Emissions Designator 97M0W1D
Decode the occupied bandwidth, modulation, signal nature, and information type.
Decoded Emission Designator
| Emission Designator | 97M0W1D |
|---|---|
| Normalized Code | 97M0W1D |
| Necessary Bandwidth | 97.0 MHz |
| Modulation Type | [W] Combination of amplitude, angle, or pulse modulation modes |
| Signal Nature | [1] Single channel containing quantized or digital information without a modulating subcarrier, excluding time-division multiplex |
| Information Type | [D] Data transmission, telemetry, or telecommand |
What This Means
97M0W1D is an FCC emission designator. It describes an emission with an indicated necessary bandwidth of 97.0 MHz, combination of amplitude, angle, or pulse modulation modes, single channel containing quantized or digital information without a modulating subcarrier, excluding time-division multiplex, carrying data transmission, telemetry, or telecommand.
How to Read 97M0W1D
| Step | Value | Meaning |
|---|---|---|
| Bandwidth prefix | 97M0 | 97.0 MHz |
| First symbol | W | Combination of amplitude, angle, or pulse modulation modes |
| Second symbol | 1 | Single channel containing quantized or digital information without a modulating subcarrier, excluding time-division multiplex |
| Third symbol | D | Data transmission, telemetry, or telecommand |
Purpose on FCC Records
Emission designators are used on FCC grants and equipment authorization records to summarize the radio emission being authorized. They help identify how wide the emission is, how the carrier is modulated, whether the signal is analog or digital, and what kind of information is being transmitted.
They are useful for comparing radios, matching a grant to a modulation type, and understanding whether an authorization covers voice, data, telemetry, video, or mixed services.
An emission designator is not the whole authorization. It does not by itself prove the exact channel plan, antenna limits, output power, or every condition on the grant. For those details, read the FCC grant and the related test reports.
Bandwidth Notes
The bandwidth prefix uses a letter as both the decimal point and the unit. For example, 20K0 means 20.0 kHz, 8M91 means 8.91 MHz, and 345K means 345 kHz.
For 97M0W1D, the first four characters decode to 97.0 MHz. The remaining symbols describe modulation, signal nature, and information type.
Symbol Reference for 97M0W1D
| Symbol | Position | Category | Decoded Meaning |
|---|---|---|---|
| W | First symbol | Carrier modulation | Combination of amplitude, angle, or pulse modulation modes |
| 1 | Second symbol | Modulating signal | Single channel containing quantized or digital information without a modulating subcarrier, excluding time-division multiplex |
| D | Third symbol | Information transmitted | Data transmission, telemetry, or telecommand |
Regulatory Reference
The FCC classification system for emission, modulation, and transmission characteristics is defined in 47 CFR 2.201. The FCC also indicates that the full emission designation is preceded by the necessary bandwidth when the full designation is required.
FCC 2.201 Notes
- FCC emission designators combine emission classification with the necessary bandwidth of the emission.
- The three required symbols identify carrier modulation, nature of the modulating signal, and type of information transmitted.
- Fourth and fifth symbols may be added for a more complete description, but the Commission does not require them.
- When frequency modulation F is indicated, phase modulation G is also acceptable under the FCC note in this section.
- Pulse-code or other quantized direct modulation should be classified under the amplitude or angle modulation groups, not merely as pulse emission.
- The information symbol does not include constant, unvarying information such as standard frequency emissions, continuous wave emissions, or pulse radars.
- Type B damped-wave emission is an FCC exception and is forbidden.
- When the full designation is needed, the emission symbol is preceded by the necessary bandwidth as indicated in 47 CFR 2.202(b)(1).