MOCD207 [MOTOROLA]
2 CHANNEL TRANSISTOR OUTPUT OPTOCOUPLER, PLASTIC, SOIC-8;型号: | MOCD207 |
厂家: | MOTOROLA |
描述: | 2 CHANNEL TRANSISTOR OUTPUT OPTOCOUPLER, PLASTIC, SOIC-8 输出元件 光电 |
文件: | 总4页 (文件大小:88K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
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by MOCD207/D
SEMICONDUCTOR TECHNICAL DATA
[CTR = 100–200%]
Transistor Output
[CTR = 40–125%]
These devices consist of two gallium arsenide infrared emitting diodes
optically coupled to two monolithic silicon phototransistor detectors, in a surface
mountable, small outline, plastic package. They are ideally suited for high
density applications and eliminate the need for through–the–board mounting.
Motorola Preferred Devices
•
•
•
•
•
•
•
•
•
Dual Channel Coupler
DUAL CHANNEL
SMALL OUTLINE
OPTOISOLATORS
TRANSISTOR OUTPUT
Convenient Plastic SOIC–8 Surface Mountable Package Style
Closely Matched Current Transfer Ratios to Minimize Unit–to–Unit Variation
Minimum V
of 70 Volts Guaranteed
(BR)CEO
Standard SOIC–8 Footprint, with 0.050″ Lead Spacing
Shipped in Tape and Reel, which Conforms to EIA Standard RS481A
Compatible with Dual Wave, Vapor Phase and IR Reflow Soldering
High Input–Output Isolation of 3000 Vac (rms) Guaranteed
Meets U.L. Regulatory Requirements, File #E54915
Ordering Information:
•
To obtain MOCD207, 208 in tape and reel, add R2 suffix to device numbers as follows:
R2 = 2500 units on 13″ reel
•
To obtain MOCD207, 208 in quantities of 50 (shipped in sleeves) — no suffix
Marking Information:
CASE 846–01, STYLE 3
PLASTIC
•
•
MOCD207 = D207
MOCD208 = D208
Applications:
•
•
•
•
Feedback Control Circuits
SCHEMATIC
Interfacing and Coupling Systems of Different Potentials and Impedances
General Purpose Switching Circuits
1
2
3
4
8
7
6
5
Monitor and Detection Circuits
MAXIMUM RATINGS (T = 25°C unless otherwise noted)
A
Rating
Symbol
Value
Unit
INPUT LED
Forward Current — Continuous
Forward Current — Peak (PW = 100 µs, 120 pps)
Reverse Voltage
I
60
1.0
6.0
mA
A
F
1. ANODE 1
2. CATHODE 1
3. ANODE 2
4. CATHODE 2
5. EMITTER 2
6. COLLECTOR 2
7. EMITTER 1
8. COLLECTOR 1
I (pk)
F
V
V
R
D
LED Power Dissipation @ T = 25°C
P
90
0.8
mW
mW/°C
A
Derate above 25°C
OUTPUT TRANSISTOR
Collector–Emitter Voltage
Collector–Base Voltage
V
V
V
70
70
V
V
CEO
CBO
ECO
Emitter–Collector Voltage
Collector Current — Continuous
7.0
150
V
I
C
mA
Detector Power Dissipation @ T = 25°C
Derate above 25°C
P
D
150
1.76
mW
mW/°C
A
Preferred devices are Motorola recommended choices for future use and best overall value.
REV 2
Motorola, Inc. 1998
MAXIMUM RATINGS—continued (T = 25°C unless otherwise noted)
A
Rating
Symbol
Value
Unit
TOTAL DEVICE
(1,2)
Input–Output Isolation Voltage)
(60 Hz, 1.0 sec. duration)
V
ISO
3000
Vac(rms)
Total Device Power Dissipation @ T = 25°C
Derate above 25°C
P
D
250
2.94
mW
mW/°C
A
Ambient Operating Temperature Range
Storage Temperature Range
T
–45 to +100
–45 to +125
260
°C
°C
°C
A
T
stg
—
Lead Soldering Temperature (1/16″ from case, 10 sec. duration)
(3)
ELECTRICAL CHARACTERISTICS (T = 25°C unless otherwise noted)
A
(3)
Typ
Characteristic
Symbol
Min
Max
Unit
INPUT LED
Forward Voltage (I = 30 mA)
V
—
—
—
1.2
1.55
100
—
V
A
F
F
Reverse Leakage Current (V = 6.0 V)
R
I
R
0.1
18
Capacitance
C
pF
OUTPUT TRANSISTOR
Collector–Emitter Dark Current
(V
(V
= 10 V, T = 25°C)
I
I
1
2
—
—
1.0
1.0
120
7.8
7.0
50
—
—
—
—
nA
µA
V
CE
A
CEO
= 10 V, T = 100°C)
CE
A
CEO
Collector–Emitter Breakdown Voltage (I = 100 µA)
V
V
70
7.0
—
C
(BR)CEO
Emitter–Collector Breakdown Voltage (I = 100 µA)
V
E
(BR)ECO
Collector–Emitter Capacitance (f = 1.0 MHz, V
COUPLED
= 0)
C
pF
CE
CE
(4)
(CTR)
Output Collector Current
MOCD207
MOCD208
I
C
10 (100)
4.0 (40)
15 (150)
—
20 (200)
12.5 (125)
mA (%)
mA
(I = 10 mA, V
= 5 V)
F
CE
Output Collector Current
(I = 1 mA, V = 5 V)
MOCD207
MOCD208
I
C
3.4
1.3
7.0
3.0
—
—
F
CE
Collector–Emitter Saturation Voltage (I = 2.0 mA, I = 10 mA)
V
CE(sat)
—
—
0.15
3.0
2.8
1.6
2.2
—
0.4
—
—
—
—
—
—
—
V
µs
C
F
Turn–On Time (I = 2.0 mA, V
= 10 V, R = 100 Ω)
t
C
CC
L
on
off
Turn–Off Time (I = 2.0 mA, V
= 10 V, R = 100 Ω)
t
—
µs
C
CC
L
Rise Time (I = 2.0 mA, V
CC
= 10 V, R = 100 Ω)
t
r
—
µs
C
L
Fall Time (I = 2.0 mA, V
CC
= 10 V, R = 100 Ω)
t
f
—
µs
C
L
(1,2)
Input–Output Isolation Voltage (f = 60 Hz, t = 1.0 sec)
(2)
V
ISO
R
ISO
C
ISO
3000
Vac(rms)
Ω
11
10
Isolation Resistance (V
= 500 V)
—
I–O
Isolation Capacitance (V
(2)
= 0, f = 1.0 MHz)
—
0.2
pF
I–O
1. Input–Output Isolation Voltage, V
, is an internal device dielectric breakdown rating.
ISO
2. For this test, pins 1, 2, 3 and 4 are common, and pins 5, 6 and 7 are common.
3. Always design to the specified minimum/maximum electrical limits (where applicable).
4. Current Transfer Ratio (CTR) = I /I x 100%.
C F
2
Motorola Optoelectronics Device Data
TYPICAL CHARACTERISTICS
2
1.8
1.6
10
PULSE ONLY
PULSE OR DC
NORMALIZED TO:
= 10 mA
I
F
1
1.4
1.2
1
0.1
T
= –45°C
A
25°C
100°C
0.01
1
10
100
1000
0.5
1
2
5
10
20
50
I , LED FORWARD CURRENT (mA)
I , LED INPUT CURRENT (mA)
F
F
Figure 1. LED Forward Voltage versus Forward Current
Figure 2. Output Current versus Input Current
16
10
I
= 10 mA
14
12
10
F
NORMALIZED TO:
MOCD207
MOCD208
T
= 25°C
A
8
6
4
1.0
0.1
2
0
0
1
2
3
4
5
6
7
8
9
10
–60
–40
–20
0
20
40
60
80
100 120
V
, COLLECTOR–EMITTER VOLTAGE (VOLTS)
T , AMBIENT TEMPERATURE (°C)
CE
A
Figure 3. Output Current versus
Collector–Emitter Voltage
Figure 4. Output Current versus
Ambient Temperature
20
18
C
LED
NORMALIZED TO:
= 10 V
V
= 70 V
30 V
CE
f = 1 MHz
3
V
10
CE
= 25°C
16
14
T
A
2
10
10 V
12
10
8
1
0
10
C
CE
6
4
2
10
–1
10
0.01
0.1
1
10
100
0
100
20
40
60
80
T , AMBIENT TEMPERATURE (
°C)
V, VOLTAGE (VOLTS)
A
Figure 5. Dark Current versus Ambient Temperature
Figure 6. Capacitance versus Voltage
Motorola Optoelectronics Device Data
3
PACKAGE DIMENSIONS
–A–
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
8
1
5
4
INCHES
MILLIMETERS
K
B
DIM
A
B
C
D
MIN
MAX
0.202
0.164
0.143
0.021
MIN
4.63
3.66
3.13
0.28
MAX
5.13
4.16
3.63
0.53
0.182
0.144
0.123
0.011
G
H
J
0.050 BSC
1.27 BSC
D 8 PL
0.13 (0.005)
0.003
0.006
0.224
0.008
0.010
0.244
0.08
0.16
5.69
0.20
0.25
6.19
M
M
T
A
G
K
STYLE 3:
SEATING
PLANE
PIN 1. ANODE 1
2. CATHODE 1
3. ANODE 2
4. CATHODE 2
5. EMITTER 2
C
–T–
0.038 (0.0015)
6. COLLECTOR 2
7. EMITTER 1
H
J
8. COLLECTOR 1
CASE 846–01
ISSUE E
Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding
the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and
specificallydisclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters which may be provided in Motorola
datasheetsand/orspecificationscananddovaryindifferentapplicationsandactualperformancemayvaryovertime. Alloperatingparameters,including“Typicals”
must be validated for each customer application by customer’s technical experts. Motorola does not convey any license under its patent rights nor the rights of
others. Motorola products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other
applicationsintended to support or sustain life, or for any other application in which the failure of the Motorola product could create a situation where personal injury
ordeathmayoccur. ShouldBuyerpurchaseoruseMotorolaproductsforanysuchunintendedorunauthorizedapplication,BuyershallindemnifyandholdMotorola
and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees
arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that
Motorola was negligent regarding the design or manufacture of the part. Motorola and
Opportunity/Affirmative Action Employer.
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MOCD207/D
◊
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