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Cyber Hardened IBUC
2
,
IBUC
2e
,
IBUC
2
G
,
IBUC
R
,
IBUC
G
Operations Manual: Monitor and Control Features
Engineered to Endure
Since the transmit burst pulse has a rise time and a fall time and the envelope level
varies during symbol transitions when the signal is modulated, the power must be
reported as a peak value. To maintain detected accuracy of the burst pulse, 128
consecutive measurements of the pulse are taken. Once the initial reading exceeds
the burst threshold, 128 consecutive readings are taken (regardless of level). The
highest value of the 128 is displayed. The IBUC reports the most recent valid
reading above the burst threshold.
Burst Time: 500 µs to 1 s
Measurement accuracy: ±2 dB absolute, 1.5 dB p-p relative. Accuracy is improved
as the burst threshold setting is raised closer to the carrier peak.
The detector accuracy is based on a pulsed unmodulated signal with a pulse width
of 500 µs.
2. Continuous Signal Mode (CSM)
In CSM power measurement mode, it is assumed that, in normal operation, a
transmit carrier is always present. Therefore, reported power is the peak power
over 128 consecutive readings.
Measurement accuracy: ±1 dB absolute, 1 dB p-p relative*
The detector accuracy is based on a CW unmodulated carrier.
* Relative measurement accuracy defines the error between any two power
readings at any particular frequency over the dynamic range.
Notes:
To make the given accuracy achievable, the operating transmit frequency
information must be provided via M&C in order to use the information in the
detector’s internal calibration look-up table.
By default, the unit will be set to perform CSM measurements.
Input Power Overdrive Protection
To ensure that output stage transistors achieve saturation, and thus, maximum
performance, the Cyber Hardened IBUC
2
, IBUC
2e
, IBUC
2
G
, IBUC
R
and IBUC
G
allow for input overdrive. Input overdrive point allows for 6 dB overdrive at 0 dB
attenuation above the expected saturation point. As excessive saturation could damage
Gallium Nitride FET (GaN) based units due to unsustainable heat levels within the
device, a input overdrive protection algorithm is employed to protect power
amplifiers.
Such algorithm takes advantage of the IBUC’s
input and output power readings to
drive internal attenuators, changing input drive level to achieve protection. This
feature ensures input overdrive protection without adverse effects to operations
outside the BUC. Input overdrive protection depends on the selected operation mode.
The three possible operations modes are: Open Loop, AGC, ALC.
Содержание IBUC 2
Страница 6: ...iv Engineered to Endure Appendix F Glossary Glossary of Terms F 1 ...
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Страница 46: ...System Components 2 26 Engineered to Endure Figure 2 10 DC Power IBUC System Configuration ...
Страница 57: ...General Requirements 3 9 Engineered to Endure Figure 3 2 IBUC 2 Field Installation ...
Страница 72: ...3 24 Cyber Hardened IBUC 2 IBUC 2e IBUC 2G IBUC R IBUC G Operations Manual Installation Engineered to Endure ...
Страница 102: ...6 10 Cyber Hardened IBUC 2 IBUC 2e IBUC 2G IBUC R IBUC G Operations Manual Troubleshooting Engineered to Endure ...
Страница 106: ...A 4 Cyber Hardened IBUC 2 IBUC 2e IBUC 2G IBUC R IBUC G Operations Manual Part Numbering Schema Engineered to Endure ...
Страница 128: ...B 22 Cyber Hardened IBUC 2 IBUC 2e IBUC 2G IBUC R IBUC G Operations Manual Embedded Web Pages Engineered to Endure ...
Страница 179: ...Reference Drawings D 3 Engineered to Endure Figure D 2 Fabrication Drawing FBD 21984 XXXX Rev B page 1 of 2 ...
Страница 181: ...Reference Drawings D 5 Engineered to Endure Figure D 4 Fabrication Drawing FBD 20606 XXXX Rev A ...
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