PHASE-LOCKED OSCILLATOR. HMC535LP4E Datasheet

HMC535LP4E OSCILLATOR. Datasheet pdf. Equivalent

Part HMC535LP4E
Description PHASE-LOCKED OSCILLATOR
Feature v01.1009 Typical Applications Phase-Locked Oscillator for: • VSAT Radio • Point-to-Point & Point-to-.
Manufacture Analog Devices
Datasheet
Download HMC535LP4E Datasheet



HMC535LP4E
v01.1009
Typical Applications
Phase-Locked Oscillator for:
• VSAT Radio
• Point-to-Point & Point-to-Multi-Point Radio
• Test Equipment & Industrial Controls
• Military End-Use
Functional Diagram
12
HMC535LP4 / 535LP4E
PHASE-LOCKED OSCILLATOR,
14.7 - 15.4 GHz
Features
Pout: +9 dBm
Phase Noise: -110 dBc/Hz @100 KHz Typ.
Single Supply: +5V @ 340 mA
+12V @ 28 mA
24 Lead 4x4mm QFN Package: 9 mm2
General Description
The HMC535LP4 & HMC535LP4E are GaAs InGaP
Heterojunction Bipolar Transistor (HBT) MMIC PLOs.
The PLO’s phase noise performance is excellent
over temperature, shock, and process due to the
oscillator’s monolithic structure. Power output is
+9 dBm typical from a +5V supply voltage. All fun-
ctions (VCO, Op-Amp, PFD, Prescaler) are fully
integrated while providing allowances for off-chip
customer specific loop components. The PLO MMIC
accepts a single-ended or a differential reference
oscillator input signal in the range of 230 to 240 MHz,
and a digital Lock Detector (LD) output is provided
to confirm the status of the loop. The phase-locked
oscillator is packaged in a leadless QFN 4 x 4 mm
surface mount package.
Electrical Specifications, TA = +25° C
Power Supplies:
VCO Voltage
VCO Current
Op-Amp Voltage
Op-Amp Current
Digital Voltage
Digital Current
PLO Characteristics:
RF Operating Freq.
RF Power
Reference Input Freq.
Reference Input Power
RF Phase Noise
Locking Time
Lock Detect Output
Locked
Unlocked
Parameter
Vcc1
Icc1
Vcc2
Icc2
Vcc3
Icc3
100 KHz offset
Loop BW = 1 MHz
Min.
Typ.
Max.
Units
5
V
172
mA
12
V
28
mA
5
V
168
mA
14.7
15.4
GHz
6
9
dBm
229.69
240.62
MHz
0
5
10
dBm
-110
dBc/Hz
20
μs
0.3
0.5
Vave
0.7
1.0
Vave
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HMC535LP4E
v01.1009
HMC535LP4 / 535LP4E
PHASE-LOCKED OSCILLATOR,
14.7 - 15.4 GHz
Electrical Specifications, (Continued)
Parameter
VCO Characteristics:
RF Operating Freq.
RF Power
RF Tuning Sensitivity
Tuning Voltage Leakage Current
RF Phase Noise
RF Harmonics
RF Pushing
RF Pulling
RF Drift Rate
3 dB Modulator Bandwidth
Vtune +2 to +9.5 V
Vtune 0 to +2 V
Vtune +9.5 to +12 V
Vtune +2 to +9.5 V
100 kHz offset
1/2 FOP
3/2 FOP
4/2 FOP
5/2 FOP
VSWR 2:1 any phase
VTVCO input
Phase Frequency Detector:
REF Input Capacitance
REF Input Resistance
REF Input VSWR
Output High Voltage
Output Low Voltage
Phase Noise
Referenced to 50 Ohms
Op-Amp Characteristics:
Input Offset Voltage
Input bias Current
Large-Signal Voltage Gain
Common Mode Rejection Ratio
Input Common Mode Range
Power Supply Rejection Ratio
Output Voltage Swing Low
Output Voltage Swing High
Gain Bandwidth Product
Slew Rate
Phase Margin
Input Voltage Noise
VCM = 2.5V, 5.2V
VCM = 2.5V, 5.2V
Open Loop, No Load
VCM = 2.5V
Frequency = 1 MHz
VCM = 2.5V
Frequency = 1 MHz
No Load,
ISINK = 5 mA
No Load
ISOURCE = 5 mA
Frequency = 6 MHz
AV = 10, No Load
VO = 10V
Open Loop
Frequency = 10 kHz
Prescaler (Divider) Characteristics:
Prescaler Division
Phase Noise
Min.
14.7
6
50
30
Vcc3 -1.9
2.5
10
10
Typ.
9
160
-108
50
Vcc3
Vcc3 -1.95
-150
1
5
69
104
63
0.8
0.81
10.5
10.2
400
146
110
1.6
64
-156
Max.
15.4
590
25
-20
-35
-8
-25
-125
10
20
10
2:1
Vcc3 -2
5.2
1.2
1.2
Units
GHz
dBm
MHz/V
MHz/V
MHz/V
μA
dBc/Hz
dBc
dBc
dBc
dBc
MHz/V
MHz
MHz/ °C
MHz
pF
Ohm
V
V
dBc/Hz
mV
μA
dB
dB
V
dB
V
V
V
V
MHz
V/μs
Deg
nV / sqrt (Hz)
dBc/Hz
12
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12 - 163





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