• Coaxial single mode single fiber package with optional
SC/FC/ST/MU connector
• Wavelength Tx 1310nm/ Rx 1550nm
• SONET OC-3 SDH STM-1(S-1.1) Compliant
• Single +5V Power Supply
• PECL Differential Inputs and Outputs
• Wave Solderable and Aqueous washable
• LED Multisourced 1x9 Transceiver Interchangeable
• Class 1 Laser Int. Safety Standad IEC 825 Compliant
• Uncooled laser diode with MQW structure
• Complies with Telcordia (Bellcore) GR-468-CORE
• Temperature Range: 0 to 70ºC
• Optical Isolation >30 dB
• Cross Talk < -33 dB
• Optical Return Loss > 14dB
Absolute Maximum Rating
Parameter
Power Supply Voltage
Input Voltage
Output Current
Soldering Temperature
Operating Temperature
Storage Temperature
Symbol
V
cc
-
Min.
0
GND
0
-
0
-40
Max.
6
V
cc
30
260
70
85
Unit
V
V
mA
ºC
ºC
ºC
Note
I
out
-
10 seconds on leads only
T
opr
T
stg
Recommended Operating Condition
Parameter
Power Supply Voltage
Operating Temperature
Data Rate
Symbol
V
cc
T
opr
-
Min.
4.75
0
-
Typ.
5
-
155
Max.
5.25
70
-
Unit
V
ºC
Mbps
Transmitter Specifications, (0ºC<T
opr
<70ºC, 4.75V<V
CC
<5.25V)
Parameter
Optical
Optical Transmit Power
Output center Wavelength
Output Spectrum Width
Extinction Ratio
Output Pulse Mask
Output Eye
Optical Rise Time
Optical Fall Time
Optical Isolation
Optical Return Loss
Relative Intensity Noise
Total Jitter
t
t
r
t
f
-
-
Symbol
Min
Typical
Max
Unit
Notes
Output power is coupled into a 9/125 µm single
mode fiber
RMS (σ)
P
o
λ
Δλ
ER
-15
1261
-
8.2
-
1310
-
-
-8
1360
6
-
dBm
nm
nm
dB
Compliant with FDDI SMF-PMD1
Compliant with Bellcore TR-NWT-000253 and ITU recommendation G.957
-
-
30
14
-
-
-
-
-
-
-
-
2
2
-
-
-116
1.2
ns
ns
dB
dB
dB/Hz
ns
Measured with 2
23
-1 PRBS with 72 ones and 72
zeros.
10% to 90% Values
10% to 90% Values
Tx:1310 nm/ Rx:1550 nm
RIN
TJ
1
155 Mbps Bi-directional Single Fiber Transceiver
B-13/15-155-TPM-Sxx3-60
Transmitter Specifications, (0ºC<T
opr
<70ºC, 4.75V<V
CC
<5.25V)
Parameter
Electrical
Power Supply Current
Data Input Current-Low
Data Input Current-High
Differential Input Voltage
Data Input Voltage-Low
Data Input Voltage-High
I
CC
I
IL
I
IH
V
IH
-V
IL
V
IL
-V
CC
V
IH
-V
CC
-
-350
-
300
-2.0
-1.1
-
-
-
-
-
-
140
-
350
-
-1.58
-0.74
mA
µA
µA
mV
V
V
These inputs are compatible with 10K, 10KH and
100K ECL and PECL inputs
Maximum current is specified at Vcc= Maximum @
maximum temperature
Symbol
Min
Typical
Max
Unit
Notes
Receiver Specifications, (0ºC<T
opr
<70ºC, 4.75V<V
CC
<5.25V)
Parameter
Optical
Sensitivity
Maximum Input Power
Signal Detect-Asserted
Signal Detect-Deasserted
Signal Detect-Hysteresis
Cross Talk
Wavelength of Operation
-
-
P
in
Pa
Pd
-
-3
-
-45
1.0
-
1500
-
-
-
-
-
-
-
-33
-
-33
-
4.0
-33
1600
dBm
dBm
dBm
dBm
dB
dB
nm
Measured on transition: low to high
Measured on transition: high to low
Measured with 2
23
-1 PRBS with 72 ones
and 72 zeros. t(ITU-T recommendation
G.958)
Symbol
Min
Typical
Max
Unit
Notes
Receiver Specifications, (0ºC<T
opr
<70ºC, 4.75V<V
CC
<5.25V)
Parameter
Electrical
Power Supply Current
Data Output Voltage-Low
Data Output Voltage-High
Signal Detect Output Voltage-Low
Signal Detect Output Voltage-High
I
CC
V
OL
-V
cc
V
OH
-
V
cc
V
SDL-
V
cc
V
SDH-
V
cc
-
-2
-1.1
-2
-1.1
-
-
-
-
-
100
-1.58
-0.74
-1.58
-0.74
mA
V
V
V
V
These outputs are compatible with 10K,
10KH and 100KECL and LVPECL outputs
The current excludes the output load current
Symbol
Min
Typical
Max
Unit
Note
2
155 Mbps Bi-directional Single Fiber Transceiver
B-13/15-155-TPM-Sxx3-60
Connection Diagram
1. (Rx GND)
2. (Rx +)
3. (Rx-)
4. (SD)
5. (Rx Vcc)
6. (Tx Vcc)
7. (TX-)
8. (TX+)
9. (Tx GND)
NC
Receiver Signal Ground
Receiver Data Out
Receiver Data Out Bar
Signal Detect
Receiver Power Supply
Transmitter Power Supply
Transmitter Data In Bar
Transmitter Data in
Transmitter Signal Ground
Top View
NC
PIN
1
2
3
4
5
6
7
8
Warnings
9
Symbol
RxGND
RD+
RD-
SD
RxVcc
TxVcc
TD-
TD+
TxGND
Notes
Directly connect this pin to the receiver ground plane
See recommended circuit schematic
See recommended circuit schematic
Active high on this indicates a received optical signal
+5V dc power for the receiver section
+5 V dc power for the transmitter section
See recommended circuit schematic
See recommended circuit schematic
Directly connect this pin to the transmitter ground plane
3
155 Mbps Bi-directional Single Fiber Transceiver
B-13/15-155-TPM-Sxx3-60
Recommended Circuit Schematic
The split-loaded terminations for ECL signals need to be located at the input of devices receiving those ECL signals.
The power supply filtering is required for good EMI performance. Use short tracks from the inductor L1/L2 to the module Rx Vcc.
A GND plane under the module is required for good EMI and sensitivity performance.
Package Diagram
B-13/15-155-TPM-SSC (FC/ST/MU) 3-60.
Units in mm (inch)
4
155 Gbps Bi-directional Single Fiber Transceiver
B-13/15-155-TPM-Sxx3-60
Ordering Information
B - 13/15- 155 - TPM - S xx3-60
• Wavelength
Tx Wavelength=1310nm
Rx Wavelength = 1550nm
• Communication protocol
(155 Mbps)
• +5 V Transceiver
• Single mode fiber
• Connector options
Warnings
Handling Precautions:
This device is susceptible to damage as a result of electrostatic discharge (ESD). A static free environment is highly recommended. Follow
guidelines according to proper ESD procedures.
Laser Safety:
Radiation emitted by laser devices can be dangerous to human eyes. Avoid eye exposure to direct or indirect radiation.
Legal Notice
IMPORTANT NOTICE!
All information contained in this document is subject to change without notice, at Luminentʼs sole and absolute discretion. Luminent warrants performance of its
products to current specifications only in accordance with the companyʼs standard one-year warranty; however, specifications designated as “preliminary” are given to
describe components only, and Luminent expressly disclaims any and all warranties for said products, including express, implied, and statutory warranties, warranties
of merchantability, fitness for a particular purpose, and non-infringement of proprietary rights. Please refer to the companyʼs Terms and Conditions of Sale for further
warranty information.
Luminent assumes no liability for applications assistance, customer product design, software performance, or infringement of patents, services, or intellectual property
described herein. No license, either express or implied, is granted under any patent right, copyright, or intellectual property right, and Luminent makes no representa-
tions or warranties that the product(s) described herein are free from patent, copyright, or intellectual property rights. Products described in this document are NOT
intended for use in implantation or other life support applications where malfunction may result in injury or death to persons. Luminent customers using or selling
products for use in such applications do so at their own risk and agree to fully defend and indemnify Luminent for any damages resulting from such use or sale.
THE INFORMATION CONTAINED IN THIS DOCUMENT IS PROVIDED ON AN “AS IS” BASIS. Customer agrees that Luminent is not liable for any actual,
consequential, exemplary, or other damages arising directly or indirectly from any use of the information contained in this document. Customer must contact Lumi-
nent to obtain the latest version of this publication to verify, before placing any order, that the information contained herein is current.
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