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TSOP75556

产品描述Linear Output Photo IC
产品类别光电子/LED    光电   
文件大小289KB,共12页
制造商Vishay(威世)
官网地址http://www.vishay.com
下载文档 详细参数 选型对比 全文预览

TSOP75556概述

Linear Output Photo IC

TSOP75556规格参数

参数名称属性值
厂商名称Vishay(威世)
Reach Compliance Codeunknown
光电设备类型LINEAR OUTPUT PHOTO IC

TSOP75556文档预览

New Product
TSOP753.., TSOP755..
www.vishay.com
Vishay Semiconductors
IR Receiver Modules for Remote Control Systems
FEATURES
Very low supply current
Photo detector and preamplifier in one package
Compatible also with short burst dataformats
Supply voltage: 2.5 V to 5.5 V
Improved immunity against ambient light
Capable of side or top view
Two lenses for high sensitivity and wide
receiving angle
• Insensitive to supply voltage ripple and noise
• Narrow optical filter to reduce interference from plasma
TV emissions
• Material categorization: For definitions of compliance
please see
www.vishay.com/doc?99912
4
3
2
1
20953
MECHANICAL DATA
Pinning:
1, 4 = GND, 2 = V
S
, 3 = OUT
DESCRIPTION
The TSOP753.., TSOP755.. series are a two lens
miniaturized receiver module for infrared remote control
systems. One PIN diode per lens and a preamplifier are
assembled on a leadframe, the epoxy lens cap is designed
as an IR filter.
The demodulated output signal can be directly decoded by
a microprocessor. The TSOP753.. is compatible with all
common IR remote control data formats. It is optimized to
suppress almost all spurious pulses from energy saving
fluorescent lamps. The TSOP755.. has an excellent noise
suppression. It is immune to dimmed LCD backlighting and
any fluorescent lamps. AGC3 and AGC5 may also suppress
some data signals in case of continuous transmission.
This component has not been qualified according to
automotive specifications.
Please see the document “Product Transition Schedule” at
www.vishay.com/ir-receiver-modules/
for up-to-date info,
when this product will be released.
PARTS TABLE
CARRIER FREQUENCY
30 kHz
33 kHz
36 kHz
38 kHz
40 kHz
56 kHz
NOISY ENVIRONMENTS AND SHORT BURSTS
(AGC3)
TSOP75330
TSOP75333
TSOP75336
TSOP75338
TSOP75340
TSOP75356
VERY NOISY ENVIRONMENTS AND SHORT
BURSTS (AGC5)
TSOP75530
TSOP75533
TSOP75536
TSOP75538
TSOP75540
TSOP75556
BLOCK DIAGRAM
2
30 k
Ω
Band
pass
Demo-
dulator
V
S
3
Input
AGC
OUT
1, 4
PIN
20445-1
APPLICATION CIRCUIT
17170_7
R
1
IR receiver
V
S
Circuit
C
1
OUT
GND
V
O
µC
GND
+ V
S
Transmitter
with
TSALxxxx
Control circuit
GND
The external components R
1
and C
1
are optional
to improve the robustness against electrical overstress
(typical values are R
1
= 100
Ω,
C
1
= 0.1 µF).
The output voltage V
O
should not be pulled down to a level
below 1 V by the external circuit.
The capacitive load at the output should be less than 2 nF.
Rev. 1.0, 07-May-12
1
Document Number: 82495
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000
New Product
TSOP753.., TSOP755..
www.vishay.com
Vishay Semiconductors
TEST CONDITION
SYMBOL
V
S
I
S
V
O
I
O
T
j
T
stg
T
amb
T
amb
85 °C
P
tot
VALUE
- 0.3 to + 6
3
- 0.3 to (V
S
+ 0.3)
5
100
- 25 to + 85
- 25 to + 85
10
UNIT
V
mA
V
mA
°C
°C
°C
mW
ABSOLUTE MAXIMUM RATINGS
PARAMETER
Supply voltage
Supply current
Output voltage
Output current
Junction temperature
Storage temperature range
Operating temperature range
Power consumption
Note
• Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress rating only
and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of this specification
is not implied. Exposure to absolute maximum rating conditions for extended periods may affect the device reliability.
ELECTRICAL AND OPTICAL CHARACTERISTICS
(T
amb
= 25 °C, unless otherwise specified)
PARAMETER
Supply voltage
Supply current
E
v
= 0, V
S
= 3.3 V
E
v
= 40 klx, sunlight
E
v
= 0, test signal see fig. 1,
IR diode TSAL6200,
I
F
= 200 mA
I
OSL
= 0.5 mA, E
e
= 0.7 mW/m
2
,
test signal see fig. 1
Pulse width tolerance:
t
pi
- 5/f
o
< t
po
< t
pi
+ 6/f
o
,
test signal see fig. 1
t
pi
- 5/f
o
< t
po
< t
pi
+ 6/f
o
,
test signal see fig. 1
Angle of half transmission
distance
TEST CONDITION
SYMBOL
V
S
I
SD
I
SH
d
V
OSL
E
e min.
E
e max.
ϕ
1/2
30
± 50
0.12
MIN.
2.5
0.27
0.35
0.45
45
100
0.25
TYP.
MAX.
5.5
0.45
UNIT
V
mA
mA
m
mV
mW/m
2
W/m
2
deg
Transmission distance
Output voltage low
Minimum irradiance
Maximum irradiance
Directivity
TYPICAL CHARACTERISTICS
(T
amb
= 25 °C, unless otherwise specified)
Optical Test Signal
(IR diode TSAL6200, I
F
= 0.4 A, N = 6 pulses, f = f
0
, t = 10 ms)
0.4
E
e
t
po
- Output Pulse Width (ms)
0.35
0.3
0.25
0.2
0.15
Input Burst Length
0.1
0.05
0
0.1
λ
= 950 nm,
optical test signal, fig. 1
1
10
100
1000
10 000
Output Pulse Width
t
pi
*)
T
t
*) t
pi
6/f0 is recommended for optimal function
Output Signal
V
O
V
OH
V
OL
t
d 1)
1)
2)
14337
3/f
0
< t
d
< 9/f
0
t
pi
- 4/f
0
< t
po
< t
pi
+ 6/f
0
t
po 2)
t
20760
E
e
- Irradiance (mW/m²)
Fig. 1 - Output Active Low
Fig. 2 - Pulse Length and Sensitivity in Dark Ambient
Rev. 1.0, 07-May-12
2
Document Number: 82495
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000
New Product
TSOP753.., TSOP755..
www.vishay.com
Vishay Semiconductors
4
Correlation with Ambient Light Sources:
3.5 10 W/m² = 1.4 klx (Std. illum. A, T = 2855 K)
10 W/m² = 8.2 klx (Daylight, T = 5900 K)
3
2.5
2
1.5
1
0.5
0
0.01
20745
E
e
E
e min.
- Threshold Irradiance (mW/m²)
Optical Test Signal
600 µs
t = 60 ms
Output Signal,
(see fig. 4)
600 µs
t
Wavelength of Ambient
Illumination:
λ
= 950 nm
94 8134
V
O
V
OH
V
OL
t
on
t
off
t
0.1
1
10
100
E
e
- Ambient DC Irradiance (W/m²)
Fig. 3 - Output Function
Fig. 6 - Sensitivity in Bright Ambient
0.8
T
on
, T
off
- Output Pulse Width (ms)
T
on
0.7
0.6
0.5
T
off
0.4
0.3
0.2
0.1
0
0.1
λ
= 950 nm,
Optical Test Signal, Fig. 3
1
10
100
1000
10 000
E
e min.
- Threshold Irradiance (mW/m
2
)
3.0
2.5
2.0
1.5
1.0
0.5
0
1
10
100
1000
f = f
0
f = 30 kHz
f = 10 kHz
f = 100 Hz
20744
E
e
- Irradiance (mW/m²)
ΔV
S
RMS
- AC Voltage on DC
Supply
Voltage (mV)
Fig. 7 - Sensitivity vs. Supply Voltage Disturbances
Fig. 4 - Output Pulse Diagram
1.2
1
0.9
E
e min.
/E
e
- Rel. Responsivity
Max. Envelope Duty Cycle
1.0
0.8
0.6
0.4
0.2
0.0
0.7
0.9
1.1
1.3
f = f
0
± 5 %
Δ
f(3 dB) = f
0
/10
0.8
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0
0
20
40
f = 38 kHz, E
e
= 2 mW/m²
TSOP753..
TSOP755..
60
80
100
120
16925
f/f
0
- Relative Frequency
22183
Burst Length (number of cycles/burst)
Fig. 5 - Frequency Dependence of Responsivity
Fig. 8 - Max. Envelope Duty Cycle vs. Burst Length
Rev. 1.0, 07-May-12
3
Document Number: 82495
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000
New Product
TSOP753.., TSOP755..
www.vishay.com
Vishay Semiconductors
10°
20°
30°
E
e min.
- Threshold Irradiance (mW/m
2
)
0.3
0.25
0.2
1.0
40°
0.15
0.1
0.05
0
- 30
- 10
10
30
50
70
90
21428
0.9
0.8
50°
60°
70°
80°
0.6
0.4
0.2
0
T
amb
- Ambient Temperature (°C)
Fig. 9 - Sensitivity vs. Ambient Temperature
d
rel
- Relative Transmission Distance
Fig. 12 - Vertical Directivity
S (λ)
rel
- Relative Spectral Sensitivity
1
0.30
E
e min.
-
Sensitivity
(mW/m
2
)
800
850
900
950 1000 1050 1100 1150
0.9
0.8
0.7
0.6
0.5
0.4
0.3
0.2
0.1
0
750
0.25
0.20
0.15
0.10
0.05
0.00
1
2
3
4
5
21425
λ-
Wavelength (nm)
V
S
-
Supply
Voltage (V)
Fig. 13 - Sensitivity vs. Supply Voltage
Fig. 10 - Relative Spectral Sensitivity vs. Wavelength
10°
20°
30°
40°
1.0
0.9
0.8
50°
60°
70°
80°
0.6
21427
0.4
0.2
0
d
rel
- Relative Transmission Distance
Fig. 11 - Horizontal Directivity
Rev. 1.0, 07-May-12
4
Document Number: 82495
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000
New Product
TSOP753.., TSOP755..
www.vishay.com
SUITABLE DATA FORMAT
The TSOP753.., TSOP755.. series are designed to suppress
spurious output pulses due to noise or disturbance signals.
Data and disturbance signals can be distinguished by the
devices according to carrier frequency, burst length and
envelope duty cycle. The data signal should be close to the
band-pass center frequency (e.g. 38 kHz) and fulfill the
conditions in the table below.
When a data signal is applied to the TSOP753.. and
TSOP755.. in the presence of a disturbance signal, the
sensitivity of the receiver is reduced to insure that no
spurious pulses are present at the output. Some examples
of disturbance signals which are suppressed are:
• DC light (e.g. from tungsten bulb or sunlight)
• Continuous signals at any frequency
• Strongly or weakly modulated noise from fluorescent
lamps with electronic ballasts (see fig. 14 or fig. 15)
16920
Vishay Semiconductors
IR Signal
0
5
10
15
20
Time (ms)
Fig. 14 - IR Signal from Fluorescent Lamp
with Low Modulation
IR Signal
0
16921
5
10
15
20
Time (ms)
Fig. 15 - IR Signal from Fluorescent Lamp
with High Modulation
TSOP753..
Minimum burst length
After each burst of length
a minimum gap time is required of
For bursts greater than
a minimum gap time in the data stream is
needed of
Maximum number of continuous short
bursts/second
Recommended for NEC code
Recommended for RC5/RC6 code
Recommended for Sony code
Recommended for XMP format
Recommended for RCMM code
Recommended for RECS-80 code
Suppression of interference from fluorescent
lamps
6 cycles/burst
6 to 35 cycles
10 cycles
35 cycles
> 4 x burst length
2000
yes
yes
no
yes
yes
yes
Most common disturbance signals are
suppressed
TSOP755..
6 cycles/burst
6 to 24 cycles
10 cycles
24 cycles
> 25 ms
2000
yes
yes
no
yes
yes
yes
Most common disturbance signals are
suppressed
Note
• For data formats with long bursts please see the datasheet for TSOP752.., TSOP754.. .
Rev. 1.0, 07-May-12
5
Document Number: 82495
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT
www.vishay.com/doc?91000

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厂商名称 Vishay(威世) Vishay(威世) Vishay(威世)
Reach Compliance Code unknown unknown unknown
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