사양
| 속성 | 가치 |
| Supplier | Renesas Electronics America Inc |
| Package | Tray |
| Series | FemtoClock® NG |
| ProductStatus | Active |
| Type | VCXO |
| Frequency | 100MHz, 125MHz |
| 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 "8N3DV85AC-0016CDI" appears to be a product code or model number, potentially for a specific piece of technology, machinery, or a component. Without additional context or information, it's challenging to provide a precise introduction. Typically, such codes are used by manufacturers to identify and categorize items in their inventory or product line. These codes can refer to anything from electronic components, software versions, or hardware models to industrial equipment.
If you have a specific brand or category in mind, such as electronics, vehicles, or appliances, you may want to check the manufacturer's catalog or website for detailed specifications and features. These details would help determine the purpose, usage, and technical aspects of "8N3DV85AC-0016CDI." For a precise understanding, consulting the product's manual or contacting customer support from the relevant company would be beneficial.
If you have a specific brand or category in mind, such as electronics, vehicles, or appliances, you may want to check the manufacturer's catalog or website for detailed specifications and features. These details would help determine the purpose, usage, and technical aspects of "8N3DV85AC-0016CDI." For a precise understanding, consulting the product's manual or contacting customer support from the relevant company would be beneficial.
Equivalent
To find the equivalent products for the 8N3DV85AC-0016CDI chip, you should consider its specifications such as frequency, package type, supply voltage, and intended application. Look for similar oscillators or clock generators from manufacturers like Silicon Labs, Texas Instruments, Analog Devices, or Microchip. Cross-referencing datasheets from these manufacturers can help identify potential equivalents based on matching or comparable specifications.
Pinout
The 8N3DV85AC-0016CDI is a crystal oscillator, specifically a clock generator IC. It is typically available in a small package, such as a 6-pin or 8-pin configuration, though exact pin count can vary based on the specific package type. The primary function of this device is to generate a stable clock signal for timing purposes in electronic systems. It is designed to provide a precise frequency output, in this case, 16 MHz. Key functions include frequency stability, low jitter performance, and reliability, making it suitable for use in networking, communication, and other high-performance applications. For precise pin count and functions, always refer to the specific datasheet provided by the manufacturer, Renesas Electronics, as it contains detailed information about the pin configuration and electrical characteristics tailored to the exact model.
Manufacturer
The 8N3DV85AC-0016CDI is a part number for a crystal oscillator manufactured by Renesas Electronics Corporation. Renesas is a Japanese semiconductor company that designs and manufactures a wide array of microcontrollers, analog, power, and system-on-chip (SoC) products. The company is known for its innovations in the semiconductor industry and serves various sectors including automotive, industrial, home electronics, and information communication technology. Renesas is a prominent player in the global semiconductor market, providing solutions that drive advancements in areas such as automotive technology, smart homes, and industrial automation.
Application
The 8N3DV85AC-0016CDI is a precision differential crystal oscillator designed for applications requiring high stability and low jitter. Key application areas include telecommunications, networking equipment, and data centers, where precise timing is critical for synchronization. It is also used in test and measurement equipment for accurate signal generation and analysis, as well as in military and aerospace systems where robust and reliable timing solutions are necessary. Additionally, it can be applied in high-performance computing environments where minimizing signal noise and ensuring data integrity are paramount.