The newly released K-PO DG-103MAX answers the clamor of many users and features expanded measurement capability. This advanced meter can now make official Peak Envelope Power (PEP) measurements in both AM and SSB, just like the classic analog meters more Manufacturer: kpo Reference DG103MAX
The newly released K-PO DG-103MAX answers the clamor of many users and features expanded measurement capability. This advanced meter can now make official Peak Envelope Power (PEP) measurements in both AM and SSB, just like the classic analog meters that are widely recognized.
A distinctive feature is found at the rear of the meter, where an additional mode switch labeled 'MAX' has been integrated. This switch allows to activate the PEP measurement mode (AM and SSB), which adds an additional dimension to the functionalities of the device.
The DG-103MAX has been meticulously designed to operate in the frequency range from 1.6 to 60 MHz, making it a versatile tool for high frequency (HF) applications. Furthermore, its ability to handle a maximum power of 1200 watts ensures that it can deal with a wide variety of power levels with high precision.
A highlight of this meter is its exceptional accuracy. With a margin of error of only 5% in the frequency range of 1.6 to 30 MHz, the DG-103MAX is a reliable and consistent choice for those seeking accurate measurements.
This device is perfect for measuring forward power, reflected power, and VSWR on both analog and digital transceivers, giving you significant versatility in a variety of communication environments.
In addition, the large, sharp and bright digital display of the DG-103MAX allows simultaneous readout of all relevant measurements, thus facilitating efficient data monitoring and analysis.
In short, the K-PO DG-103MAX has risen as a highly desired solution for accurate measurements in high-frequency applications. With its ability to measure PEP in AM and SSB, its wide frequency range, maximum power, and high accuracy, this meter becomes an essential tool for those seeking reliable and consistent measurement results.