HCPL0639R1 [FAIRCHILD]

Logic IC Output Optocoupler, 2-Element, 2500V Isolation, 10MBps, SOP-8;
HCPL0639R1
型号: HCPL0639R1
厂家: FAIRCHILD SEMICONDUCTOR    FAIRCHILD SEMICONDUCTOR
描述:

Logic IC Output Optocoupler, 2-Element, 2500V Isolation, 10MBps, SOP-8

文件: 总17页 (文件大小:705K)
中文:  中文翻译
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January 2007  
HCPL0600, HCPL0601, HCPL0611,  
tm  
HCPL0637, HCPL0638, HCPL0639  
High Speed-10 MBit/s Logic Gate Optocouplers  
Single Channel: HCPL0600, HCPL0601, HCPL0611  
Dual Channel: HCPL0637, HCPL0638, HCPL0639  
Features  
Description  
Compact SO8 package  
Very high speed-10 MBit/s  
Superior CMR  
The HCPL06XX optocouplers consist of an AlGaAS  
LED, optically coupled to a very high speed integrated  
photo-detector logic gate with a strobable output (single  
channel devices). The devices are housed in a compact  
small-outline package. This output features an open col-  
lector, thereby permitting wired OR outputs. The  
HCPL0600, HCPL0601 and HCPL0611 output consists  
of bipolar transistors on a bipolar process while the  
HCPL0637, HCPL0638, and HCPL0639 output consists  
of bipolar transistors on a CMOS process for reduced  
power consumption. The coupled parameters are guar-  
anteed over the temperature range of -40°C to +85°C.  
An internal noise shield provides superior common  
mode rejection.  
Logic gate output  
Strobable output (single channel devices)  
Wired OR-open collector  
U.L. recognized (File # E90700)  
VDE approval pending  
Applications  
Ground loop elimination  
LSTTL to TTL, LSTTL or 5-volt CMOS  
Line receiver, data transmission  
Data multiplexing  
Switching power supplies  
Pulse transformer replacement  
Computer-peripheral interface  
Package Dimensions  
0.164 (4.16)  
0.144 (3.66)  
Pin 1  
0.202 (5.13)  
0.182 (4.63)  
0.019 (0.48)  
0.010 (0.25)  
0.006 (0.16)  
0.143 (3.63)  
0.123 (3.13)  
0.244 (6.19)  
0.224 (5.69)  
0.008 (0.20)  
0.003 (0.08)  
0.021 (0.53)  
0.011 (0.28)  
0.050 (1.27)  
TYP  
Lead Coplanarity : 0.004 (0.10) MAX  
Note:  
All dimensions are in inches (millimeters)  
©2006 Fairchild Semiconductor Corporation  
HCPL06XX Rev. 1.0.7  
1
www.fairchildsemi.com  
VCC  
N/C  
+
VCC  
1
8
+
1
8
VF1  
_
VE  
2
3
7
6
5
V01  
2
3
7
6
5
VF  
_
_
VO  
V02  
VF2  
GND  
N/C  
GND  
4
+ 4  
Dual-channel circuit drawing  
Single-channel circuit drawing  
(HCPL0637, HCPL0638 and HCPL0639)  
(HCPL0600, HCPL0601 and HCPL0611)  
TRUTH TABLE (Positive Logic)  
Input  
Enable  
Output  
H
L
H
H
L
H
H
L
H
L
L
H
H*  
L*  
NC*  
NC*  
L*  
H*  
*Dual channel devices or single channel devices with pin 7 not connected.  
A 0.1µF bypass capacitor must be connected between pins 8 and 5. (See note 1)  
2
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Absolute Maximum Ratings (No derating required up to 85°C)  
Symbol Parameter  
Value  
Units  
°C  
T
Storage Temperature  
Operating Temperature  
-40 to +125  
-40 to +85  
STG  
T
°C  
OPR  
EMITTER  
I
DC/Average Forward Input Current  
(each channel)  
Single Channel  
Dual Channel  
Single Channel  
50  
mA  
V
F
V
V
Enable Input Voltage  
Not to exceed VCC by more than 500mV  
5.5  
E
Reverse Input Voltage (each channel)  
Power Dissipation  
5.0  
45  
V
R
P
Single Channel  
Dual Channel  
mW  
I
DETECTOR  
V
Supply Voltage  
7.0  
V
CC  
(1 minute max)  
I
Output Current (each channel)  
Single Channel  
Dual Channel  
50  
15  
7.0  
85  
85  
mA  
O
V
Output Voltage (each channel)  
V
O
P
Collector Output Power Dissipation  
Single Channel  
Dual Channel  
mW  
O
Recommended Operating Conditions  
Symbol  
Parameter  
Min.  
Max.  
Units  
I
Input Current, Low Level  
0
250  
15  
µA  
FL  
I
Input Current, High Level  
Supply Voltage, Output  
Enable Voltage, Low Level  
Enable Voltage, High Level  
Operating Temperature  
Fan Out (TTL load)  
*6.3  
4.5  
0
mA  
FH  
V
5.5  
0.8  
V
CC  
V
Single Channel only  
Single Channel only  
V
EL  
V
2.0  
-40  
V
V
°C  
EH  
CC  
T
+85  
8
A
N
Single Channel  
Dual Channel  
TTL Loads  
5
R
Output Pull-up  
330  
4K  
L
*6.3mA is a guard banded value which allows for at least 20% CTR degradation. Initial input current threshold value is  
5.0mA or less  
3
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Electrical Characteristics (T = -40°C to +85°C Unless otherwise specified.)  
A
Individual Component Characteristics  
Symbol  
EMITTER  
Parameter  
Test Conditions  
Min. Typ.** Max. Unit  
V
Input Forward Voltage  
I = 10mA  
1.8  
V
F
F
T = 25°C  
1.75  
A
B
Input Reverse Breakdown Voltage  
I
I
= 10µA  
= 10mA  
5.0  
V
VR  
R
F
VF/TA Input Diode Temperature Coefficient  
-1.5  
mV/°C  
DETECTOR  
I
High Level Supply Current  
Low Level Supply Current  
I
V
= 0mA,  
V
E
= 0.5 V Single Channel  
Dual Channel  
10  
15  
mA  
mA  
CCH  
F
= 5.5V  
CC  
I
I = 10mA,  
V
V
E
= 0.5 V Single Channel  
Dual Channel  
13  
CCL  
F
= 5.5V  
CC  
21  
I
Low Level Enable Current  
High Level Enable Current  
High Level Enable Voltage  
Low Level Enable Voltage  
V
V
V
V
= 5.5V, V = 0.5V  
Single Channel  
Single Channel  
Single Channel  
Single Channel  
-1.6  
-1.6  
mA  
mA  
V
EL  
CC  
CC  
CC  
CC  
E
I
= 5.5V, V = 2.0V  
E
EH  
V
= 5.5V, I = 10mA  
2.0  
EH  
F
(2)  
V
= 5.5V, I = 10mA  
0.8  
V
EL  
F
Switching Characteristics (T = -40°C to +85°C, V = 5 V, I = 7.5 mA Unless otherwise specified.)  
A
CC  
F
Symbol  
AC Characteristics  
Test Conditions  
Device  
Min. Typ. Max. Unit  
(3)  
T
Propagation Delay Time  
to Output High Level  
R = 350, C = 15pF  
T = 25°C  
All  
20  
75  
100  
75  
ns  
PLH  
PHL  
L
L
A
(Fig. 20)  
(4)  
T
Propagation Delay Time  
to Output Low Level  
R = 350, C = 15pF  
T = 25°C  
All  
25  
ns  
L
L
A
(Fig. 20)  
100  
35  
|T  
-T  
|
Pulse Width Distortion  
R = 350, C = 15pF (Fig. 20)  
All  
ns  
ns  
PHL PLH  
L
L
(5)  
t
Output Rise Time (10-90%) R = 350, C = 15pF (Fig. 20)  
Single Ch  
Dual Ch  
Single Ch  
Dual Ch  
50  
17  
12  
5
r
L
L
(6)  
t
Output Fall Time (90-10%) R = 350, C = 15pF (Fig. 20)  
ns  
ns  
f
L
L
t
t
Enable Propagation Delay I = 7.5mA, V = 3.5V, R = 350,  
HCPL0600  
HCPL0601  
HCPL0611  
20  
ELH  
EHL  
F
EH  
L
(7)  
Time to Output High Level C = 15pF (Fig. 21)  
L
Enable Propagation Delay I = 7.5mA, V = 3.5V, R = 350,  
HCPL0600  
HCPL0601  
HCPL0611  
20  
ns  
F
EH  
L
(8)  
Time to Output Low Level C = 15 pF (Fig. 21)  
L
|CM |  
Common Mode  
Transient Immunity  
(at Output High Level)  
R = 350, T =25°C,  
|V | = 10V  
HCPL0600  
HCPL0637  
V/µs  
H
L
A
CM  
I = 0mA,  
F
(9)  
V
(Min.) = 2.0 V  
OH  
|V | = 50V  
HCPL0601 5000  
HCPL0638  
CM  
(Fig. 22, 23)  
|V | = 1,000V HCPL0611 10,000  
CM  
HCPL0639 25,000  
|CM |  
Common Mode  
Transient Immunity  
(at Output Low Level)  
R = 350, T =25°C,  
|V | = 10V  
HCPL0600  
HCPL0637  
V/µs  
H
L
A
CM  
I = 7.5mA,  
F
(10)  
V
(Max.) = 0.8 V  
OL  
|V | = 50V  
HCPL0601 5000  
HCPL0638  
CM  
(Fig. 22, 23)  
|V | = 1,000V HCPL0611 10,000  
CM  
HCPL0639 25,000  
4
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Transfer Characteristics (T = -40°C to +85°C Unless otherwise specified.)  
A
Symbol  
DC Characteristics  
Test Conditions  
Min.  
Typ.**  
Max.  
Unit  
I
High Level Output Current  
V
V
= 5.5V, V = 5.5 V, I = 250µA,  
= 2.0V  
100  
µA  
OH  
CC  
O
F
(2)  
V
E
V
Low Level Output Voltage  
Input Threshold Current  
= 5.5V, I = 5mA, V = 2.0V,  
0.6  
5
V
OL  
FT  
CC  
F
E
(2)  
I
= 13mA  
OL  
I
V
= 5.5V, V = 0.6V, V = 2.0V,  
mA  
CC  
O
E
I
= 13mA  
OL  
Isolation Characteristics (T = -40°C to +85°C Unless otherwise specified.)  
A
Symbol  
Characteristics  
Test Conditions  
Min.  
Typ.**  
Max.  
Unit  
I
Input-Output  
Relative humidity = 45%,  
1.0*  
µA  
I-O  
Insulation Leakage Current  
T = 25°C, t = 5s,  
A
(11)  
V
= 3000 VDC  
I-O  
V
Withstand Insulation Test Voltage  
R
< 50%, T = 25°C,  
2µA, t = 1 min.  
3750  
V
RMS  
ISO  
H
A
(11)  
I
I-O  
(11)  
12  
R
C
Resistance (Input to Output)  
Capacitance (Input to Output)  
V
= 500V  
10  
0.6  
I-O  
I-O  
I-O  
(11)  
f = 1MHz  
pF  
** All typical values are at V = 5 V, T = 25°C  
CC  
A
Notes:  
1. The V  
supply to each optoisolator must be bypassed by a 0.1µF capacitor or larger. This can be either a ceramic or solid  
CC  
tantalum capacitor with good high frequency characteristic and should be connected as close as possible to the package V and  
CC  
GND pins of each device.  
2. Enable Input – No pull up resistor required as the device has an internal pull up resistor.  
3.  
t
– Propagation delay is measured from the 3.75 mA level on the HIGH to LOW transition of the input current pulse to the 1.5V  
PLH  
level on the LOW to HIGH transition of the output voltage pulse.  
4.  
t
– Propagation delay is measured from the 3.75 mA level on the LOW to HIGH transition of the input current pulse to the 1.5V  
PHL  
level on the HIGH to LOW transition of the output voltage pulse.  
5. t – Rise time is measured from the 90% to the 10% levels on the LOW to HIGH transition of the output pulse.  
r
6. t – Fall time is measured from the 10% to the 90% levels on the HIGH to LOW transition of the output pulse.  
f
7.  
t
– Enable input propagation delay is measured from the 1.5V level on the HIGH to LOW transition of the input voltage pulse  
ELH  
to the 1.5V level on the LOW to HIGH transition of the output voltage pulse.  
8.  
t
– Enable input propagation delay is measured from the 1.5V level on the LOW to HIGH transition of the input voltage pulse  
EHL  
to the 1.5V level on the HIGH to LOW transition of the output voltage pulse.  
9. CM – The maximum tolerable rate of rise of the common mode voltage to ensure the output will remain in the high state (i.e.,  
H
V
> 2.0 V). Measured in volts per microsecond (V/µs).  
OUT  
10. CM – The maximum tolerable rate of fall of the common mode voltage to ensure the output will remain in the low output state  
L
(i.e., V  
< 0.8 V). Measured in volts per microsecond (V/µs).  
OUT  
11. Device considered a two-terminal device: Pins 1,2,3 and 4 shorted together, and Pins 5,6,7 and 8 shorted together.  
5
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Typical Performance Curves (HCPL0600, HCPL0601 and HCPL0611 only)  
Fig. 1 Forward Current vs. Input Forward Voltage  
Fig. 2 Output Voltage vs. Forward Current  
100  
6
5
4
3
2
1
0
T
= 25°C  
A
V
= 5V  
CC  
10  
1
T
= 85°C  
A
T
= -40°C  
A
T
= 70°C  
A
R
= 350Ω  
L
T
= 25°C  
A
T
= 0°C  
A
R
= 1kΩ  
0.1  
L
0.01  
0.001  
0
1
2
3
4
5
0.9  
1.0  
1.1  
1.2  
1.3  
1.4  
1.5  
1.6  
1.7  
V
F
- FORWARD VOLTAGE (V)  
I
- FORWARD INPUT CURRENT (mA)  
F
Fig. 4 High Level Output Current vs.Temperature  
Fig. 3 Input Threshold Current vs.Temperature  
5
16  
V
V
= 5V  
CC  
= 0.6V  
14  
12  
10  
8
O
4
3
2
1
0
R
= 350Ω  
= 1KΩ  
L
6
R
L
4
V
V
= V = 5.5V  
CC  
= 2V  
= 250 µA  
O
E
2
I
F
0
-40  
-20  
0
20  
40  
60  
80  
100  
-40  
-20  
0
20  
40  
60  
80  
100  
T
- TEMPERATURE (˚C)  
A
T
- TEMPERATURE (˚C)  
A
6
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Typical Performance Curves (HCPL0600, and HCPL0601 and HCPL0611 only)  
Fig. 5 Low Level Output Voltage vs.Temperature  
Fig. 6 Low Level Output Current vs.Temperature  
60  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0.0  
V
= 5V  
V
= 5.5V  
CC  
CC  
= 2V  
V
V
= 2V  
V
I
E
E
55  
50  
45  
40  
35  
30  
25  
20  
= 0.6V  
= 5mA  
OL  
F
I
= 10-15mA  
= 5mA  
F
I
= 12.8mA  
O
I
= 16mA  
= 6.4mA  
O
I
F
I
O
I
= 9.6mA  
O
-40  
-20  
0
20  
40  
60  
80  
100  
-40  
-20  
0
20  
40  
60  
80  
100  
T
- TEMPERATURE (˚C)  
T
A
- TEMPERATURE (˚C)  
A
Fig. 7 Propagation Delay vs.Temperature  
Fig. 8 Propagation Delay vs. Pulse Input Current  
100  
90  
80  
70  
60  
50  
40  
30  
20  
90  
V
= 5V  
V
T
= 5V  
CC  
CC  
= 25°C  
I
= 7.5mA  
F
A
80  
70  
60  
50  
40  
30  
20  
t
R
PLH  
= 1kΩ  
L
t
R
PLH  
= 1kΩ  
L
t
R
PLH  
= 350Ω  
L
t
R
PLH  
= 350Ω  
L
t
PHL  
RL = 350& 1kΩ  
t
PHL  
RL = 350& 1kΩ  
-40  
-20  
0
20  
40  
60  
80  
100  
5
7
9
11  
13  
15  
I
- PULSE INPUT CURRENT (mA)  
F
T
- TEMPERATURE (˚C)  
A
7
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Typical Performance Curves (HCPL0600, HCPL0601 and HCPL0611 only)  
Fig. 9 Typical Enable Propagation Delay vs.Temparature  
Fig. 10 Typical Rise and Fall Time vs.Temperature  
90  
240  
200  
160  
120  
80  
V
= 5V  
V
= 5V  
CC  
CC  
EH  
EL  
V
V
= 3V  
= 0V  
= 7.5mA  
I
= 7.5mA  
80  
70  
60  
50  
40  
30  
20  
10  
0
F
I
F
t
t
R
r
ELH  
R
= 1kΩ  
= 1kΩ  
L
L
t
ELH  
R
= 350Ω  
L
t
r
t
R
= 350Ω  
EHL  
L
RL = 350& 1kΩ  
40  
t
f
R
= 350& 1kΩ  
L
0
-40  
-20  
0
20  
40  
60  
80  
100  
-40  
-20  
0
20  
40  
60  
80  
100  
T
- TEMPERATURE (˚C)  
T
- TEMPERATURE (˚C)  
A
A
Fig. 11 Typical Pulse Width Distortion vs.Temperature  
40  
V
= 5V  
CC  
I
= 7.5mA  
F
35  
30  
25  
20  
15  
10  
5
R
= 1kΩ  
L
R
= 350Ω  
L
0
-40  
-20  
0
20  
40  
60  
80  
100  
T
- TEMPERATURE (˚C)  
A
8
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Typical Performance Curves (HCPL0637, HCPL0638 and HCPL0639 only)  
Fig. 13 Input Threshold Current vs. Ambient Temperature  
Fig. 12 Input Forward Current vs. Forward Voltage  
100  
2.5  
2.0  
1.5  
1.0  
0.5  
0.0  
V
V
= 5.5V  
CC  
= 0.6V  
O
10  
1
T
= 100°C  
A
R
= 350Ω  
L
T
= -40°C  
= 0°C  
T
= 85°C  
A
A
0.1  
R
= 1kΩ  
L
T
A
R
= 4kΩ  
T
= 25°C  
L
A
0.01  
0.001  
0.8  
0.9 1.0 1.1 1.2 1.3 1.4 1.5 1.6 1.7  
VF - FORWARD VOLTAGE (V)  
-40  
-20  
0
20  
40  
60  
80  
100  
100  
100  
TA - AMBIENT TEMPERATURE (°C)  
Fig. 14 High Level Output Current vs.  
Ambient Temperature  
Fig. 15 Low Level Output Current vs.  
Ambient Temperature  
20  
16  
12  
8
40  
35  
30  
25  
20  
15  
10  
V
V
= V  
= 5.5V  
O
E
CC  
= 2V (Single Channel Only)  
V
= 5.5V  
CC  
V
V
I
= 2V (Single Channel Only)  
= 0.6V  
E
I
= 250 µA  
F
OL  
= 5 - 15mA  
F
4
0
-40  
-20  
0
20  
40  
60  
80  
100  
-40  
-20  
0
20  
40  
60  
80  
TA - AMBIENT TEMPERATURE (°C)  
TA - AMBIENT TEMPERATURE (°C)  
Fig. 17 Pulse Width Distortion vs.  
Ambient Temperature  
Fig. 16 Low Level Output Voltage vs.  
Ambient Temperature  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0.0  
70  
60  
50  
40  
30  
20  
10  
0
V
= 5V  
CC  
V
= 5.5V  
CC  
I
= 7.5mA  
F
V
= 2V (Single Channel Only)  
E
I
= 5mA  
F
RL = 4kΩ  
I
= 16mA  
I
= 12.8mA  
O
O
I
= 6.4mA  
I
= 9.6mA  
O
O
RL = 1kΩ  
RL = 350Ω  
-40  
-20  
0
20  
40  
60  
80  
-40  
-20  
0
20  
40  
60  
80  
100  
TA - AMBIENT TEMPERATURE (°C)  
TA - AMBIENT TEMPERATURE (°C)  
9
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Typical Performance Curves (HCPL0637, HCPL0638 and HCPL0639 only)  
Fig. 18 Propagation Delay vs.  
Ambient Temperature  
Fig. 19 Rise and Fall Times vs.  
Ambient Temperature  
7
6
5
4
3
2
1
0
120  
100  
80  
60  
40  
20  
0
350  
300  
250  
200  
150  
100  
50  
V
= 5V  
V
= 5V  
CC  
CC  
I
= 7.5mA  
I
= 7.5mA  
F
F
t
- RL = 4kΩ  
r
t
PLH  
t
PLH  
RL = 4kΩ  
RL = 1kΩ  
t
- RL = 350, 1k, 4kΩ  
f
t
PLH  
RL = 350Ω  
t
PHL  
t
t
- RL = 1kΩ  
r
RL = 350, 1k, 4kΩ  
- RL = 350Ω  
r
0
-40  
-20  
0
20  
40  
60  
80  
100  
-40  
-20  
0
20  
40  
60  
80  
100  
TA - AMBIENT TEMPERATURE (°C)  
TA - AMBIENT TEMPERATURE (°C)  
10  
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Pulse Gen.  
= t = 5 ns  
O
Pulse Gen.  
IF = 7.5 mA  
+5V  
t
f
Z
Z
= 50 Ω  
r
O
= 50 Ω  
t
f
= t = 5 ns  
r
IF = 3.75 mA  
Dual Channel  
V
Input  
(IF  
+5 V  
I
F
)
1
2
3
4
8
7
6
5
CC  
1
V
8
7
6
5
CC  
tPHL  
Output  
(VO  
tPLH  
R
L
Input  
Monitoring  
Node  
Output V  
O
Monitoring  
Node  
.1µf  
Bypass  
R
L
2
3
4
)
1.5 V  
Input  
Monitor  
0.1µF  
Bypass  
Output  
(V  
L
)
O
(I  
)
F
R
M
90%  
10%  
C
C
L
*
Output  
(VO  
GND  
47Ω  
)
GND  
tf  
tr  
Test Circuit for HCPL0600,  
HCPL0601 and HCPL0611  
Test Circuit for HCPL0637,  
HCPL0638 and HCPL0639  
Fig. 20 Test Circuit and Waveforms for tPLH, tPHL, tr and tf.  
Pulse  
Input  
Monitor  
(VE)  
Generator  
tr = 5ns  
ZO= 50Ω  
+5V  
3.0 V  
1.5 V  
Input  
(VE  
VCC  
)
1
2
3
4
8
7
6
5
tEHL  
Output  
(VO  
tELH  
7.5 mA  
RL  
)
.1µf  
bypass  
1.5 V  
Output  
(VO  
)
CL  
GND  
Fig. 21 Test Circuit tEHL and tELH  
.
11  
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
VCC  
+5V  
1
2
3
4
8
7
6
5
IF  
0.1µf  
bypass  
350Ω  
A
B
Output  
(VO)  
VFF  
GND  
VCM  
Pulse Gen  
Test Circuit for HCPL0600, HCPL0601, and HCPL0611  
Peak  
VCM  
0V  
5V  
VO  
CMH  
Switching Pos. (A), IF= 0  
VO (Min)  
VO (Max)  
Switching Pos. (B), IF= 7.5 mA  
VO  
CML  
0.5 V  
Fig. 22 Test Circuit Common Mode Transient Immunity  
(HCPL0600, HCPL0601 and HCPL0611)  
12  
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
I
F
Dual Channel  
V
B
A
+3.3V  
1
2
3
4
8
7
6
5
CC  
R
L
Output V  
Monitoring  
Node  
O
V
FF  
0.1µF  
Bypass  
GND  
V
CM  
+
Pulse  
Generator  
O = 50 Ω  
Z
Test Circuit for HCPL0637, HCPL0638 and HCPL0639  
VCM  
0V  
Peak  
3.3V  
VO  
CMH  
Switching Pos. (A), IF= 0  
VO (Min)  
VO (Max)  
Switching Pos. (B), IF= 7.5 mA  
VO  
CML  
0.5 V  
Fig. 23 Test Circuit Common Mode Transient Immunity  
(HCPL0637, HCPL0638 and HCPL0639)  
13  
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
8-Pin Small Outline  
0.024 (0.61)  
0.060 (1.52)  
0.275 (6.99)  
0.155 (3.94)  
0.050 (1.27)  
14  
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Ordering Information  
Option  
No Suffix  
V
Order Entry Identifier  
Description  
Shipped in tubes (50 units per tube)  
HCPL0600  
HCPL0600V  
VDE0884 (pending approval)  
R1  
HCPL0600R1  
HCPL0600R1V  
HCPL0600R2  
HCPL0600R2V  
Tape and Reel (500 units per reel)  
R1V  
VDE0884 (pending approval), Tape and Reel (500 units per reel)  
Tape and Reel (2500 units per reel)  
R2  
R2V  
VDE0884 (pending approval), Tape and Reel (2500 units per reel)  
Marking Information  
1
2
600  
6
V
X YY S  
5
3
4
Definitions  
1
2
3
Fairchild logo  
Device number  
VDE mark (Note: Only appears on parts ordered with VDE option –  
See order entry table)  
4
5
6
One digit year code, e.g., ‘3’  
Two digit work week ranging from ‘01’ to ‘53’  
Assembly package code  
15  
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
Carrier Tape Specifications  
8.0 ± 0.10  
2.0 ± 0.05  
3.50 ± 0.20  
Ø1.5 MIN  
0.30 MAX  
4.0 ± 0.10  
1.75 ± 0.10  
5.5 ± 0.05  
12.0 ± 0.3  
8.3 ± 0.10  
5.20 ± 0.20  
Ø1.5 ± 0.1/-0  
6.40 ± 0.20  
0.1 MAX  
User Direction of Feed  
Reflow Profile  
300  
280  
260  
240  
220  
200  
180  
160  
140  
120  
100  
80  
260°C  
>245°C = 42 Sec  
Time above  
183°C = 90 Sec  
°C  
1.822°C/Sec Ramp up rate  
60  
40  
33 Sec  
20  
0
0
60  
120  
180  
270  
360  
Time (s)  
16  
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  
FAIRCHILD SEMICONDUCTOR TRADEMARKS  
The following are registered and unregistered trademarks Fairchild Semiconductor owns or is authorized to use and is not  
intended to be an exhaustive list of all such trademarks.  
ACEx™  
FACT Quiet Series™  
GlobalOptoisolator™  
GTO™  
OCX™  
SILENT SWITCHER®  
SMART START™  
SPM™  
UniFET™  
VCX™  
Wire™  
ActiveArray™  
Bottomless™  
Build it Now™  
CoolFET™  
CROSSVOLT™  
DOME™  
OCXPro™  
OPTOLOGIC®  
OPTOPLANAR™  
PACMAN™  
POP™  
Power247™  
PowerEdge™  
PowerSaver™  
PowerTrench®  
QFET®  
HiSeC™  
Stealth™  
I2C™  
SuperFET™  
SuperSOT™-3  
SuperSOT™-6  
SuperSOT™-8  
SyncFET™  
TCM™  
TinyBoost™  
TinyBuck™  
i-Lo™  
ImpliedDisconnect™  
IntelliMAX™  
ISOPLANAR™  
LittleFET™  
MICROCOUPLER™  
MicroFET™  
MicroPak™  
EcoSPARK™  
E2CMOS™  
EnSigna™  
FACT®  
FAST®  
FASTr™  
QS™  
QT Optoelectronics™ TinyPWM™  
FPS™  
FRFET™  
MICROWIRE™  
MSX™  
MSXPro™  
Quiet Series™  
RapidConfigure™  
RapidConnect™  
µSerDes™  
TinyPower™  
TinyLogic®  
TINYOPTO™  
TruTranslation™  
UHC®  
Across the board. Around the world.™  
The Power Franchise®  
ScalarPump™  
Programmable Active Droop™  
DISCLAIMER  
FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS  
HEREIN TO IMPROVE RELIABILITY, FUNCTION, OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE  
APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER  
ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. THESE SPECIFICATIONS DO NOT EXPAND THE TERMS OF FAIRCHILD’S  
WORLDWIDE TERMS AND CONDITIONS, SPECIFICALLY THE WARRANTY THEREIN, WHICH COVERS THESE PRODUCTS.  
LIFE SUPPORT POLICY  
FAIRCHILD’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR  
SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF 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 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 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. I22  
17  
www.fairchildsemi.com  
HCPL06XX Rev. 1.0.7  

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