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-rw-r--r--library/deviceModelLibrary/Transmission Lines/README.md6
1 files changed, 3 insertions, 3 deletions
diff --git a/library/deviceModelLibrary/Transmission Lines/README.md b/library/deviceModelLibrary/Transmission Lines/README.md
index fcc253a4..960a3dd3 100644
--- a/library/deviceModelLibrary/Transmission Lines/README.md
+++ b/library/deviceModelLibrary/Transmission Lines/README.md
@@ -13,11 +13,11 @@ transmission line, power sent from a generating point would be equal to power re
ceived at the load end. There is no power dissipation in the line itself.
-![tline](https://user-images.githubusercontent.com/43288153/184139198-e25e1e59-3b3f-415c-bf7d-99ebee4eb601.png)
+![tline](https://user-images.githubusercontent.com/43288153/184139198-e25e1e59-3b3f-415c-bf7d-99ebee4eb601.png)<br/>
fig: Symbol of tline
-**NOTE: We have to put one space between Z0=50 and Td=3ns**
+**NOTE: We have to put one space between Z0=50 and Td=3ns**<br/>
This can be done in the cir.out file after creating the circuits and converting kiCad
to NgSpice.
@@ -30,5 +30,5 @@ across all frequencies. As waves move towards the load end of the lossy transmis
line, distortion is caused by a change in speed.
The symbol for Single Lossy Transmission Lines(SLTL) is shown below-
-![ymod](https://user-images.githubusercontent.com/43288153/184139539-ed4eac77-934a-423c-8f7b-2cba4daf42d1.png)
+![ymod](https://user-images.githubusercontent.com/43288153/184139539-ed4eac77-934a-423c-8f7b-2cba4daf42d1.png)<br/>
fig: Symbol of SLTL