NB2309AC1DR2G

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Mfr.Part #
NB2309AC1DR2G
Manufacturer
onsemi
Package / Case
16-SOIC (0.154, 3.90mm Width)
Datasheet
Download
Description
IC BUFFER CLK 9OUT 3.3V 16-SOIC
Stock
27,037
In Stock :
27,037

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Manufacturer :
onsemi
Product Category :
Clock Generators, PLLs, Frequency Synthesizers
Supply Voltage-Max (Vsup) :
3.6V
Package / Case :
16-SOIC (0.154, 3.90mm Width)
Same Edge Skew-Max (tskwd) :
0.25 ns
Radiation Hardening :
No
Operating Supply Voltage :
3.3V
Mounting Type :
Surface Mount
Mount :
Surface Mount
Ratio - Input:Output :
1:9
Packaging :
Tape and Reel (TR)
Operating Temperature :
0°C~70°C
Type :
Zero Delay Buffer
Moisture Sensitivity Level (MSL) :
1 (Unlimited)
Base Part Number :
NB2309A
Pin Count :
16
Number of Terminations :
16
Supply Voltage :
3.3V
Terminal Position :
Dual
Number of True Outputs :
8
Supply Voltage-Min (Vsup) :
3V
Terminal Form :
Gull wing
Number of Pins :
16
PLL :
Yes with Bypass
RoHS Status :
RoHS Compliant
Width :
3.9mm
JESD-609 Code :
e3
Voltage - Supply :
3V~3.6V
Nominal Supply Current :
34mA
Lead Free :
Lead Free
Peak Reflow Temperature (Cel) :
260
Length :
9.9mm
Published :
2003
Output Characteristics :
3-STATE
Number of Circuits :
1
Time@Peak Reflow Temperature-Max (s) :
40
Terminal Finish :
Tin (Sn)
Differential - Input:Output :
No/No
Number of Functions :
1
Frequency (Max) :
133.33MHz
Input :
Clock
Datasheets
NB2309AC1DR2G
Introducing Clock Generators, PLLs, Frequency Synthesizers onsemi NB2309AC1DR2G from Chip IC,where excellence meets affordability. This product stands out with its Package / Case:16-SOIC (0.154, 3.90mm Width), Mounting Type:Surface Mount, Operating Temperature:0°C~70°C, Type:Zero Delay Buffer, Base Part Number:NB2309A, Number of Terminations:16, Number of Pins:16, NB2309AC1DR2G pinout, NB2309AC1DR2G datasheet PDF, NB2309AC1DR2G amp .Beyond Clock Generators, PLLs, Frequency Synthesizers onsemi NB2309AC1DR2G ,we also offer LMX2485ESQ/NOPB, SI5351B-B-GM, ADF4360-4BCPZRL7, Our vast inventory has you covered. Contact us now for immediate solutions.

onsemi NB2309AC1DR2G


Clock Generators, PLLs, Frequency Synthesizers onsemi NB2309AC1DR2G Overview

The onsemi NB2309AC1DR2G is a high-performance clock buffer designed for precision clock distribution in sophisticated electronic systems. This IC specifically targets applications requiring multiple outputs and minimal skew, ensuring consistent performance and reliability. The device operates at a 3.3V supply voltage and is housed in a compact 16-SOIC package, making it ideal for space-constrained applications. The NB2309AC1DR2G efficiently handles clock distribution with 9 outputs, catering to a wide array of digital applications. Its ability to reduce system complexity while improving reliability and performance makes it a preferred choice for designers and engineers seeking robust solutions in clock management.

NB2309AC1DR2G Features

The NB2309AC1DR2G by onsemi boasts a range of features that enhance its utility in high-tech applications. Key features include nine low-skew outputs which ensure synchronized timing across all channels. It supports a broad range of input frequencies and has a low power consumption, which is critical for maintaining energy efficiency in hardware designs. Additionally, the device’s enhanced EMI suppression capabilities minimize noise issues, thus preserving signal integrity in noise-sensitive environments.

NB2309AC1DR2G Applications

  • Data Centers: Utilizes its multiple output features to distribute synchronized clocks across various data processing units, enhancing overall system efficiency and data handling capacity.
  • Telecommunications Equipment: Ensures precise timing required for managing data transfers and signal processing, crucial for network reliability and performance.
  • Consumer Electronics: Provides clock synchronization for multimedia devices, improving video and audio quality by ensuring time-sensitive digital signals are accurately aligned.
  • Industrial Automation: Integrates into control systems to provide a reliable timing solution that supports synchronized operations across various sensors and actuators.
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