TFDU6301-TR1 Vishay, TFDU6301-TR1 Datasheet - Page 5

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TFDU6301-TR1

Manufacturer Part Number
TFDU6301-TR1
Description
Fiber Optic Transmitters, Receivers, Transceivers FIR 4Mbit/s 2.4-3.6V Op Voltage
Manufacturer
Vishay
Datasheet

Specifications of TFDU6301-TR1

Product
Transceiver
Data Rate
4 Mbps
Wavelength
886 nm
Maximum Rise Time
40 ns
Maximum Fall Time
40 ns
Pulse Width Distortion
2.2 us
Operating Supply Voltage
2.4 V to 3.6 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 25 C
Package / Case
SMD-8
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Document Number: 84668
Rev. 2.0, 18-Aug-09
OPTOELECTRONIC CHARACTERISTICS
PARAMETER
RECEIVER
Minimum irradiance E
range
Minimum irradiance E
range, MIR mode
Minimum irradiance E
range, FIR mode
Maximum irradiance E
range
Rise time of output signal
Fall time of output signal
RXD pulse width of output signal,
50 %, SIR mode
RXD pulse width of output signal,
50 %, MIR mode
RXD pulse width of output signal,
50 %, FIR mode
RXD pulse width of output signal,
50 %, FIR mode
Stochastic jitter, leading edge
Receiver start up time
Latency
TRANSMITTER
IRED operating current, switched
current limiter
Output pulse width limitation
Output leakage IRED current
Output radiant intensity,
see figure 3,
recommended appl. circuit
Output radiant intensity,
see figure 3,
recommended appl. circuit
Output radiant intensity
Output radiant intensity, angle of
half intensity
Peak - emission wavelength
Spectral bandwidth
Optical rise time,
Optical fall time
(3)
(4)
e
e
e
e
(2)
in angular
inangular
in angular
Fast Infrared Transceiver Module (FIR, 4 Mbit/s)
in angular
irdasupportAM@vishay.com, irdasupportAP@vishay.com,
for 2.4 V to 3.6 V Operation and Low-Voltage
(6)
For technical questions within your region, please contact one of the following:
Input pulse width 20 µs < t < 150 µs
TXD = low or SD = high (receiver is
Note: no external resistor current
V
Input irradiance = 100 mW/m
inactive as long as SD = high)
After completion of shutdown
CC
Input pulse width t ≥ 150 µs
V
Input pulse width t < 20 µs
10 % to 90 %, C
90 % to 10 %, C
limiting resistor is needed
V
CC
9.6 kbit/s to 115.2 kbit/s
programming sequence
1.4 µs < P
TXD = high, SD = Low
TXD = high, SD = Low
λ = 850 nm to 900 nm,
λ = 850 nm to 900 nm,
λ = 850 nm to 900 nm,
λ = 850 nm to 900 nm
= V
CC1
TEST CONDITIONS
= V
Input pulse length
Input pulse length
Input pulse length
Input pulse length
P
P
P
power on delay
IRED
= 3.3 V, α = 0°, 15°
≤ 115.2 kbit/s
1.152 Mbit/s
Wopt
1.152 Mbit/s
Wopt
Wopt
1.152 Mbit/s
V
V
V
IRED
Logic (1.8 V)
CC
CC
CC
4 Mbit/s
4 Mbit/s
4 Mbit/s
4 Mbit/s
= 3.3 V, α = 0°,15°
= 217 ns,
= 125 ns,
= 250 ns,
= 2.4 V
= 2.4 V
= 2.4 V
Wopt
= 3.3 V, α = 0°
L
L
< 25 µs
= 15 pF
= 15 pF
2
,
SYMBOL
t
t
t
r (RXD)
PW_lim
f (RXD)
I
t
IRED
t
t
t
t
t
t
t
ropt
E
E
E
E
Δλ
PW
PW
PW
PW
PW
PW
λ
fopt
I
t
I
I
I
α
D
L
e
e
e
p
e
e
e
e
irdasupportEU@vishay.com
,
(500)
MIN.
105
105
225
330
875
1.6
10
10
18
- 1
65
50
10
5
Vishay Semiconductors
TYP.
± 24
(10)
(13)
100
130
250
125
250
440
180
125
886
2.2
50
(5)
40
45
t
TFDU6301
468
468
MAX.
0.04
(20)
200
275
145
275
350
250
100
600
150
150
900
(8)
80
40
40
25
80
40
3
1
(5)
(5)
www.vishay.com
(mW/cm
(µW/cm
(µW/cm
(µW/cm
mW/m
mW/m
mW/m
kW/m
mW/sr
mW/sr
mW/sr
UNIT
deg
mA
nm
nm
µA
µs
µs
µs
µs
µs
µs
ns
ns
ns
ns
ns
ns
ns
ns
ns
2
2
2
2
2
2
2
2
)
)
)
)
5

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