Basic Info.
Certification
CE, ISO, RoHS, GS
Transport Package
Anti-Static Box
Specification
10pcs/anti-static box
Product Description
155Mb/s Bi-Di SFP Transceiver Module with DDM functionWBSP-155XX-XXFeatures:
Up to 155Mbps data linkIntegrated single fiber bi-directional optical subassemblyHot- pluggable SFP footprintLC pluggable optical interfaceLow power dissipation
Metal enclosure, for lower EMIRoHs compliant and lead-freeSingle +3.3V power supplySupport Digital Diagnostic Monitoring interfaceCompliant with SFF-8472Case operating temperature 0ºC to 70ºC Applications:
SDH/STM-1,SONET/OC-3Fast EthernetOther optical linkDescriptionsWBSP-155XX-XX Small Form Factor Pluggable (SFP) transceivers are compatible with the Small Form Factor Pluggable Multi-Sourcing Agreement (MSA), The transceiver consists of sections: the LD driver, the limiting amplifier, the digital diagnostic monitor.The optical output can be disabled by a TTL logic high-level input of Tx Disable, and the system also can disable the module via I2C. Tx Fault is provided to indicate that degradation of the laser. Loss of signal (LOS) output is provided to indicate the loss of an input optical signal of receiver or the link status with partner. The system can also get the LOS (or Link)/Disable/Fault information via I2C register access. Pin Descriptions
Pin | Symbol | Name/Description | Ref |
1 | VEET | Transmitter Ground (Common with Receiver Ground) | 1 |
2 | TFAULT | Transmitter Fault. | 2 |
3 | TDIS | Transmitter Disable. Laser output disabled on high or open. | |
4 | MOD_DEF(2) | Module Definition 2. Data line for Serial ID. | 3 |
5 | MOD_DEF(1) | Module Definition 1. Clock line for Serial ID. | 3 |
6 | MOD_DEF(0) | Module Definition 0. Grounded within the module | 3 |
7 | Rate Select | No connection required | 4 |
8 | LOS | Loss of Signal indication. Logic 0 indicates normal operation. | 5 |
9 | VEER | Receiver Ground (Common with Transmitter Ground) | 1 |
10 | VEER | Receiver Ground (Common with Transmitter Ground) | 1 |
11 | VEER | Receiver Ground (Common with Transmitter Ground) | 1 |
12 | RD- | Receiver Inverted DATA out. AC Coupled | |
13 | RD+ | Receiver Non-inverted DATA out. AC Coupled | |
14 | VEER | Receiver Ground (Common with Transmitter Ground) | 1 |
15 | VCCR | Receiver Power Supply | |
16 | VCCT | Transmitter Power Supply | |
17 | VEET | Transmitter Ground (Common with Receiver Ground) | 1 |
18 | TD+ | Transmitter Non-Inverted DATA in. AC Coupled. | |
19 | TD- | Transmitter Inverted DATA in. AC Coupled. | |
20 | VEET | Transmitter Ground (Common with Receiver Ground) | 1 |
Notes:1. Circuit ground is internally isolated from chassis ground.2. Laser output disabled on T DIS >2.0V or open, enabled on T DIS <0.8V.3. Should be pulled up with 4.7k - 10kohms on host board to a voltage between 2.0V and 3.6V.MOD_DEF(0) pulls line low to indicate module is plugged in.4. This is an optional input used to control the receiver bandwidth for compatibility with multiple data rates (most likely Fiber Channel 1x and 2x Rates). If implemented, the input will be internally pulled down with > 30kΩ resistor. The input states are:Low (0 - 0.8V): Reduced Bandwidth(>0.8V, < 2.0V): UndefinedHigh (2.0 - 3.465V): Full BandwidthOpen: Reduced Bandwidth5. LOS is open collector output. Should be pulled up with 4.7k - 10kohms on host boardto a voltage between 2.0V and 3.6V. Logic 0 indicates normal operation; logic 1 indicates lossof signal. Absolute Maximum Ratings
Parameter | Symbol | Min | Typ | Max | Unit | Note |
Storage Temperature | Ts | -40 | | 85 | ºC | |
Storage Ambient Humidity | HA | 5 | | 95 | % | |
Power Supply Voltage | VCC | -0.5 | | 4 | V | |
Signal Input Voltage | | -0.3 | | Vcc+0.3 | V | |
Receiver Damage Threshold | | 5 | | | dBm | |
Recommended Operating Conditions
Parameter | Symbol | Min | Typ | Max | Unit | Note |
Case Operating Temperature | Tcase | 0 | | 70 | | |
Ambient Humidity | HA | 5 | | 70 | % | Non-condensing |
Power Supply Voltage | VCC | 3.13 | 3.3 | 3.47 | V | |
Power Supply Current | ICC | | | 280 | mA | |
Power Supply Noise Rejection | | | | 100 | MVP-P | 100Hz to 1MHz |
Data Rate | | | 155 | | Mpbs | TX Rate/RX Rate |
Coupled Fiber | Multi or Single mode fiber | |
Specification of Transmitter
Parameter | Symbol | Min | Typ | Max | Unit | note |
Average Output Power | Pout | -14 | | -8 | dBm | 20km |
-5 | | 0 | dBm | 40km/60km |
-2 | | +3 | dBm | 80km |
Extinction Ratio | ER | 9 | | | dBm | |
Center Wavelength | λC | 1270 | 1310 | 1360 | nm | 1310nm FP |
1480 | 1490 | 1500 | nm | 1490nm DFB |
1520 | 1550 | 1580 | nm | 1550nm DFB |
Spectrum Width (RMS) | σ | | | 4 | nm | FP Laser(TX:1310nm) |
Side Mode Suppression Ratio | SMSR | 30 | | | dB | DFB Laser (TX:1550nm/1490nm) |
Spectrum Bandwidth(-20dB) | σ | | | 1 | nm |
Transmitter OFF Output Power | POff | | | -45 | dBm | |
Differential Line Input Impedance | Rin | 90 | 100 | 110 | 0hm | |
Total Jitter (Peak-Peak) | tJ | | | 128 | PS | Note (1) |
Output Eye Mask | Compliant with ITU-TG.957(class 1 laser safety) | Note (2) |
Note (1): Measure at 223-1 NRZ PRBS patternNote (2): Transmitter eye mask definition Specification of Receiver
Parameter | Symbol | Min | Typ | Max | Unit | note |
Input Optical Wavelength | λIN | 1270 | 1310 | 1610 | nm | |
Receiver Sensitivity | PIN | | | -32 | dBm | 40km |
Input Saturation Power (Overload) | PSAT | -3 | | | dBm | |
Los Of Signal Assert | PA | -45 | | | dBm | |
Los Of Signal De-assert | PD | | | -35 | dBm | Note (2) |
LOS Hysteresis | PA-PD | 0.5 | | 6 | dB | |
Note (1): Measured with Light source 1550nm(1310nm), ER=10dB; BER =<10-12 @PRBS=223-1 NRZNote (2): When LOS de-asserted, the RX data+/- output is High-level (fixed) Electrical Interface Characteristics
Parameter | Symbol | Min | Typ | Max | Unit | note |
Transmitter |
Total Supply Current | ICC | | | A | mA | Note (1) |
Transmitter Disable Input-High | VDISH | 2 | | Vcc+0.3 | V | |
Transmitter Disable Input-Low | VDISL | 0 | | 0.8 | V | |
Transmitter Fault Input-High | VDISH | 2 | | Vcc+0.3 | V | |
Transmitter Fault Input-Low | VTxFH | 0 | | 0.8 | V | |
Receiver |
Total Supply Current | ICC | | | B | mA | Note (1) |
LOSS Output Voltage-High | VLOSH | 2 | | Vcc+0.3 | V | LVTTL |
LOSS Output Voltage-Low | VLOSL | 0 | | 0.8 | V |
Note (1): A (TX) + B (RX) = 280mA (Not include termination circuit)Digital Diagnostic FunctionsWBSP-155XX-XX transceivers support the 2-wire serial communication protocol as defined in the SFP MSA. It is very closely related to the E2PROM defined in the GBIC standard, with the same electrical specifications.The standard SFP serial ID provides access to identification information that describes the transceiver's capabilities, standard interfaces, manufacturer, and other information.Additionally, SFP transceivers provide a unique enhanced digital diagnostic monitoring interface, which allows real-time access to device operating parameters such as transceiver temperature, laser bias current, transmitted optical power, received optical power and transceiver supply voltage. It also defines a sophisticated system of alarm and warning flags, which alerts end-users when particular operating parameters are outside of a factory set normal range.The SFP MSA defines a 256-byte memory map in E2PROM that is accessible over a 2-wire serial interface at the 8 bit address 1010000X (A0h). The digital diagnostic monitoring interface makes use of the 8 bit address 1010001X (A2h), so the originally defined serial ID memory map remains unchanged. The interface is identical to, and is thus fully backward compatible with both the GBIC Specification and the SFP Multi Source Agreement. The operating and diagnostics information is monitored and reported by a Digital Diagnostics Transceiver Controller (DDTC) inside the transceiver, which is accessed through a 2-wire serial interface. When the serial protocol is activated, the serial clock signal (SCL, Mod Def 1) is generated by the host. The positive edge clocks data into the SFP transceiver into those segments of the E2PROM that are not write-protected. The negative edge clocks data from the SFP transceiver. The serial data signal (SDA, Mod Def 2) is bi-directional for serial data transfer. The host uses SDA in conjunctionwith SCL to mark the start and end of serial protocol activation. The memories are organized as a series of 8-bit data words that can be addressed individually or sequentially.Digital diagnostics for the WSP- 155XX-40 are Externally calibrated by default Recommend Circuit Schematic
Mechanical Specifications (Unit: mm)
Regulatory Compliance
Feature | Test Method | Performance |
Electrostatic discharge (ESD) | IEC/EN 61000-4-2 | Compatible with standards |
Electromagnetic Interference (EMI) | FCC Part 15 Class B EN 55022 Class B (CISPR 22A) | Compatible with standards |
Laser Eye Safety | FDA 21CFR 1040.10, 1040.11 IEC/EN 60825-1,2 | Class 1 laser product |
Component Recognition | IEC/EN 60950 ,UL | Compatible with standards |
ROHS | 2002/95/EC | Compatible with standards |
EMC | EN61000-3 | Compatible with standards |
Ordering Information
Part. No | Specifications |
Pack | Rate | Tx | P (dBm) | Rx | S (dBm) | Top | Reach | Other |
WBSP-1551314-20 | SFP BiDi | 155Mb/s | 1310nm-FP | -14~-8 | PIN | <-31 | 0~70 | 20km | DDM,RoHS |
WBSP-1551413-20 | SFP BiDi | 155Mb/s | 1490nm-DFB | -14~-8 | PIN | <-31 | 0~70 | 20km | DDM,RoHS |
WBSP-15513-20 | SFP BiDi | 155Mb/s | 1310nm-FP | -14~-8 | PIN | <-31 | 0~70ºC | 20km | DDM,RoHS |
WBSP-15515-20 | SFP BiDi | 155Mb/s | 1550nm-FP | -14~-8 | PIN | <-31 | 0~70ºC | 20km | DDM,RoHS |
WBSP-15513-40 | SFP BiDi | 155Mb/s | 1310nm-FP | -5~0 | PIN | <-32 | 0~70ºC | 40km | DDM,RoHS |
WBSP-15515-40 | SFP BiDi | 155Mb/s | 1550nm-DFB | -5~0 | PIN | <-32 | 0~70ºC | 40km | DDM,RoHS |
WBSP-15514-60 | SFP BiDi | 155Mb/s | 1490nm-DFB | -5~0 | PIN | <-32 | 0~70ºC | 60km | DDM,RoHS |
WBSP-15515-60 | SFP BiDi | 155Mb/s | 1550nm-DFB | -5~0 | PIN | <-32 | 0~70ºC | 60km | DDM,RoHS |
WBSP-15514-80 | SFP BiDi | 155Mb/s | 1490nm-DFB | -2~+3 | PIN | <-32 | 0~70ºC | 80km | DDM,RoHS |
WBSP-15515-80 | SFP BiDi | 155Mb/s | 1550nm-DFB | -2~+3 | PIN | <-32 | 0~70ºC | 80km | DDM,RoHS |
WNO reserves the right to make changes to the product(s) or information contained herein without notice. No liability is assumed as a result of their use or application. No rights under any patent accompany the sale of any such product(s) or information.Edition 2016-9-1Published by Wuhan Neowave Optics Co., Ltd Copyright © WNOAll Rights Reserved.
Address:
Dinjie Modern Electromechnical Information Intubation Park, No.219 Guanggu No. 2 Road, Donghu New Technology Development Zone, Wuhan, Hubei, China
Business Type:
Manufacturer/Factory, Trading Company
Business Range:
Electrical & Electronics
Management System Certification:
ISO 9001, ISO 14001
Company Introduction:
Wuhan Neowave is a subsidiary of ZTT Group, located in the beautiful East Lake, Wuhan, China. Since its inception, Neowave has relied on Wuhan′s geography, policy, talents and information advantages, with technological innovation as its source of power, and customer demand-oriented, focusing on the R&D, production, sales and service industries of optical communication module components, and keep up with the development of the optical industry.
In 2017, we passed the three management system certifications of quality, environment and occupational health and safety.
In 2018, we obtained the high-tech enterprise certification of Hubei Province.
With years of industry experience and ZTT Group′s strong capital and technology background, Neowave develops products with the principle of "customer first, quality first". The products are mainly sold to domestic and foreign system equipment manufacturers, major communication operators and Internet content service providers, widely used in data broadband, telecommunications, data centers, mobile base stations, security monitoring, smart grid and defense military and other professional fields.
Under the background of economic globalization, Neowave is committed to becoming a world-renowned optical communication device solution provider, with professionalism, dedication and concentration as the core values, technology-LED, green energy-saving as the concept, aiming at becoming a world-famous optical communication device solution provider, Accelerate the building of world famous brand and domestic leading international enterprises.