SMT MMIC. HMC917LP3E Datasheet

HMC917LP3E MMIC. Datasheet pdf. Equivalent

Part HMC917LP3E
Description SMT MMIC
Feature HMC917LP3E v00.0410 SMT MMIC x4 ACTIVE FREQUENCY MULTIPLIER, 6 - 10 GHz OUTPUT Typical Applicati.
Manufacture Analog Devices
Datasheet
Download HMC917LP3E Datasheet



HMC917LP3E
HMC917LP3E
v00.0410
SMT MMIC x4 ACTIVE
FREQUENCY MULTIPLIER, 6 - 10 GHz OUTPUT
Typical Applications
Features
The HMC917LP3E is Ideal for:
Output Power: 2 dBm Typical
• Microwave Radio & VSAT
Spurious Suppression: >20 dBc
• Military Radios, Radar & ECM
SSB Phase Noise: -148 dBc/Hz @ 100 kHz Offset
• Test Instrumentation
Single Supply: 5V@ 91 mA
5
LETE Functional Diagram
16 Lead 3x3 mm SMT Package: 9mm²
General Description
The HMC917LP3E is an active x4 frequency multi-
plier housed in a 3x3 mm leadless QFN surface
mount package. Power output is 2 dBm typical from
a single +5V supply and varies little vs. input power,
temperature and supply voltage. Suppression of
undesired fundamental and spurious is 20 dBc
typical with respect to output signal level. The low
additive SSB phase noise of -148 dBc/Hz at 100 kHz
offset helps the user maintain good system noise
performance. The HMC917LP3E is ideal for use in LO
multiplier chains allowing reduced parts count versus
traditional approaches.
BSO Electrical Specifications, TA = +25° C, Vcc = 5V [1]
Parameter
Min.
Frequency Range, Input
O Frequency Range, Output
Typ.
1.5 - 2.5
6 - 10
Max.
Units
GHz
GHz
Input Power Range
0
5
10
dBm
Output Power Range
2
dBm
Spurious
-20
dBc
Input Return Loss
7
dB
Output Return Loss
12
dB
SSB Phase Noise (100 kHz Offset)
Pin = +5 dBm
-148
dBc/Hz
Supply Current (Icc)
91
mA
[1] Single-ended operation
5-1
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Trademarks and registered trademarks arAe tphepplriocpearttyioofntheSir urepsppecotivret:owPnehrso. ne: 978-250-3A3p4p3licaotrionaSpuppsp@orht:iPtthitoen.ec: o1-m800-ANALOG-D



HMC917LP3E
HMC917LP3E
v00.0410
SMT MMIC x4 ACTIVE
FREQUENCY MULTIPLIER, 6 - 10 GHz OUTPUT
Output Power vs.
Temperature @ 0 dBm Drive Level [1]
4
Output Power vs. Drive Level, T = 25 °C [1]
4
3
3
2
2
1
0
+25C
+85C
-1
-40C
-2
E 5
6
7
8
9
10
11
OUTPUT FREQUENCY (GHz)
T Output Power vs. Supply Voltage
@ 0 dBm Drive Level, T = 25 °C [1]
4
E 3
2
L 1
0
4.75V
5.0V
O -1
5.25V
-2
5
6
7
8
9
10
11
OUTPUT FREQUENCY (GHz)
BS Input Return Loss vs. Temperature [1]
0
+25C
+85C
O-40C
1
0
0 dBm
5 dBm
10 dBm
-1
-2
5
6
7
8
9
10
11
OUTPUT FREQUENCY (GHz)
Spurious Output vs. Fin
Pin = +5 dBm, T = 25 °C [1]
10
0
-10
-20
-30
-40
-50
-60
1rst Harmonic
-70
2nd Harmonic
3rd Harmonic
-80
4th Harmonic
5th Harmonic
-90
6th Harmonic
-100
1.3 1.4 1.5 1.6 1.7 1.8 1.9 2.0 2.1 2.2 2.3 2.4 2.5 2.6 2.7 2.8
INPUT FREQUENCY (GHz)
Output Return Loss vs. Temperature [1]
0
-5
5
-5
-10
-15
-10
-20
+25C
+85C
-25
-40C
-15
1.0
1.3
1.5
1.8
2.0
2.2
2.5
2.7
3.0
FREQUENCY (GHz)
-30
5
6
7
8
9
10
11
FREQUENCY (GHz)
[1] All data shown is single-ended operation
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Trademarks and registered trademarks arAe tphepplriocpearttyioofntheSir urepsppecotivret:owPnehrso. ne: 978-250-3A3p4p3licaotrionaSpuppsp@orht:iPtthitoen.ec: o1-m800-ANALOG-D
5-2





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