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MT8804A Datasheet(PDF) 4 Page - Mitel Networks Corporation

Part No. MT8804A
Description  CMOS 8 x 4 Analog Switch Array
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Maker  MITEL [Mitel Networks Corporation]
Homepage  http://www.mitel.com
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MT8804A CMOS
3-6
* Exceeding these values may cause permanent damage. Functional operation under these conditions is not implied.
† DC Electrical Characteristics are at ambient temperature (25°C).
‡ Typical figures are for design aid only; not guaranteed and not subject to production testing.
Absolute Maximum Ratings* - Voltages are with respect to V
EE unless otherwise stated.
Parameter
Symbol
Min
Max
Units
1
Supply Voltage
VDD-VSS
VDD-VEE
VSS-VEE
-0.3
-0.3
-0.3
16
16
16
V
V
V
2
Analog Input Voltage
VINA
VEE-0.3
VDD+0.3
V
3
Digital Input Voltage
VIN
VSS-0.3
VDD+0.3
V
4
Current on any Logic Pin
I
10
mA
5
Storage Temperature
TS
-65
+150
°C
6
Package Power Dissipation
PLASTIC DIP
CERDIP
PD
PD
0.6
1.2
W
W
Recommended Operating Conditions - Voltages are with respect to V
EE unless otherwise stated.
Characteristics
Sym
Min
Typ
Max
Units
Test Conditions
1
Operating Temperature
TO
-40
25
85
°C
2
Supply Voltage
VDD-VSS
VDD-VEE
VSS-VEE
5
5
0
5
10
5
15
15
10
V
V
V
3
Analog Input Voltage
VINA
VEE
VDD
V
4
Digital Input Voltage
VIN
VSS
VDD
V
DC Electrical Characteristics- Voltages are with respect to V
EE=VSS=0V.
Characteristics
Sym
Min
Typ
Max
Units
Test Conditions
1
Quiescent Supply Current
IDD
1100
µAVDD=15V. All digital inputs at
VIN=VSS or VDD
2
Off-state Leakage Current
(Any line to any junctor)
IOFF
±0.1
±500
nA
VDD=13V, Switch is ‘Off’
IVJi - VLjI = VDD - VEE
3
Input Logic “0” level
VIL
3.0
1.5
V
V
VDD =10V
VDD=5V
VINA=VDD through 1kΩ
4
Input Logic “1” level
VIH
7.0
3.5
V
V
VDD =10V
VDD=5V
VINA=VDD through 1kΩ
5
Maximum current through
Crosspoint Switch
IMAX
±8.0
mA
VDD=13V
DC Electrical Characteristics- Switch Resistance - V
DC is the external DC offset applied at the analog I/O pins.
Characteristics
Sym
25°C
70°C
85°C
Units
Test Conditions
Min
Typ
Max
Typ
Typ
1 On-state
VDD=13V
Resistance VDD=10V
VDD= 5V
RON
60
90
105
290
108
160
650
105
120
320
110
125
325
VSS=VEE=0V,VDC=VDD/2,
IVJi - VLjI = 0.6V
2 Difference in on-state
resistance between
two switches
VDD=13V
VDD=10V
∆R
ON
20
30
20
30
20
30
VSS=VEE=0V,VDC=VDD/2,
IVJi - VLjI = 0.6V




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