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Star Grounding in Tube Amplifiers
Copyright=20 2000 R.G. Keen. All rights reserved. No permission for local copies or = serving=20 from sites other than http://www.geofex.com/.

[Causes][Star Rules][DIY=20 vs Commercial Amps][How to][How=20 much is enough][Q&A][Example]


"I've built this amp, and it hums - = why!!!??? What=20 can I do to keep amps from humming, or make them never hum in the = first=20 place?"

The power line hum demon lurks literally everywhere, inserting that = low "mmmmmmmmmmmmmm" into your speakers. Sometimes just a little in the = background,=20 sometimes a maddening "MMMMMMMMMMMMM". How do we exorcise it?

One certain answer is star grounding. It's not the only way, = but it's=20 probably the only slam-dunk, cookbook way to ensure that if you start = doing=20 this, you will eventually have as low a hum as you can.

You have to do the other stuff right, of course. Proper = grounding  will not prevent floating AC filament supplies from causing hum, or  = magnetic=20 field pickup from a power transformer, or capacitively coupled AC hum = from=20 signal wires next to filament wiring. But once you've done the other = basics=20 right and still have hum, think about star grounding. Better yet, think = about it=20 before you start!

What causes shared-ground hum=20 anyway?

Except for certain special materials that are cooled to very cold temperatures - at least liquid-nitrogen cold - all conductors have some resistance, even if it is very low. Copper is a good conductor, and it = is the most commonly used wiring material because of this and its affinity for soldering. But it is not perfect. Steel, as commonly used in amplifier = chassis is also a conductor, but a much worse one than copper. Worse yet, steel = is ferromagnetic - it also "conducts" magnetic fields. A steel chassis = actually=20 sucks in the random power line magnetic fields that permeate the air = around us.=20 The magnetic field "conducted" in the chassis causes eddy currents to = flow in=20 the metal, and the resistance of the material causes a slight power line = frequency voltage to exist between two different points on the chassis. = This is=20 easily observable with a good oscilloscope. This iseddy current = induced=20 hum.

The copper wires carrying "used" current back from the signal = circuits also carries a tiny replica of that current in the form of a voltage across = its small, but present resistance. This is shared resistance = feedback; it does not cause hum, but it can cause your amp to be unstable and = oscillate madly.

Further, any conductive loop will have a voltage impressed across it = by a changing magnetic field. So if we have literally a ground loop - that = is, a=20 full circuit made of conductors that we think should all be at the same = voltage=20 - the changing magnetic field in the air around us will cause a voltage = to=20 appear in that loop that will mean that every point on the loop is NOT = at the=20 same voltage like we think it should be. This is magnetic field = ground=20 loop hum.

We attack these hum sources (and coincidentally the shared resistance feedback) two different ways. First, if there are no signal grounds = that go=20 through the chassis, then the signal grounds can't pick up the induced = magnetic=20 field hum voltage.  Second, if there are no complete loops, there = is no=20 induced voltage from ground loops. We make this true by star grounding. = Star=20 grounding that is connected to the chassis at one and only one point = solves both=20 problems, is always sufficient, and is something that requires no deep=20 understanding of magnetic fields, shielding, or other specialties - it = can be a=20 cookbook. The side effect of this practice is that star grounding also = breaks=20 the shared resistance runs and removed the possibility of shared = resistance=20 feedback.

There is one other instance of induced hum that is also cured by star grounding - rectifier current spike hum. Rectifiers of all = types, tube=20 or solid state, conduct currents into the first filter cap of a power = supply in=20 short pulses near the very peak of the AC power line waveform. Since the = time=20 that they flow is short, the current that flows is big, as the diode has = only=20 this short time to load up the filter capacitor with all the electricity = that=20 the amplifier will need until the next time a diode can conduct to = reload it.=20 These spikes of current are so large that they cause an easily = measurable=20 voltage on the wires into and out of the first filter capacitor. If the = signal=20 ground connects to anywhere except right at the terminal of the = capacitor, then=20 it picks up the rectifier spike noise as well. To eliminate this special = form of hum, we take a single wire from the return side of the first filter cap = and connect that to the system star ground point so that the resistance of = the return wires does not cause a hum voltage from the rectifier = spikes.

OK, so what's "star grounding" really = mean? How=20 do you do it?

Simply put, star grounding means that you designate some special = terminal as the "Star Ground" for the system. All other "grounds" will be referred = to this=20 one point. Then *every single place* that is connected to ground in the = whole=20 box has its own separate wire run to the Star Ground point. The ground = wires=20 radiate away from the Star Ground in all directions, hence the name. = This has=20 the unfortunate result that you may have a HUGE number of wires coming = into the=20 Star Ground point. Very hard to wire, just because of the large number = of=20 wires.

While this is certainly sufficient, it's almost never necessary. It = turns out that most circuits have subsections of lumps of circuitry that can = share a ground wire safely and hum-free. For instance, let's take a vacuum tube = triode gain circuit. This circuit will often have a grid leak resistor, a = cathode resistor, and a cathode bypass cap, each of which should have its own = ground wire in pure Star Grounding. Instead, it turns out that it works just = as well=20 to gather all three of these points into a local ground node, and then = connect=20 that point to the system Star Ground by a single wire. This just cut the = number=20 of ground wires by three!

Most forms of star grounding use the modified version with local = nodes that do not interfere with one another connected to the remote Star Ground = point. In either case, it's a lot of work.

Why should we have to use star grounding = - very=20 pertinent question from a DIY amplifier builder - 

my commercial Fender amp does not hum, = and there's=20 no star grounding in there at all. So why does a DIY amp have to take = such =20 drastic measures as star grounding to reduce hum? Even after all the = best =20 standard practices, good parts, and good layout techniques, I still = get hum in=20 my amps all the time. What's going on? Does the Hum Demon work for = Fender and=20 make our homebuilt jobs hum?

What you can't see is all the test amplifier prototypes that Fender = and other=20 amp makers did before they ever sold the first one of that kind of = amplifier.=20 They can afford to have a junkpile, we can't. =20

Think of it this way. There are an infinite number of possible ways = to wire=20 an amp. Some of those hum horribly, some just a little, and some small = number=20 have no perceptible hum. All we can say is that a good star grounding = scheme is guaranteed to be one of that small, non-humming group. Since hum = depends on where every wire connects in the amp, we can't in general know the = other=20 members of the group without experimentation to find them - or know if = there=20 even *is* another member of the non-humming group at all. Star grounding = may be=20 the ONLY way, may not be. Can't tell.=20

Star grounding is a sufficient but maybe not a necessary condition. = That is - using star grounding is one possible way to guarantee that you won't = have hum. Another is to spend enough time messing with an amp to find where every = wire=20 and ground goes so that the hum-causing currents do not happen to flow = where=20 they cause a problem, or in another variation, there are canceling = currents in=20 the non-star grounding scheme so that the grounds are actively quiet. = Experience=20 and understanding of hum, grounding and interference may shorten the = prototyping time from twenty humming prototypes down to five with years of = experience, but there's still a bone pile.

Unless you're lucky, of course. It could happen that with no = knowledge or experience to guide you, you might happen on a non-humming layout first = time.=20 No amount of planning will ever take the place of dumb luck. But I = personally=20 never plan on being lucky several times in a row 8-)=20

How do I star ground an amplifier?=20

  1. Establish a star ground point; for practical reasons in soldering, = it =20 should have room for many wires to be connected into it using good = soldering =20 practices.
  2. Isolate the input jack(s) from the chassis and run the(ir) ground = wire(s)=20 to the local node of the gain stage that they feed.
  3. Isolate the output jack(s) from the chassis and run their ground = wire to =20 the star ground point.
  4. Connect the ground wire for attenuator style controls such as = tone/volume =20 stacks to the local ground node for the amplifying stage that = amplifies the =20 output of the control. As an alternate, a separate ground wire for = the =20 control is also acceptable, but less easy to wire.
  5. Differential, phase inverter, and push-pull stages should have = their own =20 ground wire to the star ground point.
  6. The loop(s) from the power transformer through the rectifiers and = filter =20 caps and then back to the transformer are special. They MUST be wired = as =20 follows: =20
  7. The CT of the filament winding ties to the star ground=20 point. 

How much is enough? Can I only star = ground part=20 of the amp and make it better? If so, which parts? =20

The point of star grounding is to keep signal circuits with NO = common mode=20 noise rejection (that is, all the normally used tube gain stages) from = picking=20 up current-induced noise from other currents running through a shared = ground.=20 Obviously, the most critical stage is an input stage, and the closer you = go to=20 the output stage, the bigger the signal level and the less the milli- = and micro-volt signals in the shared ground will be.

So you can achieve some reduction by removing the ground path of = either end=20 out of the shared-ground chassis. Remove the ground return paths for the = small=20 signal stages from the chassis onto separate ground wires and they don't = pick up=20 the current induced noise from the high current stages that you've left = in the=20 chassis; remove the ground path for the high current stages from the = chassis onto separate wires to the star ground and the currents remaining in = the chassis get a lot smaller. Either way, you don't have the small signal = stages picking up the ground noise caused by the high current stages.. Is it = enough to wire all the signal stages on separate ground wires and leave the = output stage=20 currents in the chassis? For many if not most situations, yeah, = probably. It's=20 certainly better than having them all in the chassis. There will be some = situations where it won't be OK, though. Maybe you'll be lucky.=20

The ultimate ground noise reduction is achieved by removing ALL the = ground returns from the chassis and returning them to a star, but let's face = it, there are other ways to get amps to work, as Fender shows us all the time. = The star=20 ground method is not the only way to achieve lower noise and crosstalk, = it's=20 just guaranteed to do it - that is, it's sufficient, but it may not be=20 necessary, depending on the circumstances.=20

It's entirely possible that moving the input stages and reverb = returns off the chassis might quiet things down just fine, depending on where = everything else is inside the amp.=20

Some detailed questions about = grounding:

With cathode biased power tubes, should = you run =20 the cathode resistor and bypass cap to the star ground point, or is it = okay =20 to just bolt it to the chassis?

I personally would isolate it from chassis and run a wire to the star = =20 ground, as I'm sure that would work. However, if all the other things = are =20 chassis-isolated, it might be just fine.  =20

Do I need to isolate the grounds on the = speaker =20 jacks from the chassis?

I tried the speaker jack connected/not connected to the chassis in an = amp I =20 was re-grounding, and for the life of me could not hear any difference. = I don't=20 know whether this was because I already had everything else off the = chassis or=20 whether it truly didn't matter at all. I guess I would take a somewhat = rough=20 and ready approach - if it can be isolated and star grounded with a = reasonable=20 amount of wiring, I'd do that. If not, I'd leave it to the end and see = if the=20 results were acceptable from a listening test.

If you notice in the example, I did that with the speed control = ground on the=20 tremolo. It was in a position that was truly awkward to run a separate = ground=20 wire to, so I decided I was done and just listened to the result. It = was OK.=20 Not perfect star grounding, but it works fine, so I left it there. =20

What about the bias circuit for a fixed = bias amp=20 - does that have to be star grounded too, not connected to=20 chassis?

Bias circuits are things that I consider sacred. Make a mistake in a = bias =20 circuit and you get big problems. I'd recommend lavishing great care on = a bias =20 circuit, and so while it may be perfectly fine grounded to the chassis, = I'd =20 star ground it on principle. It *is* an alternate input to your output = stage, =20 so if there's hum or RF on your chassis, it's conducted into the inputs = of your=20 output tubes. I'd star the bias - unless actual listening says it works = fine=20 without it. 

A star ground example

Here's what I did to my Vox Pacemaker (the tube version, not the = solid state=20 one).  It was originally Godawful - "grounds" made by just wiring = to the=20 nearest terminal strip terminal that was riveted to the chassis. It=20 hummmmmmmmmmed. It's much quieter now - the hiss of the vintage carbon=20 composition resistors can be clearly heard 8-)

 

 

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