Part | RoHS | Manufacturer | Oscillator Type | Mounting Feature | No. of Terminals | Frequency Stability | Frequency Adjustment (Mechanical) | Package Body Material | Maximum Supply Voltage | Technology | Screening Level | Output Impedance | Maximum Supply Current | Nominal Supply Voltage | Power Supplies (V) | Package Equivalence Code | Linearity | Sub-Category | Physical Dimension | Minimum Supply Voltage | Maximum Operating Temperature | Minimum Control Voltage | Minimum Operating Temperature | Terminal Finish | Frequency Deviation or Pullability | Nominal Operating Frequency | Maximum Control Voltage | Manufacturer Series | Qualification | Output Level | Additional Features | JESD-609 Code | Minimum Operating Frequency | Maximum Operating Frequency |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Vectron International |
SINE |
THROUGH HOLE MOUNT |
10 |
.15 % |
NO |
METAL |
5.25 V |
MIL-PRF-55310 Class B |
50 ohm |
5 V |
DIP10/16,.6 |
26.16mm x 23.62mm x 8.89mm |
4.75 V |
85 Cel |
0 V |
-40 Cel |
120 MHz |
2.6 V |
1.125 V |
|||||||||||||||
Vectron International |
SINE |
THROUGH HOLE MOUNT |
10 |
.03 % |
NO |
3.465 V |
50 ohm |
3.3 V |
26.162mm x 23.622mm x 8.89mm |
3.135 V |
70 Cel |
-20 Cel |
10 MHz |
.632 V |
||||||||||||||||||||
Vectron International |
SINE |
THROUGH HOLE MOUNT |
10 |
.05 % |
NO |
3.465 V |
50 ohm |
3.3 V |
26.162mm x 23.622mm x 8.89mm |
3.135 V |
70 Cel |
0 Cel |
20 MHz |
.632 V |
||||||||||||||||||||
Vectron International |
SINE |
THROUGH HOLE MOUNT |
10 |
.075 % |
NO |
METAL |
3.47 V |
MIL-PRF-55310 Class B |
50 ohm |
3.3 V |
DIP10/16,.6 |
26.16mm x 23.62mm x 8.89mm |
3.13 V |
60 Cel |
0 V |
-10 Cel |
120 MHz |
2.6 V |
1.416 V |
|||||||||||||||
Microchip Technology |
SINE |
THROUGH HOLE MOUNT |
10 |
.075 % |
NO |
METAL |
3.47 V |
MIL-PRF-55310 Class B |
50 ohm |
3.3 V |
DIP10/16,.6 |
26.16mm x 23.62mm x 8.89mm |
3.13 V |
60 Cel |
0 V |
-10 Cel |
120 MHz |
2.6 V |
1.125 V |
|||||||||||||||
Vectron International |
SINE |
THROUGH HOLE MOUNT |
10 |
.1 % |
NO |
METAL |
5.25 V |
MIL-PRF-55310 Class B |
50 ohm |
5 V |
DIP10/16,.6 |
26.16mm x 23.62mm x 8.89mm |
4.75 V |
70 Cel |
0 V |
-20 Cel |
120 MHz |
2.6 V |
1.416 V |
|||||||||||||||
Microsemi |
SINE |
THROUGH HOLE MOUNT |
10 |
.075 % |
NO |
METAL |
5.25 V |
MIL-PRF-55310 Class S |
50 ohm |
5 V |
DIP10/16,.6 |
26.16mm x 23.62mm x 8.89mm |
4.75 V |
60 Cel |
0 V |
-10 Cel |
120 MHz |
2.6 V |
.796 V |
|||||||||||||||
Microchip Technology |
SINE |
THROUGH HOLE MOUNT |
10 |
.15 % |
NO |
METAL |
5.25 V |
MIL-PRF-55310 Class B |
50 ohm |
5 V |
DIP10/16,.6 |
26.16mm x 23.62mm x 8.89mm |
4.75 V |
85 Cel |
0 V |
-40 Cel |
120 MHz |
2.6 V |
1.125 V |
|||||||||||||||
Vectron International |
SINE |
THROUGH HOLE MOUNT |
10 |
.02 % |
NO |
3.465 V |
50 ohm |
3.3 V |
26.162mm x 23.622mm x 8.89mm |
3.135 V |
70 Cel |
0 Cel |
10 MHz |
.632 V |
Voltage Controlled Crystal Oscillators (VCXOs) are electronic devices that generate a stable and precise sine wave signal with a frequency that can be controlled using a voltage input. They use a crystal resonator as the frequency-determining element, which is voltage-tuned using a varactor diode or a voltage-controlled amplifier.
One of the main advantages of VCXO sine wave oscillators is their ability to generate a stable and precise sine wave signal that can be adjusted in real-time using a control voltage. This makes them ideal for use in applications that require precise timing, such as in digital signal processing, telecommunications, and scientific research.
VCXO sine wave oscillators also offer a low phase noise, which is important in applications that require a clean and stable sine wave signal. They are capable of generating frequencies ranging from a few megahertz to several hundred megahertz, making them suitable for use in various electronic circuits.
Additionally, VCXO sine wave oscillators have a relatively simple design and are easy to integrate into electronic systems. They are available in a range of package sizes and configurations, allowing them to be used in various applications, including in communication systems, network equipment, and instrumentation.