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These calculations will help you to estimate the size of audio files.
NOTES:
1) 'x' means 'multiplied by'. Forward slash (/) means 'divided by'.
2) Kbps means 'Kilobits per second' (1,000 bits per second). KB means KiloBytes (1,000 Bytes). There are 8 bits in a byte. Note the uppercase 'B' for bytes in 'KB'. A lowercase 'b' (Kb) would indicate bits.
3) Calculations for MP3 files generally include both left and right stereo channels. Calculations for PCM files must be multiplied by 2 to allow for both left and right stereo channels.
4) We took reasonable care in computing these figures, but you may want to doublecheck them if you're working on an important project. We did a casual experiment with a one-minute PCM file, and Windows Explorer reported it to be slightly smaller (10,337 KB) than what was predicted by the calculations below (10,584 KB). This may be due to differences between binary and decimal counting systems (multiples of 2 versus multiples of 10). In addition, file header information and ID3 tags (for MP3s) will have an effect on the numbers. In general, however, we have have found the figures below to be useful for approximating audio file sizes.
MP3 File Size Calculations
Formula:
Kbps = bits per second / 8 = Bytes per second x 60 seconds = Bytes per minute x 60 minutes = Bytes per hour
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Bitrate | File size per second | File size per minute | File size per hour |
8 Kbps | 1 KB | 60 KB | 3.6 MB |
16 Kbps | 2 KB | 120 KB | 7.2 MB |
32 Kbps | 4 KB | 240 KB | 14.4 MB |
40 Kbps | 5 KB | 300 KB | 18.0 MB |
48 Kbps | 6 KB | 360 KB | 21.6 MB |
56 Kbps | 7 KB | 420 KB | 25.2 MB |
64 Kbps | 8 KB | 480 KB | 28.8 MB |
80 Kbps | 10 KB | 600 KB | 36.0 MB |
96 Kbps | 12 KB | 720 KB | 43.2 MB |
112 Kbps | 14 KB | 840 KB | 50.4 MB |
128 Kbps | 16 KB | 960 KB | 57.6 MB |
160 Kbps | 20 KB | 1.20 MB | 72.0 MB |
192 Kbps | 24 KB | 1.44 MB | 86.4 MB |
224 Kbps | 28 KB | 1.68 MB | 100.8 MB |
256 Kbps | 32 KB | 1.92 MB | 115.2 MB |
320 Kbps | 40 KB | 2.40 MB | 144.0 MB |
PCM File Size Calculations
Here are some file size calculations for common PCM audio settings. PCM stands for Pulse Code Modulation and commonly uses the file extensions .wav or .cda. There are quite a few other combinations of bits per sample and samples per second which may be used. We have included calculations for the most common mono (one channel) and stereo (two channel) settings.
Mono
Formula:
Bits per sample x samples per second = bits per second / 8 = Bytes per second x 60 seconds = Bytes per minute x 60 minutes = Bytes per hour of mono.
Settings | Bitrate | File size per second | File size per minute | File size per hour |
16 bit, 44.1 KHz | 705.6 Kbps | 88.2 KB | 5.292 MB | 317.52 MB |
16 bit, 48 KHz | 768 Kbps | 96 KB | 5.750 MB | 345.60 MB |
24 bit, 48KHz | 1,152 Kbps | 144 KB | 8.640 MB | 518.40 MB |
24 bit, 96KHz | 2,304 Kbps | 288 KB | 17.280 MB | 1.0368 GB |
Stereo
Formula:
Bits per sample x samples per second = bits per second x 2 channels = bits per second of stereo / 8 = Bytes per second of stereo x 60 seconds = Bytes per minute of stereo x 60 minutes = Bytes per hour of stereo.
Settings | Bitrate | File size per second | File size per minute | File size per hour |
16 bit, 44.1 KHz | 1,411.2 Kbps | 176.4 KB | 10.584 MB | 635.04 MB |
16 bit, 48 KHz | 1,536 Kbps | 192 KB | 11.520 MB | 691.2 MB |
24 bit, 48KHz | 2,304 Kbps | 288 KB | 17.28 MB | 1.036 GB |
24 bit, 96KHz | 4,608 Kbps | 576 KB | 34.56 MB | 2.0736 GB |
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Great audio or sound quality helps enhance users’ viewing and listening experiences. Sound quality is based primarily on clarity, dynamics, envelopment, focus, and response, which is the ability of a user to understand dialogue and music in movies and lyrics and instrumentation in music.Therefore, how an audio file is formatted really matters. An audio file’s data can be stored as an uncompressed or compressed file.
The most common audio format for audio streaming or storage is MP3, which uses a lossy data compression to prevent the audio file from taking up too much space. Kilobits per second (Kbps) is the term used to rate serial data transmission devices. Most audio encoding software will allow the user to choose the bit rate when converting audio files into a specialized format.
The lower the Kbps, the more data the encoder will eliminate when compressing an audio file; the range for bit rates is from 96 to 320 Kbps. 128 Kbps quality is typically considered radio quality, and a bit rate of 160 or higher is equivalent to CD sound quality. The music on iTunes is 256 kilobits per second. The higher the Kbps of an audio file, the more space it will consume on your computer. For example, a Kbps of 128 takes up very little space, but the sound quality is also lowered.
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In less technical terms, subtle background instruments and vocals might be more difficult to hear, and the highs and lows will not be as vibrant. Whether you can hear the difference in the various bitrates also depends on the type of equipment or gear you use to play your audio files. Quality equipment makes a difference in eliminating the distortion, and it picks up on the lack of quality in music that was compressed using a lower bitrate. To maximize sound quality, 320 Kbps is the best choice. If storing audio files of this quality is an issue, storage options are as vast as they are affordable.