TLP1032F Datasheet PDF - Toshiba

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TLP1032F
Toshiba

Part Number TLP1032F
Description PHOTOINTERRUPTER INFRARED LED PHOTO IC
Page 9 Pages


TLP1032F datasheet pdf
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TLP1032(F), TLP1033A(F)
TOSHIBA Photointerrupter Infrared LED + Photo IC
TLP1032(F), TLP1033A(F)
Lead(Pb)-Free
Domestic electrical appliances such as VTRs and
CD players
Office equipment such as photocopiers, printers
and fax machines
Vending machines
Position detectors
The TLP1032(F)/TLP1033A(F) is a high-withstanding-voltage
photo-interrupter for digital output. The device combines a
high-optical-output GaAs infrared LED with a high-sensitivity,
high-gain Si photo-IC. The photo-IC, which supports a wide range of
systems (3.3 V to 12 V), enables the device to consume less power
than conventional devices. The device also features a narrow slit
width and high resolution.
The short lead package allows automatic mounting.
Designed for direct mounting on printed circuit boards
(positioning pins included)
The short lead package allows automatic mounting:
Lead length of 3.4 ± 0.3 mm
Permissible board thickness: 1.6 mm or less
Gap: 5 mm
Resolution: Slit width of 0.5 mm
Digital output (open-collector)
TLP1032(F) : Low-level output at shielding
TLP1033A(F): High-level output at shielding
Direct connection to logic IC
Power supply voltage: VCC = 2.7 V~15 V
High-speed response
Detector impermeable to visible light
Package material: Polybutylene-terephthalate (UL94V-0, black)
TOSHIBA
Weight: 0.6 g (typ.)
11-14G1
1 2007-10-01
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TLP1032(F), TLP1033A(F)
Absolute Maximum Ratings (Ta = 25°C)
Characteristic
Symbol
Rating
Unit
Forward current
Forward current derating
(Ta > 25°C)
(Ta > 85°C)
Reverse voltage
Supply voltage
Output voltage
Low-level output current (Ta = Topr)
Operating temperature
Storage temperature
Soldering temperature (5 s)
(Note 1)
IF
ΔIF/°C
VR
VCC
VO
IOL
Topr
Tstg
Tsol
50
0.33
2
5
15
15
16
30~95
40~100
260
mA
mA/°C
V
V
V
mA
°C
°C
°C
Note: Using continuously under heavy loads (e.g. the application of high temperature/current/voltage and the
significant change in temperature, etc.) may cause this product to decrease in the reliability significantly even
if the operating conditions (i.e. operating temperature/current/voltage, etc.) are within the absolute maximum
ratings and the operating ranges.
Please design the appropriate reliability upon reviewing the Toshiba Semiconductor Reliability Handbook
(“Handling Precautions”/“Derating Concept and Methods”) and individual reliability data (i.e. reliability test
report and estimated failure rate, etc).
Note 1: Soldering is performed 1.5 mm from the bottom of the package.
Operating Ranges
Characteristic
Symbol
Min Typ. Max Unit
LED forward current
Supply voltage
Output voltage
Low-level output current
Operating temperature
IF
VCC
VO
IOL
Topr
8
(Note 2)
20 mA
2.7 3.3 13.2 V
13.2
V
⎯ ⎯ 16 mA
25 95 °C
Note 2: The value 8 mA allows for a 50% optical fluctuation in the LED. The initial value of the threshold input
current is 4 mA or less.
2 2007-10-01



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TLP1032(F), TLP1033A(F)
Electrical and Optical Characteristics
(unless otherwise specified: Ta = −30~95°C, VCC = 2.7~15 V)
Characteristic
Forward voltage
Reverse current
Peak emission wavelength
Operating supply voltage
Low-level supply current
High-level supply current
Low-level output voltage
High-level output current
Peak sensitivity wavelength
L H threshold input current
Symbol
VF
IR
λP
VCC
ICCL
ICCH
VOL
IOH
λP
IFLH
Test Conditions
IF = 10 mA, Ta = 25°C
VR = 5 V, Ta = 25°C
IF = 15 mA, Ta = 25°C
IF = *1, Ta = 25°C
IF = *1
IF = *2, Ta = 25°C
IF = *2
IOL = 16 mA, IF = *1
Ta = 25°C
IOL = 16 mA, IF = *1
IF = *2, VO = 15 V
Ta = 25°C
Ta = 25°C
TLP1032(F)
H L threshold input current
IFHL
Ta = 25°C
TLP1033A(F)
Hysteresis
Propagation delay time (L H)
Propagation delay time (H L)
Rise time
Fall time
IFHL/IFLH
tpLH
tpHL
VCC = 3.3 V
IF = 15 mA
RL = 10 kΩ
tr Ta = 25°C
tf
TLP1032(F)
TLP1033A(F)
TLP1032(F)
TLP1033A(F)
TLP1032(F)
TLP1033A(F)
TLP1032(F)
TLP1033A(F)
TLP1032(F)
TLP1033A(F)
*1 0 mA for the TLP1032(F); 15 mA for the TLP1033A(F).
*2 15 mA for the TLP1032(F); 0 mA for the TLP1033A(F).
Min Typ. Max Unit
1.00 1.15 1.30
⎯ ⎯ 10
940
2.7 15
⎯ ⎯ 1.6
⎯ ⎯ 2.0
⎯ ⎯ 1.1
⎯ ⎯ 1.2
V
μA
nm
V
mA
mA
0.05 0.3
⎯ ⎯ 0.4
V
⎯ ⎯ 6.3 μA
900 nm
⎯⎯
⎯⎯
3
mA
4
⎯⎯
⎯⎯
3
mA
4
0.67
1.5
⎯⎯
9
⎯ ⎯ 15
⎯ ⎯ 15
⎯⎯
9
0.02 0.5
μs
0.8
3
0.8
3
0.02 0.5
3 2007-10-01



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TLP1032(F), TLP1033A(F)
Note 3: The switching time measurement circuit and waveform are as follows:
TLP1032(F)
Constant-voltage
circuit
IF
Amp
VCC = 3.3 V
RL
VOUT
IF
tpLH
VOUT
tr
50%
tpHL
90% VOH
tf
10%
1.5 V
VOL
TLP1033A(F)
Constant-voltage
circuit
IF
Amp
VCC = 3.3 V
RL
VOUT
IF
tpHL
VOUT
tf
50%
tpLH
90% VOH
tr
10%
1.5 V
VOL
Markings
Monthly lot number
Month of manufacture (January to December denoted by the letters A to L respectively)
Year of manufacture (the last digit of the year of manufacture)
Precautions
When removing flux with chemicals after soldering, clean only the soldered part of the leads. Do not immerse the
entire package in the cleaning solvent. Chemical residue on the LED emitter or the photodetector inside the photo-IC
case may adversely affect the optical characteristics of the device and may drastically reduce the threshold input
current.
The case is made of polybutylene-terephthalate. Oil or chemicals may cause the package to melt or crack. Care
should be taken regarding the environment in which the device is to be installed.
Mount the device on a level surface.
Output fluctuates for 100 μs after power-on while the internal circuit stabilizes.
To stabilize the power line, insert a bypass capacitor of up to 0.01 μF between VCC and GND, close to the device.
The threshold input current increases over time due to current flowing in the infrared LED. The design of circuits that
are to incorporate the device must take into account the change in threshold input current over time. The change in
threshold input current is equal to the reciprocal of the change in LED infrared optical output.
IFHL (t)
IFHL (0)
=
⎜⎜⎝⎛
PO (t)
PO (0)
⎟⎟⎠⎞
1
Choose a high-quality shutter material that is impermeable to light. If the material is of inferior quality, light from the
LED may pass through the shutter, causing the device to malfunction.
4 2007-10-01



TLP1032F datasheet pdf
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