JAJSSR6
January 2024
LMK5C33216AS1
PRODUCTION DATA
1
1
特長
2
アプリケーション
3
概要
4
Pin Configuration and Functions
5
Specifications
5.1
Absolute Maximum Ratings
5.2
ESD Ratings
5.3
Recommended Operating Conditions
5.4
Thermal Information
5.5
Electrical Characteristics
5.6
Timing Diagrams
5.7
Typical Characteristics
6
Parameter Measurement Information
6.1
Differential Voltage Measurement Terminology
6.2
Output Clock Test Configurations
7
Detailed Description
7.1
Overview
7.2
Functional Block Diagram
7.2.1
PLL Architecture Overview
7.2.2
DPLL
7.2.2.1
Independent DPLL Operation
7.2.2.2
Cascaded DPLL Operation
7.2.2.3
APLL Cascaded with DPLL
7.2.3
APLL-Only Mode
7.3
Feature Description
7.3.1
Oscillator Input (XO)
7.3.2
Reference Inputs
7.3.3
Clock Input Interfacing and Termination
7.3.4
Reference Input Mux Selection
7.3.4.1
Automatic Input Selection
7.3.4.2
Manual Input Selection
7.3.5
Hitless Switching
7.3.5.1
Hitless Switching With Phase Cancellation
7.3.5.2
Hitless Switching With Phase Slew Control
7.3.5.3
Hitless Switching With 1-PPS Inputs
7.3.6
Gapped Clock Support on Reference Inputs
7.3.7
Input Clock and PLL Monitoring, Status, and Interrupts
7.3.7.1
XO Input Monitoring
7.3.7.2
Reference Input Monitoring
7.3.7.2.1
Reference Validation Timer
7.3.7.2.2
Frequency Monitoring
7.3.7.2.3
Missing Pulse Monitor (Late Detect)
7.3.7.2.4
Runt Pulse Monitor (Early Detect)
7.3.7.2.5
Phase Valid Monitor for 1-PPS Inputs
7.3.7.3
PLL Lock Detectors
7.3.7.4
Tuning Word History
7.3.7.5
Status Outputs
7.3.7.6
Interrupt
7.3.8
PLL Relationships
7.3.8.1
PLL Frequency Relationships
7.3.8.1.1
APLL Phase Detector Frequency
7.3.8.1.2
APLL VCO Frequency
7.3.8.1.3
DPLL TDC Frequency
7.3.8.1.4
DPLL VCO Frequency
7.3.8.1.5
Clock Output Frequency
7.3.8.2
Analog PLLs (APLL1, APLL2, APLL3)
7.3.8.3
APLL Reference Paths
7.3.8.3.1
APLL XO Doubler
7.3.8.3.2
APLL XO Reference (R) Divider
7.3.8.4
APLL Phase Frequency Detector (PFD) and Charge Pump
7.3.8.5
APLL Feedback Divider Paths
7.3.8.5.1
APLL N Divider With SDM
7.3.8.6
APLL Loop Filters (LF1, LF2, LF3)
7.3.8.7
APLL Voltage-Controlled Oscillators (VCO1, VCO2, VCO3)
7.3.8.7.1
VCO Calibration
7.3.8.8
APLL VCO Clock Distribution Paths
7.3.8.9
DPLL Reference (R) Divider Paths
7.3.8.10
DPLL Time-to-Digital Converter (TDC)
7.3.8.11
DPLL Loop Filter (DLF)
7.3.8.12
DPLL Feedback (FB) Divider Path
7.3.9
Output Clock Distribution
7.3.10
Output Channel Muxes
7.3.11
Output Dividers (OD)
7.3.12
SYSREF/1-PPS
7.3.13
Output Delay
7.3.14
Clock Outputs (OUTx_P/N)
7.3.14.1
Differential Output
7.3.14.2
LVCMOS Output
7.3.14.3
SYSREF/1-PPS Output Replication
7.3.14.4
Output Auto-Mute During LOL
7.3.15
Glitchless Output Clock Start-Up
7.3.16
Clock Output Interfacing and Termination
7.3.17
Output Synchronization (SYNC)
7.3.18
Zero-Delay Mode (ZDM)
7.3.19
Time Elapsed Counter (TEC)
7.3.19.1
Configuring TEC Functionality
7.3.19.2
SPI as a Trigger Source
7.3.19.3
GPIO Pin as a TEC Trigger Source
7.3.19.3.1
An Example: Making a Time Elapsed Measurement Using TEC and GPIO1 as Trigger
7.3.19.4
TEC Timing
7.3.19.5
Other TEC Behavior
7.4
Device Functional Modes
7.4.1
Device Start-Up
7.4.1.1
ROM Selection
7.4.1.2
EEPROM Overlay
7.4.2
DPLL Operating States
7.4.2.1
Free-Run
7.4.2.2
Lock Acquisition
7.4.2.3
DPLL Locked
7.4.2.4
Holdover
7.4.3
PLL Start-Up Sequence
7.4.4
Digitally-Controlled Oscillator (DCO) Frequency and Phase Adjustment
7.4.4.1
DPLL DCO Control
7.4.4.1.1
DPLL DCO Relative Adjustment Frequency Step Size
7.4.4.1.2
APLL DCO Frequency Step Size
7.4.5
APLL Frequency Control
7.4.6
DPLL Programmable Phase Delay
7.5
Programming
7.5.1
Interface and Control
7.5.2
I2C Serial Interface
7.5.2.1
I2C Block Register Transfers
7.5.3
SPI Serial Interface
7.5.3.1
SPI Block Register Transfer
7.5.4
Register Map Generation
7.5.5
General Register Programming Sequence
8
Application and Implementation
8.1
Application Information
8.1.1
Device Start-Up Sequence
8.1.2
Power Down (PD#) Pin
8.1.3
Strap Pins for Start-Up
8.1.4
Pin States
8.1.5
ROM and EEPROM
8.1.6
Power Rail Sequencing, Power Supply Ramp Rate, and Mixing Supply Domains
8.1.6.1
Power-On Reset (POR) Circuit
8.1.6.2
Powering Up From a Single-Supply Rail
8.1.6.3
Power Up From Split-Supply Rails
8.1.6.4
Non-Monotonic or Slow Power-Up Supply Ramp
8.1.7
Slow or Delayed XO Start-Up
8.2
Typical Application
8.2.1
Design Requirements
8.2.2
Detailed Design Procedure
8.2.3
Application Curves
8.3
Best Design Practices
8.4
Power Supply Recommendations
8.4.1
Power Supply Bypassing
8.5
Layout
8.5.1
Layout Guidelines
8.5.2
Layout Example
8.5.3
Thermal Reliability
9
Device and Documentation Support
9.1
Device Support
9.1.1
Development Support
9.1.1.1
Clock Tree Architect Programming Software
9.1.1.2
Texas Instruments Clocks and Synthesizers (TICS) Pro Software
9.1.1.3
PLLatinum™ Simulation Tool
9.2
Documentation Support
9.2.1
Related Documentation
9.3
ドキュメントの更新通知を受け取る方法
9.4
サポート・リソース
9.5
Trademarks
9.6
静電気放電に関する注意事項
9.7
用語集
10
Revision History
11
Mechanical, Packaging, and Orderable Information
パッケージ・オプション
メカニカル・データ(パッケージ|ピン)
RGC|64
MPQF125F
サーマルパッド・メカニカル・データ
RGC|64
QFND280F
発注情報
jajssr6_oa
jajssr6_pm
2
アプリケーション
4G および 5G 無線ネットワーク
アクティブ アンテナ システム (AAS)、mMIMO
マクロ リモート無線ユニット (RRU)
CPRI/eCPRI
ベースバンド
、集中、分散ユニット (BBU、CU、DU)
スモール セル基地局
SyncE (G.8262)、SONET/SDH (Stratum 3/3E、G.813、GR-1244、GR-253)、IEEE 1588 PTP セカンダリ クロック
56G/112G PAM-4 SerDes 用ジッタ クリーニング、ワンダ減衰、基準クロック生成
光伝送ネットワーク (OTN G.709)
ブロードバンド固定回線アクセス
産業用
試験 / 測定機器