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=20
=20
=20
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Class-D=20
Audio Amplifier =20
=20
=20
The=20
Audio Pages
Elliott Sound=20
Products
Project=20
114
BP4078 Class-D Audio Power=20
Amplifier Rod Elliott (ESP)
These modules are available directly =
from ColdAmp - click =
the PCB image=20
for details.
Introduction =20
The ColdAmp Class-D power amp modules are discussed in the PWM=20
Amplifiers article, but this project description shows specific =
details of=20
the modules and how to use them in real life. Because of the design, =
they are=20
much easier to use than many competing modules, and for the simplest =
application=20
need nothing more than a power supply, and input and output =
connections.
There are many other options, including ...
Balanced input capability
Volume control connections
External low voltage supplies for lower dissipation
Clipping indicator
Thermal monitor (thermistor)
Synchronisation of two (or more) amplifiers
Comprehensive protection circuits *
The data sheet and application notes are very comprehensive, so armed =
with=20
these, you will have no difficulty building a complete system using the =
modules.=20
The project here is essentially just an introduction to the modules, =
showing a=20
stereo amplifier that I built using prototype units, and giving the =
basic idea=20
for a high powered subwoofer amplifier.
Although they are easier to use than many of the other Class-D amps, =
the=20
ColdAmp modules sacrifice nothing in terms of sound quality. =
Distortion,=20
noise and frequency response are all excellent, and listening tests have
revealed nothing that you would not expect to hear from any high =
fidelity=20
amplifier.
Description =20
The first application has to be a stereo power amp, since that's what =
I built=20
using two prototype modules. The reasons for this choice are twofold ... =
a good=20
high powered stereo amp is always useful, and it was important to be =
able to=20
assess the sound quality in this role. I am at something of a =
disadvantage in=20
this, because the only full range speakers I have are bookshelf units. =
They are=20
quite good, but obviously don't have deep bass capability and suffer the =
normal=20
limitations of most bookshelf designs.
I have long been of the opinion that bookshelf speakers are so =
called=20
because one merely has to add a plank of wood to make a convenient =
bookshelf.=20
The speakers are best left disconnected.
Having said that, the units I have sound very good with the =
ColdAmp
modules - there is no discernible difference between the Class-D amps =
and a=20
'GainClone' amp (at levels within the range of the GainClone, of =
course). It=20
must be admitted that the resolution of the speakers used is not as good =
as I=20
would prefer, but at present I don't have anything else available (my =
main=20
system is tri-amped, and therefore very limiting for amplifier =
evaluation).
The simplest possible connection requires only a power supply, plus =
input and=20
output connections. While there are many other functions, most will =
never be=20
needed for a home audio system - especially at lower supply voltages. =
Heat is=20
not a problem - the amps get slightly warm with no load because of the =
on-board=20
regulators, and only very slightly warmer in use at normal listening =
levels.=20
This is with =B160V supplies (=B156V nominal, since I used a pair of 40V =
transformers). Remember that the supply voltage will always be =
higher=20
than expected at no load, and lower than expected at full load.
Figure 1 - Front View of Completed=20
Amplifier
The front view is shown above. The amp modules are visible at the =
back,=20
mounted on fabricated heatsinks made from some scrap aluminium I had =
handy.=20
Normally, the amps would simply be bolted to an aluminium base-plate, =
and that=20
would provide all the heatsinking needed for anything short of =
continuous high=20
power usage.
Figure 2 - Rear View of Completed=20
Amplifier
At the rear, you can see the balanced XLR and unbalanced RCA =
connectors. The=20
switch selects between balanced and unbalanced (although the balanced =
input is=20
disabled - see below for the reasons for this). Output connectors are =
standard=20
combination binding post types. In case you were wondering about the =
apparent=20
lack of a fuse, not so. The IEC connector is a fused type. Individual =
amplifier=20
fuses are located at the power supplies.
The power transformers are mounted at the front of the enclosure to =
relieve=20
some of the strain if (when?) I mount the amp in my rack in the =
workshop. The=20
power supply is between the transformers and power amps. I used 4 x =
8,000uF caps=20
and a pair of 40+40V 300VA transformers, with the supply arranged as =
'dual mono'=20
(i.e. each amp has its own power supply, sharing only the mains lead, =
IEC=20
connector and power switch or soft-start circuit.
This is overkill, and is not warranted for normal use - I did it that =
way=20
simply because it was convenient at the time. The modules are small =
enough that=20
they will fit easily into a 1RU case (1=BE" high). This makes for a =
potentially=20
very slim-line high power amp, but the transformers will pose a problem. =
While a=20
switchmode supply could be used, this is a more expensive option than a=20
conventional power transformer based supply.
Construction =20
Apart from the power supply (described in detail below), the =
construction of=20
the amp is primarily a mechanical exercise. Having worked out where =
everything=20
will go, and bearing in mind the requirement for good isolation of input =
and=20
output leads, it is a matter of drilling the case and connecting =
everything=20
together.
The modules use 'fast-on' (also known as quick connect) crimp lugs, =
although=20
if you get uninsulated ones they can easily be soldered then shrouded =
with=20
heatshrink tubing.
Figure 3 - Module Connections
Figure 3 shows the general layout of the module's PCB. The terminals =
marked=20
in red are the only ones you need to get the amp working. Those shown in =
blue=20
are optional, and rather than give a complete description here, it's =
better to=20
refer to the data sheet [1 ].
The terminals shown in green are only needed if you must have the =
lowest=20
possible amp dissipation. Again, these are described fully in the data=20
sheet.
While the volume control terminals are a good idea for some =
applications, in=20
general I suggest that you do not use them. This is from my own=20
experience - while everything is fine for low level inputs, if your =
source can=20
output more than about 1V RMS, you will run into trouble because the =
balanced=20
input stage can clip. When used in balanced or non-inverting =
single-ended mode,=20
the stage has a gain of 2, but operates from a =B15V supply. In theory, =
that gives=20
you a maximum input level of 1.5V RMS, but with zero headroom. Unless =
kept very=20
short, the leads to the volume control also pick up considerable
interference.
Speaking of interference ... all PWM amps have the capacity to =
create=20
interference, and the ColdAmp BP4078 is no exception. While I =
have not=20
found it to be a problem with the amp in its case, during initial tests =
my=20
favourite FM station was almost completely blocked when everything was =
just=20
sitting on the workbench. The amplifier modules should always be inside =
a metal=20
case of some description, as this provides shielding against RF=20
interference.
Figure 4 - Recommended Wiring =
Scheme
The wiring scheme above is the same as I used in the final =
configuration=20
shown above. Note that the balanced input capability is disabled (the =
XLR=20
connectors are wired as unbalanced). I did use the fully balanced =
operation=20
initially, but there was too much noise from the volume control wiring, =
and I=20
ran into problems with input stage overload. None of the 'bells and =
whistles'=20
were used in this instance, because it was put together to assess the =
sound=20
quality of the amp and take measurements. While clipping into a load is =
easy, my=20
speakers would explode if I ran the amp to full power into them, and =
even during
extensive testing, I was never able to get the amps above slightly =
warm.
Note that the above diagram is intended to be literally interpreted. =
The=20
supply is shown in simplified form (see below for all the details), but =
the=20
wiring should be done exactly as shown. Do not be tempted to run the =
speaker=20
return back to the amp board - take it directly to the supply star =
grounding=20
point (the centre tap of the capacitors). Input connectors are standard =
3 pin=20
0.1" headers, and the crimp connectors are readily available. =
Personally, I=20
don't recommend that you crimp the connectors at all - they are more =
reliable if=20
carefully soldered after performing a rudimentary crimp with a small =
pair of=20
pliers.
Modules supplied by ESP will include the quick-connect (Fast-On) =
terminals=20
and an input connector. The input cable must be twin shielded =
microphone=20
cable, even for unbalanced inputs. The negative input and shield are =
joined at=20
the input socket (or the pot if used), and the input connectors should =
be=20
isolated from the chassis. In some cases, it may be advantageous to join =
the=20
input ground to chassis with a 100nF ceramic capacitor - right at the =
input RCA=20
connector. This is something that you must experiment with, because =
different=20
layouts will give different results.
Sub-Woofer Amplifier =20
It is to be expected that BP4078 amps will find themselves in many a
sub-woofer, and they are absolutely ideal for this. Because heatsink
requirements are minimal, a simple flat plate can be used for a sub =
amp, making=20
it very simple to build. Incorporating extras like the P48 subwoofer =
controller=20
(or P71 Linkwitz transform circuit) and/or the P84 subwoofer equaliser =
is no=20
different from adding them to a Class-AB amp, and a suitable scheme is =
shown=20
below.
Figure 5 - Subwoofer General =
Layout
The above is only a suggestion, of course. The idea is to give you a =
general=20
scheme that you can work with to suit your own purposes. Because the =
BP4078 is=20
so small, you get lots of room to play with on even a relatively modest =
sized=20
panel, and with nothing more than a few holes to drill, it is much =
simpler to=20
build than an equivalent sized Class-AB amplifier.
I will soon be able to add a photo of my own ColdAmp based =
subwoofer=20
amplifier, which will replace the one I have at present. The arrangement =
will be=20
almost exactly what you see above, except a P48 board will be used =
instead of=20
the P71 shown (since this is what I have now). The other side of the =
panel needs=20
a minimum of controls and adjustments - all I have at present is a level =
control, and that will not change.
Power Supply
WARNING =
: Mains
wiring must be done using mains rated cable, which should be =
separated
from all DC and signal wiring. All mains connections must be =
protected
using heatshrink tubing to prevent accidental contact. =
Regulations where=20
you live may demand that mains wiring be performed only by a =
qualified=20
electrician - Do not attempt the power supply unless suitably =
qualified.=20
Faulty or incorrect mains wiring may result in death or serious=20
injury.
The power supply for a PWM amp does not need to be quite as large as =
that for=20
an equivalent analogue amplifier, because of the high efficiency. =
Class-D amps=20
typically run to about 90% efficiency, versus a maximum of 70% for =
Class-AB. As=20
a result, less power is expected from the supply. In general, a =
transformer=20
rated at the same power as you expect from the amplifier (on peaks - not =
continuous) is a good start, so for the schematic below, a 500VA =
transformer=20
will be sufficient for a peak output power of up to 200W per channel (4 =
or 8=20
ohms). You will be able to get more, but if sustained for any length of =
time the
transformer will get hot and may be damaged. If you expect to run the =
amps to=20
close to full power continuously into 4 ohms, then you will need a 1kVA =
power=20
transformer.
Figure 6 - Suggested Power Supply=20
Schematic
The supply is fairly conventional, but a notable addition is C5 - =
this has=20
not been shown on any other ESP supply to date. The purpose of this cap =
is to=20
help reduce conducted emissions - high frequency energy conducted down =
the mains=20
lead. You may also find that an EMI filter is helpful - you can get them =
integral with the IEC socket.
The fuse rating for F1 needs to be selected according to your local =
mains=20
voltage, and it is usually best to check with the transformer =
manufacturer.=20
Assuming the use of a 500VA toroidal transformer, you can use the =
following as a=20
guide (this also assumes that the P39 soft-start circuit is being used) =
...
Supply Voltage
Fuse Rating
110 VAC
10 Amps
120 VAC
8 Amps
220 VAC
5 Amps
240 VAC
4 Amps
In all cases, the fuse must be a slow blow type. Even with the =
soft-start=20
circuit, the inrush current may be much higher than the maximum average =
current.=20
For safety, use of an IEC socket with integral fuse is recommended.
Testing =20
Because the modules are fully built and tested, all you need to do is =
check=20
your power supply before connecting the amplifier module itself. The =
modules=20
have protection circuits that will prevent operation below about =B130V =
or above=20
=B168V, as well as overcurrent protection. All you can do is connect the =
amp to a=20
known working power supply.
For your initial tests, I recommend that you use a lamp (rated for =
your full=20
mains voltage) in series with the incoming mains. The lamp should be =
rated at=20
about 100W, and will limit the current if there is a problem. You will =
be able=20
to operate the amp into a load at low power with the lamp still in =
series, but=20
if you try to increase the volume too far the supply voltage will be =
reduced and=20
the under-voltage circuit will turn the amp modules off.
It is imperative that you connect the power supply to the BP4078 =
modules with=20
the correct polarity, and also make certain that the earth (ground) is =
solidly=20
connected to the supply common. Reverse polarity will damage the=20
module(s) - the supply fuses will blow, but not before damage has been =
done.
Remember that with the values given for the power supply, you will be =
able to=20
get 400W into 4 ohms, so be very careful with your signal input - there =
is a=20
real risk of blowing speakers if you apply too much signal level.
Data Sheets & Additional Information =20
The BP4078=20
Data Sheet is a must read document before you start. It describes =
all the=20
options and also has the full specifications for the modules.
The BP4078 Application Notes provide more information =
again,=20
primarily on how to use the modules, additional construction hints, etc. =
Please=20
take the time to read this information.
Intending purchasers should contact cold amp directly, or you may send me an =
e-mail with=20
your query and I will pass it on. If contacting ColdAmp, please mention =
that you=20
obtained the information from ESP.
Project Index Main Index =20
Copyright Notice. This =
article,=20
including but not limited to all text and diagrams, is the =
intellectual=20
property of Rod Elliott, and is Copyright =A9 2005. Reproduction =
or=20
re-publication by any means whatsoever, whether electronic, =
mechanical or=20
electro-mechanical, is strictly prohibited under International =
Copyright=20
laws. The author (Rod Elliott) grants the reader the right to use =
this=20
information for personal use only, and further allows that one (1) =
copy=20
may be made for reference while constructing the project. =
Commercial use=20
is prohibited without express written authorisation from Rod=20
Elliott.
Page =
Created and=20
Copyright =A9 Rod Elliott 18 Dec 2005
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