參數(shù)資料
型號: HSDL-3211
廠商: Avago Technologies Ltd.
英文描述: IrDA㈢ Data Compliant Low Power 1.15 Mbit/s Infrared Transceiver
中文描述: 紅外線㈢數(shù)據(jù)兼容低功耗1.15 Mbit / s的紅外收發(fā)器
文件頁數(shù): 4/18頁
文件大?。?/td> 184K
代理商: HSDL-3211
4
Electrical & Optical Specifications
Specifications (Min. & Max. values) hold over the recommended operating conditions unless otherwise noted.
Unspecified test conditions may be anywhere in their operating range. All typical values (Typ.) are at 25
°
C, Vcc set to 3.0V
and IOVcc set to 1.8V unless otherwise noted.
Parameter
Symbol
Min.
Typ.
Max.
Units
Conditions
Receiver
Viewing Angle
2
θ
30
°
Peak Sensitivity Wavelength
λ
p
880
nm
RXD Output Voltage
Logic High
V
OH
IOV
CC
– 0.2
IOV
CC
V
I
OH
= -200
μ
A, EI
0.3
μ
W/cm
2
I
OL
= 200
μ
A, EI
8.1
μ
W/cm
2
θ
15
°
, C
L
= 9 pF
θ
15
°
, C
L
= 9 pF
Logic Low
V
OL
0
0.4
V
RXD Pulse Width (SIR)
[13]
t
PW
(SIR)
1
4.0
μ
s
RXD Pulse Width (MIR)
[14]
t
PW
(MIR)
100
500
ns
RXD Rise and Fall Times
t
r
, t
f
25
ns
C
L
= 9 pF
Receiver Latency Time
[15]
t
L
t
W
25
50
μ
s
Receiver Wake Up Time
[16]
50
100
μ
s
Transmitter
Radiant Intensity
IE
H
10
45
mW/sr
I
LEDA
= 150 mA,
θ
15
°
, V
TXD
V
IH
,
V
SD
V
IL
, Ta=25
°
C
Viewing Angle
2
θ
30
60
°
Peak Wavelength
λ
p
λ
875
nm
Spectral Line Half Width
35
nm
TXD Input Current
High
I
H
0.02
10
μ
A
V
TXD
V
IH
0
V
TXD
V
IL
V
TXD
V
IH
,
R1=5.6ohm, Vled=3.0V
Low
I
L
-10
-0.02
10
μ
A
LED ON Current
I
LEDA
150
mA
TXD Pulse Width (SIR)
t
PW
(SIR)
1.5
1.6
1.8
μ
s
t
PW
(TXD) = 1.6
μ
s at 115.2 kbit/s
TXD Pulse Width (MIR)
t
PW
(MIR)
t
PW(max.)
t
r
, t
f
148
217
260
ns
t
PW
(TXD) = 217 ns at 1.152 Mbit/s
Maximum Optical PW
[17]
50
100
μ
s
TXD Rise and fall Time (Optical)
40
ns
t
PW
(TXD) = ns at 1.152 Mbit/s
I
LEDA
=150 mA, V
TXD
V
IH
LED Anode On-State Voltage
V
ON(LEDA)
1.6
2.0
V
Transceiver
Supply Current
Shutdown
I
CC1
0.001
1
μ
A
V
SD
V
IH,
Ta= 25
°
C
V
SD
V
IL
, V
TXD
V
IL
, EI=0
Idle
I
CC2
0.4
1.0
mA
Notes:
13. For in-band signals from 9.6 kbit/s to 115.2 kbit/s, where 9
μ
W/cm
2
EI
500 mW/cm
2
.
14. For in-band signals from 0.576 Mbit/s to 1.152 Mbit/s, where 22.5
μ
W/cm
2
EI
500 mW/cm
2
.
15. Latency time is defined as the time from the last TxD light output pulse until the receiver has recovered full sensitivity.
16. Receiver wake up time is measured from Vcc power on or SD pin high to low transition to a valid RXD output.
17. The maximum optical PW is the maximum time the LED remains on when the TXD is constantly high. This is to prevent long turn on time of the LED
for eye safety protection.
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