SAS-3 Improved Mini SAS HD

Slides:



Advertisements
Similar presentations
Slide 1 Insert your own content. Slide 2 Insert your own content.
Advertisements

Cable Testing.
DCN286 Introduction to Data Communication Technology Session 5.
System Block Diagram VCO As A Multiple Signal Oscillator 4 to 1 Power Combiner System Layout System Practical Operation – room 319 “To do” List Gantt.
Slide 1Fig. 2.1a, p.25. Slide 2Fig. 2.1b, p.25 Slide 3Table 2.1, p.25.
Copyright © 2014 Wild River Technology LLC Slide 1 Wild River Technology LLC Alfred P. Neves phone
Slide 1Fig. 22.1, p.669. Slide 2Fig. 22.3, p.670.
Table of Contents Factoring A Difference Of Squares Difference of Squares: A difference of squares is an algebraic expression of the form A 2 – B 2, where.
Slide 1Fig. 17.1, p.513. Slide 2Table 17.1, p.514.
Slide 1Fig. 19.1, p Slide 2Fig. 19.2, p. 583.
Slide 1Fig. 21.1, p.641. Slide 2Fig. 21.2, p.642.
Power Budgeting in Distributed Systems.  Single transmitter signal distributed to two or more receivers via optical splitters Transmitter Receiver #1.
Summary of Path Loss in Propagation
ELCT564 Spring /2/20151ELCT564 Chapter 4: Microwave Network Analysis.
1 times table 2 times table 3 times table 4 times table 5 times table
RF Equipment AFFORDABLE, SIMPLE, RELIABLE.. Compact and Reliable All of our equipment is packaged in sturdy powder- coated aluminum cases just a few inches.
Serial Attached SCSI Small Computer Serial Interconnect (SCSI) just got a whole lot smaller, faster & more versatile. Performance – Gen 1 at 300MBytes/sec.
Network Analyzer Error Models and Calibration Methods by Doug Rytting
Copyright © 2014 Wild River Technology LLC Slide 1 Wild River Technology LLC Alfred P. Neves phone
The Active Circulator Insertion V tr Isolation V ant V rx Specs Insertion Loss < -.5dB Isolation > -15db Frequency > 30 MHz 10W < Power < 50W.
High Speed Interconnect Solutions HIROSE ELECTRIC IT3-32mm SI Report Three-Piece Mezzanine Connector for 20+ Gbps Applications October 29, 2009.
University of Minnesota Unmanned Aerial Vehicle Research Lab Common Harness Wiring Instructions.
Table of Contents Logarithm Properties - Product Rule The Product Rule for logarithms states that... read as “the log of the product is the sum of the.
1 Evaluation and Analysis of Connector Performance for the Spacewire Back Plane Koji Shibuya Keitaro Yamagishi Hideyuki Oh-hashi Seiichi Saito Masaharu.
Multiplication Facts Table of Contents 0’s 1’s 2’s 3’s 4’s 5’s 6’s 7’s 8’s 9’s 10’s.
3-dB Power Divider and Hybrids for 8-Pack Phase II Power Distribution.
$100 $200 $300 $400 $500 $100 $200 $300 $400 $500 $100 $200 $300 $400 $500 $100 $200 $300 $400 $500 $100 $200 $300 $400 $500 $100 $200 $300.
Tables Learning Support
Chapter 4: Microwave Network Analysis
By: Thomas Olivotti.  PSNEXT stands for Power Sum Near End Crosstalk and is calculated by transmitting a signal down each wire pair in turn and summing.
Table of Contents Logarithm Properties - Quotient Rule The Quotient Rule for logarithms states that... read as “the log of the quotient is the difference.
Table of Contents Ellipse - Definition and Equations Consider two fixed points in the plane, F 1 and F 2, which we shall call foci... Select a point in.
Digital Quadrature Spatial Combining: An Efficient mm-Wave Beamforming Transmitter Jiashu Chen, Lu Ye, Ali M. Niknejad University of California, Berkeley.
Slide 1 Insert your own content.. Slide 2 Insert your own content.
Insert name of presentation on Master Slide Using stories to understand the patient experience Monday 5 September 2011.
Embedded RF Applications/Systems
SAS 3.0 2x and 4x 12Gb/s MultiLink Connector Proposal September 13, 2010 Page 1.
Silicon Valley Test Conference 2013
Pertemuan 10 Signal & Noise
CAUI-4 Chip – Module Draft Baseline
continued on next slide
Table Amortized cost: $3 Insert 5 Actual cost: $1.
BakeBot Progress Ported code to SMACH
Module 4 Cable Testing.
Times Tables.
                                                                                                                                                                                                                                                
continued on next slide
continued on next slide
SAS-3 Backchannel Revised T10/11-044r0
Multimedia Training Kit
Title Layout Subtitle.
Slide 1 Insert your own content.. Slide 1 Insert your own content.
Slide 1 Insert your own content.. Slide 1 Insert your own content.
Slide 1 Insert your own content.. Slide 1 Insert your own content.
Title with Pictures Layout
Title with Picture Layout
PLEASE DO NOT DELETE THIS SLIDE
SAS-3 Transmitter Training Review
SAS-3 Transmitter Training Review
Mini SAS HD Connector Simulation
CCNA 1 v3.1 Module 4 Cable Testing
CCNA 1 v3.1 Module 4 Cable Testing
Volume 4, Issue 5, Pages 2-3 (October 2006)
3 times tables.
6 times tables.
Volume 9, Issue 5, (October 2011)
Given S.P and C.P Find Profit or loss % Start.
continued on next slide
8 1 7 Subtraction Facts
continued on next slide
Presentation transcript:

SAS-3 Improved Mini SAS HD Harvey Newman October 6, 2011 T10/11-419r1

Table of Contents 02 Table of Contents 03 Volex SAS 3.0 Receptacle to Volex SAS 2.1 Plug 21 Molex SAS 2.1 Receptacle to Volex SAS 2.1 Plug 38 Closing Slide T10/11-419r1

Volex SAS 3.0 Receptacle to Volex SAS 2.1 Plug T10/11-419r1

Volex to Volex Improved Receptacle Volex provided two boards with Mini SAS HD improved bulkhead receptacles. Volex also provided a Mini SAS HD plug to SMA breakout test fixture. All near end and far end crosstalk sources were measured along with the thru response for all signal paths from a transmitter to a receiver. All transmitter ports are considered as aggressors. There are 4 near end crosstalk aggressors and 3 far end crosstalk aggressors. All crosstalk sourced are power summed. Calibration at SMA. T10/11-419r1

1Tx0_3Rx0_0m_Thru. s4p Insertion loss = -2 1Tx0_3Rx0_0m_Thru.s4p Insertion loss = -2.637 dB, Power Sum Crosstalk = -41.34dB T10/11-419r1 1Tx0_3Rx0_0m_Thru.s4p

1Tx1_3Rx1_0m_Thru. s4p Insertion loss = -2 1Tx1_3Rx1_0m_Thru.s4p Insertion loss = -2.524 dB, Power Sum Crosstalk = -40.47dB T10/11-419r1 1Tx1_3Rx1_0m_Thru.s4p

1Tx2_3Rx2_0m_Thru. s4p Insertion loss = -2 1Tx2_3Rx2_0m_Thru.s4p Insertion loss = -2.575 dB, Power Sum Crosstalk = -39.33dB T10/11-419r1 1Tx2_3Rx2_0m_Thru.s4p

1Tx3_3Rx3_0m_Thru. s4p Insertion loss = -2 1Tx3_3Rx3_0m_Thru.s4p Insertion loss = -2.413 dB, Power Sum Crosstalk = -38.75dB T10/11-419r1 1Tx3_3Rx3_0m_Thru.s4p

3Tx0_1Rx0_0m_Thru. s4p Insertion loss = -2 3Tx0_1Rx0_0m_Thru.s4p Insertion loss = -2.362 dB, Power Sum Crosstalk = -38.68dB T10/11-419r1 3Tx0_1Rx0_0m_Thru.s4p

3Tx1_1Rx1_0m_Thru. s4p Insertion loss = -2 3Tx1_1Rx1_0m_Thru.s4p Insertion loss = -2.268 dB, Power Sum Crosstalk = -41.20dB T10/11-419r1 3Tx1_1Rx1_0m_Thru.s4p

3Tx2_1Rx2_0m_Thru. s4p Insertion loss = -2 3Tx2_1Rx2_0m_Thru.s4p Insertion loss = -2.341 dB, Power Sum Crosstalk = -36.56dB T10/11-419r1 3Tx2_1Rx2_0m_Thru.s4p

3Tx3_1Rx3_0m_Thru. s4p Insertion loss = -2 3Tx3_1Rx3_0m_Thru.s4p Insertion loss = -2.158 dB, Power Sum Crosstalk = -41.78dB T10/11-419r1 3Tx3_1Rx3_0m_Thru.s4p

1Tx0_3Rx0_0m_Thru.s4p T10/11-419r1 1Tx0_3Rx0_0m_Thru.s4p

1Tx1_3Rx1_0m_Thru.s4p T10/11-419r1 1Tx1_3Rx1_0m_Thru.s4p

1Tx2_3Rx2_0m_Thru.s4p T10/11-419r1 1Tx2_3Rx2_0m_Thru.s4p

1Tx3_3Rx3_0m_Thru.s4p T10/11-419r1 1Tx3_3Rx3_0m_Thru.s4p

3Tx0_1Rx0_0m_Thru.s4p T10/11-419r1 3Tx0_1Rx0_0m_Thru.s4p

3Tx1_1Rx1_0m_Thru.s4p T10/11-419r1 3Tx1_1Rx1_0m_Thru.s4p

3Tx2_1Rx2_0m_Thru.s4p T10/11-419r1 3Tx2_1Rx2_0m_Thru.s4p

3Tx3_1Rx3_0m_Thru.s4p T10/11-419r1 3Tx3_1Rx3_0m_Thru.s4p

Molex SAS 2.1 Receptacle to Volex SAS 2.1 Plug T10/11-419r1

2Tx0_3Rx0_0m_Thru.s4p T10/11-419r1 2Tx0_3Rx0_0m_Thru.s4p

2Tx1_3Rx1_0m_Thru.s4p T10/11-419r1 2Tx1_3Rx1_0m_Thru.s4p

2Tx2_3Rx2_0m_Thru.s4p T10/11-419r1 2Tx2_3Rx2_0m_Thru.s4p

2Tx3_3Rx3_0m_Thru.s4p T10/11-419r1 2Tx3_3Rx3_0m_Thru.s4p

3Tx0_2Rx0_0m_Thru.s4p T10/11-419r1 3Tx0_2Rx0_0m_Thru.s4p

3Tx1_2Rx1_0m_Thru.s4p T10/11-419r1 3Tx1_2Rx1_0m_Thru.s4p

3Tx2_2Rx2_0m_Thru.s4p T10/11-419r1 3Tx2_2Rx2_0m_Thru.s4p

3Tx3_2Rx3_0m_Thru.s4p T10/11-419r1 3Tx3_2Rx3_0m_Thru.s4p

2Tx0_3Rx0_0m_Thru.s4p T10/11-419r1 2Tx0_3Rx0_0m_Thru.s4p

2Tx1_3Rx1_0m_Thru.s4p T10/11-419r1 2Tx1_3Rx1_0m_Thru.s4p

2Tx2_3Rx2_0m_Thru.s4p T10/11-419r1 2Tx2_3Rx2_0m_Thru.s4p

2Tx3_3Rx3_0m_Thru.s4p T10/11-419r1 2Tx3_3Rx3_0m_Thru.s4p

3Tx0_2Rx0_0m_Thru.s4p T10/11-419r1 3Tx0_2Rx0_0m_Thru.s4p

3Tx1_2Rx1_0m_Thru.s4p T10/11-419r1 3Tx1_2Rx1_0m_Thru.s4p

3Tx2_2Rx2_0m_Thru.s4p T10/11-419r1 3Tx2_2Rx2_0m_Thru.s4p

3Tx3_2Rx3_0m_Thru.s4p T10/11-419r1 3Tx3_2Rx3_0m_Thru.s4p

LSI Proprietary