SlideShare a Scribd company logo
1 of 8
Download to read offline
SFP-10G-CWDM-1530-10-T02#141042
Guilin GLsun Science and Tech Group Co., LTD.
Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com
- 1 -
10G 1530nm 10km CDWM SFP+ Transceiver
Specification Revision Record
Date Version Page Revision Description Prepare Approve
20200601 1.0 Zhang S
All right reserved by Guilin GLsun Science and Tech Group Co., LTD. Without written permission,
any unit or individual can’t reproduce, copy or use it for any commercial purpose.
Product 10G 1530nm 10km CDWM SFP+ Transceiver
Model SFP-10G-CWDM-1530-10-T02
File No. SFP-10G-CWDM-1530-10-T02#141042
Version 1.0
Issuing Date 2020-6-1
- 1 -
SFP-10G-CWDM-1530-10-T02#141042
Guilin GLsun Science and Tech Group Co., LTD.
Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com
- 2 -
Product Description
SFP-10G-CWDM-1530-10-T02 CWDM DFB 10Gbps SFP+ transceiver is designed to transmit and receive
optical data over single mode optical fiber for link length 10km. This transceiver consists of two sections:
The transmitter section incorporates a CWDM DFB laser. And the receiver section consists of a PIN
photodiode integrated with a TIA. All modules satisfy class I laser safety requirements. Digital diagnostics
functions are available via a 2-wire serial interface, as specified in SFF-8472, 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.
Product Feature
Supports 9.95 to 11.5Gb/s bit rates
Duplex LC connector
Hot pluggable SFP+ footprint
Uncooled 1530nm DFB transmitter, PIN photo-detector
Applicable for 10km SMF connection
Low power consumption, < 1W
Digital Diagnostic Monitor Interface
Optical interface compliant to IEEE 802.3ae 10GBASE-LR
Electrical interface compliant to SFF-8431
Operating case temperature: 0 to 70 °C (commercial)
Application
10GBASE-LR/LW at 10.3125Gbps
10G Ethernet
Other optical links
Functional Diagram
SFP-10G-CWDM-1530-10-T02#141042
Guilin GLsun Science and Tech Group Co., LTD.
Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com
- 3 -
Absolute Maximum Ratings
Parameter Symbol Min Max Unit Note
Supply Voltage Vcc -0.5 4.0 V
Storage Temperature Ts -40 85 °C
Relative Humidity RH 0 85 %
Note: Stress in excess of the maximum absolute ratings can cause permanent damage to the transceiver.
General Operating Characteristic
Parameter Symbol Min. Typ Max. Unit Note
Data Rate DR 9.95 10.3125 Gb/s
Supply Voltage Vcc 3.13 3.3 3.47 V
Supply Current Icc 300 mA
Operating Case
Temp.
Tc 0 70
°C
TI -40 85
Electrical Characteristics (TOP(C) = 0 to 70 ℃, TOP(I) =-40 to 85 ℃,VCC = 3.13 to 3.47 V)
Parameter Symbol Min. Typ Max. Unit Note
Transmitter
Differential data
input swing
VIN,PP 180 700 mVpp 1
Transmit Disable
Voltage
VD VCC-0.8 Vcc
V
Transmit Enable
Voltage VEN Vee Vee+0.8
Input differential
impedance
Rin 100 Ω
Receiver
Differential data
output swing Vout,pp 300 850 mVpp 2
Output rise time
and fall time
Tr, Tf 28 2.0 Vcc+0.3 Ps 3
LOS asserted VLOS_F VCC-0.8 Vcc V 4
LOS de-asserted VLOS_N Vee Vee+0.8 V 4
SFP-10G-CWDM-1530-10-T02#141042
Guilin GLsun Science and Tech Group Co., LTD.
Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com
- 4 -
Note:
1. Connected directly to TX data input pins. AC coupling from pins into laser driver IC.
2. Into 100Ω differential termination.
3. 20 – 80%. Measured with Module Compliance Test Board and OMA test pattern. Use of four 1’s and
four 0’s sequence in the PRBS 9 is an acceptable alternative.
4. LOS is an open collector output. Should be pulled up with 4.7kΩ – 10kΩ on the host board. Normal
operation is logic 0; loss of signal is logic 1.
Optical Characteristics (TOP(C) = 0 to 70 ℃, TOP(I) =-40 to 85 ℃,VCC = 3.13 to 3.47 V)
Parameter Symbol Min. Typ Max. Unit Note
Transmitter
Operating Wavelength λ λ-7.5nm λ λ+7.5nm nm 1
Ave. output power
(Enabled)
PAVE -6 0 dBm 2
Side-Mode
Suppression Ratio
SMSR 30 dB
Extinction Ratio ER 4 5 dB
RMS spectral width Δλ 1 nm
Rise/Fall time
(20%~80%)
Tr/Tf 50 ps
Dispersion penalty TDP 3.2 dB
Relative Intensity
Noise
RIN -128 dB/Hz
Output Optical Eye Compliant with IEEE 0802.3ae
Receiver
Operating Wavelength λ 1260 1620 nm
Receiver Sensitivity PSEN -14.4 dBm 3
Overload PAVE +0.5 dBm
Receiver Reflectance Rrx -12 dB
LOS Assert Pa -30 dBm
LOS De-assert Pd -17 dBm
LOS Hysteresis Pd-Pa 0.5 4 dB
SFP-10G-CWDM-1530-10-T02#141042
Guilin GLsun Science and Tech Group Co., LTD.
Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com
- 5 -
Notes:
1. The wavelength λ =1270nm~1610nm, Total 18 wavelengths, 20nm spacing
2. Measured at 10.3125b/s with PRBS 231 – 1
NRZ test pattern.
3. Under the ER worst =5, measured at 10.3125 Gb/s with PRBS 231 - 1
NRZ test pattern for BER <
1x10-12
Pin Definition And Functions
Pin Symbol Name/Description
1 VEET [1] Transmitter Ground
2 Tx_FAULT [2] Transmitter Fault
3 Tx_DIS [3] Transmitter Disable. Laser output disabled on high or open
4 SDA [2] 2-wire Serial Interface Data Line
5 SCL [2] 2-wire Serial Interface Clock Line
6 MOD_ABS [4] Module Absent. Grounded within the module
7 RS0 Rate Select 0
8 RX_LOS [2] Loss of Signal indication. Logic 0 indicates normal operation
9 RS1 [5] Rate Select 1
10 VEER [1] Receiver Ground
11 VEER [1] Receiver Ground
12 RD- Receiver Inverted DATA out. AC Coupled
13 RD+ Receiver DATA out. AC Coupled
SFP-10G-CWDM-1530-10-T02#141042
Guilin GLsun Science and Tech Group Co., LTD.
Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com
- 6 -
14 VEER [1] Receiver Ground
15 VCCR Receiver Power Supply
16 VCCT Transmitter Power Supply
17 VEET [1] Transmitter Ground
18 TD+ Transmitter DATA in. AC Coupled
19 TD- Transmitter Inverted DATA in. AC Coupled
20 VEET [1] Transmitter Ground
Notes:
1. Module circuit ground is isolated from module chassis ground within the module.
2. Should be pulled up with 4.7k – 10k ohms on host board to a voltage between 3.15V and 3.6V.
3. Tx_Disable is an input contact with a 4.7 kΩ to 10 kΩ pullup to VccT inside the module.
4. Mod_ABS is connected to VeeT or VeeR in the SFP+ module. The host may pull this contact up to
Vcc_Host with a resistor in the range 4.7 kΩ to10 kΩ.Mod_ABS is asserted “High” when the SFP+
module is physically absent from a host slot.
Serial Interface for ID and Digital Diagnostic Monitor
The SFP-10G-CWDM-1530-10-T02 transceiver support the 2-wire serial communication protocol as
defined in the SFP+ MSA. The standard SFP+ serial ID provides access to identification information that
describes the transceiver’s capabilities, standard interfaces, manufacturer, and other information.
Additionally, This SFP+ transceivers provide an 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 EEPROM that is accessible over a 2-wire serial
interface at the 8 bit address 1010000X(A0h), so the originally monitoring interface makes use of the 8 bit
address(A2h), so the originally defined serial ID memory map remains unchanged. The structure of the
memory map is shown in Table1.
Table 1. Digital Diagnostic Memory Map (Specific Data Field Descriptions)
SFP-10G-CWDM-1530-10-T02#141042
Guilin GLsun Science and Tech Group Co., LTD.
Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com
- 7 -
Digital Diagnostic Specifications
The SFP-10G-CWDM-1530-10-T02 transceivers can be used in host systems that require
either internally or externally calibrated digital diagnostics.
Parameter Symbol Units Min. Max. Accuracy Note
Transceiver temperature DTemp-E ºC -45 +90 ±5ºC 1,2
Transceiver supply
voltage DVoltage V 2.8 4.0 ±3%
Transmitter bias current DBias mA 0 127 ±10% 3
Transmitter output power DTx-Power dBm -8 +2 ±2dB
Receiver average input
power
DRx-Power dBm -16 0 ±2dB
Notes:
1. When Operating temp.=0~70 ºC,the range will be min=-5,Max=+75
2. Internally measured
3. The accuracy of the Tx bias current is 10% of the actual current from the laser driver to the laser
Typical Interface Circuit
SFP-10G-CWDM-1530-10-T02#141042
Guilin GLsun Science and Tech Group Co., LTD.
Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com
- 8 -
Recommended Power Supply Filter
Note:
Inductors with DC resistance of less than 1Ω 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 30 mA greater than
the steady state value
Package Dimensions
Ordering Information
Part Number Description
SFP-10G-CWDM-1530-10
SFP+, 9.95 to 11.3Gb/s, CWDM, 10km, 0~70℃, with Digital
Diagnostic Monitor

More Related Content

Similar to sfp-10g-cwdm-1530nm-10km-optical-transceiver-141042.pdf

Similar to sfp-10g-cwdm-1530nm-10km-optical-transceiver-141042.pdf (20)

sfp-10g-cwdm-1610nm-10kmfiber-optical-module-141046.pdf
sfp-10g-cwdm-1610nm-10kmfiber-optical-module-141046.pdfsfp-10g-cwdm-1610nm-10kmfiber-optical-module-141046.pdf
sfp-10g-cwdm-1610nm-10kmfiber-optical-module-141046.pdf
 
sfp-10g-cwdm-1390nm-10km-transceiver-module-141035.pdf
sfp-10g-cwdm-1390nm-10km-transceiver-module-141035.pdfsfp-10g-cwdm-1390nm-10km-transceiver-module-141035.pdf
sfp-10g-cwdm-1390nm-10km-transceiver-module-141035.pdf
 
sfp-10g-cwdm-1530nm-80km-transceiver-module-141058.pdf
sfp-10g-cwdm-1530nm-80km-transceiver-module-141058.pdfsfp-10g-cwdm-1530nm-80km-transceiver-module-141058.pdf
sfp-10g-cwdm-1530nm-80km-transceiver-module-141058.pdf
 
sfp-10g-cwdm-1530nm-40km-optical-module-141050.pdf
sfp-10g-cwdm-1530nm-40km-optical-module-141050.pdfsfp-10g-cwdm-1530nm-40km-optical-module-141050.pdf
sfp-10g-cwdm-1530nm-40km-optical-module-141050.pdf
 
sfp-10g-cwdm-1570nm-80km-optical-module-141060.pdf
sfp-10g-cwdm-1570nm-80km-optical-module-141060.pdfsfp-10g-cwdm-1570nm-80km-optical-module-141060.pdf
sfp-10g-cwdm-1570nm-80km-optical-module-141060.pdf
 
sfp-10g-cwdm-1570nm-40km-transceiver-module-141052.pdf
sfp-10g-cwdm-1570nm-40km-transceiver-module-141052.pdfsfp-10g-cwdm-1570nm-40km-transceiver-module-141052.pdf
sfp-10g-cwdm-1570nm-40km-transceiver-module-141052.pdf
 
sfp-10g-cwdm-1450nm-10km-optical-module-141038.pdf
sfp-10g-cwdm-1450nm-10km-optical-module-141038.pdfsfp-10g-cwdm-1450nm-10km-optical-module-141038.pdf
sfp-10g-cwdm-1450nm-10km-optical-module-141038.pdf
 
sfp-10g-cwdm-1430nm-10km-optical-module-141037.pdf
sfp-10g-cwdm-1430nm-10km-optical-module-141037.pdfsfp-10g-cwdm-1430nm-10km-optical-module-141037.pdf
sfp-10g-cwdm-1430nm-10km-optical-module-141037.pdf
 
sfp-10g-cwdm-1510nm-80km-fiber-optical-module-141057.pdf
sfp-10g-cwdm-1510nm-80km-fiber-optical-module-141057.pdfsfp-10g-cwdm-1510nm-80km-fiber-optical-module-141057.pdf
sfp-10g-cwdm-1510nm-80km-fiber-optical-module-141057.pdf
 
sfp-10g-cwdm-1290nm-10km-transceiver-module-141030.pdf
sfp-10g-cwdm-1290nm-10km-transceiver-module-141030.pdfsfp-10g-cwdm-1290nm-10km-transceiver-module-141030.pdf
sfp-10g-cwdm-1290nm-10km-transceiver-module-141030.pdf
 
sfp-10g-cwdm-1470nm-10km-optical-module-141039.pdf
sfp-10g-cwdm-1470nm-10km-optical-module-141039.pdfsfp-10g-cwdm-1470nm-10km-optical-module-141039.pdf
sfp-10g-cwdm-1470nm-10km-optical-module-141039.pdf
 
sfp-10g-cwdm-1490nm-40km-fiber-optical-transceiver-141048.pdf
sfp-10g-cwdm-1490nm-40km-fiber-optical-transceiver-141048.pdfsfp-10g-cwdm-1490nm-40km-fiber-optical-transceiver-141048.pdf
sfp-10g-cwdm-1490nm-40km-fiber-optical-transceiver-141048.pdf
 
sfp-10g-cwdm-1550nm-80km-transceiver-module-141059.pdf
sfp-10g-cwdm-1550nm-80km-transceiver-module-141059.pdfsfp-10g-cwdm-1550nm-80km-transceiver-module-141059.pdf
sfp-10g-cwdm-1550nm-80km-transceiver-module-141059.pdf
 
sfp-10g-cwdm-1590nm-80km-optical-module-141061.pdf
sfp-10g-cwdm-1590nm-80km-optical-module-141061.pdfsfp-10g-cwdm-1590nm-80km-optical-module-141061.pdf
sfp-10g-cwdm-1590nm-80km-optical-module-141061.pdf
 
sfp-10g-cwdm-1610nm-80km-optical-module-141062.pdf
sfp-10g-cwdm-1610nm-80km-optical-module-141062.pdfsfp-10g-cwdm-1610nm-80km-optical-module-141062.pdf
sfp-10g-cwdm-1610nm-80km-optical-module-141062.pdf
 
sfp-10g-cwdm-1590nm-40km-fiber-optical-module-141053.pdf
sfp-10g-cwdm-1590nm-40km-fiber-optical-module-141053.pdfsfp-10g-cwdm-1590nm-40km-fiber-optical-module-141053.pdf
sfp-10g-cwdm-1590nm-40km-fiber-optical-module-141053.pdf
 
sfp-10g-cwdm-1510nm-40km-transceiver-module-141049.pdf
sfp-10g-cwdm-1510nm-40km-transceiver-module-141049.pdfsfp-10g-cwdm-1510nm-40km-transceiver-module-141049.pdf
sfp-10g-cwdm-1510nm-40km-transceiver-module-141049.pdf
 
sfp-10g-cwdm-1550nm-40km-transceiver-module-141051.pdf
sfp-10g-cwdm-1550nm-40km-transceiver-module-141051.pdfsfp-10g-cwdm-1550nm-40km-transceiver-module-141051.pdf
sfp-10g-cwdm-1550nm-40km-transceiver-module-141051.pdf
 
sfp-10g-cwdm-1490nm-10km-transceiver-module-141040.pdf
sfp-10g-cwdm-1490nm-10km-transceiver-module-141040.pdfsfp-10g-cwdm-1490nm-10km-transceiver-module-141040.pdf
sfp-10g-cwdm-1490nm-10km-transceiver-module-141040.pdf
 
sfp-10g-cwdm-1470nm-80km-optical-module-141055.pdf
sfp-10g-cwdm-1470nm-80km-optical-module-141055.pdfsfp-10g-cwdm-1470nm-80km-optical-module-141055.pdf
sfp-10g-cwdm-1470nm-80km-optical-module-141055.pdf
 

More from GLsun Mall

osw-1x8-multi-channel-rotary-optical-switch-data-sheet-550401.pdf
osw-1x8-multi-channel-rotary-optical-switch-data-sheet-550401.pdfosw-1x8-multi-channel-rotary-optical-switch-data-sheet-550401.pdf
osw-1x8-multi-channel-rotary-optical-switch-data-sheet-550401.pdf
GLsun Mall
 
mems-s1-1x8-mems-optical-switch-data-sheet-540301.pdf
mems-s1-1x8-mems-optical-switch-data-sheet-540301.pdfmems-s1-1x8-mems-optical-switch-data-sheet-540301.pdf
mems-s1-1x8-mems-optical-switch-data-sheet-540301.pdf
GLsun Mall
 
mems-8x8-optic-switch-module-data-sheet-540401.pdf
mems-8x8-optic-switch-module-data-sheet-540401.pdfmems-8x8-optic-switch-module-data-sheet-540401.pdf
mems-8x8-optic-switch-module-data-sheet-540401.pdf
GLsun Mall
 

More from GLsun Mall (20)

to56-10g-dfb-laser-diode-1330nm-data-sheet-602003.pdf
to56-10g-dfb-laser-diode-1330nm-data-sheet-602003.pdfto56-10g-dfb-laser-diode-1330nm-data-sheet-602003.pdf
to56-10g-dfb-laser-diode-1330nm-data-sheet-602003.pdf
 
to56-10g-dfb-laser-diode-1310nm-data-sheet-602002.pdf
to56-10g-dfb-laser-diode-1310nm-data-sheet-602002.pdfto56-10g-dfb-laser-diode-1310nm-data-sheet-602002.pdf
to56-10g-dfb-laser-diode-1310nm-data-sheet-602002.pdf
 
to56-2.5g-dfb-laser-diode-1310nm-data-sheet-602001.pdf
to56-2.5g-dfb-laser-diode-1310nm-data-sheet-602001.pdfto56-2.5g-dfb-laser-diode-1310nm-data-sheet-602001.pdf
to56-2.5g-dfb-laser-diode-1310nm-data-sheet-602001.pdf
 
osw-2x4-cascade-optical-switch-data-sheet-550201.pdf
osw-2x4-cascade-optical-switch-data-sheet-550201.pdfosw-2x4-cascade-optical-switch-data-sheet-550201.pdf
osw-2x4-cascade-optical-switch-data-sheet-550201.pdf
 
osw-1x16-cascade-optical-switch-data-sheet-550101.pdf
osw-1x16-cascade-optical-switch-data-sheet-550101.pdfosw-1x16-cascade-optical-switch-data-sheet-550101.pdf
osw-1x16-cascade-optical-switch-data-sheet-550101.pdf
 
osw-1x8-multi-channel-rotary-optical-switch-data-sheet-550401.pdf
osw-1x8-multi-channel-rotary-optical-switch-data-sheet-550401.pdfosw-1x8-multi-channel-rotary-optical-switch-data-sheet-550401.pdf
osw-1x8-multi-channel-rotary-optical-switch-data-sheet-550401.pdf
 
mems-s1-1x8-mems-optical-switch-data-sheet-540301.pdf
mems-s1-1x8-mems-optical-switch-data-sheet-540301.pdfmems-s1-1x8-mems-optical-switch-data-sheet-540301.pdf
mems-s1-1x8-mems-optical-switch-data-sheet-540301.pdf
 
mems-8x8-optic-switch-module-data-sheet-540401.pdf
mems-8x8-optic-switch-module-data-sheet-540401.pdfmems-8x8-optic-switch-module-data-sheet-540401.pdf
mems-8x8-optic-switch-module-data-sheet-540401.pdf
 
fsw-2x2b-micro-optical-switch-510401.doc
fsw-2x2b-micro-optical-switch-510401.docfsw-2x2b-micro-optical-switch-510401.doc
fsw-2x2b-micro-optical-switch-510401.doc
 
fsw-2x2a-micro-optical-switch-510901.doc
fsw-2x2a-micro-optical-switch-510901.docfsw-2x2a-micro-optical-switch-510901.doc
fsw-2x2a-micro-optical-switch-510901.doc
 
fsw-1x2h-micro-optical-switch-510301.doc
fsw-1x2h-micro-optical-switch-510301.docfsw-1x2h-micro-optical-switch-510301.doc
fsw-1x2h-micro-optical-switch-510301.doc
 
fsw-1x2-micro-fiber-optical-switch-510201.doc
fsw-1x2-micro-fiber-optical-switch-510201.docfsw-1x2-micro-fiber-optical-switch-510201.doc
fsw-1x2-micro-fiber-optical-switch-510201.doc
 
fsw-1x1-micro-fiber-optical-switch-510101.doc
fsw-1x1-micro-fiber-optical-switch-510101.docfsw-1x1-micro-fiber-optical-switch-510101.doc
fsw-1x1-micro-fiber-optical-switch-510101.doc
 
multi-channel-optical-link-selector-data-sheet-580501.pdf
multi-channel-optical-link-selector-data-sheet-580501.pdfmulti-channel-optical-link-selector-data-sheet-580501.pdf
multi-channel-optical-link-selector-data-sheet-580501.pdf
 
2u-d1x32-rackmount-optical-switch-data-sheet-580202.pdf
2u-d1x32-rackmount-optical-switch-data-sheet-580202.pdf2u-d1x32-rackmount-optical-switch-data-sheet-580202.pdf
2u-d1x32-rackmount-optical-switch-data-sheet-580202.pdf
 
2u-1x64-rackmount-optical-switch-data-sheet-580201.pdf
2u-1x64-rackmount-optical-switch-data-sheet-580201.pdf2u-1x64-rackmount-optical-switch-data-sheet-580201.pdf
2u-1x64-rackmount-optical-switch-data-sheet-580201.pdf
 
1u-n-1x1-optical-switch-data-sheet-580601.pdf
1u-n-1x1-optical-switch-data-sheet-580601.pdf1u-n-1x1-optical-switch-data-sheet-580601.pdf
1u-n-1x1-optical-switch-data-sheet-580601.pdf
 
1u-d1x8-rackmount-optical-switch-data-sheet-580103.pdf
1u-d1x8-rackmount-optical-switch-data-sheet-580103.pdf1u-d1x8-rackmount-optical-switch-data-sheet-580103.pdf
1u-d1x8-rackmount-optical-switch-data-sheet-580103.pdf
 
1u-1x16-rack-mounted-optical-switch-data-sheet-580102.pdf
1u-1x16-rack-mounted-optical-switch-data-sheet-580102.pdf1u-1x16-rack-mounted-optical-switch-data-sheet-580102.pdf
1u-1x16-rack-mounted-optical-switch-data-sheet-580102.pdf
 
1u-1x8-rack-optical-switch-data-sheet-580101.pdf
1u-1x8-rack-optical-switch-data-sheet-580101.pdf1u-1x8-rack-optical-switch-data-sheet-580101.pdf
1u-1x8-rack-optical-switch-data-sheet-580101.pdf
 

Recently uploaded

Hyatt driving innovation and exceptional customer experiences with FIDO passw...
Hyatt driving innovation and exceptional customer experiences with FIDO passw...Hyatt driving innovation and exceptional customer experiences with FIDO passw...
Hyatt driving innovation and exceptional customer experiences with FIDO passw...
FIDO Alliance
 
Microsoft BitLocker Bypass Attack Method.pdf
Microsoft BitLocker Bypass Attack Method.pdfMicrosoft BitLocker Bypass Attack Method.pdf
Microsoft BitLocker Bypass Attack Method.pdf
Overkill Security
 
Easier, Faster, and More Powerful – Alles Neu macht der Mai -Wir durchleuchte...
Easier, Faster, and More Powerful – Alles Neu macht der Mai -Wir durchleuchte...Easier, Faster, and More Powerful – Alles Neu macht der Mai -Wir durchleuchte...
Easier, Faster, and More Powerful – Alles Neu macht der Mai -Wir durchleuchte...
panagenda
 
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptxHarnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
FIDO Alliance
 
CORS (Kitworks Team Study 양다윗 발표자료 240510)
CORS (Kitworks Team Study 양다윗 발표자료 240510)CORS (Kitworks Team Study 양다윗 발표자료 240510)
CORS (Kitworks Team Study 양다윗 발표자료 240510)
Wonjun Hwang
 

Recently uploaded (20)

ERP Contender Series: Acumatica vs. Sage Intacct
ERP Contender Series: Acumatica vs. Sage IntacctERP Contender Series: Acumatica vs. Sage Intacct
ERP Contender Series: Acumatica vs. Sage Intacct
 
JohnPollard-hybrid-app-RailsConf2024.pptx
JohnPollard-hybrid-app-RailsConf2024.pptxJohnPollard-hybrid-app-RailsConf2024.pptx
JohnPollard-hybrid-app-RailsConf2024.pptx
 
Introduction to use of FHIR Documents in ABDM
Introduction to use of FHIR Documents in ABDMIntroduction to use of FHIR Documents in ABDM
Introduction to use of FHIR Documents in ABDM
 
How to Check CNIC Information Online with Pakdata cf
How to Check CNIC Information Online with Pakdata cfHow to Check CNIC Information Online with Pakdata cf
How to Check CNIC Information Online with Pakdata cf
 
Observability Concepts EVERY Developer Should Know (DevOpsDays Seattle)
Observability Concepts EVERY Developer Should Know (DevOpsDays Seattle)Observability Concepts EVERY Developer Should Know (DevOpsDays Seattle)
Observability Concepts EVERY Developer Should Know (DevOpsDays Seattle)
 
Hyatt driving innovation and exceptional customer experiences with FIDO passw...
Hyatt driving innovation and exceptional customer experiences with FIDO passw...Hyatt driving innovation and exceptional customer experiences with FIDO passw...
Hyatt driving innovation and exceptional customer experiences with FIDO passw...
 
Microsoft BitLocker Bypass Attack Method.pdf
Microsoft BitLocker Bypass Attack Method.pdfMicrosoft BitLocker Bypass Attack Method.pdf
Microsoft BitLocker Bypass Attack Method.pdf
 
Easier, Faster, and More Powerful – Alles Neu macht der Mai -Wir durchleuchte...
Easier, Faster, and More Powerful – Alles Neu macht der Mai -Wir durchleuchte...Easier, Faster, and More Powerful – Alles Neu macht der Mai -Wir durchleuchte...
Easier, Faster, and More Powerful – Alles Neu macht der Mai -Wir durchleuchte...
 
Cyber Insurance - RalphGilot - Embry-Riddle Aeronautical University.pptx
Cyber Insurance - RalphGilot - Embry-Riddle Aeronautical University.pptxCyber Insurance - RalphGilot - Embry-Riddle Aeronautical University.pptx
Cyber Insurance - RalphGilot - Embry-Riddle Aeronautical University.pptx
 
AI+A11Y 11MAY2024 HYDERBAD GAAD 2024 - HelloA11Y (11 May 2024)
AI+A11Y 11MAY2024 HYDERBAD GAAD 2024 - HelloA11Y (11 May 2024)AI+A11Y 11MAY2024 HYDERBAD GAAD 2024 - HelloA11Y (11 May 2024)
AI+A11Y 11MAY2024 HYDERBAD GAAD 2024 - HelloA11Y (11 May 2024)
 
AI in Action: Real World Use Cases by Anitaraj
AI in Action: Real World Use Cases by AnitarajAI in Action: Real World Use Cases by Anitaraj
AI in Action: Real World Use Cases by Anitaraj
 
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptxHarnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
Harnessing Passkeys in the Battle Against AI-Powered Cyber Threats.pptx
 
Top 10 CodeIgniter Development Companies
Top 10 CodeIgniter Development CompaniesTop 10 CodeIgniter Development Companies
Top 10 CodeIgniter Development Companies
 
Vector Search @ sw2con for slideshare.pptx
Vector Search @ sw2con for slideshare.pptxVector Search @ sw2con for slideshare.pptx
Vector Search @ sw2con for slideshare.pptx
 
Human Expert Website Manual WCAG 2.0 2.1 2.2 Audit - Digital Accessibility Au...
Human Expert Website Manual WCAG 2.0 2.1 2.2 Audit - Digital Accessibility Au...Human Expert Website Manual WCAG 2.0 2.1 2.2 Audit - Digital Accessibility Au...
Human Expert Website Manual WCAG 2.0 2.1 2.2 Audit - Digital Accessibility Au...
 
Working together SRE & Platform Engineering
Working together SRE & Platform EngineeringWorking together SRE & Platform Engineering
Working together SRE & Platform Engineering
 
CORS (Kitworks Team Study 양다윗 발표자료 240510)
CORS (Kitworks Team Study 양다윗 발표자료 240510)CORS (Kitworks Team Study 양다윗 발표자료 240510)
CORS (Kitworks Team Study 양다윗 발표자료 240510)
 
Simplifying Mobile A11y Presentation.pptx
Simplifying Mobile A11y Presentation.pptxSimplifying Mobile A11y Presentation.pptx
Simplifying Mobile A11y Presentation.pptx
 
الأمن السيبراني - ما لا يسع للمستخدم جهله
الأمن السيبراني - ما لا يسع للمستخدم جهلهالأمن السيبراني - ما لا يسع للمستخدم جهله
الأمن السيبراني - ما لا يسع للمستخدم جهله
 
How to Check GPS Location with a Live Tracker in Pakistan
How to Check GPS Location with a Live Tracker in PakistanHow to Check GPS Location with a Live Tracker in Pakistan
How to Check GPS Location with a Live Tracker in Pakistan
 

sfp-10g-cwdm-1530nm-10km-optical-transceiver-141042.pdf

  • 1. SFP-10G-CWDM-1530-10-T02#141042 Guilin GLsun Science and Tech Group Co., LTD. Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com - 1 - 10G 1530nm 10km CDWM SFP+ Transceiver Specification Revision Record Date Version Page Revision Description Prepare Approve 20200601 1.0 Zhang S All right reserved by Guilin GLsun Science and Tech Group Co., LTD. Without written permission, any unit or individual can’t reproduce, copy or use it for any commercial purpose. Product 10G 1530nm 10km CDWM SFP+ Transceiver Model SFP-10G-CWDM-1530-10-T02 File No. SFP-10G-CWDM-1530-10-T02#141042 Version 1.0 Issuing Date 2020-6-1 - 1 -
  • 2. SFP-10G-CWDM-1530-10-T02#141042 Guilin GLsun Science and Tech Group Co., LTD. Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com - 2 - Product Description SFP-10G-CWDM-1530-10-T02 CWDM DFB 10Gbps SFP+ transceiver is designed to transmit and receive optical data over single mode optical fiber for link length 10km. This transceiver consists of two sections: The transmitter section incorporates a CWDM DFB laser. And the receiver section consists of a PIN photodiode integrated with a TIA. All modules satisfy class I laser safety requirements. Digital diagnostics functions are available via a 2-wire serial interface, as specified in SFF-8472, 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. Product Feature Supports 9.95 to 11.5Gb/s bit rates Duplex LC connector Hot pluggable SFP+ footprint Uncooled 1530nm DFB transmitter, PIN photo-detector Applicable for 10km SMF connection Low power consumption, < 1W Digital Diagnostic Monitor Interface Optical interface compliant to IEEE 802.3ae 10GBASE-LR Electrical interface compliant to SFF-8431 Operating case temperature: 0 to 70 °C (commercial) Application 10GBASE-LR/LW at 10.3125Gbps 10G Ethernet Other optical links Functional Diagram
  • 3. SFP-10G-CWDM-1530-10-T02#141042 Guilin GLsun Science and Tech Group Co., LTD. Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com - 3 - Absolute Maximum Ratings Parameter Symbol Min Max Unit Note Supply Voltage Vcc -0.5 4.0 V Storage Temperature Ts -40 85 °C Relative Humidity RH 0 85 % Note: Stress in excess of the maximum absolute ratings can cause permanent damage to the transceiver. General Operating Characteristic Parameter Symbol Min. Typ Max. Unit Note Data Rate DR 9.95 10.3125 Gb/s Supply Voltage Vcc 3.13 3.3 3.47 V Supply Current Icc 300 mA Operating Case Temp. Tc 0 70 °C TI -40 85 Electrical Characteristics (TOP(C) = 0 to 70 ℃, TOP(I) =-40 to 85 ℃,VCC = 3.13 to 3.47 V) Parameter Symbol Min. Typ Max. Unit Note Transmitter Differential data input swing VIN,PP 180 700 mVpp 1 Transmit Disable Voltage VD VCC-0.8 Vcc V Transmit Enable Voltage VEN Vee Vee+0.8 Input differential impedance Rin 100 Ω Receiver Differential data output swing Vout,pp 300 850 mVpp 2 Output rise time and fall time Tr, Tf 28 2.0 Vcc+0.3 Ps 3 LOS asserted VLOS_F VCC-0.8 Vcc V 4 LOS de-asserted VLOS_N Vee Vee+0.8 V 4
  • 4. SFP-10G-CWDM-1530-10-T02#141042 Guilin GLsun Science and Tech Group Co., LTD. Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com - 4 - Note: 1. Connected directly to TX data input pins. AC coupling from pins into laser driver IC. 2. Into 100Ω differential termination. 3. 20 – 80%. Measured with Module Compliance Test Board and OMA test pattern. Use of four 1’s and four 0’s sequence in the PRBS 9 is an acceptable alternative. 4. LOS is an open collector output. Should be pulled up with 4.7kΩ – 10kΩ on the host board. Normal operation is logic 0; loss of signal is logic 1. Optical Characteristics (TOP(C) = 0 to 70 ℃, TOP(I) =-40 to 85 ℃,VCC = 3.13 to 3.47 V) Parameter Symbol Min. Typ Max. Unit Note Transmitter Operating Wavelength λ λ-7.5nm λ λ+7.5nm nm 1 Ave. output power (Enabled) PAVE -6 0 dBm 2 Side-Mode Suppression Ratio SMSR 30 dB Extinction Ratio ER 4 5 dB RMS spectral width Δλ 1 nm Rise/Fall time (20%~80%) Tr/Tf 50 ps Dispersion penalty TDP 3.2 dB Relative Intensity Noise RIN -128 dB/Hz Output Optical Eye Compliant with IEEE 0802.3ae Receiver Operating Wavelength λ 1260 1620 nm Receiver Sensitivity PSEN -14.4 dBm 3 Overload PAVE +0.5 dBm Receiver Reflectance Rrx -12 dB LOS Assert Pa -30 dBm LOS De-assert Pd -17 dBm LOS Hysteresis Pd-Pa 0.5 4 dB
  • 5. SFP-10G-CWDM-1530-10-T02#141042 Guilin GLsun Science and Tech Group Co., LTD. Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com - 5 - Notes: 1. The wavelength λ =1270nm~1610nm, Total 18 wavelengths, 20nm spacing 2. Measured at 10.3125b/s with PRBS 231 – 1 NRZ test pattern. 3. Under the ER worst =5, measured at 10.3125 Gb/s with PRBS 231 - 1 NRZ test pattern for BER < 1x10-12 Pin Definition And Functions Pin Symbol Name/Description 1 VEET [1] Transmitter Ground 2 Tx_FAULT [2] Transmitter Fault 3 Tx_DIS [3] Transmitter Disable. Laser output disabled on high or open 4 SDA [2] 2-wire Serial Interface Data Line 5 SCL [2] 2-wire Serial Interface Clock Line 6 MOD_ABS [4] Module Absent. Grounded within the module 7 RS0 Rate Select 0 8 RX_LOS [2] Loss of Signal indication. Logic 0 indicates normal operation 9 RS1 [5] Rate Select 1 10 VEER [1] Receiver Ground 11 VEER [1] Receiver Ground 12 RD- Receiver Inverted DATA out. AC Coupled 13 RD+ Receiver DATA out. AC Coupled
  • 6. SFP-10G-CWDM-1530-10-T02#141042 Guilin GLsun Science and Tech Group Co., LTD. Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com - 6 - 14 VEER [1] Receiver Ground 15 VCCR Receiver Power Supply 16 VCCT Transmitter Power Supply 17 VEET [1] Transmitter Ground 18 TD+ Transmitter DATA in. AC Coupled 19 TD- Transmitter Inverted DATA in. AC Coupled 20 VEET [1] Transmitter Ground Notes: 1. Module circuit ground is isolated from module chassis ground within the module. 2. Should be pulled up with 4.7k – 10k ohms on host board to a voltage between 3.15V and 3.6V. 3. Tx_Disable is an input contact with a 4.7 kΩ to 10 kΩ pullup to VccT inside the module. 4. Mod_ABS is connected to VeeT or VeeR in the SFP+ module. The host may pull this contact up to Vcc_Host with a resistor in the range 4.7 kΩ to10 kΩ.Mod_ABS is asserted “High” when the SFP+ module is physically absent from a host slot. Serial Interface for ID and Digital Diagnostic Monitor The SFP-10G-CWDM-1530-10-T02 transceiver support the 2-wire serial communication protocol as defined in the SFP+ MSA. The standard SFP+ serial ID provides access to identification information that describes the transceiver’s capabilities, standard interfaces, manufacturer, and other information. Additionally, This SFP+ transceivers provide an 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 EEPROM that is accessible over a 2-wire serial interface at the 8 bit address 1010000X(A0h), so the originally monitoring interface makes use of the 8 bit address(A2h), so the originally defined serial ID memory map remains unchanged. The structure of the memory map is shown in Table1. Table 1. Digital Diagnostic Memory Map (Specific Data Field Descriptions)
  • 7. SFP-10G-CWDM-1530-10-T02#141042 Guilin GLsun Science and Tech Group Co., LTD. Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com - 7 - Digital Diagnostic Specifications The SFP-10G-CWDM-1530-10-T02 transceivers can be used in host systems that require either internally or externally calibrated digital diagnostics. Parameter Symbol Units Min. Max. Accuracy Note Transceiver temperature DTemp-E ºC -45 +90 ±5ºC 1,2 Transceiver supply voltage DVoltage V 2.8 4.0 ±3% Transmitter bias current DBias mA 0 127 ±10% 3 Transmitter output power DTx-Power dBm -8 +2 ±2dB Receiver average input power DRx-Power dBm -16 0 ±2dB Notes: 1. When Operating temp.=0~70 ºC,the range will be min=-5,Max=+75 2. Internally measured 3. The accuracy of the Tx bias current is 10% of the actual current from the laser driver to the laser Typical Interface Circuit
  • 8. SFP-10G-CWDM-1530-10-T02#141042 Guilin GLsun Science and Tech Group Co., LTD. Tel: +86-773-3116006 info@glsun.com Web: www.glsun.com - 8 - Recommended Power Supply Filter Note: Inductors with DC resistance of less than 1Ω 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 30 mA greater than the steady state value Package Dimensions Ordering Information Part Number Description SFP-10G-CWDM-1530-10 SFP+, 9.95 to 11.3Gb/s, CWDM, 10km, 0~70℃, with Digital Diagnostic Monitor