3v supply ac electrical characteristics – Rainbow Electronics MAX19996 User Manual
Page 4

MAX19996
SiGe High-Linearity, 2000MHz to 3000MHz
Downconversion Mixer with LO Buffer
4
_______________________________________________________________________________________
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
IF Output Impedance
Z
IF
Nominal differential impedance at the IC’s
IF outputs
200
Ω
f
IF
= 450MHz,
L1 = L2 = 120nH
25
f
IF
= 350MHz,
L1 = L2 = 270nH
25
IF Output Return Loss
RF terminated into 50
Ω,
LO driven by 50
Ω
source, IF transformed
to 50
Ω using external
components shown in
the Typical Application
Circuit. See the IF Port
Return Loss vs. IF
Frequency graph in the
Typical Operating
Characteristics for
performance vs.
inductor values
f
IF
= 300MHz,
L1 = L2 = 470nH
25
dB
Minimum RF-to-IF Isolation
f
RF
= 2300MHz to 2700MHz, P
LO
= +3dBm
(Note 5)
34
dB
Maximum LO Leakage at RF Port
f
LO
= 1900MHz to 2500MHz, P
LO
= +3dBm
-22.7
dBm
M axi m um 2LO Leakag e at RF P or t
f
LO
= 1900MHz to 2500MHz, P
LO
= +3dBm
-21
dBm
Maximum LO Leakage at IF Port
f
LO
= 1900MHz to 2500MHz, P
LO
= +3dBm
(Note 5)
-27.5
dBm
+5.0V SUPPLY AC ELECTRICAL CHARACTERISTICS (continued)
(
Typical Application Circuit, V
CC
= +4.75V to +5.25V, RF and LO ports are driven from 50Ω sources, P
LO
= -3dBm to +3dBm,
P
RF
= -5dBm, f
RF
= 2300MHz to 2800MHz, f
LO
= 2000MHz to 2500MHz, f
IF
= 300MHz, f
RF
> f
LO
, T
C
= -40°C to +85°C. Typical val-
ues are at V
CC
= +5.0V, P
RF
= -5dBm, P
LO
= 0dBm, f
RF
= 2500MHz, f
LO
= 2200MHz, f
IF
= 300MHz, T
C
= +25°C, all parameters are
guaranteed by design and characterization, unless otherwise noted.) (Note 6)
+3.3V SUPPLY AC ELECTRICAL CHARACTERISTICS
(
Typical Application Circuit, RF and LO ports are driven from 50Ω sources, Typical values are at V
CC
= +3.3V, P
RF
= -5dBm,
P
LO
= 0dBm, f
RF
= 2500MHz, f
LO
= 2200MHz, f
IF
= 300MHz, T
C
= +25°C, unless otherwise noted.) (Note 6)
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNITS
Conversion Power Gain
G
C
8.6
dB
Conversion Power Gain Variation
vs. Frequency
∆G
C
f
RF
= 2300MHz to 2800MHz for any
100MHz band
0.1
dB
Gain Variation Over Temperature
TC
G
T
C
= -40°C to +85°C
-0.012
dB/°C
Input 1dB Compression Point
IP
1dB
(Note 8)
7.5
dBm
Third-Order Input Intercept Point
IIP3
f
RF1
= 2500MHz, f
RF2
= 2501MHz, f
LO
=
2200MHz, P
RF1
= P
RF2
= -5dBm
19.8
dBm
Third-Order Input Intercept
Variation Over Temperature
f
RF1
= 2500M H z, f
RF2
= 2501M H z, f
LO
=
2200M H z, P
RF1
= P
RF2
= - 5d Bm , T
C
= + 25°C
±0.5
dB
Noise Figure
NF
SSB
S i ng l e si d eb and , no b l ocker s p r esent ( N ote 9)
9.6
dB
Noise Figure Temperature
Coefficient
TC
NF
Single sideband, no blockers present,
T
C
= -40°C to +85°C (Note 9)
0.017
dB/°C
P
RF
= -10dBm
65.9
2RF-2LO Spur Rejection
2 x 2
P
RF
= -5dBm
60.9
dBc