电液比例节流阀 - TDA 系列 | Product Series

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电液比例节流阀 - TDA 系列 电液比例节流阀 - TDA 系列 电液比例节流阀 - TDA 系列

电液比例节流阀 - TDA 系列

经久考验的二通比例节流阀单元系列 TDA 具有对大流量进行精细节流控制的能力, 用于大流量液压系统的高效、稳定的操控。

技术规格:

  • 产品序列: 节流阀
  • 运行类型: 先导
  • 启动类型: 比例
  • 功能: 2-way
  • 安装类型: 二通插件
  • 安装位: Unrestricted
  • 配置: N/A
  • 最大运行压力: 350 bar
  • 最大流速: Depending on size, 220 - 9500 L/min
  • 流速: Nominal flow, 50 % of nominal flow
  • 流动方向: A to B, B to A
  • 最高运行温度: 60 °C
  • 最低运行温度: -20 °C
  • 密封材料: NBR, FPM
  • 与流体类型共同使用: Hydraulic oil according to DIN 51524, Water Glycol
  • 重量: 3.1 up to 87 (depending on size) kg
  • 阀体材料: Steel/Cast iron (cover)

完整的产品说明

派克的 TDA 系列二通电液比例节流阀单元具有一些优异的特性, 如高分辨率及重复精度, 以及令人满意的性价比和经济的运行成本。TDA 阀用于大流量的控制, 结合使用 PCD00A-400 型数字功率放大器, 阀的工作参数可进行存储、修改和复制。

市场:
• 工业设备
• 注塑成型机

特点/优势:
• 经久考验的, 坚固的设计, 插件安装孔及安装界面符合 ISO 7368 - 实现稳定的工作
• 8 档规格: NG16 至 NG100 - 规格尺寸范围广, 适用于绝大部分液压系统
• 先导油液需求少 - 功效高
• 高分辨率及重复精度 - 对产品精度至关重要
• 供货周期短 - 无需库存
• F具有失电故障安全功能
• 油口 B 至 A 无泄漏
• 压差可能高达 350 bar

应用领域:
• 通用压机
• 压铸机
• 注塑成型机

技术功能:
TDA 比例节流阀单元为3 级控制结构: 第一级为比例电磁铁操控的阀芯/阀套结构的先导级, 第二级由控制弹簧和顺序阀芯构成, 主级则为阀芯、阀套组成的二通插件。比例电磁铁推动先导阀芯与控制弹簧的反馈力相平衡, 并由此控制顺序阀芯的位置, 而主级阀芯则跟随着顺序阀芯动作, 从而控制油口 B 至油口 A (油口 A 至 B 为可选项) 的开口面积与电磁铁的输入电流成正比。主阀芯的位置与A、B 口的压差无关, 因此, 该压差可与最高工作压力一样高。

相关文档(前身为“产品支持”)

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产品 端口连接 流速 功能 密封材料 输入电压
TDA016EW06A2NXW NG16 50 % of nominal flow Flow direction from A to B NBR 16 VDC
TDA016EW06B2NLW NG16 50 % of nominal flow Flow direction from B to A NBR 6 VDC
TDA016EW06B2NXW NG16 50 % of nominal flow Flow direction from B to A NBR 16 VDC
TDA016EW06B2VXW NG16 50 % of nominal flow Flow direction from B to A FPM 16 VDC
TDA016EW09A2NLW NG16 Nominal Flow Flow direction from A to B NBR 6 VDC
TDA016EW09A2NXW NG16 Nominal Flow Flow direction from A to B NBR 16 VDC
TDA016EW09B2NLW NG16 Nominal Flow Flow direction from B to A NBR 6 VDC
TDA016EW09B2NXW NG16 Nominal Flow Flow direction from B to A NBR 16 VDC
TDA016EW09B2VXW NG16 Nominal Flow Flow direction from B to A FPM 16 VDC
TDA025EW06A2NXW NG25 50 % of nominal flow Flow direction from A to B NBR 16 VDC
TDA025EW06B2NLW NG25 50 % of nominal flow Flow direction from B to A NBR 6 VDC
TDA025EW06B2NXW NG25 50 % of nominal flow Flow direction from B to A NBR 16 VDC
TDA025EW06B2VXW NG25 50 % of nominal flow Flow direction from B to A FPM 16 VDC
TDA025EW09A2NLW NG25 Nominal Flow Flow direction from A to B NBR 6 VDC
TDA025EW09A2NXW NG25 Nominal Flow Flow direction from A to B NBR 16 VDC
TDA025EW09B2NLW NG25 Nominal Flow Flow direction from B to A NBR 6 VDC
TDA025EW09B2NXW NG25 Nominal Flow Flow direction from B to A NBR 16 VDC
TDA025EW09B2VXW NG25 Nominal Flow Flow direction from B to A FPM 16 VDC
TDA032EW09A2NLW NG32 Nominal Flow Flow direction from A to B NBR 6 VDC
TDA032EW09A2NXW NG32 Nominal Flow Flow direction from A to B NBR 16 VDC
TDA032EW09B2NLW NG32 Nominal Flow Flow direction from B to A NBR 6 VDC
TDA032EW09B2NXW NG32 Nominal Flow Flow direction from B to A NBR 16 VDC
TDA032EW09B2VXW NG32 Nominal Flow Flow direction from B to A FPM 16 VDC
TDA040EW09A2NLW NG40 Nominal Flow Flow direction from A to B NBR 6 VDC
TDA040EW09A2NXW NG40 Nominal Flow Flow direction from A to B NBR 16 VDC
TDA040EW09A2VXW NG40 Nominal Flow Flow direction from A to B FPM 16 VDC
TDA040EW09B2NLW NG40 Nominal Flow Flow direction from B to A NBR 6 VDC
TDA040EW09B2NXW NG40 Nominal Flow Flow direction from B to A NBR 16 VDC
TDA040EW09B2VXW NG40 Nominal Flow Flow direction from B to A FPM 16 VDC
TDA050EW09A2NLW NG50 Nominal Flow Flow direction from A to B NBR 6 VDC
TDA050EW09A2NXW NG50 Nominal Flow Flow direction from A to B NBR 16 VDC
TDA050EW09B2NLW NG50 Nominal Flow Flow direction from B to A NBR 6 VDC
TDA050EW09B2NXW NG50 Nominal Flow Flow direction from B to A NBR 16 VDC
TDA050EW09B2VLW NG50 Nominal Flow Flow direction from B to A FPM 6 VDC
TDA050EW09B2VXW NG50 Nominal Flow Flow direction from B to A FPM 16 VDC
TDA063EW09A2NXW NG63 Nominal Flow Flow direction from A to B NBR 16 VDC
TDA063EW09B2NLW NG63 Nominal Flow Flow direction from B to A NBR 6 VDC
TDA063EW09B2NXW NG63 Nominal Flow Flow direction from B to A NBR 16 VDC
TDA063EW09B2VLW NG63 Nominal Flow Flow direction from B to A FPM 6 VDC
TDA063EW09B2VXW NG63 Nominal Flow Flow direction from B to A FPM 16 VDC
TDA080EW09A2NLW NG80 Nominal Flow Flow direction from A to B NBR 6 VDC
TDA080EW09A2NXW NG80 Nominal Flow Flow direction from A to B NBR 16 VDC
TDA080EW09B2NLW NG80 Nominal Flow Flow direction from B to A NBR 6 VDC
TDA080EW09B2NXW NG80 Nominal Flow Flow direction from B to A NBR 16 VDC
TDA100EW09A2NXW NG100 Nominal Flow Flow direction from A to B NBR 16 VDC
TDA100EW09B2NLW NG100 Nominal Flow Flow direction from B to A NBR 6 VDC
TDA100EW09B2NXW NG100 Nominal Flow Flow direction from B to A NBR 16 VDC
TDA032EW09A2VXW NG32 Nominal Flow Flow direction from A to B FPM 16 VDC
TDA016EW06A2NLW NG16 50 % of nominal flow Flow direction from A to B NBR 6 VDC
TDA016EW06A2VLW NG16 50 % of nominal flow Flow direction from A to B FPM 6 VDC
TDA016EW09A2VLW NG16 Nominal Flow Flow direction from A to B FPM 6 VDC
TDA016EW09A2VXW NG16 Nominal Flow Flow direction from A to B FPM 16 VDC
TDA025EW06B2VLW NG25 50 % of nominal flow Flow direction from B to A FPM 6 VDC
TDA025EW09A2VLW NG25 Nominal Flow Flow direction from A to B FPM 6 VDC
TDA025EW09A2VXW NG25 Nominal Flow Flow direction from A to B FPM 16 VDC
TDA025EW09B2VLW NG25 Nominal Flow Flow direction from B to A FPM 6 VDC
TDA040EW09B2VLW NG40 Nominal Flow Flow direction from B to A FPM 6 VDC
TDA063EW09A2NLW NG63 Nominal Flow Flow direction from A to B NBR 6 VDC

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