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OTP-345V1-PAA-I

Description
FSAN High Power Triplexer
File Size272KB,4 Pages
ManufacturerSOURCE
Websitehttp://www.sourcephotonics.com/
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OTP-345V1-PAA-I Overview

FSAN High Power Triplexer

FSAN High Power Triplexer
OTP-345V1-PF-622-SCA-D4
Features
• Low Cost 1310nm FP Design, 1490nm Digital Receiver, and
1555nm Analog Receiver
• High Isolation
• Multiple TIA Version for 155, 622, 1250 Mbps Applications
• 1 GHz Video Reciever Bandwidth
• Compliant to FSAN Class B ITU-T G.983.3 Specification
• Support ITR-B1F-AF4-1
Absolute Maximum Ratings
Parameter
Operating Temperature
Storage Temperature
Module Characteristics
Note1
Parameter
1555nm Video to 1490nm Rx isolation
(a)
1490nm data to 1555nm Rx isolation
(b)
1310nm external to 1555nm Video isolation
1310nm external to 1490nm data isolation
1310nm Tx to 1490nm Rx crosstalk
1310nm Tx to 1555nm Rx crosstalk
Back Reflection @ 1310nm
Back Reflection @ 1555nm
Back Reflection @ 1490nm
(a) 1550nm to 1560nm isolation at digital receiver
(b) 1480nm to 1500nm isolation at video receiver
Transmitter Characteristics
Note1
Parameter
Wavelength
Spectral Width
Typical 1/2 P
peak
set point @25ºC
Tracking Error
1/2 P
peak
over temp
Bias Current (=I
th
+1/2I
mod
)
Threshold Current
Modulation Current
(e)
Min
-40
-40
Typical
-
-
Max
85
85
Unit
ºC
ºC
Min
32
34
22
17
-
Typical
-
-
-
-
-
-
-
-
-
Max
-
-
-
-
-47
-47
-6
-32
-20
Unit
dB
dB
dB
dB
dB
dB
dB
dB
dB
-
-
-
-
Note 1)
All data is specified at EOL and across the operating temperature range.
Symbol
λ
∆λ
P
set
TE
1/2P
peak
I
bias,EOL
I
th
(@ P
set
)
I
mod
I
PD,mon
I
PD,mon
V
f
t
r
/
t
f
I
D
C
PD
QE
Min
1260
-
-
-3
0.5
-
2
Typical
-
2
1.5
-
-
-
-
-
-
-
1.2
-
-
10
-
Max
1360
3
-
3
3.5
75
50
60
1500
1300
1.7
0.5
1
15
0.3
Unit
nm
nm
dBm
dB
dBm
mA
mA
mA
µA
µA
Volts
ns
µA
pF
mW/mA
10
100
100
-
-
-
PD Monitor Current (@ P
set
) @25ºC
PD Monitor Current (@ P
set
) -40ºC and 85ºC
Forward Voltage
Rise/Fall Time
(c)
PD Monitor Dark Current
PD Monitor Capacitance
(d)
Quantum Efficiency
-
0.045
Note 1)
All data is specified at EOL and across the operating temperature range.
(c) 10% to 90%
(d) VRD = 10V
(e) greater modulation current can be used to increase output power
LUMINENTOIC.COM
20550 Nordhoff St. • Chatsworth, CA 91311 • tel: 818.773.9044 • fax: 818.576.9486
9F, No 81, Shui Lee Rd. • Hsinchu, Taiwan, R.O.C. • tel: 886.3.5169222 • fax: 886.3.5169213
LUMNDS826-AUG0105
rev. A.1
1

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