figure 2
See Figure 4
See Figure 3
= V
= 0.8 V or 2.4 V
D
EN
I
GEN
= 1 V or 11 V
S
D
D
D
= 2 V or 9 V, I
S1b
S8
S4b
S1
S
A
= 10 mA
= V
= 2.4 V or 0.8 V
= 1 V or 11 V
= 2.4 V, V
= 0 V, V
D
= 0 V, V
= 0 V or 5 V
= 0 V, (DG408L)
= 0 V, R
= 5 V (DG408L)
= 5 V (DG409L)
D
= 0 V, (DG409L)
= 11 V or 1 V
DA
= 2 V or 9 V
L
= 5 V
,
= 1 kΩ
V- = 0 V
EN
EN
GEN
EN
= 2.4 V
S
f
= 0 V
= 0 V
= 10 mA
= 0 Ω
Temp.
Room
Room
Room
Room
Room
Room
Room
Room
Room
Room
Room
Room
Room
Room
Room
Room
Room
Full
Full
Full
Full
Full
Full
Full
Full
Full
Full
Full
Full
b
Typ.
- 70
- 82
0.2
17
30
11
38
18
20
31
1
3
1
7
d
- 55 °C to 125 °C
Min.
- 1.5
- 15
- 15
- 15
2.4
- 1
- 1
- 1
0
1
3
A Suffix
DG408L, DG409L
c
Max.
0.8
1.5
0.7
12
29
38
15
15
15
60
68
55
60
25
35
12
3
7
1
1
1
5
Vishay Siliconix
c
- 40 °C to 85 °C
Min.
- 10
- 10
- 10
2.4
- 1
- 1
- 1
- 1
0
1
3
D Suffix
c
www.vishay.com
Max.
0.8
0.7
12
29
35
10
10
10
60
65
55
60
25
30
12
3
7
1
1
1
1
5
c
Unit
mA
nA
µA
pC
dB
pF
ns
Ω
V
V
V
3

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