TRSL-9340W-CXX0G_11 OPTOWAY | Alldatasheet

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OPTOWAY TECHNOLOGY INC. No.38, Kuang Fu S. Road, Hu Kou, Hsin Chu Industrial Park, Hsin Chu, Taiwan 303 Tel: 886-3-5979798 Fax: 886-3-5979737 TRSL-9340W-CXX0G 3.3V / CWDM / 2.5 Gbps RoHS Compliant SFF LC 2X10 SINGLE-MODE TRANSCEIVER

FEATURES

l 18-wavelength CWDM Transceivers l Duplex LC Single Mode Transceiver l SONET OC-48 IR-2 / SDH STM-16 Compliant l Compliant with Fiber Channel 2X/1X SM-LC-L FC-PI l Compliant with IEEE 802.3z Gigabit Ethernet l Multi-sourced 2X10 SFF Package Style l CWDM DFB LD Transmitter l 18 dB Link Power Budget At Least l Analog Monitor Function -- Transmitter Laser Bias Current -- Transmitter Laser Optical Power Monitor -- Receiver Photo Detector Current l AC/AC Coupled Signal Input / Output l LVPECL Signal Input / Output l LVTTL Signal Detection Output l Single +3.3 V Power Supply l RoHS Compliant l 0 to 70oC Operation l Wave Solderable and Aqueous Washable l Class 1 Laser International Safety Standard IEC-60825 Compliant

APPLICATIONS

l ATM Switches and Routers l SONET / SDH Switch Infrastructure l XDSL Applications

DESCRIPTION

The TRSL-9340W-CXX0G series single mode transceivers is small form factor, low power, high performance module for bi-directional serial optical data communications such as SONET OC-48 IR-2 / SDH STM-16 (S-16.2), IEEE 802.3z Gigabit Ethernet and 1X/2X Fiber channel. There are eighteen center wavelengths available from 1270 nm to 1610 nm, each step 20 nm. A guaranteed minimum optical link budget of 18 dB is offered. The transmitter section uses a multiple quantum well 1550 nm DFB laser and is a class 1 laser compliant according to International Safety Standard IEC-60825. The receiver section uses an integrated InGaAs detector preamplifier (IDP) mounted in an optical header and a limiting post-amplifier IC. A LVPECL logic interface simplifies interface to external circuitry. LASER SAFETY This single mode transceiver is a Class 1 laser product. It complies with IEC-60825 and FDA 21 CFR 1040.10 and 1040.11. The transceiver must be operated within the specified temperature and voltage limits. The optical ports of the module shall be terminated with an optical connector or with a dust plug ORDER INFORMATION P/No. Bit Rate (Mb/s) SONET/ SDH Power Budget (dB) Wavelength (nm) Package Temp. (oC) TX Power (dBm) RX Sens. (dBm) RoHS Compliant TRSL-9340W-CXX0G 2488 ≥ 18 CWDM* 2X10 LC 0 to 70 3 to -2 -20 Yes CWDM Wavelength (0 to 70oC) Central Wavelength Min. (nm) Typ. (nm) Max. (nm) Central Wavelength Min. (nm) Typ. (nm) Max. (nm) -C270 1264.5 1270 1277.5 -C450 1444.5 1450 1457.5 -C290 1284.5 1290 1297.5 -C470 1464.5 1470 1477.5 -C310 1304.5 1310 1317.5 -C490 1484.5 1490 1497.5 -C330 1324.5 1330 1337.5 -C510 1504.5 1510 1517.5 -C350 1344.5 1350 1357.5 -C530 1524.5 1530 1537.5 -C370 1364.5 1370 1377.5 -C550 1544.5 1550 1557.5 -C390 1384.5 1390 1397.5 -C570 1564.5 1570 1577.5 -C410 1404.5 1410 1417.5 -C590 1584.5 1590 1597.5 -C430 1424.5 1430 1437.5 -C610 1604.5 1610 1617.5 CWDM*: 18 Wavelengths from 1270 nm to 1610 nm, each step 20 nm.

OPTOWAY TECHNOLOGY INC. No.38, Kuang Fu S. Road, Hu Kou, Hsin Chu Industrial Park, Hsin Chu, Taiwan 303 Tel: 886-3-5979798 Fax: 886-3-5979737 Absolute Maximum Ratings Parameter Symbol Min Max Units Notes Storage Temperature Tstg -40 85 oC Operating Temperature Topr -10 70 oC With air flow 1m/sec Soldering Temperature --- 260 oC 10 seconds on leads only Power Supply Voltage Vcc -0.5 3.6 V Input Voltage --- -0.5 Vcc V Output Current Iout 0 50 mA Recommended Operating Conditions Parameter Symbol Min Typ Max Units / Notes Power Supply Voltage Vcc 3.13 3.3 3.47 V Operating Temperature Topr 0 70 oC / air flow 1m/sec Data Rate 622 2500 Mb/s Transmitter Specifications (0oC < Topr < 70oC, 3.13V < Vcc < 3. 47V) Parameter Symbol Min Typ Max Units Notes Optical Optical Transmit Power Po -2 --- 3 dBm 1 Output Center Wavelength λ λ-5.5 λ λ+7.5 nm 2 Output Spectrum Width Δλ --- --- 1 nm -20 dB Width Side Mode Suppression Ratio SMSR 30 dB Extinction Ratio ER 8.2 --- --- dB Output Eye Compliant with Bellcore GR-253-GORE and ITU-T Recommendation G.957 Optical Rise Time tr 150 ps 20% to 80% Values Optical Fall Time tf 150 ps 20% to 80% Values Relative Intensity Noise RIN -120 dB/Hz Electrical Power Supply Current Icc 180 mA 3 Data Input Current – Low IIL -350 µA Data Input Current – High IIH 350 µA Differential Input Voltage VIH - VIL 300 1600 mV Data Input Voltage – Low VIL - VCC -2.0 -1.58 V 4 Data Input Voltage -- High VIH - VCC -1.1 -0.74 V 4 TX Disable Input Voltage – Low TDIS 0 0.5 V TX Disable Input Voltage – High TDIS 2.0 Vcc V TX Disable Assert Time TASSERT 10 µs TX Disable Deassert Time TDEASSERT 50 µs Notes: 1. Output power is power coupled into a 9/125 µm single mode fiber. 2. ITU-T G.694.2 CWDM wavelength from 1270 nm to 1610 nm, each step 20 nm. 3. Maximum current is specified at Vcc = Maximum @ maximum temperature. 4. These inputs are compatible with 10K, 10KH and 100K ECL and PECL inputs.

OPTOWAY TECHNOLOGY INC. No.38, Kuang Fu S. Road, Hu Kou, Hsin Chu Industrial Park, Hsin Chu, Taiwan 303 Tel: 886-3-5979798 Fax: 886-3-5979737 Receiver Specifications (0oC < Topr < 70oC, 3.13V < Vcc <3.47V) Parameter Symbol Min Typ Max Units Notes Optical Sensitivity @ 2.488 Gbps Sen1 --- -20 dBm 1 Sensitivity @ 1.25 Gbps Sen2 -22 dBm 2 Maximum Input Power Pin 0 --- dBm Signal Detect -- Asserted Pa --- --- -20 dBm Transition: low to high Signal Detect -- Deasserted Pd -35 --- --- dBm Transition: high to low Signal detect -- Hysteresis 1.0 --- 4.0 dB Wavelength of Operation 1100 --- 1620 nm Electrical Power Supply Current Icc 110 140 mA Data Output Voltage – Low VOL - VCC -2.0 -1.58 V 3 Data Output Voltage – High VOH - VCC -1.1 -0.74 V 3 Signal Detect Output Voltage -- Low VSDL 0 0.8 V Signal Detect Output Voltage -- High VSDH 2.0 Vcc+0.3 V Notes: 1. Minimum sensitivity and saturation levels at BER=1E-10 for a 223-1 PRBS. 2. Minimum sensitivity and saturation levels at BER=1E-12 for a 27-1 PRBS. 3. These outputs are compatible with 10K, 10KH and 100K ECL and PECL inputs. ANALOG DIAGNOSTICS FUNCTIONS Parameter Symbol Min Typ Max Units Notes Transmitter Laser Bias Current Monitor Bmon+, Bmon- 0 Vcc V 1 Monitor Photodiode Current Monitor Pmon+,Pmon- 0 Vcc V 2 Receiver Received Photocurrent Rpd 0 1 mA 3 Photodiode Responsivity R 0.5 0.9 1.0 A/W Applied Voltage at VpdR pin Vpd 2.4 Vcc V 3 Notes: 1. PIN 17 and 18 provide an analog voltage output proportional to the laser bias current, based on the following formula: Ibias = V (Bmon+ - Bmon-) / 10 Ω. See below the equivalent circuit. 2. PIN 19 and 20 provide an analog voltage output proportional to the monitor photodiode current, based on the following formula: Imon = V (Pmon+ - Pon-) / 200Ω. See below the equivalent circuit. 3. PIN 1 is used to monitor the received photocurrent. It must be connected to a positive voltage within the specified above. The received power is given by the photocurrent multiplied by the photodiode responsivity. RX PD T Vpdr Monitor PD 200ohm VCC control circuit Pmon+ Pmon- LD 10ohm VCC bias circuit BM+ BM- I bias I mon I pd Analog Monitoring Function Connections

OPTOWAY TECHNOLOGY INC. No.38, Kuang Fu S. Road, Hu Kou, Hsin Chu Industrial Park, Hsin Chu, Taiwan 303 Tel: 886-3-5979798 Fax: 886-3-5979737 CONNECTION DIAGRAM PIN Symbol Notes PIN Symbol Notes 1 VpdR Receiver power monitor. This pin must be connected to a positive power supply (Vcc), preferably via a small resistor. Supplier photocurrent and maybe used to monito r receiver power. 11 VccT +3.3V dc transmitter power supply 2 VeeR Receiver ground. 12 VeeT Transmitter ground. 3 VeeR Receiver ground. 13 T Dis Transmitter Disable. Connect this pin to logic “1” to disable module. To enable module connect to logic low “0”

4 NC No connected 14 TD + Transmitter Data In

5 NC No connected 15 TD − Transmitter Data In Bar

6 VeeR Receiver ground. 16 VeeT Transmitter ground. 7 VccR +3.3V dc receiver power supply 17 Bmon− Laser Bias Monitoring – Negative End 8 SD Signal detect. Logic 1 indicate a normal operation. 18 Bmon+ Laser Bias Monitoring – Positive End (Bmon+ - Bmon-) = 10 Ω X laser bias current

9 RD− Receiver Dataout Bar 19 Pmon- Laser Power Monitoring -- Negative end

10 RD+ Receiver Dataout 20 Pmon+ Laser Power Monitoring -- Positive end

(Pmon+ - Pmon-) = 200 Ω X monitor photdiode current MS MS Mounting Studs. Connect to Chassis Ground RECOMMENDED CIRCUIT SCHEMATIC VpdR1 VeeRX2 VeeRX3 NC4 NC5 VeeRX6 VccRX7 SD8 RD-9 RD+10 VccTX 11VeeTX 12Tdis 13TD+ 14TD- 15VeeTX 16Bmon- 17Bmon+ 18Pmon- 19Pmon+ 20 TX RX MICROSTRIP6 Z=5OR MICROSTRIP5 Z=50R 1uH 100nF 10uF 100nF VCC3.3V 1uH 10uF 100nF MICROSTRIP8 Z=5OR MICROSTRIP7 Z=50R PHY DEVICE TD- TD+ RD+ RD- SD R14 100R Vcc3.3V LVPECL Vcc3.3V LVPECL TO LVTTL STAGE Tdis(LVTTL) Bmon- Bmon+ Pmon+ Pmon- 10nF 200R VCCRX(3.3V) Vpdr Note: 1. TX input is terminated inside the module. 2. Veer and Veet are not internally connected to each other. 3. 50 Ω line pattern and component placements on TD+/TD- and RD+/RD- lines shall be symmetrical for better impedance matching.

OPTOWAY TECHNOLOGY INC. No.38, Kuang Fu S. Road, Hu Kou, Hsin Chu Industrial Park, Hsin Chu, Taiwan 303 Tel: 886-3-5979798 Fax: 886-3-5979737 PACKAGE DIAGRAM Units in mm 1) Standard Case TRSL-9340W-CXX0G 2) Extended Case TRSL-9340WE-CXX0G Note: Specifications subject to change without notice.