Antenna Design - Review In antenna design, an important design parameter is the wavelength of the EM wave Wavelength is a function of frequency Antenna.

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Presentation transcript:

Antenna Design - Review In antenna design, an important design parameter is the wavelength of the EM wave Wavelength is a function of frequency Antenna length is typically either 1 wavelength ¼ wavelength ½ wavelength

Frequency vs wavelength

Wavelength Calculations Wavelength units: l (wavelength) m/cycle f (frequency) cycles/sec = hertz c (speed of light) m/sec = 3.0 x 108 m/sec Wavelength equation l = c / f m/cycle = (m/sec) / (cycles/sec)

Sample calculation Find the wavelength of a frequency of 850 MHz Convert 850 MHz to Hz 850 MHz = 850 x 106 Hz = 8.50 x 108 Hz Use wavelength equation l= c/f where c = speed of light = 3.0 x 108 m/sec l = (3.0 x 108 m/sec ) / (8.50 x 108 cycles/sec) l = .353 m/cycle Convert to cm gives l = 35.3 cm/cycle For a ¼ wavelength antenna = (35.3cm/cycle)/4=8.825cm/cycle

Design Criteria Maximum size 20mm x 20mm Minimum size 5mm x 5mm No sharp corners Length must equal wavelength of chosen application Must have a picture frame around the design to allow for cutting into individual antenna No offensive or controversial designs Keep it simple but original

Needs contrasting color for dimensions Cingular Logo design Needs contrasting color for dimensions

Football Design Do not use white on black background– Needs contrasting color for dimensions

XBOX design Note-DO NOT USE WHITE ON BLACBACKGROUND

Batman Top Section (enlarged) Full Dimension Drawing

Aladdin’s Lamp Dimensions not in contrasting color Lots of wasted space

“Hi” design

UNC-Charlotte Crown design

Overall frame size 10.0mm x 8.00 mm UNCC 49er Pick Overall frame size 10.0mm x 8.00 mm Lots of wasted space

Eagle head

Clover Design

UNCC Design does not have to be square – can be rectangular provided no side is larger than 20mm

Dilbert Way too complex but cool Final design is 122.5 mm long

The Dilbert Antenna Design

The goal of the dimension drawing is to create a “mask” Your mask will be used to create your design on your wafer It will be printed full size and repeated in rows and columns to fill 100mm wafer Your mask will be created on a special transparency sheet Your design will be black to block light with a clear background to allow light to pass It is a low cost alternative to expensive glass masks which can cost $500 or more each

Antenna Design to Mask Formation Arrayed design printed on special transparency paper Number of good antenna per wafer = 13

Approximately 70 complete antenna per wafer Satellite Dish Approximately 70 complete antenna per wafer

105 complete antenna per wafer Simple Spiral Approximately 105 complete antenna per wafer

Assignment – due next class One per team required – additional designs are allowed Dimension drawing for your team’s antenna design Overall length must match your antenna design length All corners to be rounded Must Not be on “Black” background Dimensions must be in a contrasting color Keep it simple Preview design before submission Must have a dimensioned frame (box) around the design. This is necessary as a cutting guide for slicing the wafer into individual antenna AutoCAD available on MOSAIC under Mechanical Engineering – Autodesk AutoCAD tutorial on the Engr 1202 ECE web site TA available to help