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PDF ( 数据手册 , 数据表 ) 6N134

零件编号 6N134
描述 Hermetically Sealed / High Speed / High CMR / Logic Gate Optocouplers
制造商 Hewlett-Packard
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6N134 数据手册, 描述, 功能
Hermetically Sealed, High Speed,
High CMR, Logic Gate
Optocouplers
Technical Data
6N134*
81028
HCPL-563X
HCPL-663X
HCPL-565X
5962-98001
HCPL-268K
HCPL-665X
5962-90855
HCPL-560X
*See matrix for available extensions.
Features
• Dual Marked with Device
Part Number and DSCC
Drawing Number
• Manufactured and Tested on
a MIL-PRF-38534 Certified
Line
• QML-38534, Class H and K
• Five Hermetically Sealed
Package Configurations
• Performance Guaranteed
over -55°C to +125°C
• High Speed: 10 M Bit/s
• CMR: > 10,000 V/µs Typical
• 1500 Vdc Withstand Test
Voltage
• 2500 Vdc Withstand Test
Voltage for HCPL-565X
• High Radiation Immunity
• 6N137, HCPL-2601, HCPL-
2630/-31 Function
Compatibility
• Reliability Data
• TTL Circuit Compatibility
Applications
• Military and Space
• High Reliability Systems
• Transportation, Medical, and
Life Critical Systems
• Line Receiver
• Voltage Level Shifting
• Isolated Input Line Receiver
• Isolated Output Line Driver
• Logic Ground Isolation
• Harsh Industrial
Environments
• Isolation for Computer,
Communication, and Test
Equipment Systems
Description
These units are single, dual and
quad channel, hermetically sealed
optocouplers. The products are
capable of operation and storage
over the full military temperature
range and can be purchased as
either standard product or with
full MIL-PRF-38534 Class Level H
or K testing or from the appropri-
ate DSCC Drawing. All devices are
manufactured and tested on a
MIL-PRF-38534 certified line and
are included in the DSCC Quali-
fied Manufacturers List QML-
38534 for Hybrid Microcircuits.
Quad channel devices are
available by special order in the
16 pin DIP through hole
packages.
Truth Table
(Positive Logic)
Multichannel Devices
Input
On (H)
Off (L)
Output
L
H
Single Channel DIP
Input
On (H)
Off (L)
On (H)
Off (L)
Enable
H
H
L
L
Output
L
H
H
H
Functional Diagram
Multiple Channel Devices
Available
VCC
VE
VOUT
GND
The connection of a 0.1 µF bypass capacitor between VCC and GND is recommended.
CAUTION: It is advised that normal static precautions be taken in handling and assembly of this component to
prevent damage and/or degradation which may be induced by ESD.







6N134 pdf, 数据表
8
Electrical Characteristics, (Contd.) TA = -55°C to +125°C unless otherwise specified
Parameter
Symbol
Test
Conditions
Group A[13]
Limits
Subgroups Min. Typ.** Max. Units Fig. Note
Propagation Delay
Time to High
tPLH*
Output Level
Propagation Delay tPHL*
Time to Low
Output Level
VCC = 5 V,
RL = 510 ,
CL = 50 pF,
IF = 13 mA
9
10, 11
9
10, 11
60 100 ns 4, 5, 1, 5
6
140
55 100 ns
120
Output Rise Time
Output Fall Time
tLH RL = 510 ,
tHL
CL = 50 pF,
IF = 13 mA
9, 10, 11
35 90 ns
35 40
1
Common Mode
Transient
Immunity at
High Output
Level
Common Mode
Transient
Immunity at
Low Output
Level
|CMH|
|CML|
VCM = 50 V (PEAK),
VCC = 5 V,
VO (min.) = 2 V,
RL = 510 ,
IF = 0 mA
VCM = 50 V (PEAK),
VCC = 5 V,
VO (max.) = 0.8 V,
RL = 510 k,
IF = 10 mA
9, 10, 11
9, 10, 11
1000 >10000
1000 >10000
V/µs 7 1, 7,
14
V/µs 7 1, 7,
14
Single Channel Product Only
Low Level
Enable Current
High Level
Enable Voltage
IEL VCC = 5.5 V,
VE = 0.5 V
VEH
Low Level
Enable Voltage
VEL
1, 2, 3
1, 2, 3
1, 2, 3
-1.45 -2.0 mA
2.0 V
0.8 V
*Identified test parameters for JEDEC registered part.
**All typical values are at VCC = 5 V, TA = 25°C.
Typical Characteristics, TA = 25°C, VCC = 5 V
Parameter
Sym. Typ. Units
Input Capacitance
Input Diode Temperature
Coefficient
Resistance (Input-Output)
CIN 60 pF
VF -1.5 mV/°C
TA
RI-O
1012
Test Conditions
VF = 0 V, f = 1 MHz
IF = 20 mA
VI-O = 500 V
Fig.
Single Channel Product Only
Propagation Delay Time of
Enable from VEH to VEL
Propagation Delay Time of
Enable from VEL to VEH
tELH
tEHL
35
35
ns RL = 510 , CL = 50 pF 8, 9
IF = 13 mA, VEH = 3 V,
ns VEL = 0 V
Dual and Quad Channel Product Only
Input-Input
Leakage Current
Resistance (Input-Input)
Capacitance (Input-Input)
II-I 0.5 nA Relative Humidity = 45%
VI-I = 500 V, t = 5 s
RI-I 1012 VI-I = 500 V
CI-I 0.55 pF f = 1 MHz
10
Note
1
1
2
1, 11
1, 12
4
4
4














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