MAX19999ETX+ Maxim Integrated Products, MAX19999ETX+ Datasheet - Page 4

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MAX19999ETX+

Manufacturer Part Number
MAX19999ETX+
Description
Up-Down Converters IC DOWNCONVERTER 2CH earity, 3000MHz to 4
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX19999ETX+

Maximum Input Frequency
4000 MHz
Maximum Power Dissipation
8700 mW
Mounting Style
SMD/SMT
Maximum Operating Frequency
500 MHz
Maximum Power Gain
9.3 dB
Operating Supply Voltage
5 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Package / Case
TQFN-36 EP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Dual, SiGe High-Linearity, 3000MHz to
4000MHz Downconversion Mixer with LO Buffer
+5.0V SUPPLY AC ELECTRICAL CHARACTERISTICS (continued)
( Typical Application Circuit , V
P
ues are at V
noted.) (Note 8)
+3.3V SUPPLY AC ELECTRICAL CHARACTERISTICS
( Typical Application Circuit, typical values are at V
f
4
IF
RF
Conversion Gain
Conversion Gain Flatness
Gain Variation Over Temperature
Input Compression Point
Third-Order Input Intercept Point
Third-Order Input Intercept
Variation Over Temperature
Noise Figure
Noise Figure Temperature
Coefficient
2RF-2LO Spurious Rejection
3RF-3LO Spurious Rejection
RF Input Return Loss
LO Input Return Loss
IF Output Return Loss
RF-to-IF Isolation
LO Leakage at RF Port
2LO Leakage at RF Port
LO Leakage at IF Port
Channel Isolation
= 350MHz, T
_______________________________________________________________________________________
= -5dBm, f
PARAMETER
PARAMETER
CC
RF
= +5.0V, P
C
= +25°C, unless otherwise noted.) (Note 8)
= 3200MHz to 3900MHz, f
RF
= -5dBm, P
CC
= +4.75V to +5.25V, RF and LO ports are driven from 50Ω sources, P
SYMBOL
SYMBOL
NF
TC
IP
TC
2 x 2
3 x 3
IIP3
G
LO
1dB
SSB
CG
C
NF
= 0dBm, f
LO
= 2800MHz to 3600MHz, f
f
100MHz band
f
+85°C
f
f
Single sideband, no blockers present
Single sideband, no blockers present,
T
f
f
LO on and IF terminated into a matched
impedance
RF and IF terminated into a matched
impedance
RF terminated into 50Ω, LO driven by a 50Ω
source, IF transformed to 50Ω using
external components shown in the Typical
Application Circuit
(Notes 6, 9)
RFMAIN (RFDIV) converted power
measured at IFDIV (IFMAIN), relative to
IFMAIN (IFDIV), all unused ports terminated
to 50Ω (Notes 6, 9)
RF
RF
RF1
RF1
SPUR
SPUR
C
= -40°C to +85°C
= 3200MHz to 3900MHz, over any
= 3200MHz to 3900MHz, T
CC
- f
- f
RF
= f
= f
RF2
RF2
= +3.3V, P
= 3550MHz, f
LO
LO
= 1MHz, P
= 1MHz, T
+ 175MHz
+ 116.67MHz
CONDITIONS
CONDITIONS
RF
C
RF
LO
= -5dBm, P
= -40°C to +85°C
= -5dBm per tone
IF
= 3200MHz, f
= 350MHz, f
P
P
P
P
RF
RF
RF
RF
C
= -40°C to
= -10dBm
= -5dBm
= -10dBm
= -5dBm
LO
= 0dBm, f
IF
RF
= 350MHz, T
> f
LO
MIN
, T
MIN
36
RF
C
= 3550MHz, f
= -40°C to +85°C. Typical val-
C
= +25°C, unless otherwise
0.018
-0.01
±0.3
TYP
0.15
20.3
10.5
15.5
TYP
8.0
8.4
-31
-30
-23
74
69
75
65
16
18
28
39
LO
= -3dBm to +3dBm,
MAX
MAX
LO
-24
= 3200MHz,
UNITS
dB/°C
dB/°C
UNITS
dBm
dBm
dBm
dBm
dBm
dBm
dBc
dBc
dB
dB
dB
dB
dB
dB
dB
dB

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