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Lattice Semiconductor ISPPAC-CLK5304S-01TN48C

IC CLOCK GENERATOR 48TQFP
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Manufacturer # :ISPPAC-CLK5304S-01TN48C
Manufacturer :Lattice Semiconductor
Dasenic # :A1884E-DS
Customer # :
Description : IC CLOCK GENERATOR 48TQFP 48-LQFP Tray
Pricing (USD) : *To apply for a price, please click the Send Target Price button
QuantityUnit PriceTotal
1+$ 2.549700$ 2.55
100+$ 2.385200$ 238.52
1000+$ 2.248100$ 2248.1
10000+$ 2.056200$ 20562
In Stock: 35068
MOQ :1 PCS
Packaging :48-LQFP Tray
Delivery Time :Ship Within 48 Hours
Shipping Origin :Shenzhen or Hong Kong Warehouse
Quantity :
Unit Price :$ 2.5497
Total :$ 2.55
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ISPPAC-CLK5304S-01TN48C information

Product Details
The Lattice Semiconductor ISPPAC-CLK5304S-01TN48C is an integrated circuit (IC) under the Integrated Circuits (ICs) category. Here's an overview, its functions, applications, alternative components, and embedded modules: Overview: The ISPPAC-CLK5304S-01TN48C is a Clock Generator and Synchronizer IC from Lattice Semiconductor. It offers a flexible, programmable architecture suitable for a variety of clock distribution and synchronization applications. Functions: 1. Clock Generation: The ISPPAC-CLK5304S-01TN48C generates multiple clock signals with precise frequency and phase alignment. 2. Clock Synchronization: It provides clock synchronization capabilities to ensure coherent and reliable operation of multiple devices within a system. 3. Programmability: The IC offers programmable features like clock dividers, delay control, phase shifting, and skew adjustment, allowing customization for specific system requirements. 4. Clock Management: It enables effective clock management by providing clock signal distribution, fanout, and buffering functionality. Applications: The ISPPAC-CLK5304S-01TN48C is commonly used in various applications, including: 1. Communication Systems: Clock synchronization is crucial in telecommunication systems, such as base stations and network switches. 2. Data Centers: Clock distribution and management are essential for maintaining synchronization across numerous server racks. 3. Test & Measurement Equipment: Accurate clock generation and synchronization are critical in instrumentation and data acquisition systems. 4. FPGA/ASIC Systems: The IC can be used to generate and distribute clocks within programmable logic devices or application-specific integrated circuits. Alternative Components: Some alternative ICs that offer similar functionalities to the ISPPAC-CLK5304S-01TN48C include: 1. IDT 5P35023: Programmable clock generator and synchronizer from Integrated Device Technology. 2. Maxim MAX35103: Clock generator IC with advanced synchronization features for precision applications. 3. Silicon Labs Si5340: Highly flexible and programmable clock generator and synchronizer. Embedded Modules: Embedded modules featuring clock generation and synchronization capabilities can be used instead of discrete ICs like the ISPPAC-CLK5304S-01TN48C. These modules offer pre-programmed functionalities and simplified integration. Some popular options include: 1. Arduino Clock Shield: An add-on module for Arduino boards that provides clock generation and synchronization features. 2. Raspberry Pi Compute Module: A compact module with built-in clock management capabilities for time-sensitive applications. 3. BeagleBone Black: A widely-used embedded Linux computer that offers clock generation and synchronization options through software development. Here are three related Q&A: 1. What is the advantage of using the ISPPAC-CLK5304S-01TN48C over discrete clock generator chips? The ISPPAC-CLK5304S-01TN48C offers flexible programmability, allowing customization for specific system requirements. It combines various clock management functions and is designed for ease of integration, reducing component count and PCB footprint. 2. Can the ISPPAC-CLK5304S-01TN48C synchronize clocks from multiple sources? Yes, the ISPPAC-CLK5304S-01TN48C provides clock synchronization capabilities. It can accept input clocks from multiple sources and generate synchronized clock signals with precise phase alignment. 3. In which scenarios is clock distribution and synchronization critical? Clock distribution and synchronization are crucial in scenarios where multiple devices or components need to operate in unison, such as communication systems, data centers, and FPGA/ASIC systems. Having synchronized clocks ensures reliable operation and avoids timing issues.
  • Lattice Semiconductor ISPPAC-CLK5304S-01TN48C technical specifications, attributes, parameters.
  • Category:Integrated Circuits (ICs)/Clock Generators, PLLs, Frequency Synthesizers
  • Product Status:Obsolete
  • Operating Temperature:0°C ~ 70°C
  • Mounting Type:Surface Mount
  • Package / Case:48-LQFP
  • Type:Clock Generator, Fanout Distribution, Zero Delay Buffer
  • Supplier Device Package:48-TQFP (7x7)
  • Frequency - Max:267MHz
  • Number of Circuits:1
  • Output:eHSTL, HSTL, LVCMOS, LVTTL, SSTL
  • Voltage - Supply:3V ~ 3.6V
  • P L L:Yes with Bypass
  • Input:HSTL, LVCMOS, LVDS, LVPECL, LVTTL, SSTL
  • Ratio - Input: Output:2:4
  • Differential - Input: Output:Yes/No
  • Divider/ Multiplier:Yes/No
  • Series:ispClock™
  • Base Product Number:ISPPAC-CLK53
  • Packaging:Tray
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