ZHCSI83C
may 2018 – may 2023
ADC12DL3200
PRODUCTION DATA
1
1
特性
2
应用
3
说明
4
Revision History
5
Pin Configuration and Functions
6
Specifications
6.1
Absolute Maximum Ratings
6.2
ESD Ratings
6.3
Recommended Operating Conditions
6.4
Thermal Information
6.5
Electrical Characteristics: DC Specifications
6.6
Electrical Characteristics: Power Consumption
6.7
Electrical Characteristics: AC Specifications (Dual-Channel Mode)
6.8
Electrical Characteristics: AC Specifications (Single-Channel Mode)
6.9
Timing Requirements
6.10
Switching Characteristics
6.11
Typical Characteristics
7
Detailed Description
7.1
Overview
7.2
Functional Block Diagram
7.3
Feature Description
7.3.1
Analog Inputs
7.3.1.1
Analog Input Protection
7.3.1.2
Full-Scale Voltage (VFS) Adjustment
7.3.1.3
Analog Input Offset Adjust
7.3.2
ADC Core
7.3.2.1
ADC Theory of Operation
7.3.2.2
ADC Core Calibration
7.3.2.3
ADC Overrange Detection
7.3.2.4
Code Error Rate (CER)
7.3.2.5
Internal Dither
7.3.3
Timestamp
7.3.4
Clocking
7.3.4.1
Noiseless Aperture Delay Adjustment (tAD Adjust)
7.3.4.2
Aperture Delay Ramp Control (TAD_RAMP)
7.3.4.3
SYSREF Capture for Multi-Device Synchronization and Deterministic Latency
7.3.4.3.1
SYSREF Position Detector and Sampling Position Selection (SYSREF Windowing)
7.3.4.3.2
Automatic SYSREF Calibration
7.3.5
LVDS Digital Interface
7.3.5.1
Multi-Device Synchronization and Deterministic Latency Using Strobes
7.3.5.1.1
Dedicated Strobe Pins
7.3.5.1.2
Reduced Width Interface With Dedicated Strobe Pins
7.3.5.1.3
LSB Replacement With a Strobe
7.3.5.1.4
Strobe Over All Data Pairs
7.3.6
Alarm Monitoring
7.3.6.1
Clock Upset Detection
7.3.7
Temperature Monitoring Diode
7.3.8
Analog Reference Voltage
7.4
Device Functional Modes
7.4.1
Dual-Channel Mode (Non-DES Mode)
7.4.2
Internal Dither Modes
7.4.3
Single-Channel Mode (DES Mode)
7.4.4
LVDS Output Driver Modes
7.4.5
LVDS Output Modes
7.4.5.1
Staggered Output Mode
7.4.5.2
Aligned Output Mode
7.4.5.3
Reducing the Number of Strobes
7.4.5.4
Reducing the Number of Data Clocks
7.4.5.5
Scrambling
7.4.5.6
Digital Interface Test Patterns and LVSD SYNC Functionality
7.4.5.6.1
Active Pattern
7.4.5.6.2
Synchronization Pattern
7.4.5.6.3
User-Defined Test Pattern
7.4.6
Power-Down Modes
7.4.7
Calibration Modes and Trimming
7.4.7.1
Foreground Calibration Mode
7.4.7.2
Background Calibration Mode
7.4.7.3
Low-Power Background Calibration (LPBG) Mode
7.4.8
Offset Calibration
7.4.9
Trimming
7.5
Programming
7.5.1
Using the Serial Interface
7.5.1.1
SCS
7.5.1.2
SCLK
7.5.1.3
SDI
7.5.1.4
SDO
7.5.1.5
78
7.5.1.6
Streaming Mode
7.5.1.7
80
7.6
Register Maps
7.6.1
SPI_REGISTER_MAP Registers
Application and Implementation
8.1
Application Information
8.2
Typical Applications
8.2.1
Wideband RF Sampling Receiver
8.2.1.1
Design Requirements
8.2.1.1.1
Input Signal Path
8.2.1.1.2
Clocking
8.2.1.2
Detailed Design Procedure
8.2.1.2.1
Calculating Values of AC-Coupling Capacitors
8.2.1.3
Application Curves
8.2.2
Reconfigurable Dual-Channel, 2.5-GSPS or Single-Channel, 5.0-GSPS Oscilloscope
8.2.2.1
Design Requirements
8.2.2.1.1
Input Signal Path
8.2.2.1.2
Clocking
8.2.2.1.3
The ADC12DL3200
8.2.2.2
Application Curves
8.3
Initialization Set Up
8.4
Power Supply Recommendations
8.4.1
Power Sequencing
8.5
Layout
8.5.1
Layout Guidelines
8.5.2
Layout Example
8
Device and Documentation Support
8.1
Device Support
8.1.1
Development Support
8.2
接收文档更新通知
8.3
支持资源
8.4
商标
8.5
静电放电警告
8.6
术语表
9
Mechanical, Packaging, and Orderable Information
封装选项
机械数据 (封装 | 引脚)
ACF|256
MPBGAO1C
ALJ|256
MPBGAS8B
散热焊盘机械数据 (封装 | 引脚)
订购信息
zhcsi83c_oa
zhcsi83c_pm
1
特性
ADC 内核:
12 位分辨率
单通道模式下采样速率高达 6.4GSPS
双通道模式下采样速率高达 3.2GSPS
内部抖动技术,可产生低幅高位谐波
低延迟 LVDS 接口:
总延迟:< 10ns
多达 48 个速率为 1.6Gbps 的数据对
四个 DDR 数据时钟
选通信号会简化同步
本底噪声(无输入,V
FS
= 1.0V
PP-DIFF
):
双通道模式:-151.1dBFS/Hz
单通道模式:-154.3dBFS/Hz
V
CMI
为 0V 的缓冲模拟输入:
模拟输入带宽 (–3dB):8.0 GHz
可用输入频率范围:> 10 GHz
满量程输入电压(V
FS
,默认值):0.8 V
PP
无噪声孔径延迟 (T
AD
) 调节:
精确采样控制:19 fs 步长
简化同步和交错
温度和电压不变延迟
简便易用的同步特性:
自动 SYSREF 计时校准
样片标记时间戳
功耗:3.15W
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