2.5 GHz 1310 nm Laser Model 1732

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1 USER S GUIDE 2.5 GHz 1310 nm Laser Model 1732 Caution - Use of controls or adjustments or performance of procedures other than those specified herein may result in hazardous radiation exposure. Caution - The use of optical instruments with this product will increase eye hazard Junction Ave. San Jose, CA USA phone: (408) contact@newfocus.com

2 Warranty New Focus, Inc. guarantees its products to be free of defects for one year from the date of shipment. This is in lieu of all other guarantees, expressed or implied, and does not cover incidental or consequential loss. Information in this document is subject to change without notice. Copyright 2003, , New Focus, Inc. All rights reserved. The logo and NEW FOCUS, Inc. are registered trademarks of NEW FOCUS, Inc. Document Number Rev. A

3 Contents Operation 5 Introduction Handling Precautions Getting Started Troubleshooting 11 Excessive Noise Lowered Light Output Characteristics 13 Customer Service 15 Technical Support Service Model 1732 Laser Contents 3

4 4 Contents NEW FOCUS, Inc.

5 i Operation Introduction The Model 1732 is a 1310 nm Febry Perrot Laser intended for test and measurement of telecom and datacom components up to 2.5 Gbit/s. The Model 1732 is a modulatable laser source that converts digital input signals to modulated optical signal. When used with the New Focus Model 1592 Receiver, it is capable of testing fiber performance for high data-rate transmission, or it can be used for error-free transmission of digital signals over short distances. Figure 1: Model 1732 Laser module Power indicator Power switch Power-monitor port 2.25 (57.1) Output SMA-connector 2.00 (50.8) Model Gbit/s VCSEL Output 850 nm, 50 m PWR B a s 3 4 Bias Monitor (50.8) (79.8) FC/PC connector for fiber output Bias control Power connector The packaged laser is mounted on a specially designed board to minimize distortion of input signals. A bias current is supplied internally via an internal bias-tee (Figure 2), and the high-speed input is AC-coupled to a 50-ohm transmission line which delivers the input signal directly to the laser (there is no driver circuit). The laser output is coupled into a connectorized single mode fiber which connects to the FC/PC bulkhead Model 1732 Laser 5

6 connector on the front panel. It can be used with either single mode, 50-µm or 62.5-µm multimode fiber. Figure 2: Schematic of laser circuit. V bias is set by the Bias control knob. Input V bias Handling Precautions Getting Started Whenever handling the laser, make sure to follow these precautions: Prior to handling the unit or making connections, be sure to ground yourself adequately even small electrostatic discharges could permanently damage the device. A ground strap provides the most effective grounding and minimizes the likelihood of electrostatic damage. Do not over torque the microwave sma-connector. Excessive torque can damage connectors. We recommend using a 5/16" torque wrench rated at 8 in-lbs. Make sure the optical connector is clean and undamaged before connecting it to the detector module. The Model 1732 is designed to be driven directly by a 50-ohm source at data rates up to 2.5 Gbit/s. Its small size enables you to connect it directly to the source, eliminating lossy RF cables. The single mode output fiber permits connection to either a single or multi mode fiber via the FC/PC connector. 6 NEW FOCUS, Inc.

7 To use the Model 1732: 1. Connect the input RF connector on the back of the unit to the RF source output. Be sure the source voltage is less than that specified in Figure 3 to avoid damage and obtain good performance. Figure 3: Maximum allowed peakto-peak input voltage. (Voltage produced by a 50-ohm source across a 50-ohm load. Max Modulation Bias (V) Front Panel Bias Setting # 2. Connect the power supply using the appropriate cable provided. Use either the New Focus 0901 power supply, or a ±15-V, 100-mA power supply. 3. Clean and connect the FC/PC connector of the fiber-optic cable (not included) to the Laser output on the front panel. 4. Turn on the Model 1732 power switch (the PWR indicator should illuminate). 5. Adjust the bias level as desired. (See Figure 4, and Adjusting the Bias, below.) Model 1732 Laser 7

8 Adjusting the Bias Use Figure 4 to determine approximate operating levels for the laser. Figure 4: Typical light output versus source voltage showing bias points. Ouput Optical Power (mw) Monitor Voltage (V) Front Panel Bias Setting # The desired CW output power level (Pavg) for the laser can be selected from the front panel bias setting as shown in Figure 4. The power monitor output provides a voltage output proportional to CW optical output. The RF input voltage swing should be set to give the desired extinction ratio. Please note that the graph in Figure 4 shows typical values of optical output. The precise values should be determined by optical power measurements. Bias Monitor: A back facet monitor (BFM) photo diode, inside the laser package, measures the optical power from the laser and provides a nominal, 1V/mW output at this connector. You can monitor the optical output power of the laser by monitoring this voltage. 8 NEW FOCUS, Inc.

9 Further Considerations High-Speed Response As a directly modulated laser, the Model 1732 s highspeed response will exhibit varying levels of ringing due to relaxation oscillation in the laser, an effect which becomes more pronounced at lower optical powers. In the time domain this effect will appear as ringing in the impulse or step response; in the frequency domain it will appear as a peak in the frequency response before the response begins to drop off. Large-Signal Operation: Under modulation, as the power level in the low state approaches zero the ringing becomes more pronounced. Hence a smaller extinction ratio (ratio of on-to-off power) produces cleaner eye diagrams. Note that a low extinction ratio is not necessary to achieve errorfree performance. In fact, it is likely that the biterror rate of a link will be minimized by a fairly large extinction ratio. Small-Signal Operation: For small-signal modulation, the laser bandwidth increases as you increase bias. The best small-signal performance is therefore obtained at higher bias levels. A highspeed circuit is included in the laser design to flatten the frequency response at higher bias levels. Input Impedance The laser module is intended to be driven by a 50-ohm source. While the nominal input impedance is 50 ohms, the small electrical reflection created by this impedance mismatch will be insignificant when used with a reasonably good 50-ohm source. Model 1732 Laser 9

10 Noise and Optical Feedback Reflections back into the laser can affect its performance. This laser module is sensitive to back reflections from the externally coupled fiber. Make sure to thoroughly clean all optical connectors before using them with this module. Use receivers with better than -20 db return loss, as it is possible that receivers with worse optical return losses may produce significantly higher noise levels. Fiber length can also influence noise characteristics. 10 NEW FOCUS, Inc.

11 Troubleshooting Excessive Noise Lowered Light Output Reflections back into the laser can affect its performance, primarily the noise level. Fiber length can also influence noise characteristics. Static discharge or excessive input voltage may damage the laser, resulting in lowered light output and a change in the bias current. The power-monitor voltage for bias setting 6 is recorded on the data sheet shipped with your unit. If you suspect that the device has been damaged, compare the voltage on the Power Monitor with the value on the data sheet. Discrepancies of more than 0.15 V indicate possible damage. If such a symptom occurs, contact New Focus for assistance (see page 15). Model 1732 Laser Troubleshooting 11

12 12 Troubleshooting NEW FOCUS, Inc.

13 Characteristics Model # 1732 Wavelength Bit Rate Output Power Small-Signal Bandwidth Low-Frequency Cutoff Optical Power Monitor Small-Signal Input Impedance Input Connector Optical Connector Output Fiber Power Supply 1310 nm typical 2.5 Gbit/s 1.5 mw typical 2.5 GHz typical 10 khz 1V/mW typical 50 Ω SMA Male FC/PC Single Mode ±15 V, 100 ma Operating Temperature 10 to 35 C Storage Temperature -20 to 70 C Characteristics apply for a bias setting of 6 and a receiver optical return loss of 20 db. Model 1732 Laser Characteristics 13

14 14 Characteristics NEW FOCUS, Inc.

15 Customer Service Technical Support Information and advice about the operation of any New Focus product is available from our applications engineers. For quickest response, ask for Technical Support and know the model and serial numbers for your product. Hours: 8:00 5:00 PST, Monday through Friday (excluding holidays). Toll Free: NUFOCUS ( ) (from the USA & Canada only) Phone: (408) Support is also available by We typically respond to faxes and within one business day. Service In the event that the laser malfunctions or becomes damaged, please contact New Focus for a return authorization number and instructions on shipping the unit back for evaluation and repair. Model 1732 Laser Customer Service 15

16 16 Customer Service NEW FOCUS, Inc.

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