MAX9984ETP+T Maxim Integrated Products, MAX9984ETP+T Datasheet - Page 3

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MAX9984ETP+T

Manufacturer Part Number
MAX9984ETP+T
Description
Up-Down Converters IC MIXER DOWN CONV 400MHz to 1000MHz D
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX9984ETP+T

Maximum Input Frequency
1000 MHz
Maximum Power Dissipation
2100 mW
Mounting Style
SMD/SMT
Maximum Operating Frequency
250 MHz
Maximum Power Gain
9.2 dB
Operating Supply Voltage
5 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Package / Case
TQFN-20 EP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
AC ELECTRICAL CHARACTERISTICS (continued)
(MAX9984 Typical Application Circuit, using component values in Table 1, V
50Ω sources, P
T
750MHz, f
Note 1: All limits include external component losses. Output measurements taken at IF output of the Typical Application Circuit.
Note 2: Operation outside this range is possible, but with degraded performance of some parameters.
Note 3: See Table 2 for component list required for 400MHz to 500MHz operation. For operation from 500MHz to 800MHz, appropriate
Note 4: Compression point characterized. It is advisable not to operate continuously the mixer RF input above +12dBm.
Note 5: Guaranteed by design and characterization.
Note 6: Measured with external LO source noise filtered so the noise floor is -174dBm/Hz. This specification reflects the effects of all
Input IP3 Variation Over
Temperature
Noise Figure
Noise Figure Under-Blocking
Small-Signal Compression
Under-Blocking Condition
LO Drive
Spurious Response at IF
LO1 to LO2 Isolation
LO Leakage at RF Port
LO Leakage at IF Port
RF-to-IF Isolation
LO Switching Time
RF Port Return Loss
LO Port Return Loss
IF Port Return Loss
C
= -40°C to +85°C, unless otherwise noted. Typical values are at V
Downconversion Mixer with LO Buffer/Switch
tuning is required; please contact the factory for support.
SNR degradations in the mixer, including the LO noise as defined in Maxim Application Note 2021.
IF
PARAMETER
= 160MHz, T
LO
= -3dBm to +3dBm, P
SiGe High-Linearity, 400MHz to 1000MHz
_______________________________________________________________________________________
C
= +25°C, unless otherwise noted.) (Note 1)
SYMBOL
2 x 2
3 x 3
RF
NF
= -5dBm, f
T
T
Single sideband, f
f
f
f
f
( N ote 6)
P
f
f
2RF-2LO
3RF-3LO
P
T
P
P
P
50% of LOSEL to IF settled to within 2°
LO1/2 port selected,
LO2/1 and IF terminated
LO1/2 port unselected,
LO2/1 and IF terminated
LO driven at 0dBm, RF terminated into 50Ω,
differential 200Ω
R F
L O
B LOC K E R
I F
F U N D A M E N TA L
B LOC K E R
C
C
C
FUNDAMENTAL
LO
LO
LO
LO
= 190M H z
= +25°C to -40°C
= +25°C to +85°C
= +25°C (Note 5)
= 900M H z ( no si g nal )
= 1090M H z
= +3dBm
= +3dBm
= +3dBm
= +3dBm
RF
= 815MHz to 1000MHz, f
= 981M H z
= 911M H z
= 910M H z
CONDITIONS
= -5dBm
IF
= 190MHz
CC
= +5V, P
CC
P
+ 8d Bm
P
+ 11d Bm
P
+ 8d Bm
P
+ 11d Bm
P
P
P
P
LO2 selected
LO1 selected
B LOC K E R
B LOC K E R
B LOC K E R
B LOC K E R
RF
RF
RF
RF
= +4.75V to +5.25V, RF and LO ports are driven from
= -10dBm
= -5dBm
= -10dBm
= -5dBm
LO
RF
= 570MHz to 850MHz, f
= -5dBm, P
=
=
=
=
MIN
47
47
-3
LO
= 0dBm, f
+0.8
TYP
0.25
-1.5
9.3
0.6
-32
-23
19
24
71
66
87
82
54
60
54
50
14
23
20
16
IF
= 160MHz, f
RF
= 910MHz, f
MAX
+3
RF
UNITS
dBm
dBm
dBm
dBc
dB
dB
dB
dB
dB
dB
dB
dB
dB
ns
> f
LO
LO
3
=
,

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