CALY34-12-9-LC-31-01 1310 nm 10 Gbps DFB LC TOSA with Flex Overview Advanced Lab Instruments CALY34-12-9-LC-31-01 1310 nm 10Gb/s DFB Laser LC-TOSA (Transmitter Optical Sub-Assembly) is designed for 10Gb/s Ethernet Network, Data Communication, Fibre Channel Network and other fiber optic communication network applications. This device integrates high performance Distributed Feedback (DFB) laser diode with InGaAs PD as laser power monitor in TO-can. LD threshold current is very low with high performance over operating temperature. Features Supports performance up to 10.7 Gb/s bit rate, -25 to +85 operating temperature range up to 10km LR1 SONET/ SDH OC-192/ STM-64 Low shreshold current 10 Gigabit Ethernet High Bandwidth LC Receptacle Applications: High speed Data Communication. 10Gigabit Ethernet. Advanced Lab Instruments Corp. 3652 Edison Way, Fremont, CA 94538, USA Tel: (510)-366-7353 Fax: (510)-353-1809 http://www.ali-us.com.com
Specifications: Absolute Maximum Ratings Stresses in excess of the absolute maximum ratings can cause permanent damage to the device. These are absolute stress ratings only. Functional operation of the device is not implied at these or any other conditions in excess of those given in the operational sections of the data sheet. Expo-sure to absolute maximum ratings for extended periods can adversely affect device reliability. Table.1 Absolute maximum ratings Parameter Symbol Min. Max. Unit Comments Storage Temperature Tstg -40 100 C - Operating Temperature Top -25 85 C - Storage and Operating Humidity - - 85 % - Forward Current(LD) IF - 100 ma Reverse Voltage(LD) VRL - 2 V - Reverse Voltage(PD) VRD - 20 V Forward Current(PD) IFD - 2 ma Lead Soldering temperature(10 sec) - - 260 C E-O and O-E characteristics Table.2 E-O and O-E characteristics(tc=25 ±2,unless otherwise noted) Parameter Symbol Min. Typ. Max. Unit Condition Threshold current Ith - 10 14 ma CW, T = 25 24 35 ma T = 85 Operating voltage Vf - 1.4 1.6 V CW, Iop=Ith+20mA Optical output power Pf 0.3-1.0 mw CW, Iop=Ith+20mA Slope Efficiency SE 0.015-0.05 mw/ma CW, Iop=Ith+20mA Center Wavelength λc 1290 1308 1330 nm CW, Iop=Ith+20mA Spectral Width(-20dB) Δλ - 1 nm CW, Iop=Ith+20mA Side Mode Suppression SMSR 30 40 db CW, Iop=Ith+20mA Advanced Lab Instruments Corp. 3652 Edison Way, Fremont, CA 94538, USA Tel: (510)-366-7353 Fax: (510)-353-1809 http://www.ali-us.com.com
Ratio Monitor current Im 0.1 0.7 ma CW,Iop=Ith+20mA Bandwidth BW 10 GHz If = 30mA at -3dB PD dark current Id - - 100 na Vr=5V Extinction Ratio ER 5 db 10GbE, 10G FC Input Impedance Zin 8 11 Ohms Rise Time τr 50 Ps Fall Time τr 50 Ps Unfiltered 20-80%; ER = 6dB Unfiltered; 80-20%; ER = 5dB Connector Repeatability CR -1 1 db TE=10log(Pf(TC)/ Tracking Error TE -1.5 1.5 db Pf(25 )) Tc=-25~85 Outline dimension and Pin Descriptions Package Dimensions ( Unit : mm )
Flex Board PINOUT(Bottom View) Number PAD1 PAD 2 PAD 3 PAD 4 PAD 5 PAD 6 Function NO CONNECT GND LD+ LD- GND PD-(PD+ Connects to the Gnd) Aplication Cautions 1.1 Radiation emitted by laser devices can be dangerous to the eyes. Avoid eye or skin exposure to direct or scattered radiation. 1.2 The modules should be handled in the same manner as ordinary semiconductor devices to prevent the electro-static damages. For safekeeping and carrying, the modules should be packaged with ESD proof material. To assemble the modules on PCB, the workbench, the soldering iron and the human body should be grounded. 1.3 Please pay special attention to the atmosphere condition because the dew on the module may cause some electronic damages. 1.4 Under such a strong vibration environment as in automobile, the performance and reliability are not guaranteed. 1.5 Shorten the length of the modules leads as much as Possible to reduce excess inductance. 1.6 Operation-Conditions beyond Absolute Maximum Ratings as showing in table.1 may cause permanent damage to the device, also affect the Lifetime and Reliability. 1.7 Be sure to turn power off when you touch this product connected to the printed circuit boards. Otherwise, electric shock or burn may occur.
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