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PDF TFDU6103 Data sheet ( Hoja de datos )

Número de pieza TFDU6103
Descripción Fast Infrared Transceiver Module
Fabricantes Vishay 
Logotipo Vishay Logotipo



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No Preview Available ! TFDU6103 Hoja de datos, Descripción, Manual

www.vishay.com
Not for New Designs
TFDU6103
Vishay Semiconductors
Fast Infrared Transceiver Module (FIR, 4 Mbit/s)
for 2.4 V to 5.5 V Operation
20110
DESCRIPTION
The TFDU6103 is a low-power infrared transceiver module
compliant to the latest IrDA® physical layer standard for fast
infrared data communication, supporting IrDA speeds up to
4 Mbit/s (FIR), and carrier based remote control modes up
to 2 MHz. Integrated within the transceiver module are a PIN
photodiode, an infrared emitter (IRED), and a low-power
CMOS control IC to provide a total front-end solution in a
single package.
Vishay FIR transceivers are available in different package
options, including this BabyFace package (TFDU6103). This
wide selection provides flexibility for a variety of applications
and space constraints. The transceivers are capable of
directly interfacing with a wide variety of I/O devices which
perform the modulation/demodulation function, including
National Semiconductor’s PC87338, PC87108 and
PC87109, SMC’s FDC37C669, FDC37N769 and
CAM35C44, and Hitachi’s SH3. TFDU6103 has a tri-state
output and is floating in shut-down mode with a weak
pull-up.
APPLICATIONS
• Notebook computers, desktop PCs, palmtop computers
(Win CE, Palm PC), PDAs
• Digital still and video cameras
• Printers, fax machines, photocopiers, screen projectors
• Telecommunication products (cellular phones, pagers)
• Internet TV boxes, video conferencing systems
• External infrared adapters (dongles)
• Medical an industrial data collection
PRODUCT SUMMARY
PART NUMBER
DATA RATE
(kbit/s)
TFDU6103
4000
DIMENSIONS
HxLxW
(mm x mm x mm)
4 x 9.7 x 4.7
FEATURES
• Supply voltage 2.4 V to 5.5 V, operating idle
current (receive mode) < 3.3 mA, shutdown
current < 1 μA over full temperature range
• Surface mount package, top and side view,
9.7 mm x 4.7 mm x 4 mm
• Operating temperature - 25 °C to 85 °C
• Transmitter wavelength typ. 886 nm, supporting
IrDA and remote control
• IrDA compliant, link distance > 1 m, ± 15°, window losses
are allowed to still be inside the IrDA spec.
• Remote control range > 8 m, typ. 22 m
• ESD > 1 kV
• Latchup > 100 mA
• EMI immunity > 550 V/m for GSM frequency and other
mobile telephone bands/(700 MHz to 2000 MHz, no
external shield)
• Split power supply, LED can be driven by a separate
power supply not loading the regulated supply. U.S. pat.
no. 6,157,476
• Tri-state-receiver output, floating in shut down with a
weak pull-up
• Eye safety class 1 (IEC 60825-1, ed. 2001), limited LED
on-time, LED current is controlled, no single fault to be
considered
• Qualified for lead (Pb)-free and Sn/Pb processing (MSL4)
• Compliant to RoHS directive 2002/95/EC and in
accordance to WEEE 2002/96/EC
LINK DISTANCE
(m)
0 to 1
OPERATING
VOLTAGE
(V)
2.4 to 5.5
IDLE SUPPLY
CURRENT
(mA)
2
Rev. 1.5, 06-Sep-13
1 Document Number: 81211
For technical questions, contact: [email protected]
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
Free Datasheet http://www.0PDF.com

1 page




TFDU6103 pdf
www.vishay.com
Not for New Designs
TFDU6103
Vishay Semiconductors
OPTOELECTRONIC CHARACTERISTICS (1)
PARAMETER
TEST CONDITIONS
SYMBOL MIN. TYP. MAX. UNIT
RXD pulse width of output
signal, 50 %, FIR mode
Input pulse length, PWopt = 125 ns,
4 Mbit/s
Input pulse length, PWopt = 250 ns,
4 Mbit/s
Input irradiance = 100 mW/m2, 4 Mbit/s
tPW 100
tPW 225
140 ns
275 ns
20 ns
Stochastic jitter, leading edge
Input irradiance = 100 mW/m2, 1.152 Mbit/s
Input irradiance = 100 mW/m2, 576 kbit/s
Input irradiance = 100 mW/m2, 115.2 kbit/s
40 ns
80 ns
350 ns
Receiver start up time
After completion of shutdown programming
sequence power on delay
250 μs
Latency
TRANSMITTER
tL
40 100
μs
IRED operating current,
switched current limiter
Output pulse width limitation
Output leakage IRED current
Output radiant intensity,
see figure 1, recommended
application circuit
Note: no external current limiting resistor is
needed for
VCC1 = VCC2 = 3.3 V
Input pulse width t < 20 μs
Input pulse width 20 μs < t < 150 μs
Input pulse width t 150 μs
VCC = VIRED = 3.3 V, = 0°
TXD = high, SD = low, R1 = 1
ID
tpw
tpw
tpw_lim
IIRED
Ie
330 440 600
mA
t μs
18 150 μs
150 μs
- 1 1 μA
110 170 468 (6) mW/sr
Output radiant intensity,
see figure 1, recommended
application circuit
VCC = VIRED = 3.3 V, = 0°, 15°
TXD = high, SD = low, R1 = 1
Ie 100 130 468 (6) mW/sr
Output radiant intensity
VCC1 = 3.3 V, = 0°, 15°
TXD = low or SD = high (receiver is inactive as long
as SD = high)
Ie
0.04 mW/sr
Output radiant intensity, angle
of half intensity
a
± 24
deg
Peak - emission wavelength (7)
Spectral bandwidth
p
875 886 900
nm
Dl 45 nm
Optical rise time,
Optical fall time
Optical output pulse duration
Optical overshoot
Input pulse width 217 ns, 1.152 Mbit/s
Input pulse width 125 ns, 4 Mbit/s
Input pulse width 250 ns, 4 Mbit/s
tropt ,
tfopt
topt
topt
topt
10 40
207 217 227
117 125 133
242 250 258
25
ns
ns
ns
ns
%
Notes
(3) Tamb = 25 °C, VCC = 2.4 V to 5.5 V unless otherwise noted. All timing data measured with 4 Mbit/s are measured using the IrDA FIR
transmission header. The data given here are valid 5 μs after starting the preamble.
Typical values are for design aid only, not guaranteed nor subject to production testing.
(4) This parameter reflects the backlight test of the IrDA physical layer specification to guarantee immunity against light from fluorescent lamps.
(5) IrDA sensitivity definition: minimum irradiance Ee in angular range, power per unit area. The receiver must meet the BER specification while
the source is operating at the minimum intensity in angular range into the minimum half-angular range at the maximum link length.
(6) Maximum irradiance Ee in angular range, power per unit area. The optical delivered to the detector by a source operating at the maximum
intensity in angular range at minimum link length must not cause receiver overdrive distortion and possible related link errors. If placed at
the active output interface reference plane of the transmitter, the receiver must meet its bit error ratio (BER) specification. For more
definitions see the document “Symbols and Terminology” on the Vishay website
(7) Retriggering once during applied optical pulse may occur.
(8) Maximum value is given by eye safety class 1, IEC 60825-1, simplified method.
(9) Due to this wavelength restriction compared to the IrDA spec of 850 nm to 900 nm the transmitter is able to operate as source for the
standard remote control applications with codes as e.g. Philips RC5/RC6® or RECS 80. When operated under IrDA full range conditions
(125 mW/sr) the RC range to be covered is in the range from 8 m to 12 m, provided that state of the art remote control receivers are used.
Rev. 1.5, 06-Sep-13
5 Document Number: 81211
For technical questions, contact: [email protected]
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
Free Datasheet http://www.0PDF.com

5 Page





TFDU6103 arduino
Not for New Designs
www.vishay.com
TAPE DIMENSIONS in millimeters
TFDU6103
Vishay Semiconductors
Drawing-No.: 9.700-5251.01-4
Issue: 3; 02.09.05
19824
Fig. 6 - Tape Drawing, TFDU6103 for Top View Mounting, Tolerance ± 0.1 mm
Rev. 1.5, 06-Sep-13
11 Document Number: 81211
For technical questions, contact: [email protected]
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
Free Datasheet http://www.0PDF.com

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