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IS456 の電気的特性と機能

IS456のメーカーはSharp Electrionic Componentsです、この部品の機能は「High Speed Response Type OPIC Light Detector」です。


製品の詳細 ( Datasheet PDF )

部品番号 IS456
部品説明 High Speed Response Type OPIC Light Detector
メーカ Sharp Electrionic Components
ロゴ Sharp Electrionic Components ロゴ 




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IS456 Datasheet, IS456 PDF,ピン配置, 機能
IS456
IS456
High Speed Response Type
OPIC Light Detector
s Features
s Outline Dimensions
(Unit : mm )
1. High speed response (t PHL : TYP.230ns )
2. Uses a pattern to allow for possible
positional deviation of the semiconductor
laser spot.
3. Compact, mini-flat package
s Applications
1. Laser beam printers
1
Detector
center
2
0.25
2.75 ±0.2
4.4± 0.1
4
3
s Absolute Maximum Ratings
Parameter
*1Supply voltage
High level output voltage
Low level output current
Operating temperature
Storage temperature
*2Soldering temperature
Power dissipation
RO terminal power dissipation
*3 Incident light intensity
*3Radiant intensity
Symbol
V CC
V OH
I OL
T opr
T stg
T sol
P
P RO
PI
Ee
*1 For 1 minute
*2 For 3 seconds at the position shown in the follow-
ing drawing.
*3 Maximum allowable incident light intensity and
radiant intensity of laser beam (λ = 780nm ) to
the device.
(Ta= 25˚C)
Rating
- 0.5 to + 7
7
20
- 25 to + 80
- 40 to + 85
260
150
24
5
60
Unit
V
V
mA
˚C
˚C
˚C
mW
mW
mW
WB
( R0.2 )
2.7
+
-
0.5
0
2.7
+
-
0.5
0
4.4± 0.1
0.8
+
-
0.2
0.4
Internal connection
diagram
VREF
5.0 ± 0.1
10˚ 10˚
10˚ 10˚
4
Gain resistor(Ro)
(Outer mounting )
1
1 RO
2 2 VO
3 GND
3 4 VCC
*“ OPIC” (Optical IC ) is a trademark of the SHARP Corporation.
An OPIC consists of a light-detecting element and signal-
processing circuit integrated onto a single chip.
Soldering area
Soldering area
s Electro-optical Characteristics
( VCC = 5V, Ta= 25˚C)
Parameter
High level output voltage
Low level output voltage
High level supply current
Low level supply current
*4 “ HighLow ” threshold illuminance 1
*4 “ HighLow ” threshold illuminance 2
“ HighLow ” threshold incident light intensity
“ HighLow”
propagation delay time
Response
time
“ LowHigh”
propagation delay time
Rise time
Fall time
Symbol
V OH
V OL
I CCH
I CCL
E VHL1
E VHL2
P IHL
t PHL
t PLH
tr
tf
Conditions
RO=51k, E V=0
IOL=10mA, E V=1 000lx
RO=51k, E V=0
RO=51k, E V=1 000lx
R O=51k
R O=5.1k
RO=5.1k, l =780nm
CL=15pF, Duty=1: 1
P I=0.2mW, λ =780nm
RO=5.1k, R L=510
MIN.
4.9
-
-
-
330
-
-
-
-
-
-
TYP.
-
0.4
2.6
3.8
470
5 800
100
230
230
60
20
MAX.
-
0.6
4.5
6.6
600
-
-
400
400
200
100
Unit
V
V
mA
mA
lx
lx
µW
ns
ns
ns
ns
*4 E VHL 1, E VHL 2 represent illuminance by CIE standard light source A(tungsten lamp) when output goes from high to low.
In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that occur in equipment using any of SHARP's devices, shown in catalogs,
data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device.

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IS456 pdf, ピン配列
Fig. 5 Supply Current vs.
Ambient Temperature
6
VCC= 5.0V
4
I CCL
2 I CCH
0
- 25
0 25 50 75
Ambient temperature T a ( ˚C)
100
Fig. 7 High Low Threshold Incident Light
Intensity vs. Ambient Temperature
VCC = 5.0V
140 R O = 5.1k
120
100
80
0
- 25
0 25 50
Ambient temperature Ta ( ˚C)
75 80
Fig. 9 Propagation Delay Time vs.
Incident Light Intensity
250
VCC= 5.0V
R L= 510
Ta= 25˚C
200 RO : Dotted line
150
tPHL
100
tPLH
50
RO
0
0 0.2 0.5 1.0 1.5 2.0
Incident light intensity PI ( mW )
2.5
IS456
Fig. 6 High Low Threshold Incident Light
Intensity vs. Gain Resistanse
2000
1000
VCC= 5V
T a= 25˚C
500
200
100
50
20
10
01234567
Gain resistance R O ( k )
Fig. 8 High Low Threshold Incident Light
Intensity vs. Supply Voltage
200
Ta = 25˚C
R O = 5.1k
150
100
50
0
3 45678
Supply voltage V CC ( V)
Fig.10 Propagation Delay Time vs.
Gain Resistance
500
VCC = 5V, P I= 0.6mW
RL= 510k, T a= 25˚C
400
300 t PLH
200
t PHL
100
0
0123456
Gain resistance RO ( k)


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共有リンク

Link :


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