MAX19999ETX+ Maxim Integrated Products, MAX19999ETX+ Datasheet - Page 3

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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
+5.0V SUPPLY AC ELECTRICAL CHARACTERISTICS
( Typical Application Circuit , V
P
ues are at V
noted.) (Note 8)
Conversion Gain
Conversion Gain Flatness
Gain Variation Over Temperature
Input Compression Point
Third-Order Input Intercept Point
Third-Order Input Intercept Point
Variation Over Temperature
Noise Figure
Noise Figure Temperature
Coefficient
Noise Figure Under Blocking
Conditions
2RF-2LO Spurious Rejection
3RF-3LO Spurious Rejection
RF Input Return Loss
LO Input Return Loss
IF Output Impedance
RF
4000MHz Downconversion Mixer with LO Buffer
= -5dBm, f
PARAMETER
CC
RF
= +5.0V, P
= 3200MHz to 3900MHz, f
_______________________________________________________________________________________
RF
Dual, SiGe High-Linearity, 3000MHz to
= -5dBm, P
CC
= +4.75V to +5.25V, RF and LO ports are driven from 50Ω sources, P
SYMBOL
NF
TC
IP
TC
2 x 2
3 x 3
NF
IIP3
G
Z
LO
1dB
SSB
IF
CG
C
NF
B
= 0dBm, f
LO
= 2800MHz to 3600MHz, f
T
f
100MHz band
f
+85°C
(Notes 6, 9, 10)
f
(Notes 6, 9)
f
P
(Notes 6, 9)
f
Single sideband, no blockers present
(Notes 5, 6)
Single sideband, no blockers present,
f
Single sideband, no blockers present,
T
f
f
V
f
3150MHz, f
175MHz, T
f
3150MHz, f
116.67MHz, T
LO on and IF terminated into a matched
impedance
RF and IF terminated into a matched
impedance
Nominal differential impedance at the IC’s
IF outputs
RF
RF
RF1
RF
RF1
RF
BLOC KE R
RF
RF
RF
C
C
RF
C C
= +25°C (Notes 6, 9)
= -40°C to +85°C
= 3450M H z, f
= 3200MHz to 3900MHz, over any
= 3200MHz to 3900MHz, T
= 3550MHz, f
= 3500MHz, T
= 3500MHz, f
= 3500MHz, f
= -5dBm per tone, T
= 5.0V, T
- f
- f
RF
RF2
RF2
= 3550MHz, f
= 3700M H z, P
= 1MHz, P
= 1MHz, T
C
SPUR
SPUR
C
= +25°C
C
= + 25°C ( Notes 5, 6, 11)
CONDITIONS
LO
= +25°C P
RF1
LO
= f
LO
= f
C
= 3100M H z, P
= +25°C (Notes 5, 6)
LO
LO
=
=
- f
C
RF
LO
BLOC KE R
+
+
RF2
= -40°C to +85°C
= -5dBm per tone
C
IF
= 3200MHz, f
= +25°C
P
(Notes 5, 6)
P
(Notes 6, 9)
P
(Notes 5, 6)
(Notes 6, 9)
= 350MHz, f
= 1MHz,
RF
RF
RF
RF
C
= -10dBm,
= -5dBm,
= -10dBm,
= -5dBm,
= 8d Bm,
LO
= -40°C to
= 0d Bm,
IF
RF
= 350MHz, T
> f
LO
21.6
MIN
, T
7.3
9.8
22
68
63
77
67
C
= -40°C to +85°C. Typical val-
C
= +25°C, unless otherwise
0.018
-0.01
±0.3
TYP
0.15
11.4
24.3
24.3
10.5
10.5
15.4
200
8.3
21
74
69
86
76
14
LO
= -3dBm to +3dBm,
MAX
11.5
9.3
13
25
UNITS
dB/°C
dB/°C
dBm
dBm
dBm
dBc
dBc
dB
dB
dB
dB
dB
dB
3

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