參數(shù)資料
型號: TFBS6711-TR3
廠商: Vishay Intertechnology,Inc.
英文描述: Low Profile Fast Infrared Transceiver (FIR, 4 Mbit/s) for IrDA Applications
中文描述: 超薄快速紅外線收發(fā)器(4兆飛行情報(bào)區(qū)/秒)為IrDA應(yīng)用
文件頁數(shù): 5/14頁
文件大?。?/td> 227K
代理商: TFBS6711-TR3
www.vishay.com
262
Document Number
8
4676
Rev. 1.3, 21-Feb-07
TFBS6711
Vishay Semiconductors
Optoelectronic Characteristics
T
amb
= 25 °C, V
CC
= 2.4 V to 3.6 V unless otherwise noted.
Typical values are for DESIGN AID ONLY, not guaranteed nor subject to production testing.
Parameter
Test Conditions
Receiver
Minimum irradiance E
e
in
angular range **)
λ
=
8
50 nm - 900 nm, V
CC
= 2.4 V
Note: 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.
*)
IrDA latency definition:
Receiver
Latency
Allowance (milliseconds or microseconds) is the maximum time after a node ceases trans-
mitting before the node’s receiver recovers its specified sensitivity. During this period and also during the receiver start up time (after power
on or shut down) the RXD output may be in an undefined state.
**)
IrDA sensitivity definition: Minimum Irradiance E
e
In Angular Range
, power per unit area. The receiver must meet the BER speci-
fication while the source is operating at the minimum intensity in angular range into the minimum half-angle range at the maximum Link
Length
***)
Maximum Irradiance E
e
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 (http://www.vishay.com/docs/
8
2512/
8
2512.pdf).
Symbol
Min
Typ.
Max
Unit
9.6 kbit/s to 115.2 kbit/s
E
e
50
(5)
8
0
(
8
)
mW/m
2
(μW/cm
2
)
mW/m
2
(μW/cm
2
)
Minimum irradiance E
e
in
angular range
MIR mode
Minimum irradiance E
e
in
angular range
FIR mode
Maximum irradiance E
e
in
angular range ***)
1.152 Mbit/s
λ
=
8
50 nm - 900 nm, V
CC
= 2.4 V
E
e
100
(10)
4 Mbit/s
λ
=
8
50 nm - 900 nm, V
CC
= 2.4 V
E
e
120
(12)
200
(20)
mW/m
2
(μW/cm
2
)
λ
=
8
50 nm - 900 nm
E
e
5
(500)
kW/m
2
(mW/cm
2
)
mW/m
2
(μW/cm
2
)
No detection receiver Input
Irradiance (fluorescent light
noise suppression)
Rise time of output signal
E
e
4
(0.4)
10 % to 90 %, C
L
= 15 pF
90 % to 10 %, C
L
= 15 pF
Input pulse length
1.4 μs < P
Wopt
< 25 μs
Input pulse length
P
Wopt
= 217 ns, 1.152 Mbit/s
Input pulse length
P
Wopt
= 125 ns, 4 Mbit/s
Input pulse length
P
Wopt
= 250 ns, 4 Mbit/s
Input irradiance = 150 mW/m
2
,
4 Mbit/s
1.152 Mbit/s
115.2 kbit/s
t
r (RXD)
t
f (RXD)
t
PW
10
50
ns
Fall time of output signal
10
50
ns
RXD pulse width of output
signal, 50 %, SIR mode
1.4
1.
8
2.6
μs
RXD pulse width of output
signal, 50 %, MIR mode
t
PW
110
250
270
ns
RXD pulse width of output
signal, 50 %, FIR mode
t
PW
110
140
ns
RXD pulse width of output
signal, 50 %, FIR mode
t
PW
225
275
ns
RXD output jitter, leading edge
20
40
350
500
ns
ns
ns
μs
Receiver start up time
After completion of shutdown
programming sequence
Power on delay
Latency
*)
t
L
100
μs
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