Part | RoHS | Manufacturer | Oscillator Type | Mounting Feature | No. of Terminals | Package Body Material | Maximum Supply Voltage | Technology | Screening Level | Maximum Supply Current | Modulation Sensitivity | 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 Control Voltage | Minimum Operating Temperature | Terminal Finish | Nominal Operating Frequency | Maximum Control Voltage | Offset Frequency | Manufacturer Series | Qualification | Maximum Output Low Current | Additional Features | JESD-609 Code | Minimum Operating Frequency | Maximum Operating Frequency |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
11.5 mA |
-8 dBm |
3 V |
-101 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
2.4 V |
100 kHz |
e0 |
855 MHz |
950 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
8 |
PLASTIC/EPOXY |
11.5 mA |
-8 dBm |
3 V |
-101 dBc/Hz |
3/5 |
TSSOP8,.19 |
Other Oscillators |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
950 MHz |
2.4 V |
100 kHz |
Not Qualified |
e0 |
855 MHz |
950 MHz |
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|
Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
MATTE TIN |
e3 |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
17 mA |
140 MHz/V |
-3 dBm |
3 V |
-125 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
2.4 V |
4000 kHz |
e0 |
2400 MHz |
2500 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
8 |
PLASTIC/EPOXY |
11.5 mA |
-8 dBm |
3 V |
-101 dBc/Hz |
3/5 |
TSSOP8,.19 |
Other Oscillators |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
881 MHz |
2.4 V |
100 kHz |
Not Qualified |
e0 |
855 MHz |
881 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
8 |
PLASTIC/EPOXY |
20 mA |
-.5 MHz/V |
-5 dBm |
3 V |
-137 dBc/Hz |
3/5 |
TSSOP8,.19 |
Other Oscillators |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
1250 MHz |
2.4 V |
4000 kHz |
Not Qualified |
e0 |
1145 MHz |
1250 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
8 |
PLASTIC/EPOXY |
11.5 mA |
-8 dBm |
3 V |
-101 dBc/Hz |
3/5 |
TSSOP8,.19 |
Other Oscillators |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
998 MHz |
2.4 V |
100 kHz |
Not Qualified |
e0 |
947 MHz |
998 MHz |
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|
Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
13.5 mA |
150 MHz/V |
-8 dBm |
3 V |
-130 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
MATTE TIN |
2.4 V |
4000 kHz |
DIFFERENTIAL OUTPUT |
e3 |
2400 MHz |
2500 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
15.9 mA |
175 MHz/V |
-3 dBm |
3 V |
-125 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
2.4 V |
4000 kHz |
e0 |
2120 MHz |
2260 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
17 mA |
140 MHz/V |
-3 dBm |
3 V |
-125 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
2.4 V |
4000 kHz |
e0 |
2400 MHz |
2500 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
15.2 mA |
170 MHz/V |
-3 dBm |
3 V |
-125 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
2.4 V |
4000 kHz |
e0 |
2025 MHz |
2165 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
13.5 mA |
150 MHz/V |
-8 dBm |
3 V |
-130 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
Tin/Lead (Sn85Pb15) |
2.4 V |
4000 kHz |
DIFFERENTIAL OUTPUT |
e0 |
2400 MHz |
2500 MHz |
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|
Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
13.5 mA |
150 MHz/V |
-8 dBm |
3 V |
-130 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
MATTE TIN |
2.4 V |
4000 kHz |
DIFFERENTIAL OUTPUT |
e3 |
2400 MHz |
2500 MHz |
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|
Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
MATTE TIN |
e3 |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
11.5 mA |
-8 dBm |
3 V |
-101 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
2.4 V |
100 kHz |
e0 |
947 MHz |
998 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
8 |
PLASTIC/EPOXY |
20 mA |
124 MHz/V |
-5 dBm |
3 V |
-137 dBc/Hz |
3/5 |
TSSOP8,.19 |
Other Oscillators |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
1250 MHz |
2.4 V |
4000 kHz |
Not Qualified |
e0 |
1145 MHz |
1250 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
15.9 mA |
175 MHz/V |
-3 dBm |
3 V |
-125 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
2.4 V |
4000 kHz |
e0 |
2120 MHz |
2260 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
11.5 mA |
-8 dBm |
3 V |
-101 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
2.4 V |
100 kHz |
e0 |
855 MHz |
881 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
8 |
PLASTIC/EPOXY |
BIPOLAR |
13.5 mA |
150 MHz/V |
-8 dBm |
3 V |
-130 dBc/Hz |
3/5 |
TSSOP8,.19 |
Other Oscillators |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
Tin/Lead (Sn85Pb15) |
2500 MHz |
2.4 V |
4000 kHz |
MAX2753 |
Not Qualified |
DIFFERENTIAL OUTPUT |
e0 |
2400 MHz |
2500 MHz |
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Maxim Integrated |
VOLTAGE CONTROLLED OSCILLATOR |
SURFACE MOUNT |
15.2 mA |
170 MHz/V |
-3 dBm |
3 V |
-125 dBc/Hz |
3.05mm x 3.05mm x 1.1mm |
85 Cel |
.4 V |
-40 Cel |
TIN LEAD |
2.4 V |
4000 kHz |
e0 |
2025 MHz |
2165 MHz |
Voltage Controlled Oscillators (VCOs) are electronic devices that generate an output signal whose frequency is determined by an input voltage. VCOs are widely used in various applications, such as communication systems, radio and television tuners, and frequency synthesizers.
The VCO operates by controlling the frequency of a resonant circuit using a voltage-controlled element, such as a varactor diode. The resonant circuit can be made of various components, such as LC tank circuits, crystal oscillators, or SAW resonators. By varying the voltage applied to the varactor diode, the resonant frequency of the circuit can be adjusted, resulting in a change in the oscillator frequency.
One of the main advantages of VCOs is their ability to generate a wide range of frequencies that can be adjusted in real-time using a control voltage. This makes them ideal for use in applications that require frequency agility, such as in communication systems that need to change frequencies quickly.
Another advantage of VCOs is their low phase noise, which is important in applications that require a clean and stable signal, such as in radio and television tuners.