The conversion of 48 khz to hz results in 48,000 hz.
Since kilo (k) means 1,000, converting kilohertz to hertz involves multiplying the value in khz by 1,000. Therefore, 48 khz equals 48,000 hz, as each kilohertz contains 1,000 hertz.
Understanding the Conversion
The conversion from khz to hz is straightforward because 1 kilohertz equals 1,000 hertz. To convert, you take the number of khz and multiply it by 1,000. This process works because “kilo” is a metric prefix denoting 1,000 units. For example, converting 10 khz to hz involves calculating 10 x 1,000 = 10,000 hz.
Conversion Tool
Result in hz:
Conversion Formula
The formula to convert khz to hz multiplies the value in khz by 1,000 because “kilo” signifies 1,000 units. For example, to convert 5 khz, you calculate 5 x 1,000, which equals 5,000 hz. This method ensures accurate and quick conversion across different values.
Conversion Example
- Convert 10 khz to hz:
- Step 1: Identify the khz value (10).
- Step 2: Multiply by 1,000 (10 x 1,000).
- Step 3: Result is 10,000 hz.
- Convert 25 khz to hz:
- Step 1: Khz value is 25.
- Step 2: Multiply 25 by 1,000 (25 x 1,000).
- Step 3: Result is 25,000 hz.
- Convert 60 khz to hz:
- Step 1: Khz value is 60.
- Step 2: Multiply 60 by 1,000 (60 x 1,000).
- Step 3: Result is 60,000 hz.
Conversion Chart
kHz | Hz |
---|---|
23.0 | 23000 |
24.0 | 24000 |
25.0 | 25000 |
26.0 | 26000 |
27.0 | 27000 |
28.0 | 28000 |
29.0 | 29000 |
30.0 | 30000 |
31.0 | 31000 |
32.0 | 32000 |
33.0 | 33000 |
34.0 | 34000 |
35.0 | 35000 |
36.0 | 36000 |
37.0 | 37000 |
38.0 | 38000 |
39.0 | 39000 |
40.0 | 40000 |
41.0 | 41000 |
42.0 | 42000 |
43.0 | 43000 |
44.0 | 44000 |
45.0 | 45000 |
46.0 | 46000 |
47.0 | 47000 |
48.0 | 48000 |
49.0 | 49000 |
50.0 | 50000 |
51.0 | 51000 |
52.0 | 52000 |
53.0 | 53000 |
54.0 | 54000 |
55.0 | 55000 |
56.0 | 56000 |
57.0 | 57000 |
58.0 | 58000 |
59.0 | 59000 |
60.0 | 60000 |
61.0 | 61000 |
62.0 | 62000 |
63.0 | 63000 |
64.0 | 64000 |
65.0 | 65000 |
66.0 | 66000 |
67.0 | 67000 |
68.0 | 68000 |
69.0 | 69000 |
70.0 | 70000 |
71.0 | 71000 |
72.0 | 72000 |
73.0 | 73000 |
Use this chart to quickly find the hz equivalent for a range of khz values. Read across the row for the khz value, and the hz is shown directly next to it.
Related Conversion Questions
- How many hz in 48 khz audio sample rate?
- What is the hz equivalent of 48 khz in digital audio?
- Convert 48 khz to hz for sound engineering measurements?
- Is 48 khz equal to 48,000 hz or a different value?
- How do I change 48 khz to hz in audio editing software?
- What is the frequency in hz for a 48 khz signal?
- Can I convert 48 khz to hz manually or do I need a tool?
Conversion Definitions
khz
Khz stands for kilohertz, a unit of frequency measurement equal to 1,000 cycles or waves per second. It is primarily used to describe audio sample rates and radio frequencies, indicating how many thousands of oscillations occur each second.
hz
Hz, or hertz, is the basic unit of frequency representing one cycle per second. It measures how often a repeating event, like sound waves or electrical signals, occurs within one second. Higher Hz mean more rapid oscillations or vibrations.
Conversion FAQs
Why is 48 khz equal to 48,000 hz?
This is because kilo (k) means 1,000, so 48 khz equals 48 multiplied by 1,000, resulting in 48,000 hz. This simple multiplication converts from thousands of cycles per second to individual cycles per second.
Can I use a calculator for converting khz to hz?
Yes, multiplying the khz value by 1,000 is straightforward, and calculators make it even easier. This method ensures precise conversion, especially for larger values or multiple calculations.
What does the term “kilo” signify in frequency units?
“Kilo” is a metric prefix meaning 1,000. When used with units like hertz or seconds, it indicates a thousand of those units. For example, 1 khz is 1,000 hertz, which measures how many cycles occur each second.
Is the conversion from khz to hz reversible?
Yes, converting back from hz to khz involves dividing the hz value by 1,000. This reversibility allows easy switching between the two units depending on the measurement context.
Last Updated : 17 June, 2025


Sandeep Bhandari holds a Bachelor of Engineering in Computers from Thapar University (2006). He has 20 years of experience in the technology field. He has a keen interest in various technical fields, including database systems, computer networks, and programming. You can read more about him on his bio page.