ADL5802_09 AD [Analog Devices], ADL5802_09 Datasheet - Page 4

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ADL5802_09

Manufacturer Part Number
ADL5802_09
Description
Dual Channel, High IP3, 100 MHz to 6 GHz Active Mixer
Manufacturer
AD [Analog Devices]
Datasheet
ADL5802
Parameter
DYNAMIC PERFORMANCE at f
DYNAMIC PERFORMANCE at f
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
Z
Supply voltage must be applied from an external circuit through choke inductors.
Excluding 4:1 IF port transformer (TC4-1W+), RF and LO port transformers (TC1-1-13M+), and PCB loss.
Z
f
f
f
For details, see the Spur Performance section.
V
RF1
RF1
RF1
Excluding 4:1 IF port transformer (TC4-1W+), RF and LO port transformers (2500BL14M050), and PCB loss.
f
V
Including 4:1 IF port transformer (TC4-1W+), RF and LO port transformers (3600BL14M050), and PCB loss.
f
V
Including 4:1 IF port transformer (TC4-1W+), RF and LO port transformers (5400BL15B050), and PCB loss.
f
0
SOURCE
S
Input Second Order Intercept
Input 1 dB Compression Point
LO to IF Output Leakage
LO to RF Input Leakage
RF to IF Output Isolation
RFI1 to RFI2 Channel Isolation
IF/2 Spurious
IF/3 Spurious
Power Conversion Gain
Voltage Conversion Gain
SSB Noise Figure
SSB Noise Figure Under Blocking
Input Third Order Intercept
Input Second Order Intercept
Input 1 dB Compression Point
LO to IF Output Leakage
LO to RF Input Leakage
RF to IF Output Isolation
RFI1 to RFI2 Channel Isolation
IF/2 Spurious
IF/3 Spurious
Power Conversion Gain
Voltage Conversion Gain
SSB Noise Figure
SSB Noise Figure Under Blocking
Input Third Order Intercept
Input Second Order Intercept
Input 1 dB Compression Point
LO to IF Output Leakage
LO to RF Input Leakage
RF to IF Output Isolation
RFI1 to RFI2 Channel Isolation
IF/2 Spurious
IF/3 Spurious
RF1
RF1
RF1
S
S
= 5 V, VSET = 4.5 V, T
is the characteristic impedance assumed for all measurements and the PCB.
= 5 V, VSET = 4.8 V, T
= f
= (f
= f
= 5 V, VSET = 5 V, T
= f
= f
= f
CENT
CENT
= 50 Ω, differential; Z
CENT
CENT
CENT
CENT
, f
, f
, f
, f
, f
− 1) MHz, f
BLOCKER
RF2
BLOCKER
BLOCKER
BLOCKER
= (f
= (f
CENT
8
8
8
8
8
8
= (f
= (f
= (f
CENT
+ 100) MHz, f
RF2
CENT
CENT
CENT
A
A
= 25°C, f
A
= f
− 5) MHz, f
= 25°C, f
= 25°C, f
− 5) MHz, f
− 5) MHz, f
− 5) MHz, f
CENT
LOAD
13
16
, f
4
4
LO
= 200 Ω, differential 5 dBm; Z
LO
LO
LO
= (f
RF
5
RF
5
LO
= (f
LO
= (f
LO
LO
= (f
LO
= (f
= 3500 MHz
= 5500 MHz
7
7
7
= (f
CENT
RF
= (f
= (f
= (f
RF
RF
− 153) MHz, LO power = 0 dBm, Z
CENT
− 211) MHz, LO power = 0 dBm, Z
CENT
14
17
− 153) MHz, each RF tone at −10 dBm.
− 380) MHz, LO power = 0 dBm, Z
CENT
CENT
CENT
− 153) MHz, each RF tone at −10 dBm.
− 153) MHz, blocker level = 0 dBm.
− 235) MHz, blocker level = 0 dBm.
− 153) MHz, blocker level = −20 dBm.
− 300) MHz, blocker level = −20 dBm.
12
15
SOURCE
is the impedance of the source instrument; Z
Test Conditions/Comments
f
Unfiltered IF output
0 dBm input power
0 dBm input power
f
f
f
Unfiltered IF output
0 dBm input power
0 dBm input power
f
f
f
Unfiltered IF output
0 dBm input power
0 dBm input power
CENT
CENT
CENT
CENT
CENT
CENT
CENT
= 2500 MHz
= 3500 MHz
= 3500 MHz
= 3500 MHz
= 5800 MHz
= 5500 MHz
= 5500 MHz
Rev. 0 | Page 4 of 32
0
0
= 50 Ω.
0
= 50 Ω.
= 50 Ω.
LOAD
is the load impedance at the output.
Min
Typ
47
13
36
31
26
42
−52
−56
−0.5
5.5
12.5
18
25
39
13
33
28
31
39
−46
−63
−3
5.67
14
17
23
35
13
42
27
50
33
−49
−64
Max
Unit
dBm
dBm
dBm
dBm
dBc
dBc
dBc
dBc
dB
dB
dB
dB
dBm
dBm
dBm
dBm
dBm
dBc
dBc
dBc
dBc
dB
dB
dB
dB
dBm
dBm
dBm
dBm
dBm
dBc
dBc
dBc
dBc

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