RoHS compliant 1310 nm Single-mode Transceiver, (15dB margin) Small Form Pluggable (SFP), 3.3V Gbd Fiber Channel/1.25 Gigabit Ethernet.

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Features Compliant with IEEE802.3z Gigabit Ethernet Standard Compliant with Fiber Channel 100-SM-LC-L standard Industry standard small form pluggable (SFP) package Duplex LC connector Differential LVPECL inputs and outputs Single power supply 3.3V TTL signal detect indicator Hot Pluggable Class 1 laser product complies with EN 60825-1 Application Distributed multi-processing Switch to switch interface High speed I/O for file server Bus extension application Channel extender, data storage Ordering Information PART NUMBER INPUT/OUTPUT SIGNAL DETECT VOLTAGE TEMPERATURE DISTANCE LS38-C3M-TC-N AC/AC TTL 3.3V 0 C to 70 C 20km LS38-C3M-TI-N AC/AC TTL 3.3V -40 C to 85 C 20km Page 1 of 9

Absolute Maximum Ratings PARAMETER SYMBOL MIN MAX UNITS NOTE Storage Temperature T S 40 85 C Supply Voltage Vcc 0.5 4.0 V Input Voltage V IN 0.5 Vcc V Output Current I o --- 50 ma Operating Current I OP --- 400 ma Recommended Operating Conditions PARAMETER SYMBOL MIN MAX UNITS NOTE Case Operating Temperature T C 0 70 C LS38-C3M-TC-N -40 85 C LS38-C3M-TI-N Supply Voltage Vcc 3.1 3.5 V Supply Current I TX + I RX --- 250 ma Transmitter Electro-optical Characteristics Vcc = 3.1 V to 3.5 V, T C = 0 C to 70 C (-40 C to 85 C) Output Optical Power 9/125 µm fiber PARAMETER SYMBOL MIN TYP. MAX UNITS NOTE P out 8 --- 2 dbm Average Extinction Ratio ER 9 --- --- db Center Wavelength λ C 1270 1310 1355 nm Spectral Width (RMS) λ --- --- 2.5 nm Rise/Fall Time, (20 80%) T r, f --- --- 260 ps Relative Intensity Noise RIN --- --- 120 db/hz Total Jitter TJ --- --- 227 ps Output Eye Compliant with IEEE802.3z Max. P out TX-DISABLE Asserted P OFF --- --- 45 dbm Differential Input Voltage V DIFF 0.4 --- 2.0 V Page 2 of 9

Receiver Electro-optical Characteristics Vcc = 3.1 V to 3.5 V, T C = 0 C to 70 C (-40 C to 85 C) PARAMETER SYMBOL MIN TYP. MAX UNITS NOTE Optical Input Power-maximum P IN 1 --- --- dbm BER < 10 12 Optical Input Power-minimum (Sensitivity) P IN --- --- 23 dbm BER < 10 12 Operating Center Wavelength λ C 1260 --- 1610 nm Optical Return Loss ORL 12 --- --- db Signal Detect-Asserted P A --- --- 23 dbm Signal Detect-Deasserted P D 35 --- --- dbm Stressed Receiver Sensitivity --- --- 14.4 dbm Note 1, 2 Differential Output Voltage V DIFF 0.5 --- 1.2 V Data Output Rise, Fall Time (20 80%) T r, f --- --- 0.35 ns Receiver Loss of Signal Output Voltage-Low RX_LOS L 0 --- 0.5 V Receiver Loss of Signal Output Voltage-High RX_LOS H 2.4 --- V CC V Note 1: Measured with conformance test signal at TP3 for BER = 10 12 at the eye center. Note 2: Measured with a transmit signal having a 9 db extinction ratio. If another extinction ratio is used, the Stressed receiver sensitivity should be corrected for the extinction ratio penalty. Page 3 of 9

Block Diagram of Transceiver ELECTRICAL SUBASSEMBLY DATA DATA/ TX_DISABLE LD Driver & Fault Sense LASER TX_FAULT (0) (1) (2) MOD_DEF OPTICAL SUB- ASSEMBLIES DUPLEX SC RECEPTACLE DATA DATA/ RX_LOS POST-Amp & LOS Detect RRE- AMPLIFIER IC Photo Diode TOP VIEW (Label side) Transmitter Section The transmitter section consists of a 1310 nm InGaAsP laser in an eye safe optical subassembly (OSA) which mates to the fiber cable. The laser OSA is driven by a LD driver IC which converts differential input LVPECL logic signals into an analog laser driving current. TX_DISABLE The TX_DISABLE signal is high (TTL logic 1 ) to turn off the laser output. The laser will turn on when TX_DISABLE is low (TTL logic 0 ). Receiver Section The receiver utilizes an InGaAs PIN photodiode mounted together with a trans-impedance preamplifier IC in an OSA. This OSA is connected to a circuit providing post-amplification quantization, and optical signal detection. Receive Loss (RX_LOS) The RX_LOS is high (logic 1 ) when there is no incoming light from the companion transceiver. This signal is normally used by the system for the diagnostic purpose. The signal is operated in TTL level. Page 4 of 9

Dimensions DIMENSIONS ARE IN MILLIMETERS ALL DIMENSIONS ARE 0.2mm UNLESS OTHERWISE SPECIFIED Unit: mm Page 5 of 9

SFP host board mechanical layout Y X L X A S 1 A SXY 1 PIN1 L X A S PIN1 A S B S LEGEND 1.PADS AND VIAS ARE CHASSIS GROUND 2.THROUGH HOLES, PLATING OPTIONAL 3.HATCHED AREA DENOTES COMPONENT AND TRACE KEEPOUT(EXCEPT CHASSIS GROUND) 4.AREA DENOTES COMPONENT KEEPOUT (TRACES ALLOWED) DIMENSIONS ARE IN MILLIMETERS A S B S A S B S Unit: mm Page 6 of 9

Assembly drawing 41.73±0.5 3.5±0.3 1.7±0.9 PCB BEZEL CAGE ASSEMBLY BELOW PCB 9.8 MAX 15.0 MAX 11.0 REF. 15.25±0.1 0.4±0.1 10.4±0.1 16.25±0.1 MSA-SPECIFIED BEZEL PCB DIMENSIONS ARE IN MILLIMETERS Unit: mm Page 7 of 9

Pin Assignment Pin-Out PIN 11 PIN 20 PIN 10 PIN 1 Pin Signal Name Description 1 T GND Transmit Ground 2 TX_FAULT Transmit Fault 3 TX_DISABLE Transmit Disable 4 MOD_DEF (2) SDA Serial Data Signal 5 MOD_DEF (1) SCL Serial Clock Signal 6 MOD_DEF (0) TTL Low 7 RATE SELECT Open Circuit 8 RX_LOS Receiver Loss of Signal, TTL High, open collector 9 R GND Receiver Ground 10 R GND Receiver Ground 11 R GND Receiver Ground 12 RX Receive Data Bar, Differential PECL, ac coupled 13 RX+ Receive Data, Differential PECL, ac coupled 14 R GND Receiver Ground 15 V CCR Receiver Power Supply 16 V CCT Transmitter Power Supply 17 T GND Transmitter Ground 18 TX+ Transmit Data, Differential PCEL, ac coupled 19 TX Transmit Data Bar, Differential PCEL, ac coupled 20 T GND Transmitter Ground Page 8 of 9

Eye Safety Mark The LS3 series singlemode transceiver is a class 1 laser product. It complies with EN 60825-1 and FDA 21 CFR 1040.10 and 1040.11. In order to meet laser safety requirements the transceiver shall be operated within the Absolute Maximum Ratings. Required Mark Class 1 Laser Product Complies with 21 CFR 1040.10 and 1040.11 Caution All adjustments have been done at the factory before the shipment of the devices. No maintenance and user serviceable part is required. Tampering with and modifying the performance of the device will result in voided product warranty. Note : All information contained in this document is subject to change without notice. Page 9 of 9