MAX393MJE/883B [MAXIM]
Multiplexers/Switches, 4 Func, CDIP16;型号: | MAX393MJE/883B |
厂家: | MAXIM INTEGRATED PRODUCTS |
描述: | Multiplexers/Switches, 4 Func, CDIP16 CD |
文件: | 总5页 (文件大小:33K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
SCOPE: PRECISION QUAD SPST ANALOG SWITCH
Device Type
Generic Number
MAX391MJE/883B
MAX392MJE/883B
MAX393MJE/883B
01
02
03
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
Absolute Maximum Ratings
Voltage Referenced to V-
V+ ........................................................................................................................ -0.3V to +17V
GND .................................................................................................................... -0.3V to +17V
GND ........................................................................................................... -0.3V to (V+ +0.3V)
VIN, VCOM, VNC, VNO 1/ ................................................................................................ V- to V+
Current, Any terminal ....................................................................................................... 30mA
Peak Current, COM, NO, NC (Pulsed at 1ms, 10% duty cycle max) ............................ 100mA
Lead Temperature (soldering, 10 seconds) ......................................................................... +300°C
Storage Temperature ............................................................................................ -65°C to +150°C
Continuous Power Dissipation ............................................................….............. TA=+70°C
16 lead CERDIP(derate 10.0mW/°C above +70°C) ................................................... 800mW
Junction Temperature TJ ............................................................................….......... +150°C
Thermal Resistance, Junction to Case, ΘJC:
Case Outline 16 lead CERDIP......................................................…........... 50°C/W
Thermal Resistance, Junction to Ambient, ΘJA:
Case Outline 16 lead CERDIP...................................................…............ 100°C/W
Recommended Operating Conditions
Ambient Operating Range (TA) ............................................................ -55°C to +125°C
Positive Supply Voltage (V+) ..................................................................................... +5V
Negative Supply Voltage (V-) ..................................................................................... -5V
V
V
INL (max) .................................................................................................…............. 0.8V
INH (min) ...................................................................................................…........... 2.4V
1/ Signals on NC, NO, COM or IN exceeding V+ or V- are clamped by internal diodes. Limit forward current to
maximum current ratings.
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 MAX391/392/393/883B
19-0423
Page 2 of
Rev. B
7
DUAL SUPPLIES
TABLE 1. ELECTRICAL TESTS:
CONDITIONS
Group A
Subgroup
Device
type
Limits
Min
2/
Limits
Max
2/
Units
-55 °C <=TA<= +125°C
V+=+5V ±10%, V-=-5V ±10%,
GND=0V,VINH=2.4V, VINL=0.8V
Unless otherwise specified
TEST
Symbol
SWITCH
Analog-Signal
Range
1,2,3
All
All
All
VCOM,
VNO, VNC
3/
V-
V+
V
Ω
Ω
On-Resistance
V+=+4.5V, V-=-4.5V,
1
2,3
1
2,3
30
rDS(ON)
45
2.0
4.0
I
COM =-10mA, VNO or VNC=±3.5V
V+=+5V, V-=-5V,
COM =-10mA, VNO or VNC=±3.0V
On-Resistance
Matching between
Channels
On-Resistance
Flatness
∆rDS
(ON)
I
4/
V+=+5V, V-=-5V,
COM =-10mA, VNO or VNC=±3.0V
V+=+5.5V, V-=-5.5V,
COM =±4.5V, VNO or VNC=±4.5V
1
2,3
1
2,3
4.0
6.0
All
All
Ω
rFLAT(ON)
5/
I
NO or NC Off
Leakage Current
-0.1
-5.0
0.1 nA
5.0
INO(OFF)
or
INC(OFF)
ICOM
V
COM Off Leakage
Current
V+=+5.5V, V-=-5.5V,
COM =±4.5V, VNO or VNC=±4.5V
V+=+5.5V, V-=-5.5V,
COM =±4.5V, VNO or VNC=±4.5V
1
2,3
-0.1
-5.0
0.1 nA
5.0
All
All
V
(OFF)
COM On Leakage
Current
1
2,3
-0.2
0.2 nA
ICOM
(ON)
-20.0
20.0
V
INPUT
Input
Current/Voltage
High
Input
All
All
VIN= 2.4V, all others = 0.8V
VIN= 0.8V, all others = 2.4V
1,2,3
1,2,3
-0.5
0.5
0.5
0.5
µA
µA
IINH
IINL
Current/Voltage
Low
SUPPLY
Power-Supply
Range
Positive Supply
Current
1,2,3
1,2,3
V
±8.0
±8.0
All
All
I+
I-
All channels on or off,
V+ =+5.5V, V-=-5.5V,
VIN=0V or V+
All channels on or off,
V+ =+5.5V, V-=-5.5V,
VIN=0V or V+
-1.0
1.0
µA
Negative Supply
Current
1,2,3
-1.0
1.0
µA
DYNAMIC
Turn-On Time
All
All
03
9
10,11
9
10,11
9
130 ns
175
75 ns
100
VCOM±3V, Figure 2
VCOM±3V, Figure 2
tON
tOFF
tD
Turn-Off Time
Break-Before-
Make Delay
Charge Injection 3/
MAX393 only, Figure 3
RL=300Ω, CL=35pF
CL=1.0nF, VGEN=0V, RGEN=0Ω
Figure 4
5
ns
3/
All
Q
9
5
pC
----------------------------
Electrical Characteristics of MAX391/392/393/883B
19-0423
Page 3 of
Rev. B
7
SINGLE +5V SUPPLY
TABLE 2. ELECTRICAL TESTS:
CONDITIONS
Group A
Subgroup
Device
type
Limits
Min
3/
Limits
Max
3/
Units
-55 °C <=TA<= +125°C
V+=+5V ±10%, V-=-0V ±10%,
GND=0V, VINH=2.4V, VINL=0.8V
Unless otherwise specified
TEST
Symbol
SWITCH
Analog-Signal
Range
1,2,3
All
All
All
VCOM,
VNO, VNC
3/
0
V+
V
Ω
Ω
On-Resistance
V+=+4.5V,
1
2,3
1
2,3
60
rDS(ON)
I
COM =-10mA, VNO or VNC=3.5V
75
2.0
4.0
On-Resistance
Matching between
Channels
On-Resistance
Flatness
NO or NC Off
Leakage Current
V+=+5V,
∆rDS
(ON)
ICOM =-1.0mA, VNO or VNC=3.0V
4/
V+=+5V,
1
2,3
1
2,3
6.0
8.0
All
All
Ω
rFLAT(ON)
3/, 5/
I
COM =-1.0mA, VNO or VNC=1V, 3V
V+=+5.5V,
COM =0V, VNO or VNC=4.5V
-0.25
-2.5
0.25 nA
2.5
INO(OFF)
or
INC(OFF)
ICOM
V
COM Off Leakage
Current
V+=+5.5V,
VCOM =0V, VNO or VNC=4.5V
V+=+5.5V,
1
2,3
-0.1
-5.0
0.1 nA
5.0
All
All
(OFF)
COM On Leakage
Current
1
2,3
-0.2
-20.0
0.2 nA
20.0
ICOM
(ON)
V
COM =5V, VNO or VNC=4.5V
SUPPLY
All
All
Positive Supply
Current
I+
I-
All channels on or off,
1,2,3
1,2,3
-1.0
-1.0
1.0
1.0
µA
µA
V+ =+5.5V, VIN=0V or V+
Negative Supply
Current
All channels on or off,
V+ =+5.5V, VIN=0V or V+
DYNAMIC
Turn-On Time
All
All
03
VNO or VNC=3V
9
10,11
9
10,11
9
170 ns
240
50 ns
100
tON
Turn-Off Time
VNO or VNC=3V
tOFF
Break-Before-
Make Delay
10
ns
MAX393 only, RL=300Ω, CL=35pF
tD
3/
All
Charge Injection 3/
Q
9
5
pC
CL=1.0nF, VGEN=0V, RGEN=0Ω
Figure 4
NOTE 2: This data sheet uses the algebraic convention, where the most negative value is a minimum and the most
positive value is a maximum.
NOTE 3: Guaranteed by design at 25°C
NOTE 4: ∆rON=∆rON(max)-∆rON(min).
NOTE 5: Flatness is defined as the difference between the maximum and minimum value
of on-resistance as measured at the extremes of the specified analog signal range.
NOTE 6: Leakage testing at single supply is guaranteed by testing with dual supplies.
FIGURE 2: SWITCHING TIME TEST CIRCUIT: See Commercial Data Sheet
FIGURE 3: BREAK-BEFORE-MAKE INTERVAL: See Commercial Data Sheet
FIGURE 4: CHARGE INJECTION: See Commercial Data Sheet
----------------------------
Electrical Characteristics of MAX391/392/393/883B
19-0423
Page 4 of
Rev. B
7
SINGLE +3.3V SUPPLY
TABLE 3. ELECTRICAL TESTS:
CONDITIONS
Group A
Subgroup
Device
type
Limits
Min
2/
Limits
Max
2/
Units
-55 °C <=TA<= +125°C
V+=+5V ±10%, V-=-0V ±10%,
GND=0V, VINH=2.4V, VINL=0.8V
Unless otherwise specified
TEST
Symbol
SWITCH
Analog-Signal
Range
Channel On-
Resistance
SUPPLY
1,2,3
All
All
VCOM,
VNO, VNC
3/
0
V+
V
V+=+3V,
1
2,3
175
Ω
rDS(ON)
I
COM =-1.0mA, VNO or VNC=1.5V
275
All
All
Positive Supply
Current
I+
I-
All channels on or off,
1,2,3
1,2,3
-1.0
-1.0
1.0
µA
µA
V+ =+3.6V, VIN=0V or V+
Negative Supply
Current
All channels on or off,
1.0
V+ =+3.6V, VIN=0V or V+
DYNAMIC
Turn-On Time 3/
All
All
03
VNO or VNC=1.5V
9
10,11
9
10,11
9
400 ns
500
125 ns
175
tON
Turn-Off Time 3/
Break-Before-
VNO or VNC=1.5V
tOFF
20
ns
MAX393 only, RL=300Ω, CL=35pF
tD
Make Delay
3/
All
Charge Injection 3/
Q
9
5
pC
CL=1.0nF, VGEN=0V, RGEN=0Ω
Figure 4
TRUTH TABLES:
MAX391
LOGIC
MAX391
SWITCH
ON
MAX392
LOGIC
MAX392
SWITCH
OFF
MAX393
SWITCHES 1,4 SWITCHES 2,3
MAX393
LOGIC
0
1
0
1
0
1
OFF
ON
ON
OFF
OFF
ON
TERMINAL CONNECTIONS:
MAX391 MAX392 MAX393
J16 J16
IN1 IN1
1
IN1
2
3
4
COM1
NC1
V-
COM1
NO1
V-
COM1
NO1
V-
5
6
7
8
GND
NC4
COM4
IN4
GND
NO4
COM4
IN4
GND
NO4
COM4
IN4
9
IN3
IN3
IN3
10
11
12
13
14
15
16
COM3
NC3
NC
COM3
NO3
NC
COM3
NC3
NC
V+
V+
V+
NC2
COM2
IN2
NO2
COM2
IN2
NC2
COM2
IN2
----------------------------
Electrical Characteristics of MAX391/392/393/883B
19-0423
Rev. B
Page 5 of
7
ORDERING INFORMATION:
01
02
03
MAX391MJE/883B
MAX392MJE/883B
MAX393MJE/883B
16 CDIP
16 CDIP
16 CDIP
QUALITY ASSURANCE
Sampling and inspection procedures shall be in accordance with MIL-Prf-38535, Appendix A as specified in Mil-
Std-883.
Screening shall be in accordance with Method 5004 of Mil-Std-883. Burn-in test Method 1015:
1. Test Condition, A, B, C, or D.
2. TA = +125°C minimum.
3. Interim and final electrical test requirements shall be specified in Table 4.
Quality conformance inspection shall be in accordance with Method 5005 of Mil-Std-883, including Groups A, B,
C, and D inspection.
Group A inspection:
1. Tests as specified in Table 4.
2. Selected subgroups in Tables 1, Method 5005 of Mil-Std-883 shall be omitted.
Group C and D inspections:
a. End-point electrical parameters shall be specified in Table 1,2,3.
b. Steady-state life test, Method 1005 of Mil-Std-883:
1. Test condition A, B, C, D.
2. TA = +125°C, minimum.
3. Test duration, 1000 hours, except as permitted by Method 1005 of Mil-Std-883.
TABLE 4.
ELECTRICAL TEST REQUIREMENTS
Mil-Std-883 Test Requirements
Subgroups
per Method 5005, Table 1
Interim Electric Parameters
Method 5004
1
Final Electrical Parameters
Method 5005
Group A Test Requirements
Method 5005
1*, 2, 3, 9, 10, 11
1, 2, 3, 9, 10, 11
1
Group C and D End-Point Electrical Parameters
Method 5005
*
PDA applies to Subgroup 1 only.
----------------------------
Electrical Characteristics of MAX391/392/393/883B
19-0423
Page 6 of
Rev. B
7
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