

RF Micro Devices Inc UMZ-822-D16
Manufacturer No:
UMZ-822-D16
Tiny WHSLManufacturer:
Utmel No:
2049-UMZ-822-D16
Package:
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Datasheet:
Description:
Description: Voltage Controlled Oscillator, 4600MHz Min, 5300MHz Max
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- TypeParameter
- Surface Mount
having leads that are designed to be soldered on the side of a circuit board that the body of the component is mounted on.
YES - Mounting Feature
a process by which the operating system makes files and directories on a storage device (such as hard drive, CD-ROM, or network share) available for users to access via the computer's file system.
SURFACE MOUNT - Number of Terminals3
- Part Life Cycle CodeObsolete
- Ihs ManufacturerRF MICRO DEVICES INC
- Operating Frequency (Max)5300 MHz
- Operating Temperature-Max85 °C
- Operating Temperature-Min-40 °C
- Supply Voltage-Nom5 V
- Reach Compliance Code
Reach Compliance Code refers to a designation indicating that electronic components meet the requirements set by the Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH) regulation in the European Union. It signifies that the manufacturer has assessed and managed the chemical substances within the components to ensure safety and environmental protection. This code is vital for compliance with regulations aimed at minimizing risks associated with hazardous substances in electronic products.
unknown - Physical Dimension
The parameter "Physical Dimension" in electronic components refers to the measurable size and shape characteristics of a component. This includes dimensions such as length, width, height, and diameter, which are critical for ensuring proper fit and integration into electronic circuits and systems. Physical dimensions also influence the component's performance, thermal management, and overall reliability in application environments. Understanding these dimensions is essential for designers to maintain compatibility with circuit boards and reduce issues related to space constraints.
12.7mm x 12.7mm x 5.588mm - Oscillator Type
Wien Bridge Oscillator; RC Phase Shift Oscillator; Hartley Oscillator; Voltage Controlled Oscillator; Colpitts Oscillator; Clapp Oscillators; Crystal Oscillators; Armstrong Oscillator.
VOLTAGE CONTROLLED OSCILLATOR - Supply Current-Max
Supply Current-Max refers to the maximum amount of current that an electronic component or circuit can draw from its power supply under specified operating conditions. It is a critical parameter that determines the power consumption and thermal performance of the device. Exceeding this limit can lead to overheating, potential damage, or failure of the component. Knowing the Supply Current-Max helps in designing circuits that ensure proper operation and reliability.
30 mA - Control Voltage-Max
Control Voltage-Max refers to the maximum voltage level that can be applied to a control input of an electronic component, such as a voltage-controlled oscillator or a variable gain amplifier, without causing damage or malfunction. This parameter is critical for ensuring proper operation and preventing distortion or failure in the device. It determines the upper limit of the voltage that influences the component's performance and characteristics.
8 V - Control Voltage-Min
Control Voltage-Min is a parameter in electronic components that specifies the minimum voltage level required to effectively control or operate the component. This parameter is crucial for ensuring proper functionality and performance of the component within a given circuit. It indicates the threshold voltage below which the component may not function as intended or may not respond to control signals accurately. Designers and engineers must consider the Control Voltage-Min specification when selecting and integrating components into their circuits to ensure reliable operation and avoid potential issues related to insufficient control voltage.
0.2 V - Operating Frequency-Min
Operating Frequency-Min is a parameter in electronic components that specifies the minimum frequency at which the component can function reliably. This parameter is crucial for determining the performance and compatibility of the component within a given system or circuit. It indicates the lowest frequency at which the component can operate without experiencing issues such as signal degradation, timing errors, or malfunctions. Designers and engineers use this specification to ensure that the component will meet the required performance criteria under specific operating conditions.
4600 MHz - Phase Noise
Phase noise refers to the short-term fluctuations in the phase of a signal, often seen in oscillators and signal sources. It manifests as noise that affects the stability of the frequency output, leading to variations that can degrade the performance of communication systems and other electronic applications. Phase noise is typically measured in decibels relative to the carrier frequency and is crucial in determining the quality and precision of frequency-dependent circuits. It can have significant implications for applications such as radar, telecommunications, and audio processing.
-65 dBc/Hz - Modulation Sensitivity
Modulation sensitivity refers to the ability of an electronic component or system to respond to changes in modulation signals. In the context of communication systems, modulation sensitivity indicates how effectively a device can detect and interpret variations in the amplitude, frequency, or phase of a modulated signal. A higher modulation sensitivity means that the component can accurately demodulate the incoming signal and extract the transmitted information with minimal distortion or error. This parameter is crucial in applications such as radio receivers, where the quality of signal demodulation directly impacts the overall performance and reliability of the system.
125 MHz/V - Offset Frequency
Offset frequency is a parameter commonly found in electronic components, particularly in devices like oscillators, filters, and amplifiers. It refers to the difference between the actual operating frequency of the component and the desired or nominal frequency. In other words, it indicates how far off the component's output frequency is from the intended frequency. Understanding the offset frequency is crucial for ensuring the accuracy and performance of electronic circuits, as deviations can lead to signal distortion, phase shifts, or other undesirable effects. Manufacturers often specify the offset frequency in datasheets to help engineers and designers select the right components for their applications.
1 kHz