N SYNTHESIZER. HMC699LP5 Datasheet

HMC699LP5 SYNTHESIZER. Datasheet pdf. Equivalent

Part HMC699LP5
Description INTEGER N SYNTHESIZER
Feature HMC699LP5 / 699LP5E v05.0110 7 GHz INTEGER N SYNTHESIZER CONTINUOUS (N = 56 - 519), NON-CONTINUOU.
Manufacture Analog Devices
Datasheet
Download HMC699LP5 Datasheet



HMC699LP5
HMC699LP5 / 699LP5E
v05.0110
7 GHz INTEGER N SYNTHESIZER
CONTINUOUS (N = 56 - 519), NON-CONTINUOUS (N = 16 - 54)
Typical Applications
The HMC699LP5(E) is ideal for:
• Satellite Communication Systems
• Point-to-Point Radios
• Military Applications
• Sonet Clock Generation
6
Functional Diagram
Features
Ultra Low SSB Phase Noise Floor:
-153 dBc/Hz @ 10 kHz offset @ 100 MHz
Reference Frequency.
Programmable Divider (N = 16 - 519)
Operating up to 7 GHz
Open Collector Output Buffer Amplifiers for
Interfacing w/ Op-Amp Based Loop Filter
Reversible Polarity PFD w/ Lock Detect Output
32 Lead 5x5mm SMT Package: 25mm2
General Description
The HMC699LP5(E) is a frequency synthesizer with
a wideband reversible polarity digital PFD and lock
detect output. The divider operates from 160 - 7000
MHz with a continuous integer division ratio N = 56
to 519 and non-continuous division ratio N = 16 to
54. The HMC699LP5(E) high frequency operation
along with ultra low phase noise floor make possible
synthesizers with wide loop bandwidth and low N
resulting in fast settling and very low phase noise.
When used in conjunction with a differential loop
filter, the HMC699LP5(E) can be used to phase
lock a VCO to a reference oscillator. For continuous
division ratio, the A counter and S counter must
satisfy the condition: A + 1 S.
6-1
Electrical Specifications, TA = +25° C, Vcc = Vcc1 = Vcc2 = Vcc3 = Vcc_pd = 5V
Parameter
Maximum Ref. Input Frequency
Minimum Ref. Input Frequency
Reference Input Power Range
Maximum VCO Input Frequency
Minimum VCO Input Frequency
VCO Input Power Range
Conditions
Sine or Square Wave Input [1]
Square Wave Input [2]
100 MHz Frequency
Sine Wave Input
100 MHz Input Frequency
Min.
Typ.
Max.
1300
10
-5
+5
7000
160
-10
+5
Units
MHz
MHz
dBm
MHz
MHz
dBm
PFD Output Voltage
2000
mV, Pk - Pk
PFD Gain
Gain = Vpp / 2π Rad.
0.32
SSB Phase Noise
@ 10 kHz Offset @ 100 MHz Square Wave Ref. Input
Pin= 0 dBm
-153
Total Supply Current
345
[1] Maximum frequencies may be limited by available counter division ratio.
[2] Square wave input achieves best phase noise at lower reference frequency (see sine & square wave comparison plots)
V/Rad.
dBc/Hz
mA
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Trademarks and registered trademarks aArepthpelpircopaetrityoonf thSeiur rpesppeoctrivte: oPwhneorsn. e: 978-250-33A4p3plicoartioanpSpusp@pohrti:tPtihteo.nceo: 1m-800-ANALOG-D



HMC699LP5
HMC699LP5 / 699LP5E
v05.0110
7 GHz INTEGER N SYNTHESIZER
CONTINUOUS (N = 56 - 519), NON-CONTINUOUS (N = 16 - 54)
Phase Noise Floor [1][2][3]
Ref = Sine Wave, Vcc = 4.75V
-100
-110
-120
-130
-10 dBm
-5 dBm
0 dBm
+5 dBm
-140
-150
-160
-170
-180
102
103
104
105
OFFSET FREQUENCY (Hz)
Phase Noise Floor [1][2][3]
Ref = Square Wave, Vcc = 4.75V
-100
-110
-120
-130
-10 dBm
-5 dBm
0 dBm
+5 dBm
-140
-150
-160
-170
-180
102
103
104
105
OFFSET FREQUENCY (Hz)
Phase Noise Floor [1][2][3]
Ref = Sine Wave, Vcc = 5V
-100
-110
-120
-10 dBm
-5 dBm
0 dBm
+5 dBm
-130
-140
-150
-160
-170
-180
102
103
104
105
OFFSET FREQUENCY (Hz)
Phase Noise Floor [1][2][3]
Ref = Square Wave, Vcc = 5V
-100
-110
-120
-130
-140
-10 dBm
-5 dBm
0 dBm
+5 dBm
-150
-160
-170
-180
102
103
104
105
OFFSET FREQUENCY (Hz)
Phase Noise Floor [1][2][3]
Ref = Sine Wave, Vcc = 5.25V
Phase Noise Floor [1][2][3]
Ref = Square Wave, Vcc = 5.25V
-100
-100
-110
-120
-10 dBm
-5 dBm
0 dBm
+5 dBm
-110
-120
-10 dBm
-5 dBm
0 dBm
+5 dBm
-130
-130
-140
-140
-150
-150
-160
-160
-170
-170
-180
102
103
104
105
OFFSET FREQUENCY (Hz)
-180
102
103
104
105
OFFSET FREQUENCY (Hz)
[1] Phase Noise Floor vs Offset Frequency with varying Ref Power Level
[2] Fin = 7000 MHz @ 0 dBm, Ref Frequency = 100 MHz, N = 70
[3] Phase Noise Floor remains constant beyond 100 kHz offset frequency
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Trademarks and registered trademarks aArepthpelpircopaetrityoonf thSeiur rpesppeoctrivte: oPwhneorsn. e: 978-250-33A4p3plicoartioanpSpusp@pohrti:tPtihteo.nceo: 1m-800-ANALOG-D
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