Features
- SMU allows any IEEE 1588 software, running on an external processor, to control the generation of electrical clocks, and to access and control physical layer synchronization
- Supports Telecom Boundary Clock (T-BC) and Telecom Time Slave Clock (T-TSC) applications per G.8273.2 with physical layer frequency support to the DCOs (Digitally Controlled Oscillator)
- Physical layer clocks comply with ITU-T G.8262 for Synchronous Ethernet Equipment Clock (EEC), and G.813 for Synchronous Equipment Clock (SEC), and Telcordia GR-253-CORE for Stratum 3 and SONET Minimum Clock (SMC)
- System-wide precise 1PPS (Pulse Per Second) time of day alignment is supported with programmable input-to-input, input-to-output and output-to-output phase delays: sub-ns resolution
- 24 hour time holdover is supported by DCOs with fine frequency resolution (1.7e-16)
- Generates clocks for: Ethernet, SONET/SDH and PDH interfaces: jitter generation <1 ps RMS (12 kHz to 20 MHz)
- IEEE 1588 grand master applications are supported by locking to 1 PPS (Pulse Per Second) references from GPS or other GNSS sources
- Eases local oscillator sourcing by supporting any of eight common TCXO/OCXO frequencies for the System Clock: 10 MHz, 12.8 MHz, 13 MHz, 19.44 MHz, 20 MHz, 24.576 MHz, 25 MHz or 30.72 MHz
- Automatically loads configuration from an external EPROM after reset without processor intervention
- 144 pin CABGA package
- Supported by Timing Commander™ software tool
Description
The 82P33810 Synchronization Management Unit (SMU) provides tools to manage timing references, clock sources and timing paths for IEEE 1588 and Synchronous Ethernet (SyncE) based clocks. The device supports up to three independent timing paths that control: IEEE 1588 clock synthesis; SyncE clock generation; and general purpose frequency translation. The device supports physical layer timing with Digital PLLs (DPLLs) and it supports packet based timing with Digitally Controlled Oscillators (DCOs). Input-to-input, input-to-output and output-to-output phase skew can all be precisely managed. The device outputs low-jitter clocks that can directly synchronize Ethernet interfaces; as well as SONET/SDH and PDH interfaces and IEEE 1588 Time Stamp Units (TSUs).
| 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) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 82P33810ABAG | NRND | Available | Out of Stock | CABGA | 144# | Tray | 3 | 0 | 160# | Yes | e1 SnAgCu | -40 to 85°C |
| 82P33810ABAG8 | NRND | N/A | Out of Stock | CABGA | 144# | Reel | 3 | 1000# | 0 | Yes | e1 SnAgCu | -40 to 85°C |
| 82P33810BAG | Obsolete | N/A | Out of Stock | CABGA | 144# | Tray | 3 | 0 | 160# | Yes | e1 SnAgCu | -40 to 85°C |
| 82P33810BAG8 | Obsolete | N/A | Out of Stock | CABGA | 144# | Reel | 3 | 1000# | 0 | Yes | e1 SnAgCu | -40 to 85°C |
Filters
Applied Filters
- Application NotePDF 196 KB R31AN0083EU0110 Rev.1.10 Aug 13, 2025
- Application NotePDF 187 KB R31AN0065EU0101 Rev.1.01 Nov 14, 2023
- Application NotePDF 348 KB R31AN0040EU0100 Rev.1.00 Mar 10, 2023
- Application NotePDF 1.59 MB R31AN0007EU0400 Rev.4.00 Jun 11, 2021
- Application NotePDF 755 KB Aug 08, 2019AI-generated Summary: The document details configuration settings for the DPLL1 in G.8262 Option 1, focusing on sync setup, phase control, and bandwidth/damping holdover. It explains input-to-output phase offset adjustments, including per-output skew control with coarse and fine tuning, enabling precise phase skew adjustments up to ±180°. Output clock skew settings involve two coarse and one fine adjustment stages, providing a wide range of skew control based on APLL VCO and DFS engine frequencies.
- Application NotePDF 324 KB 7WDXRDKU4E7E-5-61282 Nov 21, 2016
- Application NotePDF 249 KB 7WDXRDKU4E7E-5-60940 Aug 23, 2016
- Application NotePDF 606 KB 7WDXRDKU4E7E-5-59382 Jul 06, 2016
- White PaperPDF 1.17 MB 7WDXRDKU4E7E-6-10811 Oct 23, 2015IEEE 1588 Precision Time Protocol (PTP) enables accurate distribution of time, phase, and frequency over packet-based networks. This white paper discusses the importance of PTP in telecom applications and the role of profiles in tailoring the protocol to specific performance needs. It also reviews efforts by the International Telecommunication Union (ITU) to develop synchronization profiles for wireless networks and highlights our contributions to advancing PTP standards for telecommunications.
- Application NotePDF 170 KB 7WDXRDKU4E7E-5-57318 May 13, 2014
Recommended Documents (1)
Datasheets (1)
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- Application NotePDF 196 KB R31AN0083EU0110 Rev.1.10 Aug 13, 2025
- Application NotePDF 187 KB R31AN0065EU0101 Rev.1.01 Nov 14, 2023
- Application NotePDF 348 KB R31AN0040EU0100 Rev.1.00 Mar 10, 2023
- Application NotePDF 1.99 MB 7WDXRDKU4E7E-5-57242 Mar 01, 2022View More (23)
Application Notes & White Papers (23)
- Product Change NoticePDF 93 KB 7WDXRDKU4E7E-5-61608 May 02, 2017
- Product Change NoticePDF 40 KB 7WDXRDKU4E7E-5-58114 Jan 06, 2015
Product Notices (PCN, EOL, etc) (3)
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- OverviewPDF 1.31 MB 7WDXRDKU4E7E-6-11077 Feb 21, 2017
- OverviewPDF 263 KB 7WDXRDKU4E7E-6-1063 Dec 10, 2015
Marketing Collateral (2)
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Renesas Boards & Kits
Evaluation Board for 82P33831 Synchronization Management Unit for IEEE 1588 and 10G/40G Synchronous Ethernet
The 82EBP33831 Evaluation board for IEEE 1588 and Synchronous Ethernet (SyncE) allows the user to connect up to eight differential-ended, up to eight single-ended, and up to two Composite (AMI) reference inputs via SMA connectors. The inputs can operate at any frequency from 1PPS to 650MHz.... Read More