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 on: December 19, 2017, 01:23:37 AM 
Started by etl17 - Last post by horvatht
There is an Iot subfolder under examples...

Please contact the Techical support to get a new download link

 on: December 18, 2017, 04:40:35 PM 
Started by etl17 - Last post by etl17

It appears that the new Motor control and drives examples (under the Infineon examples folder) are throwing an error for missing SPICE models when I try to simulate them. (Tina v11.2)


 on: December 18, 2017, 04:15:03 PM 
Started by etl17 - Last post by etl17
Thank you Horvath.

Well, I can't seem to locate any examples for the new IoT functionality for example.

How do I get the update installer again? Once the update is run, there is no option to run it again... Is there any other method to download the update installer separately?


 on: December 18, 2017, 09:39:04 AM 
Started by etl17 - Last post by horvatht
Yes, every circuit should be included in the update. What circuit do you miss?

Some subfolders in the examples folder are reorganised, so I suggest you to delete the examples subfolder and re-run the update in Repair mode, This will generate you such an examples folder which you would get if you were running the setup in new instance mode.

 on: December 18, 2017, 09:34:42 AM 
Started by JSE009 - Last post by horvatht
Please check your circuit: if it contains analog components then you should use the TR mode instead of the DIG mode. The DIG mode can be only used for pure digital circuits.

If the simulation doesn't start in TR mode either then please contact the Tech support service at and send your circuit.

 on: December 17, 2017, 06:14:02 AM 
Started by JSE009 - Last post by JSE009
I hope someone can help me out.
I am trying to simulate some PIC uController (16F628A and 16F877A) with HEX compiled file but whatever I try I can not start the simulatin (DIG).
I can load the hex-files but when starting (DIG) the simulation will not start Undecided
I am using Tina v11 and for testing I have compiled HEX-files with FlowCode 6 and Proton.
Someone any idea what I do wrong?

I also try to load the ASM-file and compiled it via Tina and load it into the MCU (no erros) but still the simulation will not start.

 on: December 16, 2017, 03:12:05 PM 
Started by etl17 - Last post by etl17
Hi there,

Thank you for the nice 11.2 update to Tina.

As I look over the new features of 11.2, I noticed that some of the mentioned examples are missing (or I'm just not able to locate them). More specifically, I noticed that the new Arduino and IoT examples don't seem to be anywhere, could you please help provide the location to look?. As I watch the new features video, I also notice other example designs that I have a feeling are missing from the installed update as well. Can you please verify that all the new feature demo designs are indeed included in the update package? Finally, is doing a "repair" still the correct way to perform the update, or you'd recommend a "new" install instead?

Again, thank you for this very nice Holiday present,

 on: October 18, 2017, 08:07:07 AM 
Started by dbrown2k - Last post by dbrown2k
Thanks, that makes sense, but was not clear initially.

 on: October 18, 2017, 01:45:37 AM 
Started by dbrown2k - Last post by horvatht
You should select the main (top level) subcircuit which is in your case 'MAX9634F'

 on: October 17, 2017, 08:41:27 PM 
Started by dbrown2k - Last post by dbrown2k
So I have a micro model from the MAXIM website for a current sense amplifier. When I test to see if it compiles its fine, but when I come to import it I get a choice of 3 sub-circuits where it should be using all of them.

How do I import this into TINA? or how do you re-factor / collapse multiple subcircuits into a single 'file'? (i've not generated my own spice models so have no idea about the syntax).

* ------------------------------
* Revision 0, 07/2012
.subckt MAX9634F RS+ RS- OUT GND
X_1 OUT 2 GND RS+ 5 RS- MAX9634
.subckt MAX9634 1 2 3 4 5 6

V_MAX9634_V1         MAX9634_N102868240 3 3mV
G_MAX9634_G1         MAX9634_N10291173 3 4 3 13.0435n
C_MAX9634_C1         3 MAX9634_N10293664  1n 
D_MAX9634_D5         MAX9634_N10307477 MAX9634_N10286938 diodemacro_ideal
I_MAX9634_I1         MAX9634_N10291173 3 DC 0.18478u 
R_MAX9634_R2         MAX9634_N10286582 4  200 
D_MAX9634_D6         MAX9634_N10286918 MAX9634_N10307477 diodemacro_ideal
V_MAX9634_AMP_Vic2         MAX9634_AMP_N99860681 3 28V
G_MAX9634_AMP_Gcm1         MAX9634_N10286736 3 MAX9634_AMP_N9990110 3
+  -12.589E-9
G_MAX9634_AMP_G1         MAX9634_N10286736 3 MAX9634_N10286582
+  MAX9634_AMP_N9985356 -1
R_MAX9634_AMP_RG         3 MAX9634_N10286736  1Meg 
E_MAX9634_AMP_Ecm         MAX9634_AMP_N99899100 3 MAX9634_AMP_N9985410 3 1
R_MAX9634_AMP_Ri+         MAX9634_AMP_N9985410 MAX9634_N10286582  500Meg 
R_MAX9634_AMP_Rcm1         MAX9634_AMP_N9990142 MAX9634_AMP_N9990110  1 
C_MAX9634_AMP_Cgbw         3 MAX9634_N10286736  0.0501u 
R_MAX9634_AMP_Rcm2         3 MAX9634_AMP_N9990142  24 
D_MAX9634_AMP_D1         MAX9634_N10286736 MAX9634_N10289958 diodemacro_ideal
E_MAX9634_AMP_Eic1         MAX9634_AMP_N9986028 3 MAX9634_AMP_N9985410
+  MAX9634_AMP_N99859541 -1E5
R_MAX9634_AMP_Ri-         MAX9634_N10286590 MAX9634_AMP_N9985410  500Meg 
L_MAX9634_AMP_Lcm         MAX9634_AMP_N9990142 3  0.15279mH 
D_MAX9634_AMP_D2         3 MAX9634_N10286736 diodemacro_ideal
G_MAX9634_AMP_Gcm2         MAX9634_AMP_N9990110 3 MAX9634_AMP_N9990098 3 -1
V_MAX9634_AMP_Vic3         MAX9634_AMP_N99859541 3 1.5V
M_MAX9634_AMP_M1         MAX9634_N10286736 MAX9634_AMP_N9986042 3 3 NJNT L=1u
+  W=2u
V_MAX9634_AMP_Voff         MAX9634_AMP_N9985356 MAX9634_N10286590 0.1mV
C_MAX9634_AMP_Ccm         MAX9634_AMP_N99899100 MAX9634_AMP_N9990098  16m 
M_MAX9634_AMP_M2         MAX9634_N10286736 MAX9634_AMP_N9986028 3 3 NJNT L=1u
+  W=2u
E_MAX9634_AMP_Eic2         MAX9634_AMP_N9986042 3 MAX9634_AMP_N9985410
+  MAX9634_AMP_N99860681 5E6
R_MAX9634_AMP_Rcm         3 MAX9634_AMP_N9990098  1Meg 
M_MAX9634_M1         MAX9634_N10286582 MAX9634_N10286736 MAX9634_N10307477 3
+  NAMP L=1u W=500u
E_MAX9634_E2         MAX9634_N10295792 3 4 3 1
E_MAX9634_E1         MAX9634_N10289958 3 MAX9634_N10293664 3 1
X_MAX9634_F1    6 MAX9634_N10291173 4 3 MAX9634_MAX9634_F1
D_MAX9634_D7         1 MAX9634_N10286938 diodemacro_ideal
D_MAX9634_D8         MAX9634_N10286918 1 diodemacro_ideal
D_MAX9634_D11         MAX9634_N10293664 MAX9634_N10295792 diodemacro_ideal
I_MAX9634_Ish         MAX9634_N10286938 MAX9634_N10286918 DC 7.5mA 
G_MAX9634_G2         MAX9634_N10293664 3 MAX9634_N10295792 3 -5E-6
D_MAX9634_D10         MAX9634_N102868240 1 diodemacro_ideal
D_MAX9634_D12         3 MAX9634_N10293664 diodemacro_ideal
R_MAX9634_R3         MAX9634_N10286590 6  200 
R_MAX9634_R1         3 1  10k
.model diodemacro_ideal d(n=0.001)
.model NJNT nmos(VTO=0.5 KP=50E-2)
.model NAMP nmos(VTO=0.1 KP=100E-6)
.ends MAX9634
.subckt MAX9634_MAX9634_F1 1 2 3 4 
F_MAX9634_F1         3 4 VF_MAX9634_F1 1
VF_MAX9634_F1         1 2 0V
.ends MAX9634_MAX9634_F1

* Copyright (c) 2003-2012 Maxim Integrated Products.  All Rights Reserved.

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