GP2S60 Sharp Microelectronics, GP2S60 Datasheet

PHOTOINTERRUPTER REFLEC 1MM SMD

GP2S60

Manufacturer Part Number
GP2S60
Description
PHOTOINTERRUPTER REFLEC 1MM SMD
Manufacturer
Sharp Microelectronics
Datasheets

Specifications of GP2S60

Sensing Distance
0.028" (0.7mm)
Sensing Method
Reflective
Voltage - Collector Emitter Breakdown (max)
35V
Current - Collector (ic) (max)
20mA
Current - Dc Forward (if)
50mA
Output Type
Phototransistor
Response Time
20µs, 20µs
Mounting Type
Surface Mount, Gull Wing
Package / Case
4-SMD
Operating Temperature
-25°C ~ 85°C
No. Of Channels
1
Input Current
20mA
Output Voltage
35V
Opto Case Style
SMD
No. Of Pins
4
Collector Emitter Voltage V(br)ceo
35V
Continuous Collector Current Ic Max
20mA
External Depth
1.7mm
External Length
RoHS Compliant
Optocoupler Output Type
Phototransistor
Svhc
No SVHC (15-Dec-2010)
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
425-1097-2

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I Features
I Applications
I Absolute Maximum Ratings
GP2S60
1. Subminiature, leadless type. (Dimensions : 3.2×1.7×1.1mm)
2. Soldering reflow.
3. Taped model. (2 000 pcs/reel)
4. Visible light cut-off type.
1. Audio equipment
2. VCR
3. Camcoders
4. Printers
5. CD-ROM drives
*For MAX. 5s
Notice
Internet Internet address for Electronic Components Group http://sharp-world.com/ecg/
(Peak temperature : 240˚C, 10s or less)
*
Collector-emitter voltage
Emitter-collector voltage
Forward current
Reverse voltage
Power dissipation
Collector current
Collector power dissipation
Total power dissipation
Operating temperature
Storage temperature
Soldering temperature
Parameter
In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that may occur in equipment using any SHARP
devices shown in catalogs, data books, etc. Contact SHARP in order to obtain the latest device specification sheets before using any SHARP device.
Symbol
V
V
T
T
T
V
P
P
P
I
I
CEO
ECO
opr
sol
C
tot
stg
F
D
C
R
−40 to +100
−25 to +85
Rating
100
260
50
75
35
20
75
6
6
(T
a
Unit
mW
mW
mW
=25˚C)
mA
mA
˚C
˚C
˚C
V
V
V
I Outline Dimensions
Subminiature, Reflective Type
Photointerrupter for Automatic
Mounting
❈ Unspecified tolerance : ±0.15mm
❈ ( ) : Reference dimensions
❈ Tolerance : ±0.1mm
Pattern wiring is not allowed on
short-circuit.
3
2
Plating area
Emitter center
(0.7)
Recommended pattern
2−1
(1.8)
2.7
3.2
(0.7)
Detector center
2−1.7
4
1
2−1
Internal connection diagram
portion not to cause
1
2
3
4
2
3
Anode
Collector
Emitter
Cathode
1
4
(Unit : mm)
GP2S60

Related parts for GP2S60

GP2S60 Summary of contents

Page 1

... V Plating area ❈ Unspecified tolerance : ±0.15mm ❈ Reference dimensions 100 mW −25 to +85 ˚C ˚C 260 ˚C Pattern wiring is not allowed on short-circuit. ❈ Tolerance : ±0.1mm GP2S60 (Unit : mm) (0.7) Detector center (0.7) Emitter center 2.7 3.2 (1.8) Internal connection diagram Anode Collector ...

Page 2

... Fig.2 Power Dissipation vs. Ambient Temperature 120 100 75 85 100 (°C) a MIN. TYP. MAX. − 1.2 1.4 − − 10 − 1 100 130 85 40 − − − 500 − 20 100 − 20 100 P tot P − Ambient temperature T (°C) a GP2S60 (Ta=25˚C) Unit V µA nA µA nA µs µs 100 ...

Page 3

... Current 25°C 0°C 2 2.5 3 (V) F Fig.6 Relative Collector Current vs. Ambient Temperature =15mA I F 10mA 7mA 4mA 2mA 100 (°C) a 700 = =25° 600 500 400 300 200 100 Forward current I (mA) F 120 = =4mA I F 100 − Ambient temperature T (°C) a GP2S60 20 75 ...

Page 4

... Wavelength λ (nm) Fig.9 Test Circuit For Response Time = =100µ =25° Input 100 1000 (kΩ) Fig.11 Measuring Configulation of Collector Al evaporation glass 3.5 4 4.5 5 =25° 1000 1100 1200 Input Output Output Current Aluminum evaporation glass d=1mm glass plate GP2S60 10% 90 ...

Page 5

... Please use after confirmation the conditions fully by actual solder reflow machine. Fig.14 Relative Collector Current vs.OMS Card Moving Distance OMS test card d 1mm − =4mA I F d=1mm 4˚C/s Max.10s Max.90s 100 OMS test card d Sensor + =4mA I F d=1mm −3 −2 − OMS card moving distance (mm) GP2S60 1mm − ...

Page 6

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 problems related ...

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