using Common.Attributes;
using DeviceCommand.Base;
using Model.Models;
using System;
using System.Globalization;
using System.Threading;
using System.Threading.Tasks;
namespace DeviceCommand.Devices
{
///
/// 信号源 一拖三
///
#region 枚举定义
///
/// 信号发生器输出波形类型
///
public enum SignalWaveform
{
/// 正弦波
SINusoid,
/// 方波
SQUare,
/// 锯齿波
RAMP,
/// 脉冲波 (重点用于CP信号模拟)
PULSe,
/// 噪声
NOISe,
/// 任意波 (USER)
USER
}
///
/// 频率计输入信号的耦合方式
///
public enum CounterCoupling
{
/// 交流耦合
AC,
/// 直流耦合
DC
}
#endregion
[ACPCommand]
public class DG1000Z : Tcp
{
// 使用换行符 \n (ASCII 0x0A) 作为 SCPI 结束符
private const string ScpiDelimiter = "\n";
public DG1000Z(TcpConfig config) : base(config)
{
}
#region 1. IEEE 488.2 公共命令
public virtual async Task 清除状态寄存器(CancellationToken ct = default)
{
await SendAsync($"*CLS{ScpiDelimiter}", ct);
}
public virtual async Task 查询设备标识(CancellationToken ct = default)
{
return await WriteReadAsync($"*IDN?{ScpiDelimiter}", ScpiDelimiter, ct);
}
public virtual async Task 重置设备(CancellationToken ct = default)
{
await SendAsync($"*RST{ScpiDelimiter}", ct);
}
public virtual async Task 查询系统SCPI版本(CancellationToken ct = default)
{
return await WriteReadAsync($":SYSTem:VERSion?{ScpiDelimiter}", ScpiDelimiter, ct);
}
#endregion
#region 2. 通道输出控制 (CH1 / CH2)
///
/// 打开或关闭指定通道的输出
///
/// 通道 1 或 2,默认 1
/// true为开启,false为关闭
public virtual async Task 设置通道输出状态(int 通道号 = 1, bool 开启 = true, CancellationToken ct = default)
{
string 参数 = 开启 ? "ON" : "OFF";
await SendAsync($":OUTPut{通道号}:STATe {参数}{ScpiDelimiter}", ct);
}
public virtual async Task 查询通道输出状态(int 通道号 = 1, CancellationToken ct = default)
{
return await WriteReadAsync($":OUTPut{通道号}:STATe?{ScpiDelimiter}", ScpiDelimiter, ct);
}
#endregion
#region 3. 波形、频率与幅度设置 (基础输出)
///
/// 设置指定通道的波形类型 (如正弦波、方波等)
///
public virtual async Task 设置波形类型(int 通道号 = 1, SignalWaveform 波形 = SignalWaveform.SINusoid, CancellationToken ct = default)
{
await SendAsync($":SOURce{通道号}:FUNCtion:SHAPe {波形}{ScpiDelimiter}", ct);
}
///
/// 设置指定通道的输出频率 (单位: Hz)
///
public virtual async Task 设置频率(int 通道号 = 1, double 频率Hz = 1000, CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce{0}:FREQuency {1:F2}{2}", 通道号, 频率Hz, ScpiDelimiter);
await SendAsync(cmd, ct);
}
public virtual async Task 查询频率(int 通道号 = 1, CancellationToken ct = default)
{
return await WriteReadAsync($":SOURce{通道号}:FREQuency?{ScpiDelimiter}", ScpiDelimiter, ct);
}
///
/// 设置指定通道的输出幅度 (单位: Vpp,峰峰值)
///
public virtual async Task 设置幅度(int 通道号 = 1, double 幅度Vpp = 5, CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce{0}:VOLTage:AMPLitude {1:F2}{2}", 通道号, 幅度Vpp, ScpiDelimiter);
await SendAsync(cmd, ct);
}
public virtual async Task 查询幅度(int 通道号 = 1, CancellationToken ct = default)
{
return await WriteReadAsync($":SOURce{通道号}:VOLTage:AMPLitude?{ScpiDelimiter}", ScpiDelimiter, ct);
}
///
/// 设置指定通道的直流偏移电压 (单位: Vdc)
///
public virtual async Task 设置偏移电压(int 通道号 = 1, double 偏移Vdc = 0, CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce{0}:VOLTage:OFFSet {1:F2}{2}", 通道号, 偏移Vdc, ScpiDelimiter);
await SendAsync(cmd, ct);
}
public virtual async Task 查询偏移电压(int 通道号 = 1, CancellationToken ct = default)
{
return await WriteReadAsync($":SOURce{通道号}:VOLTage:OFFSet?{ScpiDelimiter}", ScpiDelimiter, ct);
}
#endregion
#region 4. 方波 / 脉冲波占空比设置 (重点用于CP信号模拟)
///
/// 设置方波信号的占空比 (0.01% ~ 99.99%)[cite: 1]
///
public virtual async Task 设置方波占空比(int 通道号 = 1, double 占空比 = 50.0, CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce{0}:FUNCtion:SQUare:DCYCle {1:F2}{2}", 通道号, 占空比, ScpiDelimiter);
await SendAsync(cmd, ct);
}
///
/// 设置脉冲波信号的占空比 (0.01% ~ 99.99%)[cite: 1]
/// 注意:使用此命令前必须先设置为 PULSe 波形类型
///
public virtual async Task 设置脉冲波占空比(int 通道号 = 1, double 占空比 = 50.0, CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":SOURce{0}:FUNCtion:PULSe:DCYCle {1:F2}{2}", 通道号, 占空比, ScpiDelimiter);
await SendAsync(cmd, ct);
}
#endregion
#region 5. 频率计测量功能 (高频数据轮询核心)
///
/// 打开或关闭内置频率计功能
///
public virtual async Task 设置频率计开关(bool 开启 = true, CancellationToken ct = default)
{
string 参数 = 开启 ? "ON" : "OFF";
await SendAsync($":COUNter:STATe {参数}{ScpiDelimiter}", ct);
}
public virtual async Task 查询频率计开关状态(CancellationToken ct = default)
{
return await WriteReadAsync($":COUNter:STATe?{ScpiDelimiter}", ScpiDelimiter, ct);
}
///
/// 设置频率计输入信号的耦合方式
///
public virtual async Task 设置频率计耦合方式(CounterCoupling 耦合 = CounterCoupling.AC, CancellationToken ct = default)
{
await SendAsync($":COUNter:COUPling {耦合}{ScpiDelimiter}", ct);
}
///
/// 设置频率计的触发电平 (单位: V)
///
public virtual async Task 设置频率计触发电平(double 电平V = 0.1, CancellationToken ct = default)
{
string cmd = string.Format(CultureInfo.InvariantCulture, ":COUNter:LEVel {0:F2}{1}", 电平V, ScpiDelimiter);
await SendAsync(cmd, ct);
}
[Monitorable("信号发生器频率计测量值")]
public virtual async Task 查询频率计测量值(CancellationToken ct = default)
{
// 返回格式: 频率, 周期, 占空比, 正脉宽, 负脉宽
return await WriteReadAsync($":COUNter:MEASure?{ScpiDelimiter}", ScpiDelimiter, ct);
}
#endregion
#region 6. 系统维护与远程控制扩展命令
public virtual async Task 切换远程控制模式(CancellationToken ct = default)
{
// 信号发生器通常通过 LAN/USB 和 VISA 通信即自动进入远程控制,
// 但为了兼容模板,保留一个类似的方法。
await Task.CompletedTask;
}
public virtual async Task 切换本地控制模式(CancellationToken ct = default)
{
// 通常通过前面板按键退出远程。不过可提供 SCPI 关闭屏幕保护等。
await Task.CompletedTask;
}
public virtual async Task 查询错误信息(CancellationToken ct = default)
{
return await WriteReadAsync($":SYSTem:ERRor?{ScpiDelimiter}", ScpiDelimiter, ct);
}
#endregion
}
}