Changes to Ordering Guide .......................................................... 19
7/2008—Rev. A to Rev. B
Changes to Features Section............................................................ 1
Changes to Figure 21 ...................................................................... 10
Changes to Table 9 .......................................................................... 16
Added Soldering Information Section......................................... 16
Changes to Figure 38 ...................................................................... 17
Changes to Ordering Guide .......................................................... 19
9/2006—Rev. 0 to Rev. A
Changes to Absolute Maximum Ratings ........................................6
Inserted Figure 10, Figure 11, and Figure 13 .................................9
Inserted Figure 17, Figure 18, and Figure 21 .............................. 10
Changes to Figure 34...................................................................... 14
Changes to Table 9.......................................................................... 16
Changes to Figure 38...................................................................... 18
Changes to Ordering Guide .......................................................... 19
1/2006—Revision 0: Initial Version
Rev. C | Page 2 of 19
Data Sheet
SPECIFICATIONS
AD8352
V
S
= 5 V, R
L
= 200 Ω differential, R
G
= 118 Ω (A
V
= 10 dB), f = 100 MHz, T = 25°C; parameters specified differentially (in/out), unless
otherwise noted. C
D
and R
D
are selected for differential broadband operation (see Table 5 and Table 6).
Table 1.
Parameter
DYNAMIC PERFORMANCE
−3 dB Bandwidth
Conditions
A
V
= 6 dB, V
OUT
≤ 1.0 V p-p
A
V
= 10 dB, V
OUT
≤ 1.0 V p-p
A
V
= 14 dB, V
OUT
≤ 1.0 V p-p
3 dB ≤ A
V
≤ 20 dB, V
OUT
≤ 1.0 V p-p
3 dB ≤ A
V
≤ 20 dB, V
OUT
≤ 1.0 V p-p
Using 1% resistor for R
G
, 0 dB ≤ A
V
≤ 20 dB
V
S
± 5%
−40°C to +85°C
R
L
= 1 kΩ, V
OUT
= 2 V step
R
L
= 200 Ω, V
OUT
= 2 V step
2 V step to 1%
V
IN
= 4 V to 0 V step, V
OUT
≤ ±10 mV
Min
Typ
2500
2200
1800
190
300
±1
0.06
4
9
8
<2
<3
−80
VCC/2
1.2 to 3.8
6
−100
0.25
−20
−40°C to +85°C
57
0.15
±5
3
0.9
100
3
3
ENB at 3 V
ENB at 0.6 V
ENB at 3 V
ENB at 0.6 V
5
1.5
75
−125
37
5.3
5.5
+20
+20
Max
Unit
MHz
MHz
MHz
MHz
MHz
dB
dB/V
mdB/°C
V/ns
V/ns
ns
ns
dB
V
V
V p-p
mV
mV/°C
mV
dB
mV/°C
µA
kΩ
pF
Ω
pF
V
V
nA
µA
mA
mA
Bandwidth for 0.1 dB Flatness
Bandwidth for 0.2 dB Flatness
Gain Accuracy
Gain Supply Sensitivity
Gain Temperature Sensitivity
Slew Rate
Settling Time
Overdrive Recovery Time
Reverse Isolation (S12)
INPUT/OUTPUT CHARACTERISTICS
Common-Mode Nominal
Voltage Adjustment Range
Maximum Output Voltage Swing
Output Common-Mode Offset
Output Common-Mode Drift
Output Differential Offset Voltage
Common-Mode Rejection Ratio (CMRR)
Output Differential Offset Drift
Input Bias Current
Input Resistance
Input Capacitance (Single Ended)
Output Resistance
Output Capacitance
POWER INTERFACE
Supply Voltage
ENB Threshold
ENB Input Bias Current
Quiescent Current
1 dB compressed
Referenced to VCC/2
−40°C to +85°C
35
39
Rev. C | Page 3 of 19
AD8352
NOISE DISTORTION SPECIFICATIONS
Data Sheet
V
S
= 5 V, R
L
= 200 Ω differential, R
G
= 118 Ω (A
V
= 10 dB), V
OUT
= 2 V p-p composite, T = 25°C; parameters specified differentially, unless
otherwise noted. C
D
and R
D
are selected for differential broadband operation (see Table 5 and Table 6). See the Applications Information
section for single-ended-to-differential performance characteristics.
Table 2.
Parameter
10 MHz
Second/Third Harmonic Distortion
1
Output Third-Order Intercept
Third-Order IMD
Conditions
R
L
= 1 kΩ, V
OUT
= 2 V p-p
R
L
= 200 Ω, V
OUT
= 2 V p-p
R
L
= 200 Ω, f
1
= 9.5 MHz, f
2
= 10.5 MHz
R
L
= 1 kΩ, f
1
= 9.5 MHz, f
2
= 10.5 MHz,
V
OUT
= 2 V p-p composite
R
L
= 200 Ω, f
1
= 9.5 MHz, f
2
= 10.5 MHz,
V
OUT
= 2 V p-p composite
Min
Typ
−88/−95
−86/−82
38
−86
−81
2.7
15.7
R
L
= 1 kΩ, R
G
= 178 Ω, V
OUT
= 2 V p-p
R
L
= 200 Ω, R
G
= 115 Ω, V
OUT
= 2 V p-p
R
L
= 200 Ω, f
1
= 69.5 MHz, f
2
= 70.5 MHz
R
L
= 1 kΩ, f
1
= 69.5 MHz, f
2
= 70.5 MHz,
V
OUT
= 2 V p-p composite
R
L
= 200 Ω, f
1
= 69.5 MHz, f
2
= 70.5 MHz,
V
OUT
= 2 V p-p composite
−83/−84
−84/−82
40
−91
−83
2.7
15.7
R
L
= 1 kΩ, V
OUT
= 2 V p-p
R
L
= 200 Ω, V
OUT
= 2 V p-p
R
L
= 200 Ω, f
1
= 99.5 MHz, f
2
= 100.5 MHz
R
L
= 1 kΩ, f
1
= 99.5 MHz, f
2
= 100.5 MHz,
V
OUT
= 2 V p-p composite
R
L
= 200 Ω, f
1
= 99.5 MHz, f
2
= 100.5 MHz,
V
OUT
= 2 V p-p composite
−83/−83
−84/−82
40
−91
−84
2.7
15.6
R
L
= 1 kΩ, V
OUT
= 2 V p-p
R
L
= 200 Ω, V
OUT
= 2 V p-p
R
L
= 200 Ω, f
1
= 139.5 MHz, f
2
= 140.5 MHz
R
L
= 1 kΩ, f
1
= 139.5 MHz, f
2
= 140.5 MHz,
V
OUT
= 2 V p-p composite
R
L
= 200 Ω, f
1
= 139.5 MHz, f
2
= 140.5 MHz,
V
OUT
= 2 V p-p composite
−83/−82
−82/−84
41
−89
−85
2.7
15.5
Max
Unit
dBc
dBc
dBm
dBc
dBc
nV/√Hz
dBm
dBc
dBc
dBm
dBc
dBc
nV/√Hz
dBm
dBc
dBc
dBm
dBc
dBc
nV/√Hz
dBm
dBc
dBc
dBm
dBc
dBc
nV/√Hz
dBm
Noise Spectral Density (RTI)
1 dB Compression Point (RTO)
70 MHz
Second/Third Harmonic Distortion
Output Third-Order Intercept
Third-Order IMD
Noise Spectral Density (RTI)
1 dB Compression Point (RTO)
100 MHz
Second/Third Harmonic Distortion
Output Third-Order Intercept
Third-Order IMD
Noise Spectral Density (RTI)
1 dB Compression Point (RTO)
140 MHz
Second/Third Harmonic Distortion
Output Third-Order Intercept
Third-Order IMD
Noise Spectral Density (RTI)
1 dB Compression Point (RTO)
Rev. C | Page 4 of 19
Data Sheet
Parameter
190 MHz
Second/Third Harmonic Distortion
Output Third-Order Intercept
Third-Order IMD
Conditions
R
L
= 1 kΩ, V
OUT
= 2 V p-p
R
L
= 200 Ω, V
OUT
= 2 V p-p
R
L
= 200 Ω, f
1
= 180.5 MHz, f
2
= 190.5 MHz
R
L
= 1 kΩ, f
1
= 180.5 MHz, f
2
= 190.5 MHz,
V
OUT
= 2 V p-p composite
R
L
= 200 Ω, f
1
= 180.5 MHz, f
2
= 190.5 MHz,
V
OUT
= 2 V p-p composite
Min
Typ
−82/−85
−81/−87
39
−83
−81
2.7
15.4
R
L
= 1 kΩ, V
OUT
= 2 V p-p
R
L
= 200 Ω, V
OUT
= 2 V p-p
R
L
= 200 Ω, f
1
= 239.5 MHz, f
2
= 240.5 MHz
R
L
= 1 kΩ, f
1
= 239.5 MHz, f
2
= 240.5 MHz,
V
OUT
= 2 V p-p composite
R
L
= 200 Ω, f
1
= 239.5 MHz, f
2
= 240.5 MHz,
V
OUT
= 2 V p-p composite
−82/−76
−80/−73
36
−85
−77
2.7
15.3
R
L
= 1 kΩ, V
OUT
= 2 V p-p
R
L
= 200 Ω, V
OUT
= 2 V p-p
R
L
= 200 Ω, f
1
= 379.5 MHz, f
2
= 380.5 MHz
R
L
= 1 kΩ, f
1
= 379.5 MHz, f
2
= 380.5 MHz,
V
OUT
= 2 V p-p composite
R
L
= 200 Ω, f
1
= 379.5 MHz, f
2
= 380.5 MHz,
V
OUT
= 2 V p-p composite
−72/−68
−74/−69
33
−74
−70
2.7
14.6
R
L
= 200 Ω, V
OUT
= 2 V p-p
R
L
= 200 Ω, f
1
= 499.5 MHz, f
2
= 500.5 MHz
R
L
= 200 Ω, f
1
= 499.5 MHz, f
2
= 500.5 MHz,
V
OUT
= 2 V p-p composite
−71/−64
28
−61
2.7
13.9
Max
AD8352
Unit
dBc
dBc
dBm
dBc
dBc
nV/√Hz
dBm
dBc
dBc
dBm
dBc
dBc
nV/√Hz
dBm
dBc
dBc
dBm
dBc
dBc
nV/√Hz
dBm
dBc
dBm
dBc
nV/√Hz
dBm
Noise Spectral Density (RTI)
1 dB Compression Point (RTO)
240 MHz
Second/Third Harmonic Distortion
Output Third-Order Intercept
Third-Order IMD
Noise Spectral Density (RTI)
1 dB Compression Point (RTO)
380 MHz
Second/Third Harmonic Distortion
2
Output Third-Order Intercept
Third-Order IMD
Noise Spectral Density (RTI)
1 dB Compression Point (RTO)
500 MHz
Second/Third Harmonic Distortion
2
Output Third-Order Intercept
Third-Order IMD
Noise Spectral Density (RTI)
1 dB Compression Point (RTO)
1
When using the evaluation board at frequencies below 50 MHz, replace the Output Balun T1 with a transformer, such as Mini-Circuits® ADT1-1WT to obtain the low
frequency balance required for differential HD2 cancellation.
2
C
D
and R
D
can be optimized for broadband operation below 180 MHz. For operation above 300 MHz, C