NB2308AI1HDG Overview
This clock IC is packaged using the Tube method. The 16-SOIC (0.154, 3.90mm Width) package contains this clock generator. In the reflowing process, this clock generator ic is able to maintain a maximum temperature of 260. There are 16 terminations found in the file. The clock generator ic should be grounded with a voltage of 3.3V. Clock is designed as this clock generator's input. Using 1 circuits, the electronic part's full performance can be accessed. It provides a maximum frequency of 133.3MHz. A Surface Mount-shaped electrical component makes it convenient to mount on a panel. Clock PLL is capable of receiving a maximum of 3.6V as a supply voltage. The supply voltage for this frequency synthesizer should be kept above 3V for safety considerations. There are 3V~3.6V different supply voltages that can be provided for this RF synthesizer. The temperature should be set at -40°C~85°C to ensure reliable performance. This electronic component can be classified as a Zero Delay Buffer. An IC that generates clocks specifically for microprocessors, this clock PLL is 16-bits in si16e. NB2308A is the base part number for finding related electronic parts. There is a 16 pin that is available on the frequency synthesizers. RF synthesizers can handle voltages up to 3.3V. As a result of this digital clock generator, there is a low timing skew at 0.2 ns max. 8 pins enable the digital clock generator's true output. Using a frequency of 133MHz allows frequency synthesizer to achieve high efficiencies.
NB2308AI1HDG Features
Available in the 16-SOIC (0.154, 3.90mm Width)
Supply voltage of 3.3V
Operating supply voltage of 3.3V
8 true outputs
NB2308AI1HDG Applications
There are a lot of ON Semiconductor NB2308AI1HDG Clock Generators applications.
- Signal generator
- Digital circuits
- Signal frequency synthesis circuits
- PMR (Professional Mobile Radio)
- Ultrasound diagnosis
- Pulsed digital systems
- High-speed communication applications
- Vector network analyzers (VNA)
- DVD recorders
- Microwave point-to-point systems