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ADL8106ACEZ-R7 датащи(PDF) 24 Page - Analog Devices

номер детали ADL8106ACEZ-R7
подробное описание детали  GaAs, pHEMT, Low Noise Amplifier, 18 GHz to 54 GHz
PDF  26 Pages
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производитель  AD [Analog Devices]
домашняя страница  http://www.analog.com
Logo AD - Analog Devices

ADL8106ACEZ-R7 датащи(HTML) 24 Page - Analog Devices

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Data Sheet
ADL8106
APPLICATIONS INFORMATION
analog.com
Rev. B | 24 of 26
Figure 89. Active Bias Control of the ADL8106 Using the HMC920
HMC920 Bias Sequence
When the ADL8106 bias control circuit (HMC920) is set up, the bias
can be toggled on and off by applying 3.5 V (high) or 0 V (low) to
the EN pin. If EN is left floating, the pin floats high. When EN is
set to 3.5 V, the gate voltage (VGATE) initially drops to −2 V and the
drain voltage (VDRAIN) rises to +3 V. Then, VGATE and the VGG1
voltage (VGG1) increase until the drain current (IDRAIN) reaches its
target value. The closed control loop then regulates IDRAIN to its
target value. When the EN pin goes low, VGATE and VGG1 drop back
to −2 V, and VDRAIN drops to 0 V.
Constant Drain Current Biasing vs. Constant
Gate Voltage Biasing
In comparison to a constant gate voltage bias, where the current
increases dynamically when RF power is applied, constant drain
current bias results in constant power consumption.
The performance of the constant drain current circuit is summarized
in Figure 90 to Figure 95. These figures include comparisons with
constant gate voltage bias.
The OP1dB and PSAT performance for the constant drain current
bias can be varied by varying the drain current setpoint. By increas-
ing the bias current, OP1dB and PSAT improve as shown in Figure
92 and Figure 95. The trade-off with constant drain current is that
the drain current is present for all RF input and output power levels.
Note that Figure 90 indicates a current consumption of 175 mA,
which includes the complete current consumption of the circuit, that
is, 140 mA drain current for the ADL8106 and an additional 35 mA
of IDQ in the HMC920. Also, the PAE for constant drain current bias
in Figure 93 assumes a supply voltage of 5 V (the supply voltage to
the HMC920) and a constant current of 175 mA.
Figure 90. IDD vs. PIN, VDD = 3 V, Frequency = 36 GHz, Constant Drain Current
Bias (140 mA + 35 mA) and Constant Gate Voltage Bias (IDQ = 120 mA)
Figure 91. OP1dB vs. Frequency for Various Temperatures, Data Measured
with Constant Drain Current of 140 mA



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