micronetics M3500
Abstract: M3500 VCO M3500 Micronetics Wireless VCOs micronetics vco
Text: INTRODUCTION: VCOS FOR THE REAL WORLD ᮣ When your system design calls for a Voltage Controlled Oscillator that performs predictably and consistently without tuning, you should look at the Micronetics M3500 VCO Series. CONSISTENT PERFORMANCE FROM 100 MHZ TO
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M3500
M3500
micronetics M3500
M3500 VCO
Micronetics Wireless
VCOs
micronetics vco
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M3500-0916
Abstract: 0916 micronetics M3500-0916 micronetics m3500 M3500 VCO m3500-0613 vco
Text: INPUT LIMITING INPUT VOLTAGE LIMITING ON M3500-0916 ONLY The M3500-0916 uses an input zener diode to clamp the input voltage at 13V. This guarantees that the VCO always has an output at high tune voltages. Micronetics recommends that an input resistor be used in designs where the input
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M3500-0916
0916
micronetics M3500-0916
micronetics m3500
M3500 VCO
m3500-0613 vco
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Test Methodology
Abstract: M3500 VCO micronetics M3500 QUALCOMM Reference design nomograph M3500 M3500-0612 is nomograph micronetics vco micronetics M3500-0916s
Text: TEST METHODOLOGY TEST CONFIGURATION 1 TEST CONFIGURATIONAND PERFORMANCE Test Configurations 1,2,3 & 4 illustrate the actual test methods used for collecting the test data for all M3500 VCO versions. The performance curves of figures 2 A-M pages 9-22 were
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M3500
Test Methodology
M3500 VCO
micronetics M3500
QUALCOMM Reference design
nomograph
M3500-0612
is nomograph
micronetics vco
micronetics M3500-0916s
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diode SMD MARKING CODE K6
Abstract: SMD MARKING CODE k11 Amphenol Connectors CATALOG ecg catalog SMD EK 742 DIODE ZENNER C25 C26-C43 smd diode K7 diode smd marking M7 SMD diode S4 59
Text: 3 +3_3V 8 7 6 5 4 3 2 1 8 7 6 5 4 3 2 1 10 NC S_CLK 2 S_DATA 3 S_WR 4 17 NC NC 18 GND DIRECT 5 19 GND EW_R 6 20 GND ENH 7 21 GND MS2_SEL 8 22 GND RAND_EN 9 23 GND NC 10 24 GND GND 11 9 4 5 8 NC 26 GND NC 13 4 5 C21 0.01µF C22 100pF C23 22pF 9 10 11 12 13
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100pF
MW500-1233
MAZ80270HL
742C163221JTR
ERJ-3GEYJ510V
301-0-RC
P10194CT-ND
com/industrial/components/pdf/AEH0000CE4
PCC101ACVTR-ND
com/industrial/components/pdf/abj0000ce1
diode SMD MARKING CODE K6
SMD MARKING CODE k11
Amphenol Connectors CATALOG
ecg catalog
SMD EK 742
DIODE ZENNER C25
C26-C43
smd diode K7
diode smd marking M7
SMD diode S4 59
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M3500-0612
Abstract: No abstract text available
Text: M3500-0612 600-1200 MHZ 1H. M3500-0612 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER RATING Maximum Supply Voltage Tuning Voltage Min/Max +12.0V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER DATA Power Dissipation Frequency Tuning Range
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M3500-0612
M3500-0612
0/20V
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M3500-1324
Abstract: Micronetics M3500-1324 micronetics M3500 M3500-1324 CIRCUIT M3500
Text: M3500-1324 1350-2400 MHZ 1K. M3500-1324 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER Maximum Supply Voltage Tuning Voltage Min/Max RATING +15.0V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER Power Dissipation Frequency Tuning Range
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M3500-1324
M3500-1324
0/20V
Micronetics M3500-1324
micronetics M3500
M3500-1324 CIRCUIT
M3500
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micronetics M3500
Abstract: 6-15M MW500-1189 Micronetics
Text: Voltage Controlled Oscillators MW500-1189 600MHz to 1500MHz Specifications Frequency Tuning Voltage Power Output Phase Noise 600MHz to 1500MHz 0.5/18 V 7.5 +/- 2.5 dBm 10 kHz Offset -95 typ dBc/Hz 100 kHz Offset -115 (typ) dBc/Hz Frequency Pushing 5 MHz/V
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MW500-1189
600MHz
1500MHz
M3500-615M
micronetics M3500
6-15M
MW500-1189
Micronetics
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M3500-0305
Abstract: Tuning
Text: M3500-0305 300-500 MHZ 1D. M3500-0305 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER RATING Maximum Supply Voltage Tuning Voltage Min/Max +14.5V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER DATA Power Dissipation Frequency Tuning Range
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M3500-0305
M3500-0305
0/20V
Tuning
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M3500-0204
Abstract: No abstract text available
Text: M3500-0204 200-400 MHZ 1C. M3500-0204 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER RATING Maximum Supply Voltage Tuning Voltage Min/Max +14.5V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER DATA Power Dissipation Frequency Tuning Range
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M3500-0204
M3500-0204
0/20V
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M3500-2235
Abstract: M3500
Text: M3500-2235 2250-3500 MHZ 1M. M3500-2235 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER Maximum Supply Voltage Tuning Voltage Min/Max RATING +15.0V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER Power Dissipation Frequency Tuning Range
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M3500-2235
M3500-2235
0/20V
M3500
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0916
Abstract: M3500-0916 micronetics M3500-0916 micronetics m3500
Text: M3500-0916 900-1600 MHZ 1J. M3500-0916 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER RATING Maximum Supply Voltage Tuning Voltage Min/Max +15.0V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER DATA Power Dissipation Frequency Tuning Range
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M3500-0916
M3500-0916
0/20V
0916
micronetics M3500-0916
micronetics m3500
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M3500-0408
Abstract: m3500 vco micronetics M3500
Text: M3500-0408 400-800 MHZ 1F. M3500-0408 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER RATING Maximum Supply Voltage Tuning Voltage Min/Max +15.0V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER DATA Power Dissipation Frequency Tuning Range
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M3500-0408
M3500-0408
0/20V
m3500 vco
micronetics M3500
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M3500-0510
Abstract: M3500 VCO
Text: M3500-0510 500-1000 MHZ 1G. M3500-0510 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER RATING Maximum Supply Voltage Tuning Voltage Min/Max +15.0V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER DATA Power Dissipation Frequency Tuning Range
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M3500-0510
M3500-0510
0/20V
M3500 VCO
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M3500-2032
Abstract: M3500 micronetics M3500
Text: M3500-2032 2000-3200 MHZ 1L. M3500-2032 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER Maximum Supply Voltage Tuning Voltage Min/Max RATING +15.0V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER Power Dissipation Frequency Tuning Range
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M3500-2032
M3500-2032
0/20V
M3500
micronetics M3500
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M3500-0613
Abstract: M3500 VCO m3500-0613 vco
Text: M3500-0613 650-1300 MHZ 1I. M3500-0613 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER RATING Maximum Supply Voltage Tuning Voltage Min/Max +15.0V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER DATA Power Dissipation Frequency Tuning Range
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M3500-0613
M3500-0613
0/20V
M3500 VCO
m3500-0613 vco
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M3500-0306
Abstract: 0306
Text: M3500-0306 300-600 MHZ 1E. M3500-0306 VCO TECHNICAL SPECIFICATIONS ABSOLUTE MAXIMUM / MINIMUM RATINGS PARAMETER RATING Maximum Supply Voltage Tuning Voltage Min/Max +15.0V 0/20V GUARANTEED PERFORMANCE (0-70° C) PARAMETER DATA Power Dissipation Frequency Tuning Range
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M3500-0306
M3500-0306
0/20V
0306
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Soldering Techniques
Abstract: SN95 solder M3500 VCO M3500 micronetics M3500 50 ohm microstrip line SN63 m3500-0613 vco
Text: SOLDERING TECHNIQUES ᮣ If you want to make sure that each M3500 VCO operates at published performance and phase noise levels, follow the soldering techniques described below. SURFACE MOUNT Set iron for 250° C. Iron contact should not exceed 7 seconds from
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M3500
Soldering Techniques
SN95 solder
M3500 VCO
micronetics M3500
50 ohm microstrip line
SN63
m3500-0613 vco
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marking code x328 SMD ic
Abstract: diode X318 micronetics M3500 DIODE ZENNER C25 marking code c41 SMD ic smd x327 50V X375 x289 X644 X614
Text: 5 4 3 2 1 CA4-D 100pF 5 7 +3V TP9 +3V 8 7 6 5 4 3 2 1 8 7 6 5 4 3 2 1 8 7 6 5 4 3 2 1 1 R13 R22-A R22-B R22-C R22-D R22-E R22-F R22-G R22-H R11-A R11-B R11-C R11-D R11-E R11-F R11-G R11-H R12-A R12-B R12-C R12-D R12-E R12-F R12-G R12-H 220 220 220 220 220
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100pF
R22-A
R22-B
R22-C
R22-D
R22-E
R22-F
R22-G
R22-H
R11-A
marking code x328 SMD ic
diode X318
micronetics M3500
DIODE ZENNER C25
marking code c41 SMD ic
smd x327
50V X375
x289
X644
X614
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M3500-2235
Abstract: M3500 VCO M3500-1324 Micronetics M3500-1324 M3500-0916 NMT-900 M3500 m35000 nmt450 nmt900 M3500-0613
Text: HOW TO ORDER M3500 VCO S PECIFICATIONS MODEL M3500-0102* M3500-0103* M3500-0204* M3500-0305 M3500-0306* M3500-0408* M3500-0510* M3500-0612 M3500-0613 M3500-0916 M3500-1324 M3500-2032 M3500-2235 Selecting a Package Style FREQUENCY RANGE MHz TYP. 100 - 200 150 - 300
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M3500
M3500-0102*
M3500-0103*
M3500-0204*
M3500-0305
M3500-0306*
M3500-0408*
M3500-0510*
M3500-0612
M3500-0613
M3500-2235
M3500 VCO
M3500-1324
Micronetics M3500-1324
M3500-0916
NMT-900
m35000
nmt450 nmt900
M3500-0613
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micronetics m3500
Abstract: MW500-1189 M3500
Text: Voltage Controlled Oscillators MW500-1189 600 MHz to 1500 MHz Specifications Frequency Tuning Voltage Power Output Phase Noise 600 MHz to 1500 MHz 0.5/18 V 7.5 +/- 2.5 dBm 10 kHz Offset 100 kHz Offset Frequency Pushing Frequency Pulling Harmonic Suppression
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MW500-1189
M3500-615M
micronetics m3500
MW500-1189
M3500
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micronetics m3500
Abstract: M3500-615M
Text: Request a Quote | Ask an Engineer Image description. Print this Sheet End of image description. Image description. as PDF EndSave of image description. MW500-1189 600 MHz to 1500 MHz VOLTAGE CONTROLLED OSCILLATORS Specifications Frequency Tuning Voltage Power Output
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MW500-1189
M3500-615M
micronetics m3500
M3500-615M
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M3500C-2032S
Abstract: AD797 AN14 PE3236 PE3501 10 MHz TCXO VCO at 15GHZ tcxo 10mhz dbc
Text: AN14: Application Note Introduction There are many applications that require the synthesis of frequencies above 3 GHz. However, this range is generally beyond the maximum frequency that PLL devices can directly accept. By using an external prescaler, the range of a PLL can be extended. This
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PE3501
PE3236
M3500C-2032S
AD797
AN14
10 MHz TCXO
VCO at 15GHZ
tcxo 10mhz dbc
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PE3236
Abstract: M3500C-2032S AD797 AN14 PE3501 peregrine VCO at 15GHZ vectron tcxo
Text: AN14: Application Note Introduction There are many applications that require the synthesis of frequencies above 3 GHz. However, this range is generally beyond the maximum frequency that PLL devices can directly accept. By using an external prescaler, the range of a PLL can be extended. This
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PE3501
PE3236
M3500C-2032S
AD797
AN14
peregrine
VCO at 15GHZ
vectron tcxo
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M3500C-2032S
Abstract: PE3236 M3500C AD797 AN14 PE3501 VCO at 15GHZ OSC-3A0-10 vectron tcxo M3500C-2032
Text: AN14: Application Note Introduction There are many applications that require the synthesis of frequencies above 3 GHz. However, this range is generally beyond the maximum frequency that PLL devices can directly accept. By using an external prescaler, the range of a PLL can be extended. This
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PE3501
PE3236
M3500C-2032S
M3500C
AD797
AN14
VCO at 15GHZ
OSC-3A0-10
vectron tcxo
M3500C-2032
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