Roofing Filters, Transmitted IMD and Receiver Performance

Slides:



Advertisements
Similar presentations
Números.
Advertisements

Un percorso realizzato da Mario Malizia
AGVISE Laboratories %Zone or Grid Samples – Northwood laboratory
Roofing Filters, Transmitted BW and Receiver Performance
Statistics Part II Math 416. Game Plan Creating Quintile Creating Quintile Decipher Quintile Decipher Quintile Per Centile Creation Per Centile Creation.
Reflection nurulquran.com.
EuroCondens SGB E.
Worksheets.
& dding ubtracting ractions.
Addition and Subtraction Equations
Multiplication X 1 1 x 1 = 1 2 x 1 = 2 3 x 1 = 3 4 x 1 = 4 5 x 1 = 5 6 x 1 = 6 7 x 1 = 7 8 x 1 = 8 9 x 1 = 9 10 x 1 = x 1 = x 1 = 12 X 2 1.
Division ÷ 1 1 ÷ 1 = 1 2 ÷ 1 = 2 3 ÷ 1 = 3 4 ÷ 1 = 4 5 ÷ 1 = 5 6 ÷ 1 = 6 7 ÷ 1 = 7 8 ÷ 1 = 8 9 ÷ 1 = 9 10 ÷ 1 = ÷ 1 = ÷ 1 = 12 ÷ 2 2 ÷ 2 =
/4/2010 Box and Whisker Plots Objective: Learn how to read and draw box and whisker plots Starter: Order these numbers.
Add Governors Discretionary (1G) Grants Chapter 6.
CALENDAR.
1 1  1 =.
1  1 =.
CHAPTER 18 The Ankle and Lower Leg
Decimals 10ths and 100ths.
The 5S numbers game..
突破信息检索壁垒 -SciFinder Scholar 介绍
A Fractional Order (Proportional and Derivative) Motion Controller Design for A Class of Second-order Systems Center for Self-Organizing Intelligent.
Ten-Tec Amateur Radio, commercial and military radio, tool and die services, enclosure manufacturing.
Numerical Analysis 1 EE, NCKU Tien-Hao Chang (Darby Chang)
The basics for simulations
Factoring Quadratics — ax² + bx + c Topic
EE, NCKU Tien-Hao Chang (Darby Chang)
1 Chelmsford Amateur Radio Society Advanced Licence Course Anthony Martin M1FDE Slide Set 9: v1.0, 24-Aug-2004 (4) Receivers-1 - Parameters Chelmsford.
Receiver Performance Transmitted BW Contest Fatigue
DSP Radios Not Perfect Rob Sherwood NC Ø B Dayton Drake Forum 2007 Sherwood Engineering.
New Offerings 2013 Since Dayton 2012
Look at This PowerPoint for help on you times tables
Dynamic Access Control the file server, reimagined Presented by Mark on twitter 1 contents copyright 2013 Mark Minasi.
TCCI Barometer March “Establishing a reliable tool for monitoring the financial, business and social activity in the Prefecture of Thessaloniki”
Progressive Aerobic Cardiovascular Endurance Run
Biology 2 Plant Kingdom Identification Test Review.
Visual Highway Data Select a highway below... NORTH SOUTH Salisbury Southern Maryland Eastern Shore.
Comparison of X-ray diffraction patterns of La 2 CuO 4+   from different crystals at room temperature Pia Jensen.
MaK_Full ahead loaded 1 Alarm Page Directory (F11)
Least Common Multiples and Greatest Common Factors
LN-251 SimINERTIAL Performance
Midterm Review Part II Midterm Review Part II 40.
2011 WINNISQUAM COMMUNITY SURVEY YOUTH RISK BEHAVIOR GRADES 9-12 STUDENTS=1021.
Before Between After.
2011 FRANKLIN COMMUNITY SURVEY YOUTH RISK BEHAVIOR GRADES 9-12 STUDENTS=332.
Subtraction: Adding UP
Numeracy Resources for KS2
1 Non Deterministic Automata. 2 Alphabet = Nondeterministic Finite Accepter (NFA)
Static Equilibrium; Elasticity and Fracture
Resistência dos Materiais, 5ª ed.
& dding ubtracting ractions.
1 Non Deterministic Automata. 2 Alphabet = Nondeterministic Finite Accepter (NFA)
Multiplication Facts Practice
Graeme Henchel Multiples Graeme Henchel
Schutzvermerk nach DIN 34 beachten 05/04/15 Seite 1 Training EPAM and CANopen Basic Solution: Password * * Level 1 Level 2 * Level 3 Password2 IP-Adr.
Inside the K3 High Performance Rig Design Dynamic Range is your friend! Dynamic Range is your friend! Hands on Ham Radio. © 2009 Elecraft, Inc.
Choosing a Transceiver Far From Simple
Radios Used in a Contest Environment Rob Sherwood NC Ø B Have Radios Gotten Better in the Last 5 or even 25 Years? Sherwood Engineering.
Transceiver Performance & Evolution of lab testing
Transceiver Performance What’s new in the last year? Rob Sherwood NC Ø B Lots of options for your dollars. Sherwood Engineering.
Receiver Performance Transmitted BW Contest Fatigue Rob Sherwood NC Ø B Limitations to a better contest score may not always be obvious. Sherwood Engineering.
Transceiver Performance What’s new in 2011?
Choosing a Transciever Far From Simple Rob Sherwood NC Ø B The “Numbers Game” is no longer a level playing field. Sherwood Engineering.
Receiver Performance Transmitted BW Contest Fatigue Rob Sherwood NC Ø B Limitations to a better contest score may not always be obvious. Sherwood Engineering.
Roofing Filters: What are they, and how do they Help?
1 © 2011, Utah DX Association, All rights reserved DX University Sponsored by the Utah DX Association.
Transceiver Performance for the 6m - UHF operator
S Meters.
High Performance IF and Transverter Design
Inside the K3 High Performance Rig Design
Presentation transcript:

Roofing Filters, Transmitted IMD and Receiver Performance Rob Sherwood NCØB What’s important when it comes to choosing a radio? Sherwood Engineering

Why Did I Start Testing Radios ? Purchased a new Drake R-4C in 1975 Used it during the ARRL 160m CW contest Radio performed miserably, yet Specs Were Good 70s: League expanded testing to include Noise Floor & Dynamic Range, new concepts for the amateur. R-4C tested well for Dynamic Range, but flunked CW contest 101. Was the wrong thing being tested or did the test not approximate a real amateur environment, especially a CW contest environment?

20 kHz Dynamic Range test showed that in a multi- conversion radio, it was only testing the radio’s front end. If the first IF was 6 - 20 kHz wide, be it at 5 MHz, 9 MHz or 45 - 70 MHz, the radio would overload in a CW pile up. 20 kHz test showed no hint of the problem Solution: Place test signals close together so they pass through 1st IF Filter  the Next Amplifier  Mixer Close-in dynamic range numbers are ALWAYS worse than the wide-spaced numbers, for a radio with a single wide roofing filter.

What 2 Numbers are Most Important for a CW Contester? Noise Floor Close-in Dynamic Range

What is Noise Floor? Sensitivity is a familiar number, normally applies to SSB. Sensitivity = 10 dB Signal + Noise / Noise (10 dB S+N/N) Noise Floor = 3 dB Signal + Noise / Noise (3 dB S+N/N) Noise floor can be measured at any filter bandwidth, CW or SSB, for example. League normally only publishes noise floor for a CW bandwidth, typically 500 Hz CW filter.

What is Dynamic Range? What is Close-in Dynamic Range vs. Wide-Spaced Dynamic Range? Why is Close-in Dynamic so important for CW ops? Why is it less important for SSB operators?

Third Order IMD Signal IMD

What if we could switch in a narrow Roofing Filter only slightly wider than the final selectivity? 500 Hz Wide 6–12 kHz Amplifier Mixer 600 Hz This keeps the undesired strong signals from progressing down stream to the next stages

Wide & Close Dynamic Range 20 kHz Spacing 2 kHz Spacing First IF Filter at 70.455 MHz IMD 20 kHz Away 12 kHz Wide First IF Filter at 70.455 MHz IMD 2 kHz Away 12 kHz Wide

When are 2 Out of Pass Band Signals a Problem? If you know the close-in dynamic range of a radio, at what signal level will IMD start to be a problem? Assume S9 = 50 V which is –73 dBm Assume a typical radio:  500 Hz CW filter  Noise Floor of -128 dBm  Preamp OFF Dynamic Range Signal Level Causing IMD = Noise Floor 55 dB S9 60 dB S9 + 5 dB 65 dB S9 + 10 dB 70 dB S9 + 15 dB 75 dB S9 + 20 dB 80 dB S9 + 25 dB 85 dB S9 + 30 dB 90 dB S9 + 35 dB 95 dB S9 + 40 dB 100 dB S9 + 45 dB

Transmitted IMD Collins 32S-3

Compare the Old vs. New Order Collins Yaesu Difference IMD 32S-3 FT-450 in dB 3rd -39 dB -30 dB 9 dB 5th -49 dB -37 dB 12 dB 7th -59 dB -42 dB 17 dB 9th -68 dB -48 dB 20 dB

Close-in Signal and Splatter Signal 5 kHz Away IF Filter vs. Adjacent Signal and IMD Splatter

How Many Roofing Filters are Needed? It depends on your mode of operation. For SSB, a single 15 kHz roofing filter is adequate, such as in the Icom 756 Pro II / Pro III with a close-in dynamic range of 75 dB. Other radios, old and new with similar performance: Drake R7/TR7, Collins 75S-3B/C, Icom 781, TS-830/930, FT-1000X, T-T Omni-V Would a 3 kHz roofing filter be better? Yes, a fairly new concept. On CW, a single wide roofing filter is not adequate. CW signals do not have IMD products, thus strong adjacent signals do not have much energy in the CW passband of your filter. (Some key click and phase-noise energy may be heard.)

Conclusions Contesters – DXers – Pileup operators need the best receiver possible, especially for CW operation The Sherwood 600 Hz CW roofing filter fixed the R-4C in 1976, and the Ten-Tec Orion put that concept in a commercial design in 2003. Now the Elecraft K3 also offers multiple roofing filters of AM, SSB & CW bandwidths.

25 years of up conversion radios have generally offered a 20 kHz dynamic range in the 90s but a 2 kHz close-in dynamic range in the 70s. Typical degradation of dynamic range within the up conversion filter bandwidth is 25 dB. Now the buzz word is a 3-kHz roofing filter in up- conversion radios, though some are pure hype. IC-7800 3-kHz filter is 5+ kHz wide. FT-2000 3-kHz filter is 7 kHz wide, with worse IMD than its 6 kHz filter.

It is not possible to offer CW bandwidth Roofing Filters at VHF (up-conversion) frequencies. The Orion II and the K3 roofing filters are in the 8 to 9 MHz range, similar to the R-4C at 5 MHz. The only radios with no roofing filters at all are from Flex, like the 5000A. It basically converts everything to audio and filters it in DSP.

What dynamic range is possible and needed for CW? 80 dB or better @ 2 kHz. 1976 Sherwood / Drake R-4C: 84 dB 2001 Ten-Tec Omni-VI+: 80 dB 2005 Ten-Tec Orion II: 95 dB 2007 Flex 5000A: 96 dB 2007 Ten-Tec Omni-VII: 80 dB 2008 Elecraft K3: 101 dB (with 200 Hz roofing filter)

Other radios for comparison, 2 kHz data: Kenwood TS-850S: 77 dB Collins 75S-3B/C: 72 dB Kenwood TS-870S: 69 dB Yaesu FT-2000: 63 dB Icom IC-7000: 63 dB Yaesu FT-One: 63 dB Yaesu FT-101E: 59 dB Drake R-4C Stock: 58 dB Yaesu FT-757: 56 dB Yaesu VR-5000: 49 dB

Sherwood Engineering http://www.sherwood-engineering.com http://www.NC0B.com