Part | RoHS | Manufacturer | Oscillator Type | Mounting Feature | No. of Terminals | Frequency Stability | Package Body Material | Tuning Range | Maximum Supply Voltage | Technology | Maximum Supply Current | Output Power | Nominal Supply Voltage | Phase Noise | Power Supplies (V) | Package Equivalence Code | Power Variation | Sub-Category | Physical Dimension | Minimum Supply Voltage | Maximum Operating Temperature | Minimum Operating Temperature | Terminal Finish | Nominal Operating Frequency | Offset Frequency | Manufacturer Series | Qualification | Maximum Harmonics Level | Additional Features | JESD-609 Code | Minimum Operating Frequency | Maximum Operating Frequency |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Spectrum Control |
MECHANICAL TUNED DRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
10 MHz |
125 mA |
10 dBm |
15 V |
-103 dBc/Hz |
50.8mm x 44.5mm x 44.5mm |
65 Cel |
-20 Cel |
10 kHz |
-15 dBc |
4500 MHz |
5500 MHz |
|||||||||||||||||
L-3 Narda-miteq |
MECHANICAL TUNED CRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
160 MHz |
10 dBm |
24 V |
-95 dBc/Hz |
1 dB |
80.01mm x 54.61mm x 33.655mm |
70 Cel |
-20 Cel |
1 kHz |
LPLM |
TUNING RANGE UPTO 5 PERCENT AVAILABLE ON CUSTOM MODELS |
8000 MHz |
15000 MHz |
||||||||||||||||
Spectrum Control |
MECHANICAL TUNED DRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
20 MHz |
125 mA |
10 dBm |
15 V |
-99 dBc/Hz |
41.9mm x 37.1mm x 39.4mm |
65 Cel |
-20 Cel |
10 kHz |
-15 dBc |
6500 MHz |
7500 MHz |
|||||||||||||||||
L-3 Narda-miteq |
MECHANICAL TUNED CRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
240 mA |
10 dBm |
15 V |
1 dB |
80.01mm x 33.78mm x 54.61mm |
SMA FEMALE CONNECTOR |
130 MHz |
1000 MHz |
|||||||||||||||||||||
Api Technologies |
MECHANICAL TUNED DRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
20 V |
90 mA |
17 dBm |
-75 dBc/Hz |
3 dB |
1.5mm x 1.2mm x 0.75mm |
15 V |
85 Cel |
-55 Cel |
1 kHz |
15 dBc |
10000 MHz |
11000 MHz |
||||||||||||||||
Api Technologies |
MECHANICAL TUNED DRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
20 MHz |
125 mA |
10 dBm |
15 V |
-90 dBc/Hz |
41.9mm x 37.1mm x 39.4mm |
65 Cel |
-20 Cel |
10 kHz |
-15 dBc |
17500 MHz |
18500 MHz |
|||||||||||||||||
L-3 Narda-miteq |
MECHANICAL TUNED CRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
240 mA |
10 dBm |
20 V |
1 dB |
80.01mm x 33.78mm x 54.61mm |
SMA FEMALE CONNECTOR |
130 MHz |
1000 MHz |
|||||||||||||||||||||
Api Technologies |
MECHANICAL TUNED DRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
20 V |
90 mA |
17 dBm |
-77 dBc/Hz |
3 dB |
2.0mm x 1.4mm x 0.85mm |
15 V |
85 Cel |
-55 Cel |
1 kHz |
15 dBc |
9000 MHz |
10000 MHz |
||||||||||||||||
Spectrum Control |
MECHANICAL TUNED DRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
20 MHz |
125 mA |
10 dBm |
15 V |
-93 dBc/Hz |
41.9mm x 37.1mm x 39.4mm |
65 Cel |
-20 Cel |
10 kHz |
-15 dBc |
12500 MHz |
13500 MHz |
|||||||||||||||||
Api Technologies |
MECHANICAL TUNED DRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
20 MHz |
125 mA |
10 dBm |
15 V |
-88 dBc/Hz |
41.9mm x 37.1mm x 39.4mm |
65 Cel |
-20 Cel |
10 kHz |
-15 dBc |
20500 MHz |
21500 MHz |
|||||||||||||||||
Spectrum Control |
MECHANICAL TUNED DRO OSCILLATOR |
CHASSIS MOUNT |
5 % |
20 MHz |
125 mA |
10 dBm |
15 V |
-93 dBc/Hz |
37.1mm x 25.4mm x 39.4mm |
65 Cel |
-20 Cel |
10 kHz |
-15 dBc |
13500 MHz |
14500 MHz |
Tuned DRO (Dielectric Resonator Oscillator) and CRO (Crystal Resonator Oscillator) are types of microwave oscillators used in communication systems, radar systems, and other applications that require a stable and precise frequency source.
Tuned DROs use a dielectric resonator, which is a ceramic block with high dielectric constant, as the frequency reference. The dielectric resonator is excited by a high-Q circuit, such as a varactor diode, and the oscillator frequency is tuned by varying the voltage applied to the varactor diode. Tuned DROs have a high frequency stability and can generate frequencies in the range of several gigahertz.
CROs, on the other hand, use a quartz crystal resonator as the frequency reference. The crystal resonator is cut in a specific orientation and shape that allows it to vibrate at a specific frequency. The oscillator circuit is designed to amplify the crystal's natural vibrations, resulting in a stable and precise oscillator frequency. CROs have a lower frequency stability than DROs, but they can generate frequencies up to several hundred megahertz.