I actually used this as my schematic
The IC
https://www.mouser.com/datasheet/2/389/tda7396-957244.pdf
Brzrkr
The IC
https://www.mouser.com/datasheet/2/389/tda7396-957244.pdf
Brzrkr
I'm assuming when you say "the new amplifier" That's the on I'm building and the "second" is the radio or source.MisterBill2 said:There are two areas that need protection, first, the new amplifier, and second, the source of the driving signal. One or 2 resistors can protect both.
That is exactly correct. And now that I see the circuit posted, my statement seems to have been correct about the two resistors. The big challenge would be determining the input resistance of that module. That needs to be found on the data sheet because it can be a challenge to measure.I'm assuming when you say "the new amplifier" That's the on I'm building and the "second" is the radio or source.
Am I correct in this?
Brzrkr
Again you say this. Can you please explain to a big dummy(me) how a single wire and ground will work a speaker? To my knowledge a speaker is bidirectional, to get the full movement of the speaker and complete sound wave, since sounds are a form of sine wave. Nether of the two speaker wires is a ground connection to my knowledge, but instead a positive and negative VOLTAGE.Still today some radios that do not use a bridging type of amplifier circuit can have one side of the speaker line grounded.
Then it's working, it is a Mindblower right?Going over even my own notes is blowing my mind.
You can definitely have AC with one side grounded - you just need the driven side to alternate between positive and negative voltages. It's absolutely possible to drive a speaker with one side grounded.Again you say this. Can you please explain to a big dummy(me) how a single wire and ground will work a speaker? To my knowledge a speaker is bidirectional, to get the full movement of the speaker and complete sound wave, since sounds are a form of sine wave. Nether of the two speaker wires is a ground connection to my knowledge, but instead a positive and negative VOLTAGE.
Datasheet says 55-60kOhm input impedance.That is exactly correct. And now that I see the circuit posted, my statement seems to have been correct about the two resistors. The big challenge would be determining the input resistance of that module. That needs to be found on the data sheet because it can be a challenge to measure.
Not being an expert I didn't catch that on the data sheet but you gotta stop and think... It can't be able to handle amped current. If this was so you could put a 1000 watt speaker input to it. and you can kiss that 65 watt ceiling goodbye. Just think for a second and you put a radio with 100 watts a channel hooked up to it. Now your putting more in it than it's suppose to put out.ebeowulf17 said:Interestingly, it doesn't list abs max voltage or current figures for the inputs. I guess current won't be a problem with high input impedance, but it would be nice to know the voltage limits on the inputs. Maybe they think they've designed it to handle any voltage a car audio system can put out, so they're not worried about external input protection?
This pair (actually three) are my test speakers. If it works I can change it on the final design. I decided to build one to start with in case it didn't work then I could make changes on the other two I still have.MisterBill2 said:If you have additions and not changes then it may also work to add a second board. That way you can offer all sorts of options that would be on the second board.
Right mind, wrong object blowing itshortbus said:Then it's working, it is a Mindblower right?
I was actually reading the lack of abs. max. input ratings the other way. I think maybe they're confident that the chip already has all the input protection it needs built in.Not being an expert I didn't catch that on the data sheet but you gotta stop and think... It can't be able to handle amped current. If this was so you could put a 1000 watt speaker input to it. and you can kiss that 65 watt ceiling goodbye. Just think for a second and you put a radio with 100 watts a channel hooked up to it. Now your putting more in it than it's suppose to put out.
This pair (actually three) are my test speakers. If it works I can change it on the final design. I decided to build one to start with in case it didn't work then I could make changes on the other two I still have.
Right mind, wrong object blowing it
Brzrkr
You I will believe. But have never ever seen it in either cars or home speakers of any kind. Even back before car stereo they still used two wires to the speaker, not one.You can definitely have AC with one side grounded - you just need the driven side to alternate between positive and negative voltages. It's absolutely possible to drive a speaker with one side grounded.
I don't think they meant for the chip to be used in this way though. Wasn't it meant to be driven from "line in" levels, not "line out"?I was actually reading the lack of abs. max. input ratings the other way. I think maybe they're confident that the chip already has all the input protection it needs built in.
I'm honestly not sure either way - I saw something in the documentation about being suitable for "boost" amps, which sounded to me like it might ok to be fed from other amps, but I'm really not sure. That's why I recommended contacting the manufacturer for clarification.I don't think they meant for the chip to be used in this way though. Wasn't it meant to be driven from "line in" levels, not "line out"?
No need to take my word on this one. The LM386 shows a grounded speaker lead, as does a blurry schematic I found for a Harmon Kardon home stereo amplifier. I was hoping to find my amp, the AVR10, but the closest I got was an AVR2550.You I will believe. But have never ever seen it in either cars or home speakers of any kind. Even back before car stereo they still used two wires to the speaker, not one.
I own several assorted car audio devices that use the car body ground as a speaker connection. None of those is very high powered, only about 5 watts out, which is OK for a lot of applications. Of course, most of them also have a transformer output, and so a ground can work very well. Audio systems got away from transformers mostly to reduce the cost, since a decent transformer costs a couple bucks. .No need to take my word on this one. The LM386 shows a grounded speaker lead, as does a blurry schematic I found for a Harmon Kardon home stereo amplifier. I was hoping to find my amp, the AVR10, but the closest I got was an AVR2550.
View attachment 180726
View attachment 180727
Having said that, I've never personally seen a grounded output on a car stereo. I think the combination of power requirements and low supply voltages makes it a bad system for automotive applications.
thank you for contacting Arrow engineering team.
I have checked the part number: TDA7396 and it's datasheet.
as you can observe, it has short circuit dump and thermal protection as per fig.2
it has also clipping detection and for that In order to use this function, the CDDIA pin (#4) has to be resistively connected to a positive voltage reference (between 5V and Vs).
so you can use it for car radio amplifier.
for more information you can check the link
https://www.st.com/en/automotive-infotainment-and-telematics/tda7396.html
I did buy some step down DC converters but I did not add them in my first design. So what I get from this is placing 5v or above on pin #4 will enable the circuit protection? Is this what it's saying? I do remember once AG said you could put the 16v on it.website from above said:Key Features
- SYNCHRONIZING PIN FOR SIMULTANEOUS TURN-ON IN MULTI-DEVICE APPLICATIONS
- AUTOMUTE AT MINIMUM SUPPLY VOLTAGE DETECTION
- HIGH POWER CAPABILITY:\t\t65W/2MAX\t\t60W/2EIAJ\t\t45W/2@ VS= 14.4V, f = 1KHz, d = 10%\t\t
- MINIMUM EXTERNAL COMPONENT COUNT:\t\tNO BOOTSTRAP CAPACITORS\t\tNO BOUCHEROT CELLS\t\tINTERNALLY FIXED GAIN (26dB)\t\tNO SVR CAPACITOR\t\t
- DIFFERENTIAL INPUTS (EITHER SINGLE ENDED OR DIFFERENTIAL INPUT SIGNALS ARE ACCEPTED)
- AUTOMATIC MUTE DURING TURN-ON/OFF
- NO AUDIBLE POP DURING MUTE AND STBY OPERATIONS
- ST-BY FUNCTION (CMOS COMPATIBLE)
Well, that's a disappointing response. That's some pretty vague, unclear language in my book.Finally got a response back from the manufacturer
I did buy some step down DC converters but I did not add them in my first design. So what I get from this is placing 5v or above on pin #4 will enable the circuit protection? Is this what it's saying? I do remember once AG said you could put the 16v on it.
Brzrkr