跳至主要内容

100GBASE-ER4 CFP Optical Transceiver sinovo

100GBASE-ER4 CFP Optical Transceiver

Features

Ÿ  Support multi-rate from 103.1Gb/s to 111.8Gb/s
Ÿ  Hot-swappable input/output
Ÿ  Up to 40km transmission on SMF
Ÿ  1300nm LAN-WDM EML-based high performance
transmitter with optical MUX
Ÿ  Low-noise PIN receiver with optical DeMUX
Ÿ  Low-noise SOA with typical 17dB gain
Ÿ  High speed I/O electrical interface (CAUI)
Ÿ  MDIO interface with integrated digital monitoring
Ÿ  CFP MSA package with duplex LC connector
Ÿ  Single +3.3V power supply
Ÿ  Typical power consumption <24 W
Ÿ  Operating case temperature: -5 ~ +70°C
Ÿ  PRBS generation and error detection

 

Description

The SOFP-ER-10 module is a compact 100Gb/s Non-Return to Zero (NRZ) CFP optical transceiver module for high-speed Ethernet and Telecommunication networking applications. The module supports data rates from 103.1Gb/s to 111.8Gb/s, which allows the module to support a wide variety of networking applications including 100GBASE-ER4 and OTU-4. It is offered in a cost-effective CFP form factor with a standard MSA compliant interface. By applying the latest IC technology, this 100Gb/s module not only provides for low power consumption but also offering the latest features and protocols.
The module supports a link length up to 40km on standard single mode fiber such as SMF-28. 100Gb/s optical signal is carried over four wavelengths. The module consists of a 1:4 optical MUX and DeMUX, EML-based high performance optical transmitter and PIN based low-noise optical receiver to provide E/O and O/E signal conversion and an advanced Gearbox IC chip to offer electrical signal translation between 10 lanes and 4 lanes, SOA(semiconductor optical amplifier) for 1310nm optical signal re-generation in high-speed Ethernet and Telecommunication networking application . This 10-lane electrical signal is fully compliant with 802.3ba CAUI specifications. A built-in PRBS generator and error detector enhances a system’s testability. The receiver module also supports MDIO interface with integrated digital optical monitoring.

Functional Description of Transceiver

100G_CFP_Diagram.gif

Application

Ÿ  High-speed data communications
Ÿ  Inter rack connections
Ÿ  Optical component test systems

Absolute Maximum Ratings

Parameter
Symbol
Min.
Typ.
Max.
Unit
Notes
Maximum Supply Voltage
Vcc
-0.3
-
3.6
V

Storage Temperature
TS
-40
-
85
°C

Operating Humidity
-
5
-
85
%

 

Recommended Operating Conditions

Parameter
Symbol
Min.
Typ.
Max.
Unit
Notes
Power Supply Voltage
Vcc
3.13
3.30
3.47
V

Power Supply Current
Icc
-
-
7.0
A

Case Operating Temperature
Top
-5
-
70
°C

Data Rate
-
103
-
112
Gbps

9/125um G652 SMF
Lmax
-
-
40
Km

Baud Rate Tolerance

-100

+100
ppm

Performance Specifications - Transmitter

(-5ºC<Tc<+70°C; +2.97V<Vcc<+3.63V)
Parameter
Symbol
Min.
Typ.
Max.
Unit
Notes
Input Differential Impedance
Zin
90
100
110
Ω

Input Amplitude (Differential)
Vin
-
-
1050
mV

Signaling Speed per Lane
BRavg
-
25.78
-
Gbps

Total Average Launch Optical Power
Pout
-
-
8.9
dBm

Average Launch Power per Lane
Peach
-2.9
-
4.5
dBm

Extinction Ratio
ER
8.0
-
-
dB

Average Launch power of OFF TX each lane
Poff
-
-
-30
dBm

Lane 0 Center Wavelength
λC0  
1294.53
1295.56
1296.59
nm

Lane 1 Center Wavelength
λC0  
1299.02
1300.05
1301.09
nm

Lane 2 Center Wavelength
λC0  
1303.54
1304.58
1305.63
nm

Lane 3 Center Wavelength
λC0  
1308.09
1309.14
1310.19
nm

Spectral Width(-20dB)
Δλ
-
-
1.0
nm

Side Mode Suppression Ratio
SMSR
30
-
-
dB

Relative Intensity Noise
RIN
-
-
-130
dB/Hz

Optical Return Loss Tolerance

-
-
20
dB

Transmitter and dispersion penalty (TDP), each lane (max)
DP
-
-
2.5
dB

TX Disable Assert Time
t_off
-
-
100
us

Eye Diagram
IEEE802.3ba-2010 Compliant

 

Performance Specifications - Receiver

(-5C<Tc<+70°C; +2.97V<Vcc<+3.6V)
Parameter
Symbol
Min.
Typ.
Max.
Unit
Notes
Output Amplitude (Differential)
Vout
360

770
mV

Output Differential Impedance
Zin
90
100
110
Ω

Signaling Speed per Lane
BRavg
-
25.78
-
Gbps

Lane 0 Center Wavelength
λC0  
1294.53
1295.56
1296.59
nm

Lane 1 Center Wavelength
λC0  
1299.02
1300.05
1301.09
nm

Lane 2 Center Wavelength
λC0  
1303.54
1304.58
1305.63
nm

Lane 3 Center Wavelength
λC0  
1308.09
1309.14
1310.19
nm

Receiver Sensitivity each Lane
PIN
-
-
-20.9
dBm

Receive power, each lane (OMA) (max)

-
-
4.5
dBm

Receiver Reflectance
-
-
-
-26
dB

Note1: Output is coupled into a 9/125μm single-mode fiber.
Note2: Filtered, measured with a PRBS 2^31-1 test pattern.
Note3: High speed I/O, internally AC coupled.
Note4: Minimum average optical power measured at BER less than 1E-12, with a 2^31-1 PRBS.

 

1.2V MDIO Interface Specifications

Parameter
Symbol
Min.
Typ.
Max.
Unit
Notes
Input High Voltage
VIN
0.84
-
1.5
V

Input Low Voltage
VIL
-0.3
-
0.36
V

Input Leakage Current
IIN
-100
-
+100
uA

Output High Voltage
VOH
1.0
-
1.5
V

Output Low Voltage
VOL
-0.3
-
0.2
V

Output High Current
IOH
-
-
-4
mA

Output LowCurrent
IOL
+4
-
-
mA

Input capacitance
Ci
-
-
10
10pF

 


CFP PIN Map Orientation

  

CFP Transceiver Electrical Pad Layout

Regulatory Compliance

Ÿ  Compliant with CFP Hardware MSA Revision 1.4
Ÿ  Compliant with CFP MSA Management Interface Specification Version 2.2 r06a
Ÿ  Compliant with IEEE802.3-2010
Ÿ  ESD to the Electrical PINs: compatible with MIL-STD-883E Method 3015.7
Ÿ  ESD to the Duplex LC Receptacle: compatible with IEC 61000-4-2 GR-1089-CORE
Ÿ  Immunity compatible with IEC 61000-4-3
Ÿ  EMI compatible with FCC Part 15 Class B EN55022 Class B (CISPR 22B) VCCI Class B
Ÿ  Laser Eye Safety compatible with FDA 21CFR 1040.10 and 1040.11 EN60950, EN (IEC) 60825-1,2
Ÿ  RoHS compliant with 2002/95/EC 4.1&4.2 2005/747/EC

 

Mechanical Diagram

 

Ordering Information

Part Number
Operation Case Temperature
TX
Wavelength
Data Rate
Distance
Connector and Fiber Type
SOFP-ER-10
-5~70
LAN WDM
103.1~113.8G
40Km
LC SMF

 

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 eyes exposure to direct or indirect radiation.

Importance Notice

Sinovo Telecom reserves the right to make changes to or discontinue any optical link product or service identified in this publication, without notice, in order to improve design and/or performance. Applications that are described herein for any of the optical link products are for illustrative purposes only.

Sinovo Telecom makes no representation or warranty that such applications will be suitable for the specified use without further testing or modification.

评论

此博客中的热门博文

25G/100G-PON 进展和演进趋势分析

“宽带中国”战略首次在国家层面将宽带网络定位为“新时期我国经济社会发展的战略性公共基础设施”,宽带 接入 网具有投资大,建设周期长,网络复杂的突出特点,是宽带网络的主要组成部分。随着 云计算 、高清视频、虚拟现实等新业务的迅猛发展,用户带宽以每5-6年10倍速度增长,现有接入网 技术 需要不断进行升级以适应更高的带宽和技术要求。基于点到多点拓扑的PON网络是主流宽带接入技术,PON网络技术已经经历了从EPON和GPON到10G PON的发展历程。当前全球宽带接入市场逐步进入千兆时代,未来10G入户将成为宽带接入建设的必然趋势。随着4K视频和5G技术的加速发展,10G-PON技术也难以满足未来的驻地接入和移动前传和回传的带宽需求,支持25G/100G更高速率的PON技术正逐步成为业界研究热点。 1 下一代PON标准进展 10G-PON之后PON技术的演进主要有2种方式,一种是单波长速率提升,波特率由10G提升到25G/40G等;另一种是采用多波长叠加方式,每波长 承载 的速率是10G/25G,多波长叠加到40G/80G/100G。 FSAN 组织在2011 年启动NGPON2 的标准研发,2015年完成标准制定。FSAN 组织选择了TWDM-PON 作为主要技术方案,采用4/8波长叠加方式,每波长采用10G TDM方式,在移动回传和商业客户中可选择点对点的WDM overlay 技术。NGPON2 的关键需求主要为40G 下行和40G/10G 上行, 实现20km 传输距离和1:64 分光。ITU标准组织也在关注单波25G的研究进展,预计近期将启动25G-PON的标准制定。 2013年IEEE开始启动NG-EPON研究,成立了IEEE ICCOM对NG-EPON的市场需求、技术方案进行分析,2015年3月发布了NG-EPON技术白皮书。2015年7月开始启动100G-EPON标准制定,命名为IEEE 802.3ca ,预计在2018年发布100G-EPON标准。100G-EPON目标定义了3种MAC层速率25G,50G和100G。其中25G分为非对称 10G/25G和对称25G/25G二种制式。 2 25G/100G-PON调制技术分析 由于接入网技术升级快,规模巨大,投入高,高性能和低成本一直是决定接入网技术演进的关键因素。其中光器...

40G QSFP+ SR4 LR4 ER Sinovo Telecom

40G QSFP + SR4 IEEE 802.3bm, 802.3ba, SFF-8436 4 voies optiques indépendantes Vitesse de ligne de 10,3 Gb / s, 14,1 Gb / s Interface QSFP + MPO Jusqu'à 300 m de distance 40G QSFP + LR4 IEEE 802.3bm, 802.3ba, SFF-8436 4 voies optiques indépendantes Emetteur: 4 x CWDM non refroidi DFB LD (1271 1291 1311 1331nm) Interface QSFP + Duplex LC Jusqu'à 10 km de distance 40G QSFP + ER4 IEEE 802.3bm, 802.3ba, SFF-8436 4 voies optiques indépendantes Interface QSFP + Duplex LC Jusqu'à 40 km de distance

100G QSFP28 DAC (cable de conexión directa) Y AOC (cable óptico activo) Sinovo

100G QSFP28 AOC (cable óptico activo) 100G QSFP28 a 100G QSFP28 AOC 100G QSFP28 a 2 x QSFP + (50G) AOC 100G QSFP28 a 4 x SFP28 (25G) AOC Interconectividad de alta densidad de 100Gb / s. Bajo peso para arquitecturas de alto conteo de puertos Radio de curvatura pequeño para una fácil instalación y manejo de fibra. Excelente integridad de señal Hasta 100M para Infiniband EDR, 4 x 25 y 100G Ethernet. 100G QSFP28 DAC (cable de conexión directa) 100G QSFP28 a 100G QSFP28 DAC 100G QSFP28 a 2 x QSFP + (50G) DAC 100G QSFP28 a 4 x SFP28 (25G) DAC Cables divisores de cobre pasivos Protección de 360 ​​° para un rendimiento EMI / EMC superior Totalmente compatible con todas las especificaciones relevantes de SFF y IEEE Longitudes disponibles desde 0.5M hasta 10M