Date: Fri, 29 Mar 2024 15:23:04 +0000 (GMT)
Message-ID: <2029494794.211.1711725784197@[172.30.0.157]>
Subject: Exported From Confluence
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Where To Find This=
Example
Select Help > Open Examples... from the menus and type either =
the example name listed above or one of the keywords at the bottom of this =
page.
You can also open the project directly from this page using this button.=
Make sure to select the Help > Enable Guided Help from=
the menus before clicking this button.
Open Install Example
Design Notes
Bond Wire (BWIRES) Model
The BWIRES element is capable of modeling one bond wire or several bond =
wires that are coupled among each other. The model is based on the EIA/JEDE=
C Standard 59. It is a dynamic element, meaning that the schematic symbol c=
hanges as the number of wires is increased. BWIRES always has one wire when=
it is first placed - the symbol expands to include more wires as the param=
eter "N" is changed.
This example shows a comparison involving a series capacitor mounted bet=
ween two transmission lines, with one, two, and three bond wires. The follo=
wing procedure should be used when setting up the BWIRES element:
- Make sure there is a Drawing Layer called "BondWires" in the Layer Set=
up (Options > Drawing Layers ). If there isn't one already,=
then it needs to be added so the BWIRE element has a layer on which to dra=
w.
- Open the 2D and 3D views of the schematic to view the effecst of chang=
ing parameters in the next steps.
- Place the BWIRES element on the schematic.
- Set the "P0" and "P1" parameters to indicate approximate wire e=
ndpoints so that BWIRE has a reasonable initial length setting (note that t=
hese parameters secondary parameters and that the user needs to press the "=
Show Secondary" button in the "Element Options" dialog box) .
- Set the "N" parameter, the number of wires.
- Wire the element as desired on the schematic.
- Make sure the faces of the cells to which the wire is connecting are s=
et up reasonably. BWIRES does not have to connect to variable faces or area=
pins, but it will be much easier to keep the layout connected if these set=
tings are used. Otherwise, the default connection point will be the center =
of the edge of the adjoining component, which is rarely an accurate model o=
f the physical structure. Use of variable faces and/or area pins allows the=
wires to be moved around freely while maintaining layout connectivity.
- Adjust the wire physical parameters:
o Alpha/Beta set the departure/arrival angles
o H1/H2/H3 set the height information for the endpoints
o D1_Ratio/D2_Ratio set the ratios of the respective segments (see Eleme=
nt Help for additional detail)
- Use the layout view to drag the wire(s) to the final position(s). If y=
ou click once on BWIRES, then all wires can be moved as a unit. If you doub=
le-click on BWIRES, you have the ability to move individual wires and/or en=
dpoints. As noted above, the wires that comprise a BWIRES element do not ha=
ve to be parallel.
Wires do not have to be parallel, nor do they have to terminate on the s=
ame schematic elements. For example, two M3CLINs could be connected by a si=
ngle 6-wire element, with two wires connecting to each pair of lines. Each =
wire must have the same shape parameters (Alpha, Beta, H1, H2, H3, D1_Ratio=
, D2_Ratio) but the positioning is completely arbitrary. Note that with the=
new BWIRES2 element added in AWR2006 each wire can have a different shape =
parameter.
The results show the effect of adding wires or, effectively, reducing th=
e inductance.
One Wire Schematic
Shows a single bond wire attached between a capacitor and a transmission=
line.
Two Wires Schematic
Shows two bond wires attached between a capacitor and a transmission lin=
e
Three Wires Schematic
Shows three bond wires attached between a capacitor and a transmission l=
ine
Insertion Loss Graph
Shows the insertion loss of each of the schematics. As expected, the ins=
ertion loss drops as the number of bond wires increases.
Schematic - Three_Wires
Schematic Layout - Th=
ree_Wires
Schematic 3D Layout=
- Three_Wires
Graph - Insertion Loss
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