Part | RoHS | Manufacturer | Oscillator Type | Mounting Feature | Frequency Stability | Maximum Supply Voltage | Maximum Supply Current | Output Power | Nominal Supply Voltage | Phase Noise | Power Variation | Physical Dimension | Minimum Supply Voltage | Maximum Operating Temperature | Minimum Operating Temperature | Nominal Operating Frequency | Offset Frequency | Manufacturer Series | Maximum Harmonics Level | Additional Features | Minimum Operating Frequency | Maximum Operating Frequency |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
230 mA |
17 dBm |
15 V |
75 dBc/Hz |
1.5 dB |
50.8mm x 45.72mm x 12.7mm |
70 Cel |
-20 Cel |
10 kHz |
J |
-20 dBc |
SMA FEMALE CONNECTOR |
16000 MHz |
18000 MHz |
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L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
120 mA |
11 dBm |
15 V |
75 dBc/Hz |
1.5 dB |
50.8mm x 45.72mm x 12.7mm |
70 Cel |
-20 Cel |
10 kHz |
N |
-20 dBc |
SMA FEMALE CONNECTOR |
24000 MHz |
26000 MHz |
|||||
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
220 mA |
17 dBm |
15 V |
85 dBc/Hz |
1.5 dB |
63.5mm x 59.44mm x 16.51mm |
70 Cel |
-20 Cel |
10 kHz |
F |
-20 dBc |
SMA FEMALE CONNECTOR |
6500 MHz |
8800 MHz |
|||||
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
220 mA |
17 dBm |
15 V |
75 dBc/Hz |
1.5 dB |
50.8mm x 45.72mm x 12.7mm |
70 Cel |
-20 Cel |
10 kHz |
H |
-20 dBc |
SMA FEMALE CONNECTOR |
12000 MHz |
16000 MHz |
|||||
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
120 mA |
11 dBm |
15 V |
75 dBc/Hz |
1.5 dB |
50.8mm x 45.72mm x 12.7mm |
70 Cel |
-20 Cel |
10 kHz |
L |
-20 dBc |
SMA FEMALE CONNECTOR |
20000 MHz |
22000 MHz |
|||||
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
220 mA |
17 dBm |
15 V |
80 dBc/Hz |
1.5 dB |
50.8mm x 45.72mm x 12.7mm |
70 Cel |
-20 Cel |
10 kHz |
G |
-20 dBc |
SMA FEMALE CONNECTOR |
8800 MHz |
12000 MHz |
|||||
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
120 mA |
11 dBm |
15 V |
75 dBc/Hz |
1.5 dB |
50.8mm x 45.72mm x 12.7mm |
70 Cel |
-20 Cel |
10 kHz |
L |
-20 dBc |
SMA FEMALE CONNECTOR |
20000 MHz |
22000 MHz |
|||||
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
220 mA |
17 dBm |
15 V |
80 dBc/Hz |
1.5 dB |
50.8mm x 45.72mm x 12.7mm |
70 Cel |
-20 Cel |
10 kHz |
G |
-20 dBc |
SMA FEMALE CONNECTOR |
8800 MHz |
12000 MHz |
|||||
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
120 mA |
11 dBm |
15 V |
75 dBc/Hz |
1.5 dB |
50.8mm x 45.72mm x 12.7mm |
70 Cel |
-20 Cel |
10 kHz |
M |
-20 dBc |
SMA FEMALE CONNECTOR |
22000 MHz |
24000 MHz |
|||||
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
120 mA |
11 dBm |
15 V |
75 dBc/Hz |
1.5 dB |
50.8mm x 45.72mm x 12.7mm |
70 Cel |
-20 Cel |
10 kHz |
M |
-20 dBc |
SMA FEMALE CONNECTOR |
22000 MHz |
24000 MHz |
|||||
L-3 Narda-miteq |
FIXED DRO OSCILLATOR |
CHASSIS MOUNT |
40.5 % |
220 mA |
17 dBm |
15 V |
85 dBc/Hz |
1.5 dB |
63.5mm x 59.44mm x 16.51mm |
70 Cel |
-20 Cel |
10 kHz |
F |
-20 dBc |
SMA FEMALE CONNECTOR |
6500 MHz |
8800 MHz |
Fixed DRO (Dielectric Resonator Oscillator) and CRO (Crystal Resonator Oscillator) oscillators are electronic devices that generate stable clock signals for use in a variety of applications, such as communication systems, navigation systems, and measurement instruments. They use different types of resonators to generate a stable frequency signal.
DRO oscillators use a dielectric resonator, which is a type of resonator that consists of a small piece of ceramic material with a high dielectric constant. When an electric field is applied to the resonator, it generates a stable oscillation frequency. DRO oscillators offer high frequency stability and low phase noise, making them suitable for use in microwave and millimeter-wave communication systems.
CRO oscillators use a quartz crystal resonator, which is a type of resonator that consists of a small piece of quartz crystal with a precisely cut shape. When an electric field is applied to the resonator, it generates a stable oscillation frequency. CRO oscillators offer high frequency stability and low phase noise, making them suitable for use in high-precision timing applications.