Features
- LP-HCSL outputs; save 8 resistors compared to standard HCSL outputs
- 1.8 V operation; 36 mW typical power consumption
- Selectable asynchronous or glitch-free switching; allows the mux to be selected at power up even if both inputs are not running, then transition to glitch-free switching mode
- Spread spectrum compatible; supports EMI reduction
- OE# pins; support DIF power management
- HCSL differential inputs; can be driven by common clock sources
- 1 MHz to 200 MHz operating frequency
- Space-saving 4x4 mm 24-pin VFQFPN; minimal board space
Description
The 9DMV0431 is a member of IDT's SOC-Friendly 1.8 V Very-Low-Power (VLP) PCIe Gen1-2-3 family. Each of the 4 outputs has its own dedicated OE# pin for optimal system control and power management. The part provides asynchronous and glitch-free switching modes.
| Part Number | Status | Samples | Stock | Package | Lead Count (#) | Carrier Type | Moisture Sensitivity Level (MSL) | Qty. per Reel (#) | Qty. per Carrier (#) | Pb (Lead) Free | Pb Free Category | Temp. Range (°C) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 9DMV0431AKILF | Obsolete | N/A | Out of Stock | VFQFPN | 24# | Tray | 1 | 0 | 490# | Yes | e3 Sn | -40 to 85°C |
| 9DMV0431AKILFT | Obsolete | N/A | Out of Stock | VFQFPN | 24# | Reel | 1 | 2500# | 0 | Yes | e3 Sn | -40 to 85°C |
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- Application NotePDF 431 KB 7WDXRDKU4E7E-5-59216 Dec 06, 2023
- End Of Life NoticePDF 1.22 MB Sep 07, 2022
- End Of Life NoticePDF 1.15 MB Aug 15, 2022
- Product Change NoticePDF 728 KB May 13, 2022
- Product Change NoticePDF 2.97 MB Dec 08, 2020
- Product Change NoticePDF 5.71 MB Jun 09, 2020
- Application NotePDF 235 KB 7WDXRDKU4E7E-5-58851 Apr 08, 2015
- Application NotePDF 170 KB 7WDXRDKU4E7E-5-57318 May 13, 2014
- Application NotePDF 1.9 MB 7WDXRDKU4E7E-5-57315 May 13, 2014
- Application NotePDF 495 KB 7WDXRDKU4E7E-5-57312 May 12, 2014
- Application NotePDF 442 KB 7WDXRDKU4E7E-5-57298 May 08, 2014
Recommended Documents (1)
Datasheets (1)
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- Application NotePDF 431 KB 7WDXRDKU4E7E-5-59216 Dec 06, 2023
- Application NotePDF 1.99 MB 7WDXRDKU4E7E-5-57242 Mar 01, 2022
- Application NotePDF 235 KB 7WDXRDKU4E7E-5-58851 Apr 08, 2015
- Application NotePDF 170 KB 7WDXRDKU4E7E-5-57318 May 13, 2014View More (9)
Application Notes & White Papers (9)
- End Of Life NoticePDF 1.22 MB Sep 07, 2022
- End Of Life NoticePDF 1.15 MB Aug 15, 2022
- Product Change NoticePDF 728 KB May 13, 2022
- Product Change NoticePDF 2.97 MB Dec 08, 2020
- Product Change NoticePDF 5.71 MB Jun 09, 2020View More (8)
Product Notices (PCN, EOL, etc) (8)
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- Product BriefPDF 378 KB 7WDXRDKU4E7E-6-1169 Aug 14, 2012
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A detailed overview of IDT's full-featured PCI Express (PCIe) clock and timing solutions. The presentation addresses PCIe Gen 1, Gen 2, Gen 3, and Gen 4 architectures and how IDT's industry-leading solutions provide all the functions, features, and performance required by the application.
Presented by Ron Wade, System Architect at IDT. For more information visit the PCIe clocks page.
This is the first video in our PCIe series. In this video, we define PCIe architectures, focusing on common and separate clock architectures. Watch the rest of the video series below where Ron will cover the impact of different timing architectures.
In this episode, Ron Wade from IDT (acquired by Renesas) explains PCIe common clocking and its impact on timing solutions. Learn about using a single clock source, fan-out buffers, and the considerations for spread spectrum and non-spread spectrum clocking in PCIe systems.
In this video, we explore PCIe with separate reference clocks and the effects of clock selection. Learn how separate reference clocks work and their impact on system performance and stability.
This video provides a high-level overview of Separate Reference Clock with Independent Spread (SRIS) architectures for PCI Express systems, additional performance requirements that this clocking architecture imposes on the reference clocks, and some system implications encountered trying to implement the architecture.
IDT (acquired by Renesas) engineer provides a brief tutorial describing the main differences between standard HCSL and low-power HCSL (LP-HCSL).
Presented by Ron Wade, PCI Express timing expert.
An overview of IDT's full-featured PCI Express (PCIe) clock multiplexers addressing PCIe Gen 1, Gen 2, Gen 3, and Gen 4.
Presented by Ron Wade, PCI Express clock expert at IDT.
An overview of PCI Express applications and how IDT's industry-leading portfolio of PCIe clock products addresses the requirements. The video briefly discusses PCIe riser cards, embedded SOC, and PCIe storage (NVME) examples.
Presented by Ron Wade, System Architect at IDT.
A brief overview of how data rates have changed from PCI Express (PCIe) Generation 1, Gen 2, Gen 3, Gen 4 and Gen 5.
Presented by Ron Wade, system architect at IDT.
A brief overview of how clock and timing specifications have changed from PCI Express (PCIe) Generation 1, Gen 2, Gen 3, Gen 4 and Gen 5.
Presented by Ron Wade, system architect at IDT (acquired by Renesas).
A brief overview of the PCI Express common clock (CC) jitter model, and the transfer functions as they relate to the timing PLLs. This model applies to PCI Express (PCIe) Gen 2, Gen 3, Gen 4 and Gen 5. The equations would be slightly different for other PCIe architectures, such as SRIS, SRnS, or data clocked.
Presented by Ron Wade, system architect at IDT (acquired by Renesas). For more information about Renesas's PCIe timing solutions, visit the PCI Express (PCIe) Clocks page.