產品型號 | JFTSM-SFP+10-CW1416-ER-LCD | 工廠品牌 | JFOPT嘉富 |
封裝形式 | SFP+ | 光口類型 | LC duplex |
最高總速率 | 11.3Gbps | 每通道速率 | 10.138Gb/s |
功率預算 | 23dB | ||
工作波長 | 1470nm to 1610nm | 工作電壓 | 3.3V |
光纖型號 | SMF | 纖芯尺寸 | 9/125 |
發射器類型 | CWDM EML | 接收器類型 | IDP |
發射功率 | 0~4dBm | 接收靈敏度 | -23dBm |
數字診斷 | YES | 接收過載 | -8dBm |
功耗 | <1.5W | 支持協議 | SFF-8431 SFF-8432 SFF-8472 |
工作溫度(商業級) | 0 to 70℃ (32 to 158℉) | 儲存溫度(商業級) | -40 to 85℃ (-40 to 185℉) |
工作溫度(擴展級) | -20 to 75℃ (-4 to167℉) | 儲存溫度(擴展級) | -40 to 85℃ (-40 to 185℉) |
JFOPT嘉富持續投入光模塊生產領域,產品覆蓋1*9、SFP、10G、25G、100G、200G、400G、800G GPON/EPON/XG/XGSPON OLT等全系列光模塊。同時為下游同行提供TOSA、ROSA、BOSA等光器件半成品解決方案。JFOPT嘉富生產線具備日產量一萬只光模塊、兩萬只光器件的能力。此外,JFOPT嘉富光模塊擁有業界領先的耐高溫、抗干擾特性,廣泛應用于計算中心、運營商、交通安防、電力設施等行業領域。
JFOPT SFP+ 10G CWDM (1470-1610nm) ER LC DX系列光模塊專為10G速率高性能光纖通信應用設計,完全符合SFP+多源協議(MSA) SFF-8431規范。該模塊針對單模光纖優化,支持粗波分復用(CWDM)傳輸,提供1470nm至1610nm范圍內8個中心波長通道,波長間隔20nm,保障14dB光鏈路預算。模塊配備SFP+連接器支持熱插拔功能,僅需單路3.3V電源供電。可通過LVTTL邏輯高電平輸入(TX_DIS)禁用光輸出,并設有接收信號丟失(RX_LOS)輸出接口指示光信號中斷狀態,同時支持基于SFF-8472標準的雙線串行接口數字診斷功能。
Hot-pluggable SFP+ footprint | 8-wavelengths CWDM EML transmitter from1470nm to 1610nm, with step 20nm | ||||||||
14dB power budget | Duplex LC connector | ||||||||
Power dissipation(0°C to 70°C) < 1.5W | Power dissipation(-20℃~75℃) < 1.8W | ||||||||
Dispersion tolerance 800ps/nm | Case operation temperature: Standard: 0°C to 70°C Extended:-20℃~75℃ |
10GBASE-ER/EW | 10G FC | ||||||||
OBSAI rates 6.144 Gb/s, 3.072 Gb/s,1.536 Gb/s, 0.768Gb/s | CPRI rates 10.138Gb/s ,9.830 Gb/s,7.373Gb/s, 6.144 Gb/s, 4.915 Gb/s, 2.458 Gb/s, 1.229 Gb/s, 0.614Gb/s |
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Other optical links |
Part No. | Data rate | Laser | Fiber | Power budget | CDR | Interface | Temp. | ||
JFTSM-SFP+10-CW1416-ER-LCD | 0.6Gbps to 11.3Gbps |
CWDM EML | SMF | 14dB | NO | LC | Standard | ||
Extended |
Band | Nomenclature | Wavelength(nm) | |||||||
Min. | Typ. | Max. | |||||||
S-band short wavelength | K | 1464 | 1470 | 1477.5 | |||||
L | 1484 | 1490 | 1497.5 | ||||||
M | 1504 | 1510 | 1517.5 | ||||||
N | 1524 | 1530 | 1537.5 | ||||||
C-band conventional | O | 1544 | 1550 | 1557.5 | |||||
L-band long wavelength | P | 1564 | 1570 | 1577.5 | |||||
Q | 1584 | 1590 | 1597.5 | ||||||
R | 1604 | 1610 | 1617.5 |
CWDM*: 8 Wavelengths from 1470nm to 1610nm, each step 20nm.
Parameter | Symbol | Min. | Typical | Max. | Unit | |||
Maximum supply voltage 1 | Vcc | -0.5 | - | 4.0 | V | |||
Storage temperature | Ts | -40 | - | 85 | °C |
Parameter | Symbol | Min. | Typical | Max. | Units | ||||
Case operating temperature | TC | Standard | 0 | - | +70 | °C | |||
Extended | -20 | - | 75 | °C | |||||
Supply voltage | Vcc | 3.13 | 3.3 | 3.45 | V | ||||
Supply current | Icc (0°C to 70°C) | - | 350 | 455 | mA | ||||
Icc (-20°C to 75°C) | - | 350 | 600 | mA | |||||
Data rate | SNC-SFP+10-CW1416-ER-LCD | 0.6 | - | 11.3 | Gbps |
Parameter | Symbol | Min. | Typ. | Max | Unit | Notes | |||
Transmitter |
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CML inputs(Differential) | Vin | 180 | - | 1000 | mVpp | 1 | |||
Input impedance (Differential) | Zin | 85 | 100 | 115 | ohms | - | |||
Tx_DISABLE input voltage - high | - | 2 | - | Vcc+0.3 | V | - | |||
Tx_DISABLE input voltage - low | - | 0 | - | 0.8 | V | - | |||
Tx_FAULT output voltage - high | - | 2 | - | Vcc+0.3 | V | - | |||
Tx_FAULT output voltage - low | - | 0 | - | 0.8 | V | - | |||
Receiver |
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CML outputs (Differential) | Vout | 350 | - | 700 | mVpp | 1 | |||
Output impedance (Differential) | Zout | 85 | 100 | 115 | ohms | - | |||
Rx_LOS output voltage - high | - | 2 | - | Vcc+0.3 | V | - | |||
Rx_LOS output voltage - low | - | 0 |
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V | - | |||
MOD_DEF ( 0:2 ) | VoH | 2.5 | - | - | V | 2 | |||
VoL | 0 | - | 0.5 | V |
Parameter | Symbol | Min. | Typical | Max. | Unit | Notes | |||
Transmitter |
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Optical wavelength | λ | λc–6 | - | λc+7.5 | nm | 2 | |||
-20dB spectrum width | Δλ | - | - | 1 | nm | - | |||
Side mode suppression ratio | SMSR | 30 | λc | - | dB | - | |||
Output opt. pwr(EOLP-1696-14XN) | Pout | -1 | - | +4 | dBm | 1 | |||
Output opt. pwr(EOLP-1696-14XEN) | Pout | -2 | - | +4 | dBm | 1 | |||
Extinction ratio | ER | 3.5 | - | - | dB | - | |||
Average launch power of OFF transmitter | POFF | - | - | -30 | dBm | - | |||
Transmitter dispersion penalty | TDP | - | - | 3 | dB | - | |||
TX jitter | TXj | Per 802.3ae requirements | - | - | |||||
Relative intensity noise | RIN | - | - | -128 | dB/Hz | - | |||
Receiver |
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Receiver sensitivity | Pmin | - | - | -16 | dBm | 3 | |||
Maximum input power | Pmax | -1 | - | - | dBm | - | |||
Optical center wavelength | λ | 1260 | - | 1620 | nm | - | |||
Receiver reflectance | Rrf | - | - | -12 | dB | - | |||
LOS de-assert | LOSD | - | - | -20 | dBm | - | |||
LOS assert | LOSA | -28 | - | - | dBm | - | |||
LOS hysteresis | - | 1 | - | - | dB | - |
Pin Num. | Name | Function | Plug Seq. | Notes | ||||
1 | VeeT | Transmitter ground | 1 | Note 5 | ||||
2 | TX fault | Transmitter fault indication | 3 | Note 1 | ||||
3 | TX disable | Transmitter disable | 3 | Note 2, module disables on high or open | ||||
4 | SDA | Module definition 2 | 3 | 2-Wire serial interface data line. | ||||
5 | SCL | Module definition 1 | 3 | 2-Wire serial interface clock. | ||||
6 | MOD_ABS | Module definition 0 | 3 | Note 3 | ||||
7 | RS0 | RX rate select(LVTTL). | 3 | No function implement | ||||
8 | LOS | Loss of signal | 3 | Note 4 | ||||
9 | RS1 | TX rate select(LVTTL). | 1 | No function implement | ||||
10 | VeeR | Receiver ground | 1 | Note 5 | ||||
11 | VeeR | Receiver ground | 1 | Note 5 | ||||
12 | RD- | Inv. received data out | 3 | Note 6 | ||||
13 | RD+ | Received data out | 3 | Note 6 | ||||
14 | VeeR | Receiver ground | 1 | Note 5 | ||||
15 | VccR | Receiver power | 2 | 3.3V ± 5%, Note 7 | ||||
16 | VccT | Transmitter power | 2 | 3.3V ± 5%, Note 7 | ||||
17 | VeeT | Transmitter ground | 1 | Note 5 | ||||
18 | TD+ | Transmit data in | 3 | Note 8 | ||||
19 | TD- | Inv. transmit data in | 3 | Note 8 | ||||
20 | VeeT | Transmitter ground | 1 | 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 – 10KΩ 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 100Ω differential lines which should be terminated with 100Ω (differential) at the 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 350 and 700 mV differential (175 –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 430mA. Recommended host board power supply filtering is shown below. 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 100Ω 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).