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Incorporates a photo-IC chip with a built-in detector element and amplifier. Detector element has built-in temperature compensation circuit. A wide supply voltage range: 4.5 to 16 VDC Directly connects to C-MOS and TTL. Allows highly precise sensing with a 0.2-mm-wide sensing aperture. Vertical slot arrangement. Incorporates PCB location pips.
EE-SX493
Dimensions
Internal Circuit
K V O A 6 G
Terminal No. A K V O G
Name Anode Cathode Supply voltage (Vcc) Output (OUT) Ground (GND)
0.2 9.5
6.50.05
Unless otherwise specified, the tolerances are as shown below. Dimensions Tolerance 0.125 0.150 0.180 0.215 0.260
6.90.5 Five, 0.25 Five, 0.5 0.750.1 Cross section BB
3 mm max. 3 t mm v 6 6 t mm v 10 10 t mm v 18 18 t mm v 30
(1.25)
(1.25)
Cross section AA
70.1
Two, 1
0 -0.2
dia.
Specifications
Absolute Maximum Ratings (Ta = 25C)
Item Emitter Detector Forward current Reverse voltage Supply voltage Output voltage Output current Permissible output dissipation Ambient temperature Operating Storage Soldering Note: IF VR VCC VOUT IOUT POUT Topr Tstg Tsol Symbol 4V 16 V 28 V 16 mA 250 mW (see note) -40C to 60C -40C to 85C 260C Rated value 50 mA (see note)
Refer to the temperature rating chart if the ambient temperature exceeds 25C.
Electrical and Optical Characteristics (Ta = 25C)
Item Emitter Forward voltage Reverse current Peak emission wavelength Detector Low-level output voltage High-level output voltage Current consumption Peak spectral sensitivity wavelength LED current when output is OFF LED current when output is ON Hysteresis Response frequency Response delay time Response delay time Note: nH f tPLH (tPHL) tPHL (tPLH) 15% typ. 3,000 P.P.S min. 3 s typ. 20 s typ. VCC = 4.5 to 16 V (see note 1) VCC = 4.5 to 16 V, IF = 15 mA, IOL = 16 mA (see note 2) VCC = 4.5 to 16 V, IF = 15 mA, IOL = 16 mA (see note 3) VCC = 4.5 to 16 V, IF = 15 mA, IOL = 16 mA (see note 3) 3. The following illustrations show the definition of response delay time.
Input
Symbol VF IR P VOL VOH ICC P IFT
Value 1.2 V typ., 1.5 V max. 0.01 A typ., 10 A max. 940 nm typ. 0.12 V typ., 0.4 V max. 15 V min. 5 mA typ., 10 mA max. 870 nm typ. 10 mA typ., 15 mA max. IF = 20 mA VR = 4 V IF = 20 mA
Condition
Vcc = 4.5 to 16 V, IOL = 16 mA, IF = 15 mA Vcc = 16 V, RL = 1 k, IF = 0 mA Vcc = 16 V VCC = 4.5 to 16 V VCC = 4.5 to 16 V
1. Hysteresis denotes the difference in forward LED current value, expressed in percentage, calculated from the respective forward LED currents when the photo IC is turned from ON to OFF and when the photo IC is turned from OFF to ON. 2. The value of the response frequency is measured by rotating the disk as shown below. (P.P.S = pulse/s)
Output 2.1 mm 0.2 mm
0.2 mm
Disk
Engineering Data
300
Output allowable dissipation Pc (mW)
Forward Current vs. Collector Dissipation Temperature Rating
Forward current I F (mA)
Forward Current vs. Forward Voltage Characteristics (Typical)
Forward current I F (mA)
LED Current vs. Supply Voltage (Typical)
Ta = -30C Ta = 25C Ta = 70C
LED current I FT(mA)
IFT ON
IFT OFF Ta = 25C RL =1 k
Ambient temperature Ta (C)
Forward voltage VF (V)
Supply voltage VCC (V)
LED Current vs. Ambient Temperature Characteristics (Typical)
VCC = 5 V RL = 330
Low-level Output Voltage vs. Output Current (Typical)
Low level output voltage V OL (V)
Ta = 25C VCC = 5 V IF = 15 mA
Low-level Output Voltage vs. Ambient Temperature Characteristics (Typical)
Low level output voltage V OL (V)
VCC = 5 V IF = 15 mA
LED current I FT(mA)
IFT ON
IFT OFF
IOL = 16 mA
IOL = 5 mA
Ambient temperature Ta (C)
Output current IC (mA)
Ambient temperature Ta (C)
Current consumption Icc (mA)
( s)
Current Consumption vs. Supply Voltage (Typical)
Ta = 25C IF = 15 mA
Response Delay Time vs. Forward Current (Typical)
VCC = 5 V RL = 330 Ta = 25C
VOUT (EE-SX4jj)
Repeat Sensing Position Characteristics (Typical)
Center of optical axis
Response delay time t
Output transistor
PHL,
Ta = 25C IF =15 mA VCC = 5 V RL = 330 n = repeat 20 times
d1 = 0.01 mm
Supply voltage VCC (V)
t
PLH
Forward current IF (mA)
Distance d (mm)


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