RL1024P Perkin Elmer Optoelectronics, RL1024P Datasheet - Page 29

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RL1024P

Manufacturer Part Number
RL1024P
Description
Manufacturer
Perkin Elmer Optoelectronics
Datasheet
LT Series
LT Series Key
R1mA Output Resistance at If=1 mA
R20mA Output Resistance at If=20 mA
R
R
T
T
V
TC
T
T
C
V
P
Analog Optical Isolators—
VTL5C Series
PerkinElmer Optoelectronics’ line of
AOIs consists of a light-tight package
which houses a light source and one or
more photoconductive cells. Through
control of the input current or voltage
applied to the AOI, the output resistance
can be varied. The output resistance can
be made to switch between an “on” and
“off” state or made to track the input
signal in an analog manner. Because a
small change in input signal can cause a
large change in output resistance, AOIs
have been found to provide a very eco-
nomical and technically superior solu-
tion for many applications.
max
01
05
op
st
on
off
s
i
max
Dark Resistance after 1 sec (If=0)
Dark Resistance after 5 sec (If=0)
Operating Temperature Range
Storage Temperature Range
Input/Output Insulation Voltage
Module Thermal Coefficient
Rise Time to 63% of final R
Decay Time to 37% of initial R
Output Capacity
Operating Voltage at If=0
Output Power Dissipation at 25˚C
20
20
Specification Notes
LED Current: Since the input has a substantially constant
voltage drop, a current-limiting resistance is required.
ON Resistance: Dark adapted resistance measured after 24
or more hours of no input.
OFF Resistance: Measured 10 sec. after removal of the input.
The ultimate resistance is many times greater than the value
at 10 sec.
Response Time: Ascent measured to 63% of final conductance
from the application of 40 mA input. The conductance rise time
All readings taken at standard light A (2854 K color temperature) after 2 hours of preillumination at 500 lux.
Input/Output Coupling Capacity: 1 pF max.
Reverse Voltage: 4 V max.
Diode Forward Current: 25 mA max. DC
VTL5C Series
Technical Specification
LT Series
Technical Specification
LT3011-2
VTL5C2/2
VTL5C3/2
VTL5C4/2
VTL5C10
Number
LT3011
LT9909
LT9910
LT9911
LT9912
LT9913
LT9914
Number
VTL5C1
VTL5C2
VTL5C3
VTL5C4
VTL5C6
VTL5C7
VTL5C8
VTL5C9
Part
Part
Material Input
0.7-1.2
1.2-2.5
R1mA R20mA
14-25
4.5-9
8-16
Type
2-5
k
1
0
0
3
3
4
4
0
7
0
1
4
0.4 mA
10 mA
40 mA
10 mA
40 mA
40 mA
10 mA
40 mA
40 mA
10 mA
40 mA
10 mA
10 mA
40 mA
16 mA
Current Adapted
1 mA
1 mA
5 mA
1 mA
1 mA
1 mA
1 mA
1 mA
2 mA
1 mA
4 mA
2 mA
1 mA
Typical Electro-Optical Characteristics
0.32
0.35
0.7
1.5
3.5
k
On Resistance
1
2
6
typ.
R
5.5 k
2.5 k
1.2 k
1.5 k
1.1 k
4.8 k
1.8 k
20 k
600
200
800
200
700
30 k
55 k
125
150
75 k
10 k
630
400
01
0.06
0.06
1.5
2 k
75
2 k
5 k
1 k
m
0.1
0.1
0.2
0.5
0.7
Dark
5
3
min.
typ.
R
05
0.18
0.18
m
0.3
0.3
0.6
1.5
2.1
9
Off Resistance
min.
@ 10 sec.
100 M
400 k
400 k
400 k
50 M
10 M
10 M
10 M
50 M
1 M
1 M
1 M
-20-+60
-20-+70
-20-+70
-20-+70
-20-+70
-20-+70
-20-+70
-20-+70
min.
t
op
˚C
range
www.optoelectronics.perkinelmer.com
Slope
-20-+80
-20-+70
-20-+70
-20-+70
-20-+70
-20-+70
-20-+70
-20-+70
18.7
16.7
t
8.3
5.7
7.3
3.8
15
24
20
20
19
st
8
˚C
range
to a specified value is increased at reduced input drive while
the conductance decay time to a specified value is decreased.
Typical matching and tracking from 0.4 to 40 mA is 25%.
Measured 5 sec. after removal of the input. The ultimate
resistance is many times greater than the value at 5 sec.
VTL5C9 response times are based on a 2 mA input. VTL5C10
response times are based on a 10 mA input
for ascent time and a 1 mA input for decay time.
Dynamic
100 db
112 db
Range
69 db
65 db
75 db
71 db
72 db
68 db
88 db
75 db
80 db
75 db
V
2500
2500
1000
1000
1000
1000
1000
1000
i
min.
V
Optical Isolators
TC
%/˚K
0.4
0.4
0.4
0.4
0.4
0.4
0.4
Voltage
100 V
200 V
250 V
100 V
250 V
500 V
100 V
10 lux
Table of Contents
2
50 V
50 V
30 V
50 V
50 V
Cell
msec
t
10
50
40
40
50
40
35
35
on
Limit Values
Turn-on to 63% Turn-off (Decay)
Final R
2.5 ms
3.5 ms
2.5 ms
3.5 ms
t
7 ms
3 ms
6 ms
6 ms
6 ms
4 ms
4 ms
1 ms
off
msec
10
40
40
40
40
30
30
30
typ.
ON
Response Time
typ.
C
s
pF
max.
2
2
1
1
1
1
1
1
1 sec. (100 k )
50 ms (1 M )
to 100
500 ms
150 ms
V
1.5 sec
1.5 sec
1.5 sec
100
100
100
100
100
35 ms
35 ms
50 ms
60 ms
50 ms
50
50
50
max
V
P
max.
mW
50
75
50
50
50
50
50
50
max
27

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