사양
| 속성 | 가치 |
| Supplier | Renesas Electronics America Inc |
| Package | Tray |
| Series | FemtoClock® NG |
| ProductStatus | Active |
| Type | VCXO |
| Frequency | 174.8MHz, 174.8MHz |
| Voltage-Supply | 3.135V ~ 3.465V |
| Current-Supply | 130 mA |
| OperatingTemperature | -40°C ~ 85°C |
| Package/Case | 6-CLCC |
| SupplierDevicePackage | 6-CLCC (7x5) |
개요
Description
The "8N3DV85EC-0130CDI" appears to be a technical or product code, possibly for a specific model or component in a broader system, such as electronics, machinery, or software. An introduction to this item would typically cover its primary function, key features, and potential applications. For example, if this code refers to a microcontroller or electronic component, the introduction would outline its processing capabilities, input/output options, power requirements, and compatibility with other systems. Additionally, it would highlight any unique selling points such as enhanced efficiency, durability, or innovative technology incorporated into the design.
Without more specific context, it's difficult to provide detailed information. To fully understand the item, one would typically refer to the manufacturer's datasheet or product manual, which would provide comprehensive specifications and guidelines for use. This information is crucial for engineers, developers, or consumers who intend to integrate the component into their projects or products.
Without more specific context, it's difficult to provide detailed information. To fully understand the item, one would typically refer to the manufacturer's datasheet or product manual, which would provide comprehensive specifications and guidelines for use. This information is crucial for engineers, developers, or consumers who intend to integrate the component into their projects or products.
Equivalent
Finding a direct equivalent for the 8N3DV85EC-0130CDI chip requires checking specific parameters such as frequency range, jitter performance, package type, and power requirements. You can look for similar products from manufacturers like Texas Instruments, Analog Devices, or Microchip. It's crucial to compare the datasheets for precise specifications. For a more tailored substitution, consulting with electronic component distributors or using an electronic component comparison tool might be necessary.
Pinout
The 8N3DV85EC-0130CDI is a differential clock oscillator, typically used in communication systems and high-performance computing applications. While specific pin counts and functions may vary slightly based on the package type, devices like this generally have a standard set of pins.
Typically, such oscillators have 6 to 8 pins, comprising:
1. VCC: Power supply pin.
2. GND: Ground pin.
3. Output+ (Q+): Positive differential output.
4. Output- (Q-): Negative differential output.
5. OE (Output Enable): Enables or disables the output.
6. NC or No Connect: Some pins may not be connected internally.
For the exact pin configuration and functions, it is essential to refer to the specific datasheet provided by the manufacturer, as they contain detailed information about pin assignments, electrical characteristics, and operational guidelines.
Typically, such oscillators have 6 to 8 pins, comprising:
1. VCC: Power supply pin.
2. GND: Ground pin.
3. Output+ (Q+): Positive differential output.
4. Output- (Q-): Negative differential output.
5. OE (Output Enable): Enables or disables the output.
6. NC or No Connect: Some pins may not be connected internally.
For the exact pin configuration and functions, it is essential to refer to the specific datasheet provided by the manufacturer, as they contain detailed information about pin assignments, electrical characteristics, and operational guidelines.
Application
The 8N3DV85EC-0130CDI is a specific type of oscillator, likely used in precision timing applications. Its typical application areas include telecommunications for network synchronization, data centers for server timing, and industrial automation systems for process timing. It is also employed in instrumentation for accurate measurement, as well as in consumer electronics for clocking functions. Furthermore, it's used in the aerospace and defense sectors for navigation and communication systems, where precise timing is critical.