TFDU4101-TR3 Vishay, TFDU4101-TR3 Datasheet - Page 3

Infrared Transceivers SIR 115.2 kbits/s

TFDU4101-TR3

Manufacturer Part Number
TFDU4101-TR3
Description
Infrared Transceivers SIR 115.2 kbits/s
Manufacturer
Vishay
Type
Serialr
Datasheets

Specifications of TFDU4101-TR3

Data Transmission Rate
2.4 Kbits/s to 115.2 Kbits/s
Input Current
10 mA
Mounting Style
SMD/SMT
Power Dissipation
250 mW
Wavelength
900 nm
Continual Data Transmission
115.2 Kbit/s
Transmission Distance
1 m
Radiant Intensity
65 mW/sr
Half Intensity Angle Degrees
24 deg
Pulse Width
2.2 us
Maximum Rise Time
100 ns, 300 ns
Maximum Fall Time
100 ns, 300 ns
Operating Voltage
2.4 V to 5.5 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 30 C
Dimensions
9.7 mm x 4.7 mm x 4 mm
Data Rate Max
115.2Kbps
Data Transmission Distance
1m
Peak Wavelength
900nm
Supply Current
90µA
Supply Voltage Range
2.4V To 5.5V
Operating Temperature Range
-30°C To +85°C
Msl
MSL 4 - 72 Hours
Package
8Ultra Small Profile
Maximum Data Rate
0.1152 Mbps
Operating Supply Voltage
2.4 to 5.5 V
Operating Temperature Max
85°C
Rohs Compliant
Yes
Current I Led Dc
80mA
Data Rate
115.2kbs (SIR)
Idle Current, Typ @ 25° C
75µA
Link Range, Low Power
1m
Operating Temperature
-30°C ~ 85°C
Orientation
Side View
Shutdown
*
Size
9.7mm x 4.7mm x 4mm
Standards
IrPHY 1.0
Supply Voltage
2.4 V ~ 5.5 V
Svhc
No SVHC (20-Jun-2011)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

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Absolute Maximum Ratings
Reference point pin, GND unless otherwise noted.
Typical values are for DESIGN AID ONLY, not guaranteed nor subject to production testing.
Eye safety information
Reference point pin: GND unless otherwise noted.
Typical values are for DESIGN AID ONLY, not guaranteed nor subject to production testing.
Notes:
*)
**)
Definitions:
In the Vishay transceiver data sheets the following nomenclature is used for defining the IrDA operating modes:
SIR: 2.4 kbit/s to 115.2 kbit/s, equivalent to the basic serial infrared standard with the physical layer version IrPhy: 1.0
MIR: 576 kbit/s to 1152 kbit/s
FIR: 4 Mbit/s
VFIR: 16 Mbit/s
MIR and FIR were implemented with the physical layer standard IrPhy 1.1, followed by IrPhy 1.2, adding the SIR low power standard.
IrPhy 1.3 extended the low power option to MIR and FIR and VFIR was added with IrPhy 1.4. A new version of the standard in any case
obsoletes the former version.
Note: We apologize to use sometimes in our documentation the abbreviation LED and the word light emitting diode instead of infrared
emitting diode (IRED) for IR-emitters. That is by definition wrong; we are here following just a bad trend.
Typical values are for design aid only, not guaranteed nor subject to production testing and may vary with time.
Document Number 81288
Rev. 1.2, 04-Dec-07
Supply voltage range,
transceiver
Supply voltage range,
transmitter
Voltage at RXD
Voltage at all inputs and outputs
Input currents
Output sinking current
Power dissipation
Junction temperature
Ambient temperature range
(operating)
Storage temperature range
Soldering temperature
Average output current, pin 1
Repetitive pulse output current,
pin 1 to pin 2
Virtual source size
Maximum Intensity for Class 1
Due to the internal limitation measures the device is a "class1" device under all conditions
IrDA specifies the max. intensity with 500 mW/sr
Parameter
Parameter
For all pins, except IRED anode
EN60825-1, edition Jan. 2001
operating below the absolute
See “Recommended Solder
Method: EN ISO 11146
- 0.3 V < V
- 0.5 V < V
- 0.5 V < V
V
< 90 µs, t
See derating curve
in
maximum ratings
Test conditions
Test conditions
IEC60825-1 or
> V
CC1
Profile”
pin
CC2
CC1
CC1
on
is allowed
< 20 %
< 6.0 V
< 6.0 V
< 6.0 V
I
I
IRED
IRED
Symbol
Symbol
V
V
V
T
T
V
P
CC1
CC2
RXD
T
amb
I
d
stg
e
in
D
J
(DC)
(RP)
- 0.5
- 0.5
- 0.5
- 0.5
Min.
Min.
- 30
- 30
2.6
Vishay Semiconductors
Typ.
Typ.
(500)
TFDU4101
V
+ 0.5
Max.
Max.
+ 85
+ 85
250
125
260
400
6.0
6.0
6.0
10
25
80
CC1
*)
**)
www.vishay.com
mW/sr
Unit
mW
Unit
mm
mA
mA
mA
mA
°C
°C
°C
°C
V
V
V
V
3

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