MAX379MJE/883B

SCOPE: HIGH VOLTAGE, FAULT PROTECTED, ANALOG MULTIPLEXER
Device Type Generic Number
01 MAX378M(x)/883B
02 MAX379M(x)/883B
Case Outline(s). The case outlines shall be designated in Mil-Std-1835 and as follows:
Outline Letter Mil-Std-1835
Case Outline Package Code
JE GDIP1-T16 or CDIP2-T16 16 LEAD CERDIP J16
LP CQCC1-N20 20-Pin Ceramic LCC L20
Absolute Maximum Ratings
Voltage between Supply Pins ................................................................................................... +44V
V
+
to GND .......................................................................................................................... +22V
V
-
to GND .......................................................................................................................... -22V
Digital Inputs, Overvoltage :
V
EN
, V
A
(V
+
) .......................................................................................................................... +4V
V
EN
, V
A
(V
-
) ..............................................................................................................….......... -4V
Analog Input with Multiplexer Power On ....................................................................…........ ±65V
(Recommended) V
+
....................................................................................................…..... +15V
(Power Supplies) V
-
) ..................................................................................................…...... -15V
Analog Input with Multiplexer Power Off .......................................................................... ±80V
Continuous Current, IN or OUT ......................................................................................... 20mA
Peak Current IN or OUT(Pulsed at 1ms, 10% duty cycle max) ........................................ 40mA
Lead Temperature (soldering, 10 seconds) ........................................................................... +300°C
Storage Temperature .............................................................................................. -65°C to +150°C
Continuous Power Dissipation ....................................................................…....... T
A
=+70°C
16 lead CERDIP(derate 10.0mW/°C above +70°C) .................................................. 800mW
20 lead LCC (derate 9.1mW/°C above +70°C) ......................................................... 727mW
Junction Temperature T
J
..........................................................................…........... +150°C
Thermal Resistance, Junction to Case, ΘJC:
Case Outline 16 lead CERDIP................................................................... 50°C/W
Case Outline 20 lead LCC ........................................................................ 20°C/W
Thermal Resistance, Junction to Ambient, ΘJA:
Case Outline 16 lead CERDIP.................................................................. 100°C/W
Case Outline 20 lead LCC ....................................................................... 110°C/W
Recommended Operating Conditions.
Ambient Operating Range (T
A
) ............................................................... -55°C to +125°C
Supply Voltage Range V
-
to V
+
...................................................................... -15V to +15V
V
AH
, Logic Level High .........................................................................….................. +2.4V
V
AL
, Logic Level Low ................................................................................................ +0.8V
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device.
These are stress ratings only, and functional operation of the device at these or any other conditions beyond
those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum
rating conditions for extended periods may affect device reliability.
---------------------------- Electrical Characteristics of MAX378/379/Mxx/883B 19-0343 Rev. D
Page 2 of 6
TABLE 1. ELECTRICAL TESTS
TEST Symbol
CONDITIONS
-55 °C <=T
A
<= +125°C
V+=+15V, V-=-15V, GND=0V
V
AH
=2.4V, V
AL
=0.8V
Unless otherwise specified
Group A
Subgroup
Device
type
Limits
Min
Limits
Max
Units
SWITCH
Analog-Signal
Range
V
ANALOG
V
S
=±15V, NOTE 1
1,2,3 All
-15 15 V
Drain-Source ON
Resistance
r
DS(ON)
I
S
=±100µA, V
D
=±10V
1
2,3
All
3
4
k
Source-OFF
Leakage Current
I
S(OFF)
V
S
=±10V, V
D
=±10V, V
EN
=0.8V
1
2,3
All
-0.5
-50
0.5
50
nA
Drain-OFF
Leakage Current
I
D(OFF)
V
S
=±10V, V
D
=±10V, V
EN
=0.8V
1
2,3
01
-1
-200
1
200
nA
Drain-OFF
Leakage Current
I
D(OFF)
V
S
=±10V, V
D
=±10V, V
EN
=0.8V
1
2,3
02
-1
-100
1
100
nA
Channel-ON
Leakage Current
NOTE 4
I
D(ON)
V
S(ALL)
=V
D
=±10V, V
AL
=0.8V,
V
AH
= V
EN
=2.4V
1
2,3
2,3
All
01
02
-10
-600
-300
10
600
300
nA
nA
nA
Differential OFF
Output Leakage
Current
I
DIFF
1,2,3
02
-50 50 nA
Drain-OFF (with
Input Overvoltage)
I
D(OFF)
V
D
=0V, V
S
=±60V
NOTE 2, 3
1
2,3
All
20
10
nA
µA
Input Leakage
Current (with
Overvoltage)
I
S(OFF)
V
S
=±60V, V
D
=±10V
NOTE 2, 3
1
All
25
µA
Input Leakage
Current (Power
Supplies Off)
I
S(OFF)
V
S
=±75V, V
EN
=V0=0V
A0=A1=A2=0V or 5V, V
+
=V
-
=0V
1
All
10
µA
INPUT
Input Low
Threshold
V
AL
NOTE 3 1,2,3
All
0.8 V
Input High
Threshold
V
AH
NOTE 3 1,2,3
All
2.4 V
Input Leakage
Current (High or
Low)
I
A
V
A
=5V or 0V
NOTE 4
1,2,3
All
-1.0 1.0
µA
SUPPLY
Positive Supply Range
for Continuous
Operation
VOP NOTE 5 1
All
±4.5 ±18
V
Positive Supply
Current
I+ V
EN
=0.8V or 2.4V, A0=A1=A2=0V
or 5V
1
2,3
All
0.6
0.7
mA
Negative Supply
Current
I- V
EN
=0.8V or 2.4V, A0=A1=A2=0V
or 5V
1
2,3
All
0.1
0.2
mA
---------------------------- Electrical Characteristics of MAX378/379/Mxx/883B 19-0343 Rev. D
Page 3 of 6
TABLE 1. ELECTRICAL TESTS
TEST Symbol
CONDITIONS
-55 °C <=T
A
<= +125°C
V+=+15V, V-=-15V, GND=0V
V
AH
=2.4V, V
AL
=0.8V
Unless otherwise specified
Group A
Subgroup
Device
type
Limits
Min
Limits
Max
Units
DYNAMIC
Access Time
t
A
Figure 1 9
10,11
All
1.0
1.5
µs
Break Before
Make Delay
t
ON
-t
OFF
V
EN
=+5V, V
IN
=±10V,
A0, A1, A2 strobed
9
10,11
All
25
5
ns
Enable Delay-On
Delay
t
ON(EN)
Figure 2 9
10,11
All
750
1000
ns
Enable Delay-Off
Delay
t
OFF(EN)
Figure 3 9
10,11
All
500
1000
ns
“OFF Isolation”
OFF
(ISO)
V
EN
=0.8V, R
L
=1k, C
L
=15pF,
V=7V
RMS
, f=100kHZ, NOTE 6
9
All
50 dB
NOTE 1: When the analog signal exceeds -13.5V or -12V, the blocking action of Maxim’s gate structure
starts. Only leakage currents flow and the channel on resistance approaches infinity.
NOTE 2: Steady-state value is shown. Transient leakage is typically 50µA.
NOTE 3: Guaranteed by other static parameters.
NOTE 4: Digital input leakage is primarily from the clamp diodes. Typical leakage is less that 1nA at 25° C.
NOTE 5: Electrical Chacteristics, such as ON Resistance, will change when power supplies other than ±15V
are used.
NOTE 6: Guaranteed but not production tested
FIGURE 1 Access Time vs. Logic Level See Commercial Datasheet.
FIGURE 2 Break Before Make Delay See Commercial Datasheet.
FIGURE 3 Enable Delay. See Commercial Datasheet.
TRUTH TABLE TERMINAL CONNECTION
A2 A1 A0 EN
MAX378A
ON SWITCH
TERMINAL
NUMBER
01
MAX378
02
MAX379
01
MAX378
02
MAX379
X X X 0 None J16 J16 L20 L20
0001 1 1 A0 A0 NC NC
0011 2 2 EN EN A0 A0
0101 3 3 V- V- EN EN
0 1 1 1 4 4 IN1 IN1A V- V-
1 0 0 1 5 5 IN2 IN2A IN1 IN1A
1 0 1 1 6 6 IN3 IN3A NC NC
1 1 0 1 7 7 IN4 IN4A IN2 IN2A
1 1 1 1 8 8 OUT OUTA IN3 IN3A
9 IN8 OUTB IN4 IN4A
MAX379
10 IN7 IN4B OUT OUTA
A1 A0 EN ON SWITCH
11 IN6 IN3B NC NC
X X 0 None 12 IN5 IN2B IN8 OUTB
0 0 1 1 13 V+ IN1B IN7 IN4B
0 1 1 2 14 GND V+ IN6 IN3B
1 0 1 3 15 A2 GND IN5 IN2B
1 1 1 4 16 A1 A1 NC NC
17 V+ IN1B
18 GND V+
19 A2 GND
20 A1 A1
NOTE: Logic ”0”=V
AL
0.8V
Logic “1”=V
AH
2.4V
---------------------------- Electrical Characteristics of MAX378/379/Mxx/883B 19-0343 Rev. D
Page 4 of 6

MAX379MJE/883B

Mfr. #:
Manufacturer:
Maxim Integrated
Description:
Multiplexer Switch ICs 4:1 2Ch Fault-Prtct Analog MUX
Lifecycle:
New from this manufacturer.
Delivery:
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