Project GabE ECE 135 – Spring 2005 Final Presentation

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Project GabE ECE 135 – Spring 2005 Final Presentation Omar Al-Jadda Patrick Crosby Adam Durity Rahmin Sarabi

description

Project GabE ECE 135 – Spring 2005 Final Presentation. Omar Al-Jadda Patrick Crosby Adam Durity Rahmin Sarabi. Progress Report. Built final board design Tested and verified Tx Tested and verified Rx Loopback Testing. Gantt Chart. Project Overview. - PowerPoint PPT Presentation

Transcript of Project GabE ECE 135 – Spring 2005 Final Presentation

Page 1: Project GabE ECE 135 – Spring 2005 Final Presentation

Project GabEECE 135 – Spring 2005

Final Presentation

Omar Al-JaddaPatrick CrosbyAdam DurityRahmin Sarabi

Page 2: Project GabE ECE 135 – Spring 2005 Final Presentation

Progress Report

Built final board design

Tested and verified Tx

Tested and verified Rx

Loopback Testing

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Gantt ChartID Task Name Start Finish % Complete

1 Background Research Wed 1.12.05 Wed 4.27.05 100%

2 IEEE 802.3 Standard Tue 1.18.05 Fri 1.28.05 100%

3 VCSELs and PDs Mon 1.24.05 Mon 1.31.05 100%

4 Miscellaneous Wed 1.12.05 Wed 4.27.05 100%

5 Test Eval Board Tue 1.25.05 Mon 1.31.05 100%

6 Build & Test Practice Board Tue 2.1.05 Tue 2.8.05 100%

7 Optical Link Budget Mon 1.24.05 Thu 2.10.05 100%

8 Choose Components Mon 1.31.05 Mon 2.7.05 100%

9 Order Parts Mon 2.7.05 Mon 3.7.05 100%

10 Order VCSELs and PDs Mon 2.7.05 Fri 2.11.05 100%

11 Order Other Parts Mon 2.21.05 Mon 3.7.05 100%

12 Schematics Fri 2.11.05 Wed 2.23.05 100%

13 PCB Mon 2.14.05 Mon 3.21.05 100%

14 Design Mon 2.14.05 Fri 3.11.05 100%

15 Design Review Mon 2.21.05 Fri 3.11.05 100%

16 Order Mon 3.14.05 Mon 3.21.05 100%

17 Midterm Report Mon 2.28.05 Fri 3.25.05 100%

18 Board 1 Mon 3.21.05 Mon 4.4.05 100%

19 Construct Board Mon 3.21.05 Wed 3.23.05 100%

20 Test Board Thu 3.24.05 Mon 4.4.05 100%

21 Board 2 Mon 4.4.05 Tue 4.26.05 93%

22 Design Modifications Mon 4.4.05 Thu 4.14.05 100%

23 Construct Board Fri 4.15.05 Tue 4.19.05 100%

24 Test Board Wed 4.20.05 Tue 4.26.05 75%

25 Final Report Mon 4.18.05 Wed 4.27.05 50%

26 Midterm Exam Tue 2.22.05 Tue 2.22.05 100%

27 Midterm Report Fri 3.25.05 Fri 3.25.05 100%

28 Final Report Wed 4.27.05 Wed 4.27.05 0%

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9 16 23 30 6 13 20 27 6 13 20 27 3 10 17 24 1 8 15 22Jan '05 Feb '05 Mar '05 Apr '05 May '05

Page 4: Project GabE ECE 135 – Spring 2005 Final Presentation

Project Overview

Research 802.3 Gigabit Ethernet standard

Learn to use the test equipmentAnalyze and select optical

components to be usedDesign and build both an aggressive

and a conservative prototype of a 1.25Gbps Optical Gigabit Ethernet PMD

Page 5: Project GabE ECE 135 – Spring 2005 Final Presentation

Evaluation Board Tested MAX3287,

MAX3266, MAX3264 evaluation boards

Varied attenuation from 0dB down to 70dB

BER = 10^-9 @ 10dB

Page 6: Project GabE ECE 135 – Spring 2005 Final Presentation

Test Board Built test board using

parts provided Tested board at 10dB

and 30dB BER = 10^-9 @ 10dB

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VCSEL

Criteria for selecting VCSEL: High slope efficiency Low threshold current At least 1.25Gbps

We chose the Advanced Optical Components HFE4191-541

Page 8: Project GabE ECE 135 – Spring 2005 Final Presentation

ROSA

Criteria for selecting ROSA: High responsivity High transimpedance

We selected the Advanced Optical Components HFD3180-102

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GabE Final Schematic - Tx

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GabE Final Schematic - Rx

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Conservative Board Designs

GabE 1.0 GabE 2.0

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Aggressive Board Designs

GabE 1.0 GabE 2.0

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Aggressive vs. Conservative

Conservative is designed with one key objective in mind: functionality

Aggressive design achieves LC connector spacing

Aggressive design violates many design rules: asymmetric, long traces

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GabE 2.0Conservative Aggressive

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Conservative Board “Plug ‘n’ Play” Required no additional

fiddling Basis for Tx, Rx, and

loop-back tests

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Aggressive Board TOSA-ROSA Distance

meets LC Specification After build; did not work

right away Blew an inductor; smoke

etc… Short to ground Separated Tx and Rx Tried to isolate short

Page 17: Project GabE ECE 135 – Spring 2005 Final Presentation

Aggressive Board Discovered that Tx chip

was cause of short! Also destroyed a pin on

the LA; used wire jumper Soldered on a new Tx

Chip No short to ground Still does not work

Page 18: Project GabE ECE 135 – Spring 2005 Final Presentation

Board Building Tips from Ωr Solder chips on first, carefully, and check

the notch! Solder on smaller passives then larger

components, TOSA/ROSA last Fine tipped soldering iron at 650°F; high

gauge solder Use needle nose pliers to hold in place the

SMT component; touch the soldering iron to the solder to form a bead, solder joint

Page 19: Project GabE ECE 135 – Spring 2005 Final Presentation

Tx Testing - Conservative Attempted to tune

potentiometers, but found that they have little to no effect

Tested Circuit for 10, 20, 30, 50 and 70dB of attenuation

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Tx Testing - Conservative

10dB High Rbias, High Rmod 10dB High Rbias, Low Rmod

10dB Low Rbias, High Rmod10dB Low Rbias, Low Rmod

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Tx Testing - Conservative

10dBRbias = 500Ω, Rmod = 12.5kΩ

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Tx Testing - Conservative

30dBRbias = 500Ω, Rmod = 12.5kΩ

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Tx Testing - Conservative

70dBRbias = 500Ω, Rmod = 12.5kΩ

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Tx Testing - Aggressive 1.0

0dB/810ohm

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Tx Testing - Aggressive 2.0

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Aggressive Board

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Possible Problems Broken pin on

Maxim Chip Burned Inductor Burned out traces Soldering problems

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Rx Testing - Conservative

0dB

4dB

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Rx Testing - Conservative

7dB

12dB

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Loopback - Conservative Based on Tx

Testing, set Rbias and Rmod to 500Ω 12.5k Ω respectively

Tested with 10 and 70dB electrical attenuation and 0 and 9dB optical attenuation

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Loopback - Conservative

10dB Electrical0dB Optical

Rbias = 500Ω, Rmod = 12.5kΩ

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Loopback – Conservative

70dB Electrical9dB Optical

Rbias = 500Ω, Rmod = 12.5kΩ

Page 33: Project GabE ECE 135 – Spring 2005 Final Presentation

Bit Error Rate Tests Loopback

Electrical: 70dB; Optical: 9dB;BER=10^-10

Electrical: 10dB; Optical: 9dB;BER=10^-10

Receiver Optical: 12dB;

BER=10^-10 Transmitter

Electrical: 70dB;BER=10^-10

Page 34: Project GabE ECE 135 – Spring 2005 Final Presentation

Financial BudgetVendor Description Quantity Item Number Unit

Price Amount

Digikey Power Connector 1 CP-002AHPJ-CT 0.900$ 0.90$ Digikey CAP 10000PF 100 PCC103BNCT-ND 0.054$ 5.40$ Digikey RES 100 OHM 1/8W 30 311-100CCT-ND 0.080$ 2.40$ Digikey RES 169 OHM 1/8W 30 311-169CCT-ND 0.080$ 2.40$ Digikey RES 24 OHM 1/10W 30 RR12Q24DCT-ND 0.140$ 4.20$ Digikey RES 2.7K OHM 1/8W 10 311-2.70KCCT-ND 0.080$ 0.80$ Digikey POT 1.0K OHM 3/8” 5 3296W-102-ND 2.500$ 12.50$ Digikey POT 25K OHM 3/8” 5 3296W-253-ND 2.500$ 12.50$ AOC VCSEL 4 HFE4191-541 14.500$ 58.00$ AOC ROSA 4 HFD3180-102 10.000$ 40.00$ Jameco SMA Connectors 10 901-143-6RFX 3.450$ 34.50$ Express PCB PCB 6 Custom 17.000$ 102.00$ Mouser Murata Inductors 10 81-BLM11HA102SG 0.130$ 1.30$ Digikey Murata Inductors 50 490-1034-1-ND 0.104$ 5.20$ Shipping Cost 36.83$

TOTAL: 318.93$

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Bill of MaterialsVendor Description Quantity Item Number Unit

Price 100k Price

Digikey Power Connector 1 CP-002AHPJ-CT 0.900$ 0.900$ Digikey CAP 10000PF 17 PCC103BNCT-ND 0.054$ 0.016$ Digikey RES 100 OHM 1/8W 3 311-100CCT-ND 0.080$ 0.017$ Digikey RES 169 OHM 1/8W 1 311-169CCT-ND 0.080$ 0.017$ Digikey RES 24 OHM 1/10W 10 RR12Q24DCT-ND 0.140$ 0.030$ Digikey RES 2.7K OHM 1/8W 1 311-2.70KCCT-ND 0.080$ 0.017$ Digikey POT 1.0K OHM 3/8” 1 3296W-102-ND 2.500$ 1.092$ Digikey POT 25K OHM 3/8” 1 3296W-253-ND 2.500$ 1.092$ Maxim Laser Driver 1 MAX3287 4.430$ 4.000$ Maxim Limiting Amplifier 1 MAX3264 4.430$ 4.000$ AOC VCSEL 1 HFE4191-541 14.500$ 5.800$ AOC ROSA 1 HFD3180-102 10.000$ 4.000$ Express PCB PCB 1 Custom 17.000$ 3.060$ Mouser Murata Inductors 7 81-BLM11HA102SG 0.130$ 0.042$

TOTAL: 59.89$ 24.89$

Page 36: Project GabE ECE 135 – Spring 2005 Final Presentation

Upcoming Week

Complete Final Report

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Conclusion ROSA – the solution to the crosstalk

problem ROSA – allows prices to be competative

with electrical GbE Learned skills in project management: Gantt

charts, working with vendors, how to work as a team, allocation of time and resources