ADL5387ACPZ-R7 Analog Devices Inc, ADL5387ACPZ-R7 Datasheet - Page 24

IC QUADRATUR DEMOD 50MHZ 24LFCSP

ADL5387ACPZ-R7

Manufacturer Part Number
ADL5387ACPZ-R7
Description
IC QUADRATUR DEMOD 50MHZ 24LFCSP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of ADL5387ACPZ-R7

Function
Demodulator
Lo Frequency
100MHz ~ 2GHz
Rf Frequency
50MHz ~ 2GHz
P1db
12.8dBm
Gain
3.8dB
Noise Figure
16.5dB
Current - Supply
180mA
Voltage - Supply
4.75 V ~ 5.25 V
Package / Case
24-VFQFN, 24-CSP Exposed Pad
Frequency Range
50MHz To 2GHz
Rf Type
Quadrature
Supply Voltage Range
4.75V To 5.25V
Rf Ic Case Style
LFCSP
No. Of Pins
24
Operating Temperature Range
-40°C To +85°C
Frequency Max
2GHz
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
ADL5387ACPZ-R7TR

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ADL5387ACPZ-R7
Manufacturer:
ADI
Quantity:
7 800
ADL5387
Table 4. Evaluation Board Configuration Options
Component
VPOS, GND
R1, R3, R6
C1, C2, C3,
C4, C8, C9
C5, C6, C7,
C10, C11
R4, R5,
R9 to R16
L1, L2,
R7, R8
T2, T3
C12, C13
R17
T1
R2
Function
Power Supply and Ground Vector Pins.
Power Supply Decoupling. Shorts or power supply decoupling resistors.
The capacitors provide the required dc coupling up to 2 GHz.
AC Coupling Capacitors. These capacitors provide the required ac coupling from
50 MHz to 2 GHz.
Single-Ended Baseband Output Path. This is the default configuration of the evaluation
board. R14 to R16 and R4, R5, and R13 are populated for appropriate balun interface.
R9, R10 and R11, R12 are not populated. Baseband outputs are taken from QHI and IHI.
The user can reconfigure the board to use full differential baseband outputs. R9 to R12
provide a means to bypass the 9:1 TCM9-1 transformer to allow for differential baseband
outputs. Access the differential baseband signals by populating R9 to R12 with 0 Ω and
not populating R4, R5, R13 to R16. This way the transformer does not need to be removed.
The baseband outputs are taken from the SMAs of Q_HI, Q_LO, I_HI, and I_LO.
Input Biasing. Inductance and resistance sets the input biasing of the common base
input stage. Default value is 120 nH.
IF Output Interface. TCM9-1 converts a differential high impedance IF output to a single-
ended output. When loaded with 50 Ω, this balun presents a 450 Ω load to the device.
The center tap can be decoupled through a capacitor to ground.
Decoupling Capacitors. C12 and C13 are the decoupling capacitors used to reject noise
on the center tap of the TCM9-1.
LO Input Interface. The LO is driven as a single-ended signal. Although, there is no
performance change for a differential signal drive, the option is available by placing a
transformer (T4, ETC1-1-13) on the LO input path.
RF Input Interface. ETC1-1-13 is a 1:1 RF balun that converts the single-ended RF input
to differential signal.
R
BIAS
. Optional bias setting resistor. See the Bias Circuit section to see how to use this feature.
Rev. 0 | Page 24 of 28
Default Condition
Not Applicable
C2, C4, C8 = 100 pF (0402)
C1, C3, C9 = 0.1 μF (0603)
C5, C6, C10, C11 = 1000 pF (0402),
C7 = Open
R4, R5, R13 to R16 = 0 Ω (0402),
R9 to R12 = Open
L1, L2 = 120 nH (0402)
R7, R8 = 0 Ω (0402)
T2, T3 = TCM9-1, 9:1 (Mini-Circuits)
C12, C13 = 0.1 μF (0402)
R17 = 0 Ω (0402)
T1 = ETC1-1-13, 1:1 (M/A COM)
R2 = Open
R1, R3, R6 = 0 Ω (0805)

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