GP2S26 Sharp Electronics, GP2S26 Datasheet

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GP2S26

Manufacturer Part Number
GP2S26
Description
Manufacturer
Sharp Electronics
Type
Reflectiver
Datasheet

Specifications of GP2S26

Number Of Elements
1
Output Device
Phototransistor
Reverse Breakdown Voltage
6V
Collector-emitter Voltage
35V
Forward Current
50mA
Package Type
Flat Lead
Collector Current (dc) (max)
20mA
Power Dissipation
100mW
Fall Time
100000ns
Rise Time
100000ns
Pin Count
4
Mounting
Surface Mount
Operating Temp Range
-20C to 85C
Operating Temperature Classification
Commercial
Lead Free Status / Rohs Status
Not Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
GP2S26
Manufacturer:
SHARP
Quantity:
11 130
Part Number:
GP2S26BC
Manufacturer:
FAIRCHILD
Quantity:
16
GP2S09/GP2S24/
GP2S26/GP2S27
1. Compact and thin
2. Optimum detection distance: 0.6 to 0.8mm
3. Visible light cut-off type
“ 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.”
GP2S09
GP2S26
4 - 0.5
GP2S09
GP2S24
GP2S26: Flat lead type
GP2S27: Mini-flat package type
C0.7
Outline Dimensions
Features
4 - ( 0.6 )
( ) : Reference dimensions
Tolerance:± 0.15mm
The dimensions indicated by
to those measured from the lead base.
C0.7
4
1
± 20 ˚
+ 0.2
- 0.1
0.4
1.75
4
1
0.4
4.0
+ 0.2
- 0.1
( ) : Reference dimensions
1.75
Tolerance:± 0.15mm
+ 0.2
- 0.1
: Compact DIP long lead type
: Compact DIP type
+0.2
- 0.1
3
2
±15˚
3
2
13.0
3.0
4 - 0.2
3.0
4.0
( 4.0 )
+ 0.2
- 0.1
± 1.0
+ 0.2
- 0.1
refer
± 0.2
+ 0.3
- 0
: 0 to 20˚
4 - 0.4
GP2S24
GP2S27
C0.7
( ) : Reference dimensions
Tolerance:± 0.15mm
The dimensions indicated by
+ 0.2
- 0.1
to those measured from the lead base.
4
1
4.0
2
3
4.0
( ) : Reference dimensions
Tolerance:± 0.15mm
1.75
+ 0.2
± 15 ˚
- 0.1
+ 0.2
- 0.1
1.75
3
2
1
4
0.4
C0.7
4 - 0.15
+ 0.2
- 0.1
1. Cassette tape recorders, VCRs
2. Floppy disk drives
3. Various microcomputerized control equip-
3.0
Applications
ment
4.0
( 4.0 )
: 0 to 20˚
+ 0.2
- 0.1
3.0
5.0
± 0.2
( 0.4 )
refer
+ 0.2
- 0.1
MAX.
GP2S09/GP2S24/GP2S26/GP2S27
4
1
Internal connection diagram
( Common to 4 models )
Subminiature
Photointerrupter
1 Anode
2 Emitter
3 Collector
4 Cathode
( Unit : mm )
3
2

Related parts for GP2S26

GP2S26 Summary of contents

Page 1

... GP2S09/GP2S24/ GP2S26/GP2S27 Features 1. Compact and thin GP2S09 : Compact DIP long lead type GP2S24 : Compact DIP type GP2S26: Flat lead type GP2S27: Mini-flat package type 2. Optimum detection distance: 0.6 to 0.8mm 3. Visible light cut-off type Outline Dimensions GP2S09 1.75 ± 0.2 4.0 +0 ...

Page 2

... The condition and arrangement of the reflective object are shown below. 4 Without reflective object The ranking of collector current shall be classi- fied into the following 6 ranks. ( GP2S09, GP2S24, GP2S26, GP2S27 ) ( A ) Rank Collector-current 120 120 120 5 GP2S24 and GP2S26 and GP2S27 don't have A rank. Symbol Rating CEO V 6 ECO ...

Page 3

... Collector-emitter voltage V Fig. 2 Power Dissipation vs 100 ( ˚ Fig. 4 Collector Current vs. 0˚C - 25˚C 2.5 3 Fig. 6 Relatlve Collector Current vs GP2S09/GP2S24/GP2S26/GP2S27 Ambient Temperature 120 P tot 100 ˚C ) Ambient temperature T a Forward Current 700 25˚C a 600 500 ...

Page 4

... Fig. 7 Collector Dark Current vs. Ambient Temperature - 20V Ambient temperature T Fig. 9 Response Time vs. Load Resistance ( GP2S24/ GP2S26/GP2S27 ) 1000 500 I = 100 A C 200 T = 25˚ 100 0.5 0.2 0.1 0 Load resistance R L Fig.10 Relative Collector Current vs. Distance between Sensor and Al Evaporation Glass 100 ...

Page 5

... GP2S09 ) 100 25˚ 25˚C a Please refer to the chapter “ Precautions for Use ” . 1100 1200 GP2S09/GP2S24/GP2S26/GP2S27 Al evaporated glass Correspond to Fig.12 Test condition I = 4mA 1mm OMS card OMS card White Black White d Lmm GP2S24/ GP2S26/ GP2S27 ) 100 25˚ 10k Frequency Black Lmm ...

Page 6

Application Circuits NOTICE The circuit application examples in this publication are provided to explain representative applications of SHARP devices and are not intended to guarantee any circuit design or license any intellectual property rights. SHARP takes no responsibility for any ...

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