Integrated Photosensors
CNZ1402A/B, CNZ1403A/B
Integrated Photosensors
CNZ1402A/B
Unit : mm
0.45±0.1
For contactless SW, object detection Overview
CNZ1402A/B and CNZ1403A/B are photocouplers in which a high efficiency GaAs infrared light emitting diode as the light emitting element, and a photodiode and a signal processing circuit as a light detecting element are intergrated on a single chip. The two elements are arranged so as to face each other, and objects passing between them are detected.
Mark for indicating LED side
2.5±0.2
2.0±0.2 2.2±0.2
25.0±0.35 13.0 5.0±0.2 A
6.2±0.2 0.45±0.1 Device center
10.0±0.2
7.3±2.0
A' (10.0) 2-ø3.2±0.2 2
5- 0.45±0.2 (2.54)
Features
Built-in Schmitt circuit for strong noise-withstanding capability Large output current Open-collector output Output transistors turn on and off (two types) when light is shined CNZ1402A/CNZ1403A : Normally ON type CNZ1402B/CNZ1403B : Normally OFF type
1
(Note) ( ) Dimension is reference
CNZ1403A/B
Absolute Maximum Ratings (Ta = 25˚C)
Parameter Reverse voltage (DC) Input (Light Forward current (DC) emitting diode) Power dissipation Output current Output (Photo IC) Output voltage Supply voltage Power dissipation Temperature
*1
Symbol Ratings VR IF PD*1 IO VO VCC PC
*2
Unit V mA mW mA V V mW ˚C ˚C
1
7.3±2.0
3 50 75 20 30 16 200
13.0 5.0±0.2 A
2.0±0.2 2.2±0.2
Mark for indicating LED side
,, ,,
SEC. A-A' 3 4 5 6.2 2-R0.5 Device center 5- 0.45 (2.54) 3 4 5
(2.54)
1: Anode 2: Cathode 3: VCC 4: VO 5: GND
Unit : mm
0.45±0.1
10.0 2.5±0.2
A' (2.54) (10.0) 2
Operating ambient temperature Storage temperature
Topr –20 to +85 Tstg –30 to +100
Input power derating ratio is 1.0 mW/˚C at Ta ≥ 25˚C. *2 Output power derating ratio is 2.67 mW/˚C at Ta ≥ 25˚C.
(Note) ( ) Dimension is reference
Pin Connection
CNZ1402A,CNZ1403A (Normally ON type) CNZ1402B,CNZ1403B (Normally OFF type)
Const. Voltage Cir. Anode 1
3 VCC 4 VO Anode 1
Const. Voltage Cir.
Cathode 2
5 GND
Cathode 2
,, ,,
SEC. A-A' 1: Anode 2: Cathode 3: VCC 4: VO 5: GND
3 VCC 4 VCC
5 GND
1
CNZ1402A/B,CNZ1403A/B
Electrical Characteristics (Ta = 25˚C)
Parameter Forward voltage (DC) Input Reverse current (DC) characteristics Capacitance between terminals “H” Output current Output characteristics “L” Output voltage Threshold input current Transfer characteristics Hysteresis Response time Symbol VF IR Ct IOH VOL V R = 3V VR = 0V, f = 1MHz Conditions IF = 50mA
Integrated Photosensors
min
typ 1.2 50
max 1.5 10 100
Unit V µA pF µA V mA µs µs
VCC = 5V, VOH = 30V, IF = 0mA, (IF = 10mA) VCC = 5V, IOL = 20mA, IF = 10mA, (IF = 0mA) 0.15 5 0.75 6 10
0.4 10
IFH→L(IFL→H) VCC = 5V IFLH/IFHL(IFHL/IFLH) VCC = 5V, RL = 240Ω tPHL(tPLH)* VCC = 5V, IFP = 10mA, RL = 100Ω tPLH(tPHL )* VCC = 5V, IFP = 10mA, RL = 100Ω
) shows Normally OFF type.
Note) Normally ON type characteristics is shown, ( * Switching time measurement circuit
Sig.IN Const. Voltage Cir. VCC = 5V RL = 100Ω VO
(Input pulse) (Output pulse) 1.5V tPHL : H tPLH : L L Propagation time H Propagation time
,,, , ,
50Ω
tPHL
tPLH
IF , IO — Ta
IFHL , IFLH (%)
160
IFT — Ta
200 IFHL (IFLH)
VOL — Ta
VCC = 5V IOL = 20mA
60
Forward current , output current IF , IO (mA)
50
120
VOL (mV)
IFLH (IFHL)
IF
180
40
Relative threshold input current
30 IO
80
Low level output voltage
160
20
40
140
10
0 – 25
0
20
40
60
80
100
0 – 40 – 20
0
20
40
60
80
100
120 – 40 – 20
0
20
40
60
80
100
Ambient temperature Ta (˚C )
Ambient temperature Ta (˚C )
Ambient temperature Ta (˚C )
tpd — IF
CNZ1402A,CNZ1403A VCC Sig. IN Const. Voltage Cir. R VCC = 5V Ta = 25˚C RL = 100Ω tput :H L (Fall Time) tpLN :L H (Rise Time) tPLH 120
Detecting position characteristics (1)
d = 0.08mm CNZ1403A VCC = 5V Ta = 25˚C RL = 240Ω IF = 10mA Criterion 0 d 120
Detecting position characteristics (2)
d = 0.08mm CNZ1403B VCC = 5V Ta = 25˚C RL = 240Ω IF = 10mA Criterion 0 d
tPHL , tPLH (µs)
,,
1.5V Sig. OUT t
PHL PLH
t
IO (%)
80
IO (%) Relative output current
L
100
100
80
20 15 10
Relative output current
60
60
Response time
40
40
5 0
20
20
tPHL 0 5 10 15 20 25 30 35 0 0 1 2 3 4 5 6 1 2 3 4 5 6
Forward current IF (mA)
Distance d (mm)
Distance d (mm)
2
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