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CDCM9102RHBT

Low Noise Two Channel 100MHz PCIe Clock Generator 32-VQFN -40 to 85

Manufacturer Texas Instruments
Price Range $3.4800 / $4.7000

Part Details

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11,259

Part Number Description Manufacturer Compare
CDCM9102RHBR Microcontrollers and Processors Low Noise Two Channel 100MHz PCIe Clock Generator 32-VQFN -40 to 85 Texas Instruments CDCM9102RHBT vs CDCM9102RHBR
Part Number Description Manufacturer Compare
DS4100H+ Microcontrollers and Processors Clock Generator, 100MHz, Bipolar, CQCC10, 5 X 3.20 MM, 1.49 MM HEIGHT, ROHS COMPLIANT, CERAMIC, LCC-10 Maxim Integrated Products CDCM9102RHBT vs DS4100H+
NB3N51034DTG Microcontrollers and Processors Quad HCSL/LVDS Clock Generator, 3.3 V, Crystal to 100 MHz / 200 MHz, TSSOP 20 LEAD, 75-TUBE ON Semiconductor CDCM9102RHBT vs NB3N51034DTG
CDCM9102RHBR Microcontrollers and Processors Low Noise Two Channel 100MHz PCIe Clock Generator 32-VQFN -40 to 85 Texas Instruments CDCM9102RHBT vs CDCM9102RHBR
SI52143-A01AGM Microcontrollers and Processors Clock Generator, 100MHz, CMOS, 4 X 4 MM, MO-220VGGD-8, QFN-20 Silicon Laboratories Inc CDCM9102RHBT vs SI52143-A01AGM
NB3N51034DTR2G Microcontrollers and Processors Quad HCSL/LVDS Clock Generator, 3.3 V, Crystal to 100 MHz / 200 MHz, TSSOP 20 LEAD, 2500-REEL ON Semiconductor CDCM9102RHBT vs NB3N51034DTR2G
AD9573ARUZ Microcontrollers and Processors PCI-Express Clock Generator IC, PLL Core, Dividers, Two Outputs Analog Devices Inc CDCM9102RHBT vs AD9573ARUZ
SI52143-A01AGMR Microcontrollers and Processors Clock Generator, 100MHz, CMOS, 4 X 4 MM, MO-220VGGD-8, QFN-20 Silicon Laboratories Inc CDCM9102RHBT vs SI52143-A01AGMR

Global Popularity

Popularity in Microcontrollers and Processors

Popularity in Clock Generators

Popularity by Region

Very High

Medium

Good

Low

  • 1. China
    100
  • 2. Philippines
    80
  • 3. South Korea
    78
  • 4. Mexico
    78
  • 5. United States of America
    76
  • 6. Spain
    75
  • 7. India
    74
  • 8. Egypt
    74
  • 9. Argentina
    74
  • 10. MDV
    74

Estimated Price History

Estimated Stock History

Market Price Analysis

No data available
  • 1. Rochester Electronics $3.4800 Buy Now
  • 2. Texas Instruments $4.7000 Buy Now

Datasheets & Reference Designs

Reference Designs

  • Power and Thermal Design Considerations Using TI's AM57x Processor Reference Design
    TIDEP0047: This TI Design (TIDEP0047) is a reference platform based on the AM57x processor and companion TPS659037 power management integrated circuit (PMIC). This TI Design specifically highlights important power and thermal design considerations and techniques for systems designed with AM57x and TPS659037. It includes reference material and documentation covering power management design, power distribution network (PDN) design considerations, thermal design considerations, estimating power consumption, and a power consumption summary.
  • TIDEP0047 Power and Thermal Design Considerations Using TI's AM57x Processor Reference Design | TI.com
    TIDEP0047: This TI Design (TIDEP0047) is a reference platform based on the AM57x processor and companion TPS659037 power management integrated circuit (PMIC). This TI Design specifically highlights important power and thermal design considerations and techniques for systems designed with AM57x and TPS659037. It includes reference material and documentation covering power management design, power distribution network (PDN) design considerations, thermal design considerations, estimating power consumption, and a power consumption summary.
  • TIDEP0076 3D Machine Vision Reference Design Based on AM572x Processor with DLP® Structured Light | TI.com
    TIDEP0076: The TIDEP0076 3D machine vision design describes an embedded 3D scanner based on the structured light principle. A digital camera along with a Sitara™ AM57xx processor System on Chip (SoC) is used to capture reflected light patterns from a DLP4500-based projector. Subsquent processing of captured patterns, calculation of the object's 3D point cloud and its 3D visualization are all performed within the AM57xx processor SoC. This design provides an embedded solution with advantages in power, simplicity, cost and size over a host PC-based implementation.
  • TIDEP0046 Monte-Carlo Simulation on AM57x Using OpenCL for DSP Acceleration Reference Design | TI.com
    TIDEP0046: TI’s high performance ARM® Cortex®-A15 based AM57x processors also integrate C66x DSPs. These DSPs were designed to handle high signal and data processing tasks that are often required by industrial, automotive and financial applications. The AM57x OpenCL implementation makes it easy for users to utilize DSP acceleration for high computational tasks while using a standard programming model and language, thereby removing the need for deep knowledge of the DSP architecture. The TIDEP0046 TI reference design provides an example of using DSP acceleration to generate a very long sequence of normal random numbers using standard C/C++ code.
  • Monte-Carlo Simulation on AM57x Using OpenCL for DSP Acceleration Reference Design
    TIDEP0046: TI’s high performance ARM® Cortex®-A15 based AM57x processors also integrate C66x DSPs. These DSPs were designed to handle high signal and data processing tasks that are often required by industrial, automotive and financial applications. The AM57x OpenCL implementation makes it easy for users to utilize DSP acceleration for high computational tasks while using a standard programming model and language, thereby removing the need for deep knowledge of the DSP architecture. The TIDEP0046 TI reference design provides an example of using DSP acceleration to generate a very long sequence of normal random numbers using standard C/C++ code.
  • TIDEP0078 OPC UA Data Access Server for AM572x Reference Design | TI.com
    TIDEP0078: OPC UA is an industrial machine-to-machine protocol designed to allow interoperability and communication between all machines connected under Industry 4.0. The TIDEP0078 TI Design demonstrates use of the MatrikonOPC™ OPC UA server development kit (SDK) to allow communications using an OPC UA data access (DA) server running embedded in a project or design. The OPC UA DA deals with real-time data and is best suited for industrial automation applications where time is an important aspect of the data. A reference OPC UA server implementation is provided that accesses the GPIO capabilities of the AM572x IDK. The reference code can be extended to provide an OPC UA interface to any data the AM572x IDK board can access including data acquired through Profibus, RS-485, CAN bus, and industrial Ethernet-based protocols such as EtherCAT™ or PROFINET™ using the Programmable Real-time Unit Industrial Communication Subsystems (PRU-ICSS).

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