Telefunken TSOP4838SB1, TSOP4837SB1, TSOP4833SB1, TSOP4830SB1, TSOP4840SB1 Datasheet

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Telefunken TSOP4838SB1, TSOP4837SB1, TSOP4833SB1, TSOP4830SB1, TSOP4840SB1 Datasheet

TSOP48..SB1

Vishay Telefunken

Photo Modules for PCM Remote Control Systems

Available types for different carrier frequencies

Type

fo

Type

fo

TSOP4830SB1

30 kHz

TSOP4833SB1

33 kHz

TSOP4836SB1

36 kHz

TSOP4837SB1

36.7 kHz

 

 

 

 

TSOP4838SB1

38 kHz

TSOP4840SB1

40 kHz

 

 

 

 

TSOP4856SB1

56 kHz

 

 

Description

The TSOP48..SB1 ± series are miniaturized receivers for infrared remote control systems. PIN diode and preamplifier are assembled on lead frame, the epoxy package is designed as IR filter.

The demodulated output signal can directly be decoded by a microprocessor. TSOP48..SB1 is the standard IR remote control receiver series, supporting all major transmission codes.

16123

Features

D Photo detector and preamplifier in one package

D Low power consumption

D Internal filter for PCM frequency

D High immunity against ambient light

D Improved shielding against electrical field

D Continuous data transmission possible

disturbance

(800 bit/s)

D TTL and CMOS compatibility

D Suitable burst length 10 cycles/burst

D Output active low

 

Block Diagram

 

 

 

3

Input

 

Control

VS

 

 

Circuit

30 kW

 

 

 

 

 

 

1

PIN

 

 

OUT

 

 

 

 

AGC

Band

Demodu-

 

Pass

lator

 

 

 

 

 

2

 

 

 

GND

9612226

 

 

 

Document Number 82108

www.vishay.com

Rev. 6, 29-Mar-01

1 (7)

TSOP48..SB1

Vishay Telefunken

Absolute Maximum Ratings

Tamb = 25_C

Parameter

Test Conditions

Symbol

Value

Unit

Supply Voltage

(Pin 3)

VS

±0.3...6.0

V

Supply Current

(Pin 3)

IS

5

mA

Output Voltage

(Pin 1)

VO

±0.3...6.0

V

Output Current

(Pin 1)

IO

5

mA

Junction Temperature

 

Tj

100

°C

Storage Temperature Range

 

Tstg

±25...+85

°C

Operating Temperature Range

 

Tamb

±25...+85

°C

Power Consumption

(Tamb x 85 °C)

Ptot

50

mW

Soldering Temperature

t x 10 s, 1 mm from case

Tsd

260

°C

Basic Characteristics

Tamb = 25_C

Parameter

 

 

 

Test Conditions

Symbol

Min

Typ

Max

Unit

Supply Current (Pin 3)

VS = 5 V, Ev = 0

 

 

 

ISD

0.9

1.2

1.5

mA

VS = 5 V, Ev = 40 klx, sunlight

ISH

 

1.4

 

mA

 

 

 

Supply Voltage (Pin 3)

 

 

 

 

 

 

 

 

 

VS

4.5

 

5.5

V

Transmission Distance

Ev = 0, test signal see fig.7,

d

 

35

 

m

 

IR diode TSAL6200, IF = 250 mA

 

 

 

 

 

Output Voltage Low (Pin 1)

IOSL = 0.5 mA,

 

 

 

VOSL

 

 

250

mV

E = 0.7 mW/m2, f = f

 

 

 

 

e

 

 

 

 

 

 

o

 

 

 

 

 

 

Irradiance (30 ± 40 kHz)

Pulse width tolerance:

 

 

 

0.2

0.4

mW/m2

 

t

± 5/f

o

< t

po

< t

pi

+ 6/f ,

E

 

 

 

 

 

 

 

Irradiance (56 kHz)

pi

 

 

 

 

o

e min

 

0.3

0.6

 

test signal (see fig.7)

 

 

 

 

Irradiance

t

± 5/f

< t

po

< t

pi

+ 6/f

o

E

30

 

 

W/m2

 

pi

 

o

 

 

 

e max

 

 

 

 

Directivity

Angle of half transmission distance

ϕ1/2

 

±45

 

deg

Application Circuit

100 W *) +5V

 

3

4.7 mF *)

TSOP48..SB1

 

 

>10 kW

TSAL62..

 

optional

1

mC

 

 

**)

 

 

16213

2

GND

 

 

 

*) recommended to suppress power supply disturbances

**) The output voltage should not be hold continuously at a voltage below 3.3V by the external circuit.

www.vishay.com

Document Number 82108

2 (7)

Rev. 6, 29-Mar-01

TSOP48..SB1

Vishay Telefunken

Suitable Data Format

The circuit of the TSOP48..SB1 is designed in that way that unexpected output pulses due to noise or disturbance signals are avoided. A bandpassfilter, an integrator stage and an automatic gain control are used to suppress such disturbances.

The distinguishing mark between data signal and disturbance signal are carrier frequency, burst length and duty cycle.

The data signal should fullfill the following condition:

Carrier frequency should be close to center frequency of the bandpass (e.g. 38kHz).

Burst length should be 10 cycles/burst or longer.

After each burst which is between 10 cycles and 70 cycles a gap time of at least 14 cycles is necessary.

For each burst which is longer than 1.8ms a corresponding gap time is necessary at some time in the data stream. This gap time should be at least 4 times longer than the burst.

Up to 800 short bursts per second can be received continuously.

Some examples for suitable data format are:

NEC Code, Toshiba Micom Format, Sharp Code, RC5 Code, RC6 Code, R±2000 Code.

When a disturbance signal is applied to the TSOP48..SB1 it can still receive the data signal. However the sensitivity is reduced to that level that no unexpected pulses will occure.

Some examples for such disturbance signals which are suppressed by the TSOP48..SB1 are:

DC light (e.g. from tungsten bulb or sunlight)

Continuous signal at 38kHz or at any other frequency

Signals from fluorescent lamps with electronic ballast with high or low modulation (see Figure A or Figure B).

0

5

10

15

20

time [ms]

Figure A: IR Signal from Fluorescent Lamp with low Modulation

0

5

10

15

20

time [s]

Figure B: IR Signal from Fluorescent Lamp with high Modulation

Document Number 82108

www.vishay.com

Rev. 6, 29-Mar-01

3 (7)

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