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SFP+10G 850nm 300m SR LC DX光模塊
10Gbps SFP+光模塊
型   號:JFTSM-SFP+10-85-03(SR)-LCD
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產品詳情
相關資料

產品型號
JFTSM-SFP+10-85-03(SR)-LCD
工廠品牌
JFOPT
封裝形式
SFP+
光口類型
LC Duplex
最高總速率
11.3Gbps
每通道速率
10.3125Gbps
OM3最大傳輸距離
300m
OM4最大傳輸距離
300m
工作波長
850nm
工作電壓
3.3V
光纖型號
MMF
纖芯尺寸
50/125
發射器類型
VCSEL
接收器類型
IDP
發射功率
-6~-1dBm
接收靈敏度
-11.1dBm
數字診斷
YES
接收過載
-1dBm
功耗
<1.0W
支持協議
MSA SFP+,SFF-8431,IEEE 802.3ae 10GBASE-SR/SW
工作溫度(商業級)
0℃~+70℃
儲存溫度(商業級)
-40℃~+85℃
工作溫度(工業級)
-40℃~+85℃
儲存溫度(工業級)
-40℃~+85℃
工作溫度(擴展級)
-20℃~+75℃
儲存溫度(擴展級)
-40℃~+85℃




生產線介紹
PRODUCTION LINE INTRODUCTION
 

JFOPT嘉富持續投入光(guang)模塊(kuai)生產領(ling)(ling)域,產品覆蓋1*9、SFP、10G、25G、100G、200G、400G、800G GPON/EPON/XG/XGSPON OLT等全(quan)系列光(guang)模塊(kuai)。同(tong)時為下游同(tong)行提供TOSA、ROSA、BOSA等光(guang)器件(jian)半成(cheng)品解決方(fang)案(an)。JFOPT嘉富生產線具備(bei)日產量一萬只光(guang)模塊(kuai)、兩萬只光(guang)器件(jian)的(de)能力。此外,JFOPT嘉富光(guang)模塊(kuai)擁有業(ye)界領(ling)(ling)先的(de)耐高溫、抗干擾特(te)性,廣(guang)泛(fan)應用于計算(suan)中心、運營商、交通安(an)防、電(dian)力設施等行業(ye)領(ling)(ling)域。





產品介紹
PRODUCT PRESENTATION
 

JFOPT SFP+ 10G 850nm 300m SR LC DX 多(duo)模(mo)光(guang)收發(fa)(fa)模(mo)塊(kuai)是一款高(gao)性(xing)(xing)能 SFP+ 模(mo)塊(kuai),專為雙工光(guang)纖數據(ju)通信(xin)(xin)應用設(she)計(ji),適(shi)用于 10GBASE-SR 和 10GBASE-SW 等(deng)場景。該模(mo)塊(kuai)配備(bei) 20 針 SFP+ 連接(jie)器,支(zhi)持(chi)熱(re)插拔功(gong)能,并(bing)通過(guo) I2C 接(jie)口(kou)提供數字診斷功(gong)能。其(qi)設(she)計(ji)針對多(duo)模(mo)光(guang)纖應用,工作(zuo)在 850nm 標稱波長(chang)。發(fa)(fa)射端(duan)采(cai)用符合 IEC 60825 Class 1 激(ji)光(guang)安全(quan)標準的垂(chui)直腔面(mian)發(fa)(fa)射激(ji)光(guang)器(VCSEL),接(jie)收端(duan)則在光(guang)學組件中集(ji)成(cheng)砷化鎵(jia)(GaAs)探測器前置(zhi)放大(da)器(IDP)及限幅(fu)后(hou)置(zhi)放大(da)器集(ji)成(cheng)電(dian)路,確保信(xin)(xin)號處理的可靠(kao)性(xing)(xing)與(yu)高(gao)效性(xing)(xing)。





光模塊系列產品
TRANSCEIVER SERIES PRODUCTS
 





生產及檢測設備
PRODUCTION & TESTING EQUIPMENT
 





產品特點
FEATURES
 
Operating data rate up to 11.3Gbps Distance up to 300m @50 / 125 um MMF
Single 3.3V power supply and TTL logic interface Duplex LC connector interface, hot pluggable
Compliant with MSA SFP+ Specification SFF-8431 Compliant with IEEE 802.3ae 10GBASE-SR/SW
Dispersion tolerance up to 40ps/nm over G.651 Safety certification: TUV/UL/FDA




應用范圍
APPLICATION
 
10GBASE-SW at 9.953 Gbps 10GBASE-SR at 10.3125 Gbps
OBSAI Rates 6.144 Gb/s, 3.072 Gb/s,1.536 Gb/s, 0.768 Gb/s CPRI Rates 10.138 Gb/s, 9.830 Gb/s, 7.373 Gb/s, 6.144 Gb/s, 4.915 Gb/s, 2.458 Gb/s, 1.229 Gb/s, 0.614 Gb/s
Other optical link  




符合標準
STANDARD COMPLIANCE
 





訂購信息
ORDER INFORMATION
 
Part No. Data Rate Laser Fiber Type Distance Temp. DDMI
JFTSM-SFP+10-85-03(SR)-LCD 0.614Gbps
to 11.3Gbps
850nm
VCSEL
MMF 300m Standard YES
0.614Gbps
to 11.3Gbps
850nm
VCSEL
MMF 300m Industrial YES




絕對最大額定值
ABSOLUTE MAXIMUM RATINGS
 
Parameter Symbol Min. Max. Unit
Storage temperature TS -40  +85  °C
Supply voltage VCC -0.5  3.6  V
Input voltage Vin -0.5  Vcc V
Output current Io - 50  mA
Relative humidity RH 85  %




建議操作條件
RECOMMENDED OPERATING CONDITIONS
 
Parameter Symbol Min. Typ. Max. Unit
Operating case temperature TC Standard - 70  °C
Industrial -40  - 85 
Power supply voltage VCC 3.15  3.3  3.45  V
Power supply current ICC - - 300  mA
Surge current ISurge - - +30  mA
Baud rate - 0.6  - 11.3  Gbps




性能規范—電氣
PERFORMANCE SPECIFICATIONS–ELECTRICAL
 
Parameter Symbol Min. Typ. Max. Unit Notes

Transmitter
 
CML inputs (Differential) Vin 150  - 1200  mVpp AC coupled inputs
Input impedance (Differential) Zin 85  100  115  ohms Rin > 100 kohms @ DC
Tx_DISABLE input voltage – high - - Vcc+0.3 V -
Tx_DISABLE input voltage – low - - 0.8  V -
Tx_FAULT output voltage – high - -
Vcc+0.3
V
Io = 400µA; Host Vcc
Tx_FAULT output voltage – low - - 0.8  V Io = -4.0mA

Receiver
 
CML outputs (Differential) Vout 350  - 700  mVpp AC coupled outputs
Output Impedance
(Differential)
Zout 85  100  115  ohms -
Rx_LOS output voltage – high - - Vcc+0.3 V lo = 400µA; Host Vcc
Rx_LOS Output Voltage –
Low
- - 0.8  V lo = -4.0mA
MOD_DEF (2:0) VoH 2.5  - - V With Serial ID
VoL - 0.5  V




光學和電學特性
OPTICAL AND ELECTRICAL CHARACTERISTICS
 
Parameter Symbol Min. Typ. Max. Unit
50 / 125 um MMF - - 300  - m
Data rate - 0.6  - 11.3  Gbps

Transmitter
 
Centre wavelength λC 840  850  860  nm
Spectral width (RMS) Δλ - - 0.45  nm
Average output power Pout -6  - -1  dBm
Extinction ratio ER 3.0  5.0  - dB
Output optical eye   IEEE 802.3-2005 Compliant
Transmitter dispersion penalty TDP - - 3.9  dB
TX_Disable assert time t_off - - 10  us
TX_DISABLE negate time t_on - - ms
TX_BISABLE time to start reset t_reset 10  - - us
Time to initialize, include reset of TX_FAULT t_init - - 300  ms
TX_FAULT from fault to assertion t_fault - - 100  us
Total jitter TJ - - 0.28  UI(p-p)
Data dependent jitter DDJ - - 0.1  UI(p-p)
Uncorrelated jitter UJ - - 0.023  RMS

Receiver
 
Centre wavelength λC 840  850  860  nm
Receiver sensitivity(OMA) Pmin - - -11.1  dBm
Stressed receiver sensitivity (OMA)  Pmin - - -7.5  dBm
Receiver overload Pmax -1  - - dBm
Optical return loss ORL - - -12  dB
LOS de-assert LOSD - - -12.5  dBm
LOS assert LOSA -25  - - dBm
LOS hysteresis - 0.5  - - dB




SFP+收發器電氣焊盤布局
SFP+ TRANSCEIVER ELECTRICAL PAD LAYOUT
 



 

引腳功能定義
PIN FUNCTION DEFINITIONS
 
Pin Num. Name Function Plug Seq. Notes
VeeT Transmitter Ground Note 5
TX Fault Transmitter Fault
Indication
Note 1
TX Disable Transmitter Disable Note 2, Module disables on high or open
SDA Module Definition 2 2-wire Serial Interface Data Line.
SCL Module Definition 1 2-wire Serial Interface Clock.
MOD-ABS Module Definition 0 Note 3
RS0 RX Rate Select
(LVTTL).
No Function Implement
LOS Loss of Signal Note 4
RS1 TX Rate Select
(LVTTL).
No Function Implement
10  VeeR Receiver Ground Note 5
11  VeeR Receiver Ground Note 5
12  RD- Inv. Received Data Out 3 Note 6
13  RD+ Received Data Out 3 Note 6
14  VeeR Receiver Ground Note 5
15  VccR Receiver Power 3.3V ± 5%, Note 7
16  VccT Transmitter Power 3.3V ± 5%, Note 7
17  VeeT Transmitter Ground Note 5
18  TD+ Transmit Data In Note 8
19  TD- Inv. Transmit Data In Note 8
20  VeeT Transmitter Ground Note 5

Notes:

1) TX Fault is an open collector/drain output, which should be pulled up with a 4.7K – 10KΩ resistor on the host board. Pull up voltage between 2.0V and VccT/R+0.3V. When high, output indicates a laser fault of some kind. Low indicates normal operation. In the low state, the output will be pulled to < 0.8V.

2) TX disable is an input that is used to shut down the transmitter optical output. It is pulled up within the module with a 4.7K – 10 KΩ resistor. Its states are:
Low (0 – 0.8V): Transmitter on
(>0.8, < 2.0V): Undefined
High(2.0 – 3.465V): Transmitter Disabled
Open: Transmitter Disabled

3) Module Absent, connected to VeeT or VeeR in the module.

4) LOS (Loss of Signal) is an open collector/drain output, which should be pulled up with a 4.7K – 10K? resistor. Pull up voltage between 2.0V and VccT/R+0.3V. When high, this output indicates the received optical power is below the worst-case receiver sensitivity (as defined by the standard in use). Low indicates normal operation. In the low state, the output will be pulled to < 0.8V.

5) The module signal ground contacts, VeeR and VeeT, should be isolated from the module case.

6) RD-/+: These are the differential receiver outputs. They are AC coupled 100? differential lines which should be terminated with 100? (differential) atthe user SERDES. The AC coupling is done inside the module and is thus not required on the host board. The voltage swing on these lines will be between 370 and 700 mV differential (185 –350 mV single ended) when properly terminated.

7) VccR and VccT are the receiver and transmitter power supplies. They are defined as 3.3V ±5% at the SFP+ connector pin. Maximum supply current is 300mA. Inductors with DC resistance of less than 1 ohm should be used in order to maintain the required voltage at the SFP+ input pin with 3.3V supply voltage. When the recommended supply-filtering network is used, hot plugging of the SFP+ transceiver module will result in an inrush current of no more than 30mA greater than the steady state value. VccR and VccT may be internally connected within the SFP+ transceiver module.

8) TD-/+: These are the differential transmitter inputs. They are AC-coupled, differential lines with 100? differential termination inside the module. The AC coupling is done inside the module and is thus not required on the host board. The inputs will accept differential swings of 150 – 1200 mV (75 – 600mV single-ended), though it is recommended that values between 150 and 1200 mV differential (75 – 600mV single-ended) be used for best EMI performance.




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