ADL5360-EVALZ AD [Analog Devices], ADL5360-EVALZ Datasheet - Page 2

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ADL5360-EVALZ

Manufacturer Part Number
ADL5360-EVALZ
Description
Dual 900MHz Balanced Mixer with Low Side LO Buffer, IF Amp, and RF Balun
Manufacturer
AD [Analog Devices]
Datasheet
ADL5360
ADL5360—Specifications at V
Table 1. V
Parameter
RF INPUT INTERFACE
OUTPUT INTERFACE
LO INTERFACE
DYNAMIC PERFORMANCE
Voltage Conversion Gain
SSB Noise Figure Under-Blocking
Input 1 dB Compression Point
RFI1 to RFI2 Channel Isolation
IF/3 Spurious
POWER INTERFACE
Supply Voltage
Quiescent Current
1
Power Conversion Gain
Supply voltage must be applied from external circuit through external inductors.
Return Loss
Input Impedance
RF Frequency Range
IF Frequency Range
Input Impedance
LO Frequency Range
SSB Noise Figure
Input Third Order Intercept
Input Second Order Intercept
LO to IF Output Leakage
LO to RF Input Leakage
RF to IF Output Isolation
IF/2 Spurious
Output Impedance
DC Bias Voltage
LO Power
Return Loss
S
= 5 V, T
1
A
= 25°C, f
RF
= 900 MHz, f
Tunable to >20dB over a limited bandwidth
Differential impedance, f = 200 MHz
Externally generated
Tunable to >20dB over a limited bandwidth
Low Side LO injection
Z
Differential
Including 4:1 IF port transformer and PCB loss
input, LO source filtered
each RF tone at -10 dBm
f
each RF tone at -10 dBm
Unfiltered IF Output, Improves substantially with
external filter components.
external filter components.
Resistor Programmable
Conditions
Including 4:1 IF port transformer and PCB loss
8dBm Blocker present +/-10MHz from wanted RF
f
-10 dBm Input Power
Unfiltered IF Output, Improves substantially with
-10 dBm Input Power
RF1
RF1
SOURCE
LO
= 899.5 MHz, f
= 899.5 MHz, f
S
= 703 MHz, LO power = 0 dBm, Zo = 50Ω, unless otherwise noted
=5V
= 50Ω, Differential Z
REV. PrA | Page 2 of 9
RF2
RF2
= 900.5 MHz, f
= 900.5 MHz, f
LOAD
= 200Ω
LO
LO
= 703 MHz,
= 703 MHz,
Preliminary Technical Data
Min
700
40
4.75
-6
250
Typ
12
50
200
V
0
12
50
S
8.5
9.2
15
18
26
55
11
380
-20
-33
-65
-74
33
50
5
Max
1000
450
5.25
+10
960
Unit
dB
Ω
MHz
Ω
MHz
V
dBm
dB
Ω
MHz
dB
dB
dB
dB
dBm
dBm
dBm
dBm
dBm
dBc
dBc
dBc
V
mA

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