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ADL8121ACPZN-R7 Datasheet(PDF) 19 Page - Analog Devices

No. de pieza ADL8121ACPZN-R7
Descripción Electrónicos  GaAs, pHEMT, MMIC, Low Noise Amplifier, 0.025 GHz to 12 GHz
PDF  22 Pages
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Fabricante Electrónico  AD [Analog Devices]
Página de inicio  http://www.analog.com
Logo AD - Analog Devices

ADL8121ACPZN-R7 Datasheet(HTML) 19 Page - Analog Devices

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Data Sheet
ADL8121
APPLICATIONS INFORMATION
analog.com
Rev. 0 | 19 of 22
The basic connections for operating the ADL8121 over the
specified frequency range are shown in Figure 80. AC-couple
the input and output of the ADL8121 with appropriately sized
capacitors (such as American Technical Ceramics Part Number
531Z104KTR16T).
A 5 V dc bias is supplied to the amplifier through the choke inductor
connected to the RFOUT/VDD pin. The recommended bias inductor
is the Murata
® ferrite bead BL15GG471SZ1D, 470 Ω.
The bias conditions, VDD = 5 V and IDQ = 95 mA, are the recom-
mended operating point to achieve optimum performance. To set
other bias conditions, adjust the value of RBIAS. Table 7 shows the
recommended RBIAS values and their associated IDQ values.
Table 7. Recommended Bias Resistor Values for VDD = 5 V
RBIAS (Ω)
IDQ (mA)
IDQ_AMP (mA)
IRBIAS (mA)
2800
25
24
1.0
1800
35
33.6
1.4
970
55
51.8
3.2
560
75
70.9
4.1
324
95
90.1
4.9
130
115
109.7
5.3
The shunt resistor, inductor, capacitor (RLC) network on the input
of the ADL8121 adds resistive loss to help stabilize the amplifier
by reducing the gain at low frequencies. The shunt inductor makes
the resistor frequency dependent. At low frequencies, the resistor
becomes more active. The resistor has less influence at higher fre-
quencies where the impedance of the choke is high. The capacitor
blocks dc voltages and currents from flowing through the resistor
and the inductor.
To achieve optimal performance from the ADL8121, it is critical
to supply low inductance ground connections to the GND pins as
well as to the backside exposed pad to ensure stable operation.
To prevent damage to the device, do not exceed the absolute
maximum ratings (see Table 3).
Figure 80. Typical Application Circuit



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