Question regarding the bias voltage applied to a tape recording head

AI Thread Summary
In tape recording, the magnetic moment imparted to the tape is not linearly related to the applied magnetic flux, leading to distortion during playback if an audio signal is used directly. To mitigate this distortion, a bias current is applied to keep the audio signal within the linear region of the transfer function. This bias is typically an ultrasonic sine wave rather than DC to prevent permanent biasing in one direction, which could compromise linearity and fidelity. Additionally, using AC bias allows recording across both positive and negative linear regions, enhancing playback consistency across different machines. The discussion highlights the technical nuances of biasing in tape recording technology.
bitrex
Messages
190
Reaction score
0
So in a tape recorder, the quantity of magnetic moment imparted to a unit area of magnetic tape is not a linear function of the applied magnetic flux; the transfer function looks kind of like a cumulative distribution function, if that makes sense. So if one just ran an audio signal directly through a magnetic tape head you'd get distortion on playback because of the non-linearity of the transfer function. The way to get rid of this distortion is to apply a bias current to the tape head so the audio signal stays in the linear region of the transfer function. However, on the schematics of various tape recorders I've seen the bias current isn't DC, but is usually an ultrasonic sine wave. Does anyone have any idea why this is so? I can't say I've ever seen a good explanation.

Edit: I guess if one thinks of the tape head as a one half of a tiny transformer - maybe it has something to do with avoiding core saturation if one thinks of the tape itself as the secondary?
 
Last edited:
Engineering news on Phys.org
There are a couple of reasons for using ultra-sonic biasing. If a DC bias is used, the tape head would eventually become permanently biased in one direction, affecting both linearity and fidelity. Also, there can be no guarantee that the recording and playback bias is exactly the same, especially when playing back on a different machine. Additionally, the AC bias allows you to record on both the positive and negative linear regions, above and below the “crow-bar” non-linearity in the center. This question brings back memories, as everything now is CDs!
 
Hey schroder. Thanks for your informative post.
 
Thank you!
 
I would have thought that DC bias might introduce noise.
 
Hi all I have some confusion about piezoelectrical sensors combination. If i have three acoustic piezoelectrical sensors (with same receive sensitivity in dB ref V/1uPa) placed at specific distance, these sensors receive acoustic signal from a sound source placed at far field distance (Plane Wave) and from broadside. I receive output of these sensors through individual preamplifiers, add them through hardware like summer circuit adder or in software after digitization and in this way got an...
While I was rolling out a shielded cable, a though came to my mind - what happens to the current flow in the cable if there came a short between the wire and the shield in both ends of the cable? For simplicity, lets assume a 1-wire copper wire wrapped in an aluminum shield. The wire and the shield has the same cross section area. There are insulating material between them, and in both ends there is a short between them. My first thought, the total resistance of the cable would be reduced...
I am not an electrical engineering student, but a lowly apprentice electrician. I learn both on the job and also take classes for my apprenticeship. I recently wired my first transformer and I understand that the neutral and ground are bonded together in the transformer or in the service. What I don't understand is, if the neutral is a current carrying conductor, which is then bonded to the ground conductor, why does current only flow back to its source and not on the ground path...

Similar threads

Replies
11
Views
6K
Replies
7
Views
3K
Replies
15
Views
4K
Replies
1
Views
2K
Replies
22
Views
5K
Replies
7
Views
2K
Replies
1
Views
6K
Back
Top