HCPL2531 [TI]
OPTOCOUPLERS/OPTOISOLATORS; 光耦合器/光隔离器型号: | HCPL2531 |
厂家: | TEXAS INSTRUMENTS |
描述: | OPTOCOUPLERS/OPTOISOLATORS |
文件: | 总12页 (文件大小:577K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
July 2005
Single-channel: 6N135, 6N136, HCPL-2503, HCPL-4502
Dual-Channel: HCPL-2530, HCPL-2531
High Speed Transistor Optocouplers
Features
Description
■ High speed-1 MBit/s
The HCPL-4502/HCPL-2503, 6N135/6 and HCPL-2530/HCPL-
2531 optocouplers consist of an AlGaAs LED optically coupled
to a high speed photodetector transistor.
■ Superior CMR-10 kV/µs
■ Dual-Channel HCPL-2530/HCPL-2531
■ Double working voltage-480V RMS
■ CTR guaranteed 0-70°C
A separate connection for the bias of the photodiode improves
the speed by several orders of magnitude over conventional
phototransistor optocouplers by reducing the base-collector
capacitance of the input transistor.
■ U.L. recognized (File # E90700)
An internal noise shield provides superior common mode rejec-
tion of 10kV/µs. An improved package allows superior insulation
permitting a 480 V working voltage compared to industry stan-
dard of 220 V.
Applications
■ Line receivers
■ Pulse transformer replacement
■ Output interface to CMOS-LSTTL-TTL
■ Wide bandwidth analog coupling
Package
Schematic
VCC
+
VCC
1
8
N/C
1
8
VF1
_
8
V01
VB
2
7
6
5
+
2
3
4
7
6
5
1
VF
_
_
V02
3
VO
VF2
GND
N/C
GND
+
4
8
8
1
HCPL-2530/HCPL-2531
6N135, 6N136, HCPL-2503, HCPL-4502
1
Pin 7 is not connected in
Part Number HCPL-4502
©2005 Fairchild Semiconductor Corporation
1
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Absolute Maximum Ratings (T = 25°C unless otherwise specified)
A
Parameter
Symbol
Value
Units
°C
Storage Temperature
T
-55 to +125
-55 to +100
260 for 10 sec
STG
Operating Temperature
T
°C
OPR
Lead Solder Temperature
EMITTER
T
°C
SOL
DC/Average Forward Input Current
Peak Forward Input Current (50% duty cycle, 1 ms P.W.)
Each Channel (Note 1)
Each Channel (Note 2)
I
(avg)
25
50
mA
mA
F
I (pk)
F
Peak Transient Input Current - (≤1 µs P.W., 300 pps)
I (trans)
1.0
5
A
F
Each Channel
Each Channel
Reverse Input Voltage
V
P
V
R
D
Input Power Dissipation
(6N135/6N136 and HCPL-2503/4502)
100
45
mW
(HCPL-2530/2531 ) Each Channel (Note 3)
DETECTOR
Average Output Current
Peak Output Current
Emitter-Base Reverse Voltage
Supply Voltage
Each Channel
Each Channel
I
(avg)
(pk)
8
mA
mA
V
O
I
16
O
(6N135, 6N136 and HCPL-2503 only)
V
5
-0.5 to 30
-0.5 to 20
5
EBR
V
V
CC
Output Voltage
V
V
O
Base Current
(6N135, 6N136 and HCPL-2503 only)
(6N135, 6N136, HCPL-2503, HCPL-4502) (Note 4)
(HCPL-2530, HCPL-2531) Each Channel
I
mA
mW
mW
B
Output power
dissipation
PD
100
35
2
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Electrical Characteristics (T = 0 to 70°C Unless otherwise specified)
A
Individual Component Characteristics
Parameter
Test Conditions
Symbol
Device
Min Typ** Max Unit
EMITTER
(I = 16 mA, T =25°C)
V
F
1.45
1.7
1.8
V
F
A
Input Forward Voltage
Input Reverse Breakdown Voltage
(I = 16 mA)
F
(I = 10 µA)
B
5.0
V
R
VR
Temperature coefficient of
forward voltage
(I = 16 mA) (∆V /∆T )
-1.6
mV/°C
F
F
A
DETECTOR
Logic high output current
(I = 0 mA, V = V = 5.5 V)
I
All
0.001
0.005
0.5
1
µA
F
O
CC
OH
(T =25°C)
A
(I = 0 mA, V = V = 15 V)
6N135
6N136
F
O
CC
(T =25°C)
A
HCPL-4502
HCPL-2503
(I = 0 mA, V = V = 15 V)
All
50
F
O
CC
Logic low supply current
Logic high supply current
(I = 16 mA, V = Open)
I
CCL
6N135
6N136
HCPL-4502
HCPL-2503
120
200
200
µA
µA
F
O
(V = 15 V)
CC
(I = I = 16 mA, V = Open)
HCPL-2530
HCPL-2531
400
1
F1
F2
O
(V = 15 V)
CC
(I = 0 mA, V = Open, V = 15
I
CCH
6N135
6N136
HCPL-4502
HCPL-2503
F
O
CC
V)
(T =25°C)
A
(I = 0 mA, V = Open)
6N135
6N136
HCPL-4502
HCPL-2503
2
4
F
O
(V = 15 V)
CC
(I = 0 mA, V = Open)
HCPL-2530
HCPL-2531
0.02
F
O
(V = 15 V)
CC
** All Typicals at T = 25°C
A
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Transfer Characteristics (T = 0 to 70°C Unless otherwise specified)
A
Parameter
COUPLED
Test Conditions
Symbol
Device
Min Typ** Max Unit
(I = 16 mA, V = 0.4 V)
CTR
6N135
HCPL-2530
7
18
50
%
F
O
(V = 4.5 V, T =25°C)
CC
A
6N136
HCPL-4502
HCPL-2531
19
27
50
%
Current transfer ratio
(Note 5)
HCPL-2503
6N135
12
5
27
21
%
%
(I = 16 mA, V = 4.5 V)
V
=0.4V
=0.5V
=0.4V
F
CC
OL
OL
OL
V
V
HCPL-2530
6N136
HCPL-4502
15
9
30
%
V
V
=0.5V
=0.4V
HCPL-2531
HCPL-2503
6N135
OL
30
%
V
OL
(I = 16 mA, I = 1.1 mA)
V
OL
0.18
0.18
0.25
0.4
0.5
0.4
F
O
Logic low output voltage
output voltage
(V = 4.5 V, T =25°C)
CC A
HCPL-2530
(I = 16 mA, I = 3 mA)
6N136
F
O
(V = 4.5 V, T =25°C)
HCPL-2503
CC
A
HCPL-2531
0.25
0.5
0.5
(I = 16 mA, I = 0.8 mA)
6N135
F
O
(V = 4.5 V)
HCPL-2530
CC
(I = 16 mA, I = 2.4 mA)
HCPL-4502
HCPL-2531
0.5
F
O
(V = 4.5 V)
CC
** All Typicals at T = 25°C
A
4
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Switching Characteristics (T = 0 to 70°C unless otherwise specified., V = 5 V)
A
CC
Parameter
Test Conditions
Symbol Device Min Typ** Max Unit
Propagation delay T = 25°C, (R = 4.1 kΩ, I = 16 mA) (Note 6) (Fig. 7)
time to logic low
6N135
HCPL-2530
0.45
1.5
µs
A
L
F
T
PHL
(R = 1.9 kΩ, I = 16 mA) (Note 7) (Fig. 7)
6N136
0.45
0.8
µs
L
F
T = 25°C
HCPL-4502
HCPL-2503
HCPL-2531
A
(R = 4.1 kΩ, I = 16 mA) (Note 6) (Fig. 7)
6N135
HCPL-2530
2.0
1.0
µs
µs
L
F
(R = 1.9 kΩ, I = 16 mA) (Note 7) (Fig. 7)
6N136
L
F
HCPL-4502
HCPL-2503
HCPL-2531
Propagation delay T = 25°C, (R = 4.1 kΩ, I = 16 mA) (Note 6) (Fig. 7)
time to logic high
T
PLH
6N135
HCPL-2530
0.5
0.3
1.5
0.8
µs
µs
A
L
F
(R = 1.9 kΩ, I = 16 mA) (Note 7) (Fig. 7)
6N136
L
F
T = 25°C
HCPL-4502
HCPL-2503
HCPL-2531
A
(R = 4.1 kΩ, I = 16 mA) (Note 6) (Fig. 7)
6N135
HCPL-2530
2.0
1.0
µs
µs
L
F
(R = 1.9 kΩ, I = 16 mA) (Note 7) (Fig. 7)
6N136
L
F
HCPL-4502
HCPL-2503
HCPL-2531
Common mode
transient
immunity at
logic high
(I = 0 mA, V
= 10 V , R = 4.1 kΩ)
|CM |
6N135
HCPL-2530
10,000
10,000
V/µs
V/µs
F
CM
P-P
L
H
(Note 8) (Fig. 8) T = 25°C
A
(I = 0 mA, V
= 10 V )
P-P
6N136
F
CM
T = 25°C, (R = 1.9 kΩ)
HCPL-4502
HCPL-2503
HCPL-2531
A
L
(Note 8) (Fig. 8)
Common mode
transient
immunity at
logic low
(I = 16 mA, V
= 10 V , R = 4.1 kΩ)
|CM |
6N135
HCPL-2530
10,000
10,000
V/µs
V/µs
F
CM
P-P
L
L
(Note 8) (Fig. 8) T = 25°C
A
(I = 16 mA, V
= 10 V )
P-P
6N136
F
CM
(R = 1.9 kΩ)
HCPL-4502
HCPL-2503
HCPL-2531
L
(Note 8) (Fig. 8)
** All Typicals at T = 25°C
A
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Isolation Characteristics (T = 0 to 70°C Unless otherwise specified)
A
Characteristics
Test Conditions
Symbol Min
Typ**
Max
Unit
Input-output
(Relative humidity = 45%)
I
1.0
µA
I-O
insulation leakage current
(T = 25°C, t = 5 s)
A
(V = 3000 VDC)
I-O
(Note 9)
Withstand insulation test voltage
(RH ≤ 50%, T = 25°C)
V
2500
V
A
ISO
RMS
(Note 9) ( t = 1 min.)
12
Resistance (input to output)
Capacitance (input to output)
DC Current gain
(Note 9) (V = 500 VDC)
R
C
10
Ω
I-O
I-O
I-O
(Note 9) (f = 1 MHz)
0.6
150
pF
(I = 3 mA, V = 5 V)
HFE
O
O
Input-Input
Insulation leakage current
(RH ≤ 45%, V = 500 VDC) (Note 10)
I
0.005
µA
Ω
I-I
I-I
t = 5 s, (HCPL-2530/2531 only)
11
Input-Input Resistance
Input-Input Capacitance
(V = 500 VDC) (Note 10)
R
10
I-I
I-I
(HCPL-2530/2531 only)
(f = 1 MHz) (Note 10)
C
0.03
pF
I-I
(HCPL-2530/2531 only)
Notes
1. Derate linearly above 70°C free-air temperature at a rate of 0.8 mA/°C.
2. Derate linearly above 70°C free-air temperature at a rate of 1.6 mA/°C.
3. Derate linearly above 70°C free-air temperature at a rate of 0.9 mW/°C.
4. Derate linearly above 70°C free-air temperature at a rate of 2.0 mW/°C.
5. Current Transfer Ratio is defined as a ratio of output collector current, I , to the forward LED input current, I , times 100%.
O
F
6. The 4.1 kΩ load represents 1 LSTTL unit load of 0.36 mA and 6.1kΩ pull-up resistor.
7. The 1.9 kΩ load represents 1 TTL unit load of 1.6 mA and 5.6 kΩ pull-up resistor.
8. Common mode transient immunity in logic high level is the maximum tolerable (positive) dV /dt on the leading edge of the com-
cm
mon mode pulse signal V , to assure that the output will remain in a logic high state (i.e., V >2.0 V). Common mode transient
CM
O
immunity in logic low level is the maximum tolerable (negative) dV /dt on the trailing edge of the common mode pulse signal,
cm
V
, to assure that the output will remain in a logic low state (i.e., V <0.8 V).
CM
O
9. Device is considered a two terminal device: Pins 1, 2, 3 and 4 are shorted together and Pins 5, 6, 7 and 8 are shorted together.
10. Measured between pins 1 and 2 shorted together, and pins 3 and 4 shorted together.
I
6
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Fig. 1 Normalized CTR vs. Forward Current
Fig. 2 Normalized CTR vs.Temperature
1.2
1.0
0.8
0.6
0.4
0.2
0.0
1.2
1.0
0.8
0.6
0.4
0.2
0.0
V
V
= 0.4 V
I = 16mA
F
O
Normalized to:
= 16 mA
Normalized to:
T = 25°C
A
= 5 V
V
= 5 V
CC
CC
I
F
T
= 25°C
V
= 0.4 V
A
O
0.1
1
10
100
-60
-40
-20
0
20
40
60
80
100
I
- FORWARD CURRENT (mA)
T - TEMPERATURE (°C)
A
F
Fig. 4 Logic High Output Current
vs.Temperature
Fig. 3 Output Current vs. Output Voltage
1000
100
10
16
14
12
10
8
TA = 25°C
CC = 5 V
I
F = 40 mA
F = 35 mA
I
V
V
= 0 mA
F
V
= 5 V
CC
= 5 V
I
O
I
F = 30 mA
F = 25 mA
I
I
F = 20 mA
F = 15 mA
6
I
1
4
IF = 10 mA
2
IF = 5 mA
0.1
-60
0
-40
-20
0
20
40
60
80
100
0
2
4
6
8
10
12
14
16
18
20
T
- TEMPERATURE (°C)
V
- OUTPUT VOLTAGE (V)
A
O
Fig. 5 Propagation Delay vs.Temperature
Fig. 6 Propagation Delay vs. Load Resistance
800
700
600
500
400
300
200
100
0
10000
R
L = 4.1 K (TPLH)
RL = 4.1 K (TPLH)
I
- 16 mA (TPHL)
F
I
- 10 mA (TPHL)
F
1000
I
- 16 mA (TPLH)
F
I
V
= 16 mA
F
RL = 1.9 K (TPHL)
RL = 1.9 K (TPLH)
= 5 V
V
= 5 V
CC
CC
= 25°C
T
A
I
- 10 mA (TPLH)
F
100
-60
-40
-20
0
20
40
60
80
100
1
10
T
- TEMPERATURE (°C)
R = LOAD RESISTANCE (kΩ)
L
A
7
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Noise
Shield
Noise
Shield
Pulse
+
VCC
I
F
V
CC
Generator
tr = 5ns
+5 V
+5 V
1
2
3
4
8
7
6
5
1
2
3
4
8
7
6
5
Pulse
ZO = 50
Ω
R
L
Generator
tr = 5ns
IF
+
V
F1
VB
V01
-
10% DUTY CYCLE
I/f < 100µS
VO
RL
ZO= 50
10% D.C.
I/f< 100µs
Ω
VF
-
C
L
= 1.5 µF
VO
V02
-
VO
I
F
V
F2
0.1 µF
MONITOR
+
0.1 µF
IF Monitor
GND
Rm
Rm
C
L = 1.5 µF
GND
Test Circuit for 6N135, 6N136, HCPL-2503 and HCPL- 4502
Test Circuit for HCPL-2530 and HCPL-2531
IF
0
5 V
VO
1.5 V
1.5 V
VOL
TPHL
TPLH
Fig. 7 Switching Time Test Circuit
IF
Noise
Shield
Noise
Shield
VCC
V
CC
+
+5 V
+5 V
VO
1
2
3
4
8
7
6
5
1
2
3
4
8
7
6
5
IF
R
L
+
V
F1
VB
V01
-
RL
A
VF
-
A
VO
V02
B
-
0.1 µF
VO
0.1 µF
B
VFF
V
F2
VFF
+
GND
GND
-
VCM
+
-
VCM
-
+
Pulse Gen
Pulse Gen
Test Circuit for 6N135, 6N136, HCPL-2503 and HCPL-4502
Test Circuit for HCPL-2530 and HCPL-2531
VCM 10 V
0 V
90% 90%
10%
tr
10%
tf
VO
5 V
Switch at A : IF = 0 mA
VO
VOL
Switch at A : IF = 16 mA
Fig. 8 Common Mode Immunity Test Circuit
8
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Package Dimensions (Through Hole)
Package Dimensions (Surface Mount)
0.390 (9.91)
0.370 (9.40)
PIN 1
ID.
PIN 1
ID.
0.270 (6.86)
0.250 (6.35)
0.270 (6.86)
0.250 (6.35)
0.390 (9.91)
0.370 (9.40)
0.300 (7.62)
TYP
0.070 (1.78)
0.045 (1.14)
0.070 (1.78)
0.045 (1.14)
0.020 (0.51)
MIN
0.016 (0.41)
0.008 (0.20)
0.020 (0.51) MIN
0.200 (5.08)
0.140 (3.55)
0.154 (3.90)
0.120 (3.05)
0.045 [1.14]
0.022 (0.56)
0.016 (0.41)
0.022 (0.56)
0.016 (0.41)
15° MAX
0.315 (8.00)
MIN
0.016 (0.40)
0.008 (0.20)
0.100 (2.54)
TYP
0.300 (7.62)
TYP
0.100 (2.54) TYP
0.405 (10.30)
MIN
Lead Coplanarity : 0.004 (0.10) MAX
Package Dimensions (0.4"Lead Spacing)
Recommended Pad Layout for
Surface Mount Leadform
PIN 1
ID.
0.070 (1.78)
0.270 (6.86)
0.250 (6.35)
0.060 (1.52)
0.390 (9.91)
0.370 (9.40)
0.100 (2.54)
0.295 (7.49)
0.415 (10.54)
0.070 (1.78)
0.045 (1.14)
0.030 (0.76)
0.004 (0.10) MIN
0.200 (5.08)
0.140 (3.55)
0.154 (3.90)
0.120 (3.05)
0.022 (0.56)
0.016 (0.41)
0° to 15°
0.016 (0.40)
0.008 (0.20)
0.400 (10.16)
TYP
0.100 (2.54) TYP
NOTE
All dimensions are in inches (millimeters)
9
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Ordering Information
Option
Example Part Number
6N135S
Description
S
SD
W
Surface Mount Lead Bend
6N135SD
Surface Mount; Tape and reel
0.4" Lead Spacing
6N135W
V
6N135V
VDE0884
TV
SV
SDV
6N135TV
VDE0884; 0.4” lead spacing
VDE0884; surface mount
VDE0884; surface mount; tape and reel
6N135SV
6N135SDV
Marking Information
1
2
2503
6
V XX YY T1
5
3
4
Definitions
1
Fairchild logo
2
3
Device number
VDE mark (Note: Only appears on parts ordered with VDE option –
See order entry table)
4
5
6
Two digit year code, e.g., ‘03’
Two digit work week ranging from ‘01’ to ‘53’
Assembly package code
10
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
Carrier Tape Specifications
12.0 0.1
4.0 0.1
Ø1.55 0.05
1.75 0.10
4.90 0.20
0.30 0.05
4.0 0.1
7.5 0.1
16.0 0.3
10.30 0.20
13.2 0.2
Ø1.6 0.1
0.1 MAX
10.30 0.20
User Direction of Feed
Reflow Profile
300
250
200
150
100
50
215C, 10–30 s
225C peak
Time above 183C, 60–150 sec
Ramp up = 3C/sec
0
0
0.5
1
1.5
2
2.5
3
3.5
4
4.5
Time (Minute)
• Peak reflow temperature: 225C (package surface temperature)
• Time of temperature higher than 183C for 60–150 seconds
• One time soldering reflow is recommended
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Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
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GTO™
QFET
QS™
TINYOPTO™
TruTranslation™
UHC™
QT Optoelectronics™
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RapidConfigure™
RapidConnect™
µSerDes™
SILENT SWITCHER
SMART START™
SPM™
UltraFET
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I2C™
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VCX™
Wire™
MSXPro™
OCX™
i-Lo™
ImpliedDisconnect™
IntelliMAX™
OCXPro™
OPTOLOGIC
OPTOPLANAR™
PACMAN™
POP™
Power247™
PowerEdge™
FACT Quiet Series™
Stealth™
Across the board. Around the world.™
SuperFET™
SuperSOT™-3
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DISCLAIMER
FAIRCHILD SEMICONDUCTOR RESERVESTHE RIGHTTO MAKE CHANGES WITHOUTFURTHER NOTICETOANY
PRODUCTS HEREINTO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOTASSUMEANYLIABILITY
ARISING OUTOFTHEAPPLICATION OR USE OFANYPRODUCTOR CIRCUITDESCRIBED HEREIN; NEITHER DOES IT
CONVEYANYLICENSE UNDER ITS PATENTRIGHTS, NORTHE RIGHTS OF OTHERS.
LIFE SUPPORT POLICY
FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT
DEVICES OR SYSTEMS WITHOUTTHE EXPRESS WRITTENAPPROVALOF FAIRCHILD SEMICONDUCTOR CORPORATION.
As used herein:
1. Life support devices or systems are devices or
systems which, (a) are intended for surgical implant into
the body, or (b) support or sustain life, or (c) whose
failure to perform when properly used in accordance
with instructions for use provided in the labeling, can be
reasonably expected to result in significant injury to the
user.
2. A critical component is any component of a life
support device or system whose failure to perform can
be reasonably expected to cause the failure of the life
support device or system, or to affect its safety or
effectiveness.
PRODUCT STATUS DEFINITIONS
Definition of Terms
Datasheet Identification
Product Status
Definition
Advance Information
Formative or
In Design
This datasheet contains the design specifications for
product development. Specifications may change in
any manner without notice.
Preliminary
First Production
This datasheet contains preliminary data, and
supplementary data will be published at a later date.
Fairchild Semiconductor reserves the right to make
changes at any time without notice in order to improve
design.
No Identification Needed
Obsolete
Full Production
This datasheet contains final specifications. Fairchild
Semiconductor reserves the right to make changes at
any time without notice in order to improve design.
Not In Production
This datasheet contains specifications on a product
that has been discontinued by Fairchild semiconductor.
The datasheet is printed for reference information only.
Rev. I16
12
Single-channel: 6N135, 6N136 , HCPL-2503, HCPL-4502 Dual-Channel: HCPL-2530, HCPL-2531 Rev. 1.0.3
www.fairchildsemi.com
相关型号:
HCPL2531SDM
Logic IC Output Optocoupler, 2-Element, 5000V Isolation, 1MBps, 0.300 INCH, SURFACE MOUNT, DIP-8
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