伦茨变频器样本
伦次变频器说明书资料
伦茨(Lenze)变频器8200Vector系列使用说明注:本说明适用于梳棉机FA231A所使用 Lenze E82EV系列变频器包括内容:1.标准接线及安装1.1 400V控制器的主电源接线1.2 电机接线1.3符合EMC标准的安装1.4控制端子接线及说明2. 用操作面板进行参数设定2.1访问,设定所有参数2.2拷贝参数到操作面板2.3从操作面板复制参数到变频器2.4 输出转速的在线调整--用操作面板输入频率(hz)与其他给定值相加3.重要参数代码说明3.1 C0014代码可设置控制模式3.2 电机数据的输入/自动检测(C0087;C0088;C0089;C0090;C0091;C0084;C0092;C0148)3.3 JOG固定频率给定值(C0037,C0038,C0039)3.4 给定值选择(C0001)3.5 模拟输入给定的调整(C0026;C0027)3.6 PTC电机温度监控(C0119)3.7 数字输入信号配置(C0007)3.8 最小输出频率(C0010)3.9 最大输出频率(C0011)3.10 主加速时间(C0012)3.11主减速时间(C0013)3.12快停减速时间(C0105)3.13数字输入信号E1-E6电平反相(C0114)3.14 模拟量输入范围设定(C0034)3.15电流极限设定(C0022,C0023)4.故障诊断及排除4.1运行状态显示4.2故障查询5. 梳棉机FA231A变频器参数设定表5.1 E82EV222S4B参数设定表5.2 E82EV751S4B参数设定表6.变频器调试程序表7.产品维护,保养要点1.标准接线及安装1.1 400V控制器的主电源接线1.2 电机接线见上图注:BR1,BR2外部制动电阻T1,T21.3符合EMC标准的安装使用低寄生电容电缆。
每单位长度电容值:●芯/芯≤75pF/m●芯/屏蔽层≤150pF/mEMC电缆密封垫按铭牌进行电机接线使用表面导电的安装板以尽可能大的导电表面将电缆屏蔽层连到PE上。
伦茨 伺服控制器样本
带内置技术功能的伺服驱动控制器 9300 系列伺服控制器提供了令人信服的性能,操作简单且 具有高度灵活性,这使其能够适应特定的运行环境。在预配 置技术功能的基础上,可对单个功能块的连接方式进行修 改,以使驱动器能够为当前的驱动操作提供正确性能。有六 种基本形式可用,使得伦茨提供了各种潜在应用程序的全面 支持: ƒ 9300 伺服控制器 ƒ 9300 伺服定位控制器 ƒ 9300 伺服凸轮 ƒ 9300 伺服套准控制器 ƒ 9300 伺服 PLC ƒ 9300 伺服 PLC 技术 所有六种形式共享标准化硬件,因此,您可以根据自己的需 要自由组合各种配置。也可通过标准化设备接口,进行参数 化和相应操作。
9300 伺服控制器系列
自由连接功能块
预置技术功能 操作系统 伺服控制器
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伺服控制器zh 04/2009
9300 伺服控制器
产品信息
9300 - 伺服控制器系列
9300 伺服控制器 伺服驱动中所需的最常见的基本功能都可在 9300 伺服控制 器中执行。电子减速机是该驱动中一个非常重要的技术功 能。作为机械轴的替代方案,多轴驱动可通过数频耦合实现 完全同步运行。在这个过程中,可调减速机因素可在最小扰 动和最大灵活性下实现同步减速比。反馈系统,如正弦余 弦编码器可作为标准旋转变压器方案的替代方案,以确保最 大精度。 ƒ 机器人 ƒ 搬运和分类 ƒ 运输驱动 ƒ 成型驱动 ƒ ...
伺服控制器
动力十足、强大而轻巧
这就是我们所代表的 您是否在寻求完善并简化机器、提高工厂 效率,优化现有理念减少成本的方法?那 么Lenze就是您正在寻找的合作伙伴。60多 年以来驱动和自动化系统一直都是我们的 核心竞争力。
伦茨自动化技术在各行各业的应用-物流行 业,纺织印染行业,汽车行业,工业机器 人等。
伦茨变频器参数如下
伦茨变频器参数如下Allen-Bradley PowerFlex 7-Series AC Drives, or drives that use a variable frequency drive (VFD), are designed to give optimized motor control for a wide range of applications. The main parameters that must be considered when specifying a PowerFlex 7-Series drive are the voltage rating, current rating, frequency of operation, number of phases, type of enclosure, control mode, and number of I/O.Voltage rating: The voltage rating of the PowerFlex 7-Series drive must be sufficient to allow it to control the motor in the application. Voltage ratings can range from 120 VAC to 690 VAC.Current rating: The current rating of the PowerFlex 7-Series drive must be capable of powering the motor in the application. Current ratings can range from 0.5 Amps to 1700 Amps.Frequency of operation: The frequency output of the PowerFlex 7-Series drive can be adjusted to match the motor’s operating frequency. The range is 1 Hz to 650 Hz.Number of phases: The PowerFlex 7-Series drive is available in single-phase, three-phase, and multi-phase configurations.Type of enclosure: The PowerFlex 7-Series drive is available in NEMA 1, NEMA 12, and IP66 enclosures.Control mode: The PowerFlex 7-Series drive can be operatedin either current or voltage mode.Number of I/O: The PowerFlex 7-Series drive is available with a variety of I/O options, including 0 to 24 analog inputs, 0 to 32 digital inputs, 0 to 16 analog outputs, and 0 to 32 digital outputs.The PowerFlex 7-Series AC Drives use a VFD to control the motor, providing smooth control of speed, torque, and power. The adjustable parameters of the PowerFlex 7-Series drive vary depending on the application and can be configured by the customer. Additionally, the PowerFlex 7-Series drive has built-in protection features, including over-voltage protection,under-voltage protection, over-current protection, ground fault protection, and short-circuit protection. The drives also offer motor fault diagnostics, allowing for quick troubleshooting of any motor issues. PowerFlex 7-Series drives are also backed by Allen-Bradley’s global network of service and support.。
伦茨SMD系列变频器
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伦茨 伺服控制器样本
9300 伺服套准控制器 许多设备可加工材料长度。套印、剪切、冲孔、压花和硬质 合金接头必须按照材料长度上的给定印制图象来准确定位。 然而,由于工业工序(材料性能、生产参数)产生的波动, 印制图象的位置可能会偏移。除“电子轴”的基本要求外,还 需要对高套准准确度印制图象上的旋转运动进行更高级别定 位。内置在驱动控制器中的套准控制不断重新调整辊筒式供 料器、印刷筒、切割棍和其他带有印制图象处理站的角度设 定。因此,套印、剪切、冲孔、压花、硬质合金接头等均定 位在相应位置。 ƒ Insetter ƒ 横切刀 ƒ 印刷单元 ƒ ...
产品信息
9300 伺服控制器产品号
EVS 9321
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设备尺寸
9321 9322 9323 9324 9325 9326 9327 9328 9329 9330 9331 9332
设计
E — 内置单元/散热器外置技术 C — 冷板
系列
S — 伺服控制器 K — 凸轮曲线伺服 P — 位置控制伺服 R — 校准控制伺服 I — 伺服PLC T — 伺服PLC技术
关于此样本
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9300 - 伺服控制器系列
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功能与特点
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控制连接端
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轴模块基本型号
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直流母线运行型号
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标准和运行条件
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PLC 功能
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轴模块
轴模块额定数据
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供电模块
标准和运行条件
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再生能量供电模块的额定数据
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供电模块额定数据
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制动单元
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附件
制动斩波器和制动电阻
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IP20防护等级的抗振制动电阻
伦茨变频器样本范文
伦茨变频器样本范文伦茨变频器的样本可以分为三个主要部分:输入电路、直流中间电路和输出电路。
输入电路用于将交流电源转换为直流电源,以便供给输出电路使用。
直流中间电路则用于储存和调节电能,以保证输出电路在工作过程中的稳定性。
输出电路则将直流电能转换为交流电能,通过变频控制电机的转速。
伦茨变频器的输入电路通常由整流器和滤波器组成。
整流器将交流电源转换为直流电源,并通过滤波器滤除电源中的噪声和谐波。
这可以保证变频器在供电过程中的稳定性和可靠性。
直流中间电路则由电容器和电阻器组成,用于储存电能并在需要时进行调节。
输出电路通常由逆变器、滤波器和电机组成。
逆变器将直流电能转换为交流电能,并通过滤波器滤除电流中的谐波和噪声。
通过变频控制,电机的转速可以根据实际需求进行调节。
伦茨变频器的样本不仅具有高效稳定的性能,还具有多种保护功能。
例如,过流保护可以在电流超过设定值时立即切断电源,以防止电机过载损坏。
过压和欠压保护可以在电压异常时自动切断电源,以保护设备的安全运行。
过载保护可以在负载过大时减少输出功率,以保护电机和变频器不受损坏。
伦茨变频器样本还具有智能化控制的特点。
通过集成微处理器和信号处理器,它可以实现多种运行模式和参数设置。
用户可以通过调节变频器的参数来实现不同的控制方式,如恒定转矩控制、矢量控制和速度闭环控制等。
这些功能使得变频器可以适应不同的工作环境和工艺要求,并且可以实现更精确的控制效果。
总之,伦茨变频器样本具有高效稳定的性能、多种保护功能和智能化控制的特点。
它是现代工业生产中不可或缺的设备,可以为生产过程提供高效的动力驱动和能源控制。
同时,伦茨变频器的样本也在不断发展和创新,以满足不同行业的需求,并助力工业生产实现更高水平的智能化和可持续发展。
伦茨8400 motec变频器
Brochure | ENFrequency inverter 0.25 ... 132 kWLenze inverter – universally applicable.A multifunctional all-rounder applicable for all cases – just another way to perfectlydescribe the frequency inverter. Thanks to a high number of integrated functions,network interfaces and a simple parameter setting, the inverter is suitable for bothmechanical engineering and apparatus construction.Lenze inverters are an important component in modern drive solutions whichrange from the cloud via control systems to motors and geared motors.Typical application fields• Textile machines• Materials handling technology• Packaging technology• Forming technology• Consumer goods machines• Industrial air conditioning technology (pumps, fans & compressors)• Construction machines• Access control• etc.Features• The modular and scalable concept allows the selection of the inverter requiredfor the respective application.• The compact design allows an efficient installation for applications where spacemeans money.• Easy installation and OEM friendly as standard. Robust design for reducingcabling costs in large installations.• Interaction for each application level – from simple to complex!• Energy-efficient and high functionalityThe benefits for you• Lower investment costs• Less control cabinet space and costs• More productivity• More time for innovation• Sustainability• ReliabilityFeatures at a glance.A good usability of the devices ranging from installation to service reduces working time, costs and errors in handling. This makes installation with keyhole mounting and plug-in terminals particularly convenient.Programming your application is opti-mized for all application levels.The smartphone app via WLAN pro-vides only one of numerous interfaces to the device.User-friendlinessFlexibilityCompact designIn mechanical engineering andapparatus construction, space is limited and expensive. Thus, Lenze inverters are extremely compact to implement solutions and save costs.The i5.0 devices impress with a space-saving design with a width of 60 mm (up to 4.0 kW) and a depth of just 130 mm (up to 11 kW). Moreover, the devices can be be mounted directly next to each other without derating.Lenze offers one of the most com-prehensive solution portfolios formechanical engineering and apparatus construction.No matter which power, mains volt-ages, communication interfaces ordiagnostics options – our product range has the right solution optimized for the requirement.RobustnessIO-LinkCentralized/decentralizedMany machines and apparatus provide enough space for a compact inverter such as the i510 or i550.If your machine requires a lot of space, has a modular design or the space in the control cabinet is limited, we rec-ommend a decentralized installation close to the motor. This serves to avoid the installation costs of e.g. expensive motor cables.In many applications, a mixture of cen-tralized and decentralized drive tech-nology is advisable. Fortunately, the i5x0 cabinet and i5x0 protec inverters show the same drive behavior.For an intelligent integration ofsensors and actuators, IO-Link is used increasingly. If the system already con-tains an IO-Link master, inverters can be integrated cost-effectively. With the i550, Lenze is the first man-ufacturer to fulfil the IO-Link standard V1.1. This allows the inverter to be automatically parameterized for serial commissioning or in the event of service.Applications, for instance in the timber industry or intralogistics, place high demands on the components of the machines regarding robustness. Harsh environments are no problem for the i550 protec.Featuring the IP66 degree of protection (Indoor & Outdoor NEMA 4X), the tech-nology inside the housing is protected against dust and the device can be safely cleaned using water jets.i510 cabinet i550 cabineti550 protec8400 motec• Basic inverter IP20NEMA Open Type• 0.25 ... 11 kW• Standard inverter IP20• Universally applicable• 0.25 ... 110 kW• Standard inverter IP31 or IP66• Universally applicable• 0.37 ... 11 KW (expansion up to 75 kWplanned)• Standard inverter for motor orwall mounting IP65• Various connector options for power andsignals for minimum installation expenses• 0.37 ... 7.5 kW Configurablefor all requirements.Frequency inverterLenze offers a comprehensive inverter portfolio for mechanical engineering andapparatus construction. Whether control cabinet mounting, motor mounting ordecentralized mounting with terminals or with complete connection technology– our independent advice is geared towards finding the best solution for yourspecific case.The Lenze EASY Product Finder helps you configure your required frequencyinverter type in next to no time. In addition, you can retrieve all importanttechnical details such as data sheets, CAD data and EPLAN data.EASY Product Finderi510 and i550 cabineti510 and i550 cabinet form the inverter series for the control cabinet in a powerrange of 0.25 ... 132 kW. They are distinguished by the following attributes – slimdesign, scalable functionality and exceptionally user-friendly. The simple i510from 0.25 ... 11 kW and the universally applicable i550 from 0.25 ... 110 kW havethe same DNA but differ in functionality and are optimized for a good price/performance ratio.Highlights• Space saving design: 60 mm wide (up to 4 kW), 130 mm deep(up to 11 kW), with zero-clearance mounting• Innovative interaction options enable better set-up times than ever.• The wide-ranging modular system enables various product configurationsdepending on machine requirements• Optionally with "Safe Torque Off (STO)" with SIL 3 (ISO 13849-1 (EN 954-1) ) andPerformance Level e (EN 62061/EN 61800-5-2)• Flexibility: Get the i550 as a complete device or in individual components(Power Unit, Control Unit and Safety Unit)i510 cabineti550 cabinetPower range ·0.25 ... 110 kW Mounting ·Wall mounting ·InstallationDegree of protection ·IP20·NEMA Open Type ----Approvals·CE, UL, CSA, EAC, RoHS Connections ·1 AC 120 V ·1 AC 230 V ·1/3 AC 230 V ·3 AC 230 V·3 AC 400 V/480 V -·Standard I/O 5x digital input 1x digital output -·Application I/O:7x digital input 1x digital output PNP/NPN logic ·Standard I/O 2x analog input 1x analog output ·Application I/O: 2x analog input 2x analog output·Frequency input: 0 … 100 kHz·1x NO/NC relay (24 DC max. 2 A; 240 AC max. 3 A)·External 24 V supply and internal 24 V power supply unit -·Spring terminals, plug-in ·Evaluation of motor PTCOverload behavior·200 % for 3s; 150 % for 60s Motor controls·Servo control (SC-ASM) with feedback·Sensorless vector control for synchronous motors (up to 22 kW)·Sensorless vector control (SLVC)·Energy saving function (VFC-Eco)·V/f characteristic control linear/square-law (VFC plus)·V/f characteristic control with feedbackFunctions·DC-injection braking·Brake management for brake control with low rate of wear·Dynamic braking through brake resistor·S-ramps for smooth acceleration and deceleration ·Flying restart circuit, PID controller ·DC connection ·Safety engineering Safe Torque Off (STO)Networks·CANopen, Modbus RTU, Modbus TCP, IO-Link, EtherCAT,EtherNET/IP, PROFIBUS, PROFINET, POWERLINKAmbient temperature during operation·3K3 (-10 ... +55 °C) EN 60721-3-3 (derating of 2.5 %/°C above 45 °C)Power range ·0.25 ... 11 kW Mounting -·InstallationDegree of protection ·IP20·NEMA Open Type ----Approvals·CE, UL, CSA, EAC, RoHSConnections -·1 AC 230 V ·1/3 AC 230 V ·3 AC 230 V ·3 AC 400/480 V -·Basic I/O: 5x digital input 1x digital output -----·Basic I/O:2x analog input 1x analog output ---·no·1x NO/NC relay (24 DC max. 2 A; 240 AC max. 3 A)--·Spring terminals·Evaluation of motor PTCOverload behavior·200 % for 3 s; 150 % for 60 sMotor controls -·Sensorless vector control for synchronous motors (up to 22 kW)·Sensorless vector control (SLVC)·Energy saving function (VFC-Eco)·V/f characteristic control linear/square-law (VFC plus)-Functions·DC-injection braking·Brake management for brake control with low rate of wear -·S-ramps for smooth acceleration and deceleration ·Flying restart circuit, PID controller ·DC connection Safety engineering -Networks·CANopen, Modbus RTUAmbient temperature during operation·3K3 (-10 ... +55 °C) EN 60721-3-3 (derating of 2.5 %/°C above 45 °C)i550 proteci550 protec uses the same tried-and-tested technology used in i550 cabinet andonly differs in terms of a higher degree of housing protection with an adapteddesign. If your machine requires a lot of space, has a modular design or the spacein the control cabinet is limited, the universally applicable i550 protec (IP31and IP66 degree of protection) from 0.37 kW ... 11 kW (expansion up to 75 kWplanned) is the ideal solution for a decentralized installation close to the motor.Highlights• IP66 degree of protection (Indoor & Outdoor NEMA 4X) with protection againsthigh pressure water jets from any direction and dust tightness allows for use inharsh environment applications• USB Micro diagnostic interface on board• Optionally available with extension box with or without service switches• Optionally available with keypad or WLAN diagnostic module• Optionally available with "Safe Torque Off (STO)" with SIL 3 (ISO 13849-1(EN 954-1) ) and Performance Level e (EN 62061/EN 62061/EN 61800-5-2)i550 protecPower range·0.37 ... 11 kWMounting·Wall mounting·InstallationDegree of protection·IP31·NEMA 1·IP66·NEMA 4 x--Approvals·CE, UL, CSA, EAC, RoHSConnections·1 AC 120 V·1 AC 230 V·1/3 AC 230 V·3 AC 230 V·3 AC 400/480 V·3 AC 480 V/600 V·Standard I/O:5x digital input1x digital output----PNP/NPN logic·Standard I/O:2x analog input1x analog output---·Frequency input: 0 … 100 kHz·1x NO/NC relay (24 DC max. 2 A; 240 AC max. 3 A)·External 24 V supply andinternal 24 V power supply unit·Spring terminals·Evaluation of motor PTCOverload behavior·200 % for 3 s; 150 % for 60 sMotor controls·Servo control (SC-ASM) with feedback·Sensorless vector control for synchronous motors (up to 22 kW)·Sensorless vector control (SLVC)·Energy saving function (VFC-Eco)·V/f characteristic control linear/square-law (VFC plus)·V/f characteristic control with feedbackFunctions·DC-injection braking·Brake management for brake control with lowrate of wear·Dynamic braking through brake resistor·S-ramps for smooth acceleration and deceleration·Flying restart circuit, PID controller·DC connectionSafety engineering·Safe Torque Off (STO)Networks·CANopen, Modbus RTU, Modbus TCP, IO-Link, EtherCAT, EtherNET/IP, PROFINETAmbient temperature during operation·3K3 (-10 ... +55 °C) EN 60721-3-3 (derating of 2.5 %/°C above 45 °C)8400 motecThe 8400 motec is a frequency inverter for decentralized installation from0.37 ... 7.5 kW in IP65. In the three basic variants for motor mounting, wallmounting or wall mounting with service switch, it already offers a high degree offlexible solutions. Wherever the focus is on a safe and fast installation of drives, the8400 motec is the most beneficial solution, e.g. in spatially distributed applications.Motor mounting:In the case of motor mounting, the 8400 motec can be operated without deratingregardless of the alignment. Compact solution with Lenze MF motor (120 Hz).Wall mounting:Compact and flexible solution for wall mounting in IP65.Wall mounting with service switch:Wall-mounted device with 3 maintenance switches. Options for maximumflexibility in IP54.Highlights• Compact design• High degree of functionality, e.g. integrated brake rectifier• M12 signal connector for fieldbuses, IOs, external 24 V supply and STO• High variety of mains plugs for Harting Q4/2 (single or double),M15 or QUICKON QPD• Wall mounting without derating8400 motecPower range·0.25 ... 7.5 kWMounting·Wall mounting·Motor mountingDegree of protection·IP66·IP54 (with switching unit)----Approvals·CE, UL, CSA, EAC, RoHSConnections----·3 AC 400/480 V-·Standard I/O:5x digital input1x digital output1 inverter enable---PNP/NPN logic------·Frequency input: 0 … 10 kHz·1x NO/NC relay·External 24 V supplytogether with Ethernet-based fieldbuses and PROFIBUS-·Evaluation of motor PTCOverload behavior·200 % for 3 s; 150 % for 60 s·Motor controls-·Sensorless vector control for synchronous motors ·Sensorless vector control (SLVC)·Energy saving function (VFC-Eco)·V/f characteristic control linear/square-law (VFC plus)V/f characteristic control with feedbackFunctions·DC-injection braking·Brake management for brake control with low rate of wearwith integrated brake rectifier·Dynamic braking through brake resistor·S-ramps for smooth acceleration and deceleration·Flying restart circuit, PID controller-Safety engineeringSafe Torque Off (STO)Networks·CANopen, EtherCAT, EtherNET/IP, PROFIBUS, PROFINET,ASiAmbient temperature during operation·3K3 (-30 ... +55 °C) EN 60721-3-3 (derating of 2.5 %/°C above 45 °C)Technical data i510 cabinet inverterConnection to 230 V mainsi510 cabinet inverter Connection to 400 V mainsMains choke is generally prescribed for Light Duty with 15 kW.Connection to 120 V mains and 230 V mainsConnection to 400 V mainsMains choke is generally prescribed from 22 kW (for Light Duty from 15 kW).Connection to 120 V mains and 230 V mains with IP66 degree of protectionConnection to 400 V mains with IP66 degree of protection8400 motec inverter Connection to 400 V mainsDiagnostics and operation of the i5x0 cabinetFor diagnostics and parameterization, the keypad, the Lenze SMART Keypad app (iOS and Android) or the EASY Starter can be used.I5MADR0000000SI5MADK0000000S I5MADW0000000S I5MADU0000000S3 m cable 3 m cableI5MADR0000001S EWL0085/S5 m cable 5 m cableI5MADR0000002S EWL0086/S Functional safety for i5x0 cabinetThe safety function STO can also be ordered at a later date and retrofitted.I5MASAV000000S Product extensionsAccessoriesMains choke for i5x0 cabineti550 cabinet: generally prescribed from 22 kW (for Light Duty from 15 kW)i500 protec: integrated in the device if required (>= 30 kW)• Mains chokes reduce the effects of the inverter on the supplying mains by smoothing the harmonics.• The effective mains current is reduced which saves energy.• Mains chokes can be used without restrictions in conjunction with RFI filters.• Please note that the use of a mains choke reduces the mains voltage at the input of the inverter by 4 % (typical voltage drop across the mains choke).Filter Short Distance for i5x0 cabinetFilter type: RFI filter• C1 to 25 m • C2 to 50 m• Reduced leakage current, operation on 30-mA residual current circuit breaker possibleFilter Long Distance for i5x0 cabinetFilter type up to 15 kW: RFI filterFilter type from 22 kW: Mains filter (combination of RFI filter and mains choke)• C1 to 50 m • C2 to 100 m•Operation with 300 mA residual current circuit breakerBrake resistor for i550 cabinet• To decelerate greater moments of inertia or with a longer operation in generator mode, an external brake resistor is required.• The brake resistor absorbs the brake energy produced in generator mode and converts it into heat.Brake resistor for i550 protec• To decelerate greater moments of inertia or with a longer operation in generator mode, an external brake resistor is required.• The brake resistor absorbs the brake energy produced in generator mode and converts it into heat.Motor shield plate for i5x0 cabinetContents: Motor shield plate, fixing clip, terminal clamp.Exception: EZAMBHXM004 and EZAMBHXM005 only include terminal clamps as the shield plate comes supplied with the device Accessory sets for i5x0 protecThe bottom of the housing of the i510 protec and i550 protec inverters provides openings for connections to the mains, the motor and the control connections. To easily implement these connections in IP66, various connection sets are available.。
伦茨变频器说明书
伦茨变频器说明书篇一:伦茨变频器参数如下伦茨变频器参数如下:(不全)C001给定值选择(频率来源) C007 输入端子功能选择C008输出端子功能设置C010 最小输出频率C011最大输出频率 C012加速时间C013减速时间C014控制模式C015v/f额定频率C016 Vmi n提升电压 C018 载波频率C022电流最大值(工作)C023电流最大值(制动)C036直流加压制动的电压/电流C037点动1频率C038点动2频率 C039 点动3频率C050输出频率C052电机电压C053 直流母线电压C054电机视在电流 C055控制器负载C056散热片温度C084电机定子电阻C087电动机额定转速C088电动机额定电流 C089 电动机额定频率 C090 电动机额定电压C091电动机功率因数C092电动机定子绕组电感1通过操作面板给定 1E4—正负转;E3-参数集转换;E2/E1-点动速度1~3 1故障信号5Hz55H z 5.0s5.0s2 V/F 线性 55H z2.80%2 8K Hz150%过电流极限值150%3.50%制动力矩40Hz参数集1//25Hz参数集245H z参数集1//30Hz参数集240Hz参数集1//35Hz 参数集2 **Hz运行频率值**V变频器输出电压瞬时值**V变频器内部电容两端电压,一般在600V左右变化 **A变频器输出电流瞬时值**%变频器输出负载率,与电机实际负载有关**℃监控变频器温度**矢量控制电动机定子绕组电阻值1450电动机铭牌值 **A电动机铭牌值,注意电机保护有关50Hz电动机铭牌值380V电动机铭牌值 0.84 电动机铭牌值**mH篇二:伦茨变频器优势价伦茨变频器E82EV113K4C 联系人:谢茂良Q Q :746860572 E-mail:746860572@Q Q.电话: 0591-83772089传真:0591-83781315 E82EV113K4CE82EV113K4C200E82E V152K4CE82EV222K2C200E82EV251K2C E82E V302K2C20 0E82EV371K2CE82E V402K2C200E82EV551K2CE82EV551K4C200E82E V552K4CE82EV751K2C200E82E V752K2C E82EV752K2C200E82E V752K4CE82E V752K4C200EV F9321-EVE VF9322-EVEVF9323-E VEV F9326-EVE82E V113K4C E82EV113K4C200E82E V152K2CE82E V152K2C200 E82EV152K4CE82EV152K4C200E82EV222K2C E82E V222K2C200 E82EV222K4C E82EV222K4C200E82E V251K2CE82E V251K2C200E82EV302K2CE82EV302K2C200 E82E V302K4C E82EV302K4C200 E82EV371K2CE82EV371K2C200E82E V402K2CE82EV402K2C200E82EV402K4C E82EV402K4C200 、E82E V152K2C、E82E V152K4C200、E82EV222K4C、E82EV251K2C200、E82EV302K4C、E82E V371K2C200、E82EV402K4C、E82EV551K2C200、E82E V552K2C、E82E V552K4C200、E82EV751K4C、E VF9324-EV、E82EV152K2C200、E82E V222K2C 、E82EV222K4C200 、E82EV302K2C 、E82E V302K4C200 、E82E V402K2C、E82EV402K4C200、E82EV551K4C、E82EV552K2C200、E82EV751K2C 、E82EV751K4C200 、EV F9325-EVE82EV551K2C200 E82EV551K4CE82EV551K4C200E82E V552K2CE82EV552K2C200E82EV552K4C E82EV552K4C200 E82EV751K2CE82EV751K2C200E82EV751K4CE82E V751K4C200E82EV752K2CE82E V752K2C200 E82EV752K4C E82EV752K4C200 EV F9321-EV EV F9323-EVEV F9325-EVE VF9327-EVE VF9328-E VEVF9330-E VE SMD251X2SFAE SMD371X2SF A ES MD551X2S FA E SMD751X2S FAESMD152X2S FAESM D222X2SF AESM D371L4T XAE SM D751L4TXAESMD112L4TXA ESM D152L4TXA ES MD222L4T XAES MD302L4TXAES MD402L4TXA ESM D552L4TX AES MD752L4TX A E SMD113L4TX AE SMD153L4TXAE SMD183L4TX A ES MD223L 4T XA E VS9321-EP EV S9321-ESE VS9322-ES、、、、、E VF9322-EVE VF9324-E V EV F9326-EVEVF9329-EVEV S9322-EP E VS9323-EP EV S9324-EPE VS9324-ESEVS9325-E PEV S9326-EP EV S9327-EP E VS9327-ES EV S9328-EPE VS9328-ESEVS9329-E P E VS9329-E SEVS9330-EP EVS9330-ESEVS9331-EPEV S9332-E PE82ZB CE MZ9371B C E82Z AFA C001E82ZAFC C201E82ZAFI C001E82ZA FPC001E82ZA FS C001 E82ZA FSC010E82ZA FSC100E MF2113 IB EMF2171IBEM F2172IB EMF2175I B E MF2178IBE MF2179IB E MF2180IBEMF2181IBE MF2102IB CV001 EM F2102IBC V002 EMF2102I BCV003EMF2133IBEM F2177IBEM Z9374I B EM B9351-EE MB9352-E EV S9321-ES EVS9321-E PE VS9321-EKE VS9321-E R 、、、、、EV S9325-E S EV S9326-ES EVS9331-E SE VS9332-ESE82ZAF CC001 E82ZA FL C001 E82ZA FPC010、E VS9321-ETE VS9321-E SV100 EV S9321-EK K100 EVS9321-ERV100EVS9321-E I E VS9321-E TV100 EV S9322-ESE VS9322-EPEVS9322-E K E VS9322-E REVS9322-EIEVS9322-ETEVS9322-ES V100EV S9322-EK K100E VS9322-EIE VS9322-E TV100 EV S9323-ES EVS9323-E PE VS9323-EKE VS9323-E R EV S9323-EIEVS9323-ETEV S9323-ESV100E VS9323-E PV100 EV S9323-EK K100 EVS9323-ERV100EVS9323-E I E VS9323-E TV100 EV S9324-ESE VS9324-EPEVS9324-E K E VS9324-E REVS9324-EI EVS9324-ETEVS9324-ES V100 E VS9324-E PV100EVS9324-ERV100E VS9324-EIE VS9324-E TV100 EV S9325-ES EVS9325-EKEV S9325-E R EV S9325-EI、、、、EV S9321-EPV100E VS9322-E PV100 EV S9322-ER V100 EVS9324-EKK100EVS9325-E PEV S9325-ES V100EVS9325-EPV100E VS9325-EKK100EV S9325-E RV100EVS9325-EI EVS9325-ETV100EVS9326-E S E VS9326-E PEVS9326-EK EVS9326-EREVS9326-EIEV S9326-E T EV S9326-ES V100 EVS9326-EPV100EVS9326-E KK100 E VS9326-ER V100 EV S9326-EIEVS9326-ETV100E VS9327-ESE VS9327-E P EV S9327-EKEVS9327-EREV S9327-EI E VS9327-ET EV S9327-ES V100EVS9327-EPV100E VS9327-EKK100EV S9327-E RV100EVS9327-EI EVS9327-ETV100EVS9328-E S E VS9328-E PEVS9328-EK EVS9328-EREVS9328-EIEV S9328-E T EV S9328-ES V100 EVS9328-EPV100EVS9328-E KK100 E VS9328-ER V100EV S9328-EIEVS9328-ETV1009329 EVS9329-E S篇三:伦茨变频器软件设置点开伦茨软件,选择“新工程(从系统中载入的工程)”。
伦茨变频器9400选型样本介绍
L-force样本自动化系统驱动系统解决方案控制装置变频器电机减速机工程设计工具变频器:伺服9400HighLineL-force样本的内容Lenze,让许多事物变得简单。
关于Lenze我们的原则:用最合适的产品应对实际应用L-force产品系列1.1基于控制器的自动化自动化系统1.2基于驱动器的自动化2.1HighLine任务驱动系统解决方案2.2StateLine任务2.3BaseLine任务3.1控制器3200C柜式控制器控制装置3.2控制器c3003.3控制器p500面板控制器3.4控制器p3003.5I/O1000'3.6监控面板4.1变频器8400protec分布式变频器4.2变频器8400motec4.4柜式伺服9400HighLine4.5伺服8400TopLine4.6伺服驱动器i7004.7变频器8400HighLine4.8变频器8400StateLine4.10变频器8400BaseLine5.1同步伺服电机MCS伺服电机电机5.2MD☐KS同步伺服电机5.3异步伺服电机MQA5.4异步伺服电机MCA5.5三相交流电机MF三相交流电机5.6三相交流电机MH5.7三相交流电机MD5.8Lenze Smart电机m3005.9基础型MD/MH三相交流电机6.1g700-P行星轮减速机轴向减速机减速机6.2MPR/MPG行星轮减速机6.3g500-H斜齿轮减速机6.4GST斜齿轮减速机6.5g500-S小侧隙斜齿轮减速机6.6GFL小侧隙斜齿轮减速机6.7g500-B伞齿轮减速机直角减速机6.8GKR伞齿轮减速机6.9GKS螺旋伞齿轮减速机6.10GSS圆柱斜齿轮蜗轮蜗杆减速机6.11分配如上电机数据7.1Navigator工程设计工具7.2Drive Solution Designer7.3Drive Solution Catalogue7.4Engineer7.5PLC Designer7.6VisiWinNET®7.7EASY Starter精选组合附加组合Lenze,让许多事物变得简单。
伦茨82系列带矢量控制的变频器的参数设定表
代码
设定值
备注
C0001
3
操作模式的设定,一定要设置为3
C0007
2
该设置配置“E3”端子为“快停”
C0010
3
最小输出频率
C0011
50
最大输出频率
C0012
5
加速时间
C0013
3.5-4
减速时间
C0014
4
矢量控制方式
C0021
2.3
滑差补偿(优化电机运行)。该值为计算值(计算值为4.1),若该值过大会造成电机速度不稳。
50
电机额定ห้องสมุดไป่ตู้率
C0090
380
电机额定电压
C0091
0.87
电机功率因素
C0105
2
快停减速时间
C0148
1
电机参数视别(电机参数视别完成后,C0148的值会自动恢复到0)
注:在设定电机参数前先把硬件使能端子排拔掉,在完成电机参数设定后并把C0148设定为1,再将硬件使能端子排插上,使变频器进行电机参数视别,电机参数视别完成后,最后对其它参数进行设定。先设置C002=1,恢复默认值,再设C0014=4,再把C0087、C0088、C0089、C0090、C0091按上表数据设定,再C0148进行整定,整定完后,再把表格中其它参数输入到变频器后即可。
注意:每输一个参数必须要按ENTER键。
C0077
0.6
Imax控制器增益。增大该值可提高低速运行精度。
C0078
230
Imax控制器的积分时间。增大该值可使低速运行更平稳。
C0084
300
电机定子电阻。该值为计算值(计算值为321.9),若该值过大也可能造成电机速度不稳。
伦茨(Lenze)82008210系列变频器中文说明书
782031C N Lenze伦茨橾作手册Global Drive8200/8210系列变频器功率范围0.37…11KW怎样用这些操作指令…对特定的功能,可先参考表中的内容,然后根据索引可看到详细的操作说明为了查阅方便操作指南中用了不同的符号,并在重要的条款中做了加黑处理这个符号给出方便操作信息注意!尽可能避免损坏设备注意!操作时小心人身安全Lenze 1本技术说明用于带有以下名牌的设备8201 E.lx.lx 8203 E.lx.lx 8211 E.Ox.lx 8213 E.Ox.lx 8202 E.lx.lx 8204 E.lx.lx 82l2 E.Ox.lx 82l4 E.0x.lx82l5 E.Ox.lx 82l7 E.Ox.lx 82ll E.lx.2x 82l3 E.lx.2x 82l5 E.lx.2x 82l7 E.lx.2x 82O2E.lx.lx.YOO282l6 E.Ox.lx82l8 E.Ox.lx82l2 E.lx.2x82l4 E.lx.2x82l6 E.lx.2x82l8 E.lx.2x82O2 E.2x.lx.YOO2 装配深度减少的改型变频器类型IP2O封装硬件版本号和索引号软件版本和索引号改型编辑:O3.ll.l994 打印日期 O5.l2.l994 改变软件版本号2x 13.02.199507.08.19952 Lenze目录设计和安装8200/8210系列的特点 (6)1.变频器的数据 (7)1.1通用数据 (7)1.2与型号有关的数据 (8)1.3制造商声明 (9)1.3.1直接应用 (9)2.尺寸和安装 (10)2.1安装 (10)2.2外型尺寸 (11)3.01 (14)3.18200系列变频器的主电路连接 (14)3.28210系列的主电路连接 (15)3.3控制接线 (16)3.4控制输入和输出 (17)3.5并联直流母线运行 (18)3.5.1多台变频器的并联 (18)3.5.2直流电压供电 (18)3.6射频干扰的抑制和屏蔽 (19)4.23 (21)4.1操作面板8201BB (21)4.2操作面板的引出端子的8272BB (22)4.3设定电位器 (23)4.4制动斩波器 (23)4.5主电抗器 (25)4.6熔断器 (26)4.7抑制射频干扰滤波器 (27)4.8电机滤波器 (28)4.9电机电压滤波器 (29)4.10附件 (30)编程:1.开关初始化 (31)2 (32)3.显示 (34)3.1运行状态显示 (34)3.2操作面板8201BB (34)3.3显示值 (36)3.4启动显示 (36)4.基本控制操作 (37)4.1操作编程结构 (37)Lenze 34.2参数代码的设定和改变 (37)4.3操作模式 (40)4.4参数集 (40)5.8200变频器的编程 (41)5.1基本设定 (41)5.1.1最小输出频率f mn (41)5.1.2最大频率设定f_ (41)5.1.3加、减速时间设定 (42)5.1.4V/f 额定频率 (42)5.1.5V/f特性和提升电压设定V_ (43)5.2给定值选择 (44)5.2.1模拟量给定值选择 (44)5.2.2通过LCD操作面板给定 (44)5.2.3寸动频率JOG (45)5.2.4模拟电机电位器 (45)5.3UVWXYZ (46)5.3.1控制器使能(RFR) (46)5.3.2改变旋转方向(CW/CCW) (46)5.3.3快速停止(QSP) (47)5.3.4DC 制动(DC INJ) (47)5.3.5改变参数集(PAR) (47)5.3.6跳闸设定(TRIP) (48)5.3.7端子配置一览 (48)5.3.8继电器输出 (49)5.3.9模拟量输出 (50)5.4扩展设置 (51)5.4.1起动选择/瞬间重起动电路 (51)5.4.2最大电流限制 (52)5.4.3I2.t 监视 (53)5.4.4滑差补偿 (53)5.4.5跳闸复位 (54)5.4.6运行时间表 (54)5.4.7软件版本和变频器型号 (54)5.58200系列代码表 (59)6.8210系列变频器编程 (59)6.1基本设置 (59)6.1.1最小输出频率f;^ (59)6.1.2最大输出频率fj/4 (60)6.1.3加速和减速时间 (61)6.1.4V/f额定频率t (62)6.1.5控制方式 (62)6.1.6提升电压V/i n设定 (62)6.2设定值选择 (62)6.2.1模拟量给定值选择 (63)6.2.2通过操作面板给定 (64)4Lenze6.2.3寸动频率(JOG) (64)6.2.4电机电位器 (64)6.3控制端子功能 (65)6.3.1控制器使能(RFR) (65)6.3.2改变旋转方向(CW/CCW) (66)6.3.3快停(QSP) (66)6.3.4直流制动(DC INJ) (66)6.3.5参数集(TRIP)改变 (67)6.3.6跳闸设定 (68)6.3.7端子配置一览 (69)6.3.8继电器输出 (70)6.3.9模拟量输出 (70)6.4扩展设定 (71)6.4.1起动选择/瞬间重起动 (72)6.4.)最大电流限制 (72)6.4.3电机数据输人 (73)6.4.4I2.t 监控 (73)6.4.5滑差补偿 (74)6.4.6斩波频率 (74)6.4.7跳闸复位 (74)6.4.8运行时间表 (74)6.4.9软件版本和变频器型号 (75)6.4.10运行速度显示 (75)6.58210系列代码表 (76)维护1.监视报警 (81)2.故障报警 (81)2.1主电路连接中错误指示 (81)2.2操作中的故障报警 (81)3.故障确定 (83)3.1电机不转 (83)3.2LED绿灯闪烁 (83)3.3LED红灯闪烁(每0.4秒) (83)3.4LED红灯闪烁(每秒) (83)3.5LED 不亮 (83)3.6电机运行不平稳 (83)3.7电机的电流过大 (84)Lenze 58200/8210系列的特点230V电压等级的8200系列包括4种型号的变频器。
伦茨ESV113N04TXD474变频器说明书
伦茨ESV113N04TXD474变频器说明书一、伦茨ESV113N04TXD474变频器的简单本地启动1.首先确定空开闭合,接触器得电;2按LOC/REM使伦茨ESV113N04TXD474变频器为本地控制模式3.按FAR进入控制盘的参数设置模式用双箭头键选到99参数组,然后用单箭头键选择04,ENTER进入99.04 电机传动模式(DTC)DTC 伦茨ESV113N04TXD474变频器设定值为转速(多数情况下用这种模式)SCALA 伦茨ESV113N04TXD474变频器的设定值为频率选择好模式后按ENTER确认(取消按ACT返回)4.按ACT回到当前状态5.按REF,选择上下调节键,输入指定的参数后,按ENTER确认6.按启动键,伦茨ESV113N04TXD474变频器启动至此,完成了一个伦茨ESV113N04TXD474变频器简单的本地运行过程如果需要将已显示的实际信号替换显示成其他的实际信号,可以按以下步骤进行操作:1.按ACT进入实际信号显示模式;2.选择需要改变的参数行,按ENTER进入;3.按单双箭头键,选择要显示的参数或改变参数组;常用的几个显示信号:01.02 电机的实际转速SPEED01.03 传动输出频率的实际值FREQ03.0 伦茨ESV113N04TXD474变频器最后一次故障的代码LAST FLT)4.按ENTER确认并返回实际信号显示模式;(取消直接按ACT)二上传和下载如何将已经设置好电机需要上传到CDP-312操作面板上:1.激活可选设备的通讯确认98.02 COMM.MODULE LINK设定为FIELDBUS98.07 COMM PROFILE 设定为ABB DRIVES2.按LOC/REM切换到L本地控制状态;3.按FUNC进入功能模式;4.按单双箭头键进入UPLOAD功能,按ENTER执行上传,完成后自动切换到当前信号显示模式;、5.如果要将控制盘从一个传动单元移开前,确认控制盘处于远程控制模式状态(可以按LOC/REM进行改变)如何将数据从控制盘下载到传动单元:1.将存有上传数据的控制盘连接到传动设备;2.确认处于本地控制模式(可以按LOC/REM选择);3.按FUNC 进入功能模式;4.进入DOWNLOAD 下载功能,按ENTER执行下载;三、PLC与伦茨ESV113N04TXD474变频器PROFIBU。
伦茨(Lenze)82008210系列变频器中文说明书
782031C N Lenze伦茨橾作手册Global Drive8200/8210系列变频器功率范围0.37…11KW怎样用这些操作指令…对特定的功能,可先参考表中的内容,然后根据索引可看到详细的操作说明为了查阅方便操作指南中用了不同的符号,并在重要的条款中做了加黑处理这个符号给出方便操作信息注意!尽可能避免损坏设备注意!操作时小心人身安全Lenze 1本技术说明用于带有以下名牌的设备8201 E.lx.lx 8203 E.lx.lx 8211 E.Ox.lx 8213 E.Ox.lx 8202 E.lx.lx 8204 E.lx.lx 82l2 E.Ox.lx 82l4 E.0x.lx82l5 E.Ox.lx 82l7 E.Ox.lx 82ll E.lx.2x 82l3 E.lx.2x 82l5 E.lx.2x 82l7 E.lx.2x 82O2E.lx.lx.YOO282l6 E.Ox.lx82l8 E.Ox.lx82l2 E.lx.2x82l4 E.lx.2x82l6 E.lx.2x82l8 E.lx.2x82O2 E.2x.lx.YOO2 装配深度减少的改型变频器类型IP2O封装硬件版本号和索引号软件版本和索引号改型编辑:O3.ll.l994 打印日期 O5.l2.l994 改变软件版本号2x 13.02.199507.08.19952 Lenze目录设计和安装8200/8210系列的特点 (6)1.变频器的数据 (7)1.1通用数据 (7)1.2与型号有关的数据 (8)1.3制造商声明 (9)1.3.1直接应用 (9)2.尺寸和安装 (10)2.1安装 (10)2.2外型尺寸 (11)3.01 (14)3.18200系列变频器的主电路连接 (14)3.28210系列的主电路连接 (15)3.3控制接线 (16)3.4控制输入和输出 (17)3.5并联直流母线运行 (18)3.5.1多台变频器的并联 (18)3.5.2直流电压供电 (18)3.6射频干扰的抑制和屏蔽 (19)4.23 (21)4.1操作面板8201BB (21)4.2操作面板的引出端子的8272BB (22)4.3设定电位器 (23)4.4制动斩波器 (23)4.5主电抗器 (25)4.6熔断器 (26)4.7抑制射频干扰滤波器 (27)4.8电机滤波器 (28)4.9电机电压滤波器 (29)4.10附件 (30)编程:1.开关初始化 (31)2 (32)3.显示 (34)3.1运行状态显示 (34)3.2操作面板8201BB (34)3.3显示值 (36)3.4启动显示 (36)4.基本控制操作 (37)4.1操作编程结构 (37)Lenze 34.2参数代码的设定和改变 (37)4.3操作模式 (40)4.4参数集 (40)5.8200变频器的编程 (41)5.1基本设定 (41)5.1.1最小输出频率f mn (41)5.1.2最大频率设定f_ (41)5.1.3加、减速时间设定 (42)5.1.4V/f 额定频率 (42)5.1.5V/f特性和提升电压设定V_ (43)5.2给定值选择 (44)5.2.1模拟量给定值选择 (44)5.2.2通过LCD操作面板给定 (44)5.2.3寸动频率JOG (45)5.2.4模拟电机电位器 (45)5.3UVWXYZ (46)5.3.1控制器使能(RFR) (46)5.3.2改变旋转方向(CW/CCW) (46)5.3.3快速停止(QSP) (47)5.3.4DC 制动(DC INJ) (47)5.3.5改变参数集(PAR) (47)5.3.6跳闸设定(TRIP) (48)5.3.7端子配置一览 (48)5.3.8继电器输出 (49)5.3.9模拟量输出 (50)5.4扩展设置 (51)5.4.1起动选择/瞬间重起动电路 (51)5.4.2最大电流限制 (52)5.4.3I2.t 监视 (53)5.4.4滑差补偿 (53)5.4.5跳闸复位 (54)5.4.6运行时间表 (54)5.4.7软件版本和变频器型号 (54)5.58200系列代码表 (59)6.8210系列变频器编程 (59)6.1基本设置 (59)6.1.1最小输出频率f;^ (59)6.1.2最大输出频率fj/4 (60)6.1.3加速和减速时间 (61)6.1.4V/f额定频率t (62)6.1.5控制方式 (62)6.1.6提升电压V/i n设定 (62)6.2设定值选择 (62)6.2.1模拟量给定值选择 (63)6.2.2通过操作面板给定 (64)4Lenze6.2.3寸动频率(JOG) (64)6.2.4电机电位器 (64)6.3控制端子功能 (65)6.3.1控制器使能(RFR) (65)6.3.2改变旋转方向(CW/CCW) (66)6.3.3快停(QSP) (66)6.3.4直流制动(DC INJ) (66)6.3.5参数集(TRIP)改变 (67)6.3.6跳闸设定 (68)6.3.7端子配置一览 (69)6.3.8继电器输出 (70)6.3.9模拟量输出 (70)6.4扩展设定 (71)6.4.1起动选择/瞬间重起动 (72)6.4.)最大电流限制 (72)6.4.3电机数据输人 (73)6.4.4I2.t 监控 (73)6.4.5滑差补偿 (74)6.4.6斩波频率 (74)6.4.7跳闸复位 (74)6.4.8运行时间表 (74)6.4.9软件版本和变频器型号 (75)6.4.10运行速度显示 (75)6.58210系列代码表 (76)维护1.监视报警 (81)2.故障报警 (81)2.1主电路连接中错误指示 (81)2.2操作中的故障报警 (81)3.故障确定 (83)3.1电机不转 (83)3.2LED绿灯闪烁 (83)3.3LED红灯闪烁(每0.4秒) (83)3.4LED红灯闪烁(每秒) (83)3.5LED 不亮 (83)3.6电机运行不平稳 (83)3.7电机的电流过大 (84)Lenze 58200/8210系列的特点230V电压等级的8200系列包括4种型号的变频器。
I51AE__i510 Cabinet 0,25-2,2kW__v1-0__ZH
变频器 i550 ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● ● V1.1 ●
变频器概览
i500 的比较
变频器 i510 i550
应用区域 电力供电系统
泵和风扇,传输设备,移动,卷绕,定型,工具和提升驱动 1/N/PE 1/3/PE 3/PE 1/N/PE 1/3/PE 3/PE 3/PE AC 170 ... 264 V AC 170 ... 264 V AC 340 ... 528 V AC 170 ... 264 V AC 170 ... 264 V AC 170 ... 264 V AC 340 ... 528 V 45 ... 65 Hz 45 ... 65 Hz 45 ... 65 Hz 45 ... 65 Hz 45 ... 65 Hz 45 ... 65 Hz 45 ... 65 Hz 0.25 ... 2.2 kW 1.7 ... 9.6 A 0.25 ... 2.2 kW 1.7 ... 9.6 A 0.37 ... 2.2 kW 1.3 ... 5.6 A 0.25 ... 2.2 kW 1.7 ... 9.6 A 0.25 ... 2.2 kW 1.7 ... 9.6 A 4.0 ... 5.5 kW 16.5 ... 23 A 0.37 ... 75 kW 1.3 ... 150 A
定义要求的输入变量
计算调节范围并决定额定点
基于额定数据确定电机
为变频器定义修正因素
基于额定数据确定变频器
伦茨9300变频器功能介绍及应用实例
▪ identical user interface Servo inverter (Standard)
with parameter software GDC
Position controller
▪ various technology
Cam profiler
functions
Register controller
Contour control, Filling, packaging, paper processing, cross cutter
Material transport, stacking and stock, surface processing
circular table, Robot, tool machine
Structure I 1. Overview drive system 2. Technology of the controller 3. Accessories 4. Automation components 5. Tools for parameter setting and configuration (GDC, Keypad) 6. Commissioning bases on factory setting 7. During operation 8. Application concept: Function blocks and Basic configurations 9. Descriptions and use of the function blocks 10. Additional functions and applications
Automation interface
Regenerative power supply unit
伦茨8400变频器面板按键说明_变频器接线和参数设置方法实物演示
伦茨8400变频器面板按键说明_变频器接线和参数设置方法实物演示1.开关机按键:用于打开和关闭变频器的电源。
2.运行模式按键:用于选择变频器的运行模式,包括手动调速、自动调速和外部信号调速模式。
3.调速按键:用于手动调整电机的转速。
可通过加号和减号按键来增加或减小电机的转速。
4.停止按键:用于停止电机的运行。
5.重置按键:用于将变频器复位到出厂设置状态。
6.显示按键:用于查看变频器的各种参数和状态。
7.确认按键:用于确认对变频器参数的修改或设置。
8.导航按键:用于在变频器参数设置界面中进行菜单导航。
9.菜单按键:用于进入和退出变频器的参数设置界面。
10.数字输入按键:用于输入数字值或选择菜单选项。
11.模拟输入按键:用于输入模拟信号值,如电流或电压。
12.保存按键:用于保存变频器参数的修改。
1.接线方法:a.将输入电源接到变频器的电源输入端,注意接线的极性。
b.将电机的三相电源接到变频器的输出端,同样要注意接线的极性。
c.将变频器的控制信号接到控制终端,如启动、停止信号、调速信号等。
2.参数设置方法:a.打开变频器的电源开关,确保变频器处于待机状态。
b.按下菜单按键进入参数设置界面。
c.通过导航按键浏览参数菜单,并使用数字输入按键选择和修改参数值。
d.设置完毕后,按下保存按键保存参数修改。
e.退出参数设置界面,变频器即可按照新的参数进行工作。
实物演示:以下是伦茨8400变频器的实物演示过程:1.接线演示:a.将输入电源插头插入变频器的电源输入端。
b.将电机的三相电源插头插入变频器的输出端。
c.将控制信号线分别接到变频器的启动、停止和调速终端。
2.参数设置演示:a.打开变频器的电源开关,变频器开始工作。
b.按下菜单按键进入参数设置界面。
c.通过导航按键浏览参数菜单,选择需要修改的参数项。
d.使用数字输入按键输入新的参数值。
e.按下确认按键确认修改,并按下保存按键保存修改。
f.退出参数设置界面,变频器按照新的参数进行工作。
伦茨伺服控制器样本
伦茨伺服控制器样本A servo controller is a device used to control the motion of a servomotor. Servomotors are motor-like devices that are usedto position parts of a machine with accuracy. Unlike general purpose motors, servomotors are designed to rotate to a specific position based on input signals. The servo controller works in conjunction with a feedback device to accurately position the servomotor to the specified position.Servo controllers are used in a wide variety of applications, from industrial machinery to robotics. They are used in applications where precise motion control is required, such asin automated assembly lines and precision machining. Servo controllers are also used to control robotic arms, which areused in the manufacturing industry for accurately assembling parts.A servo controller consists of an input device, microcontroller, and motor driver. The input device reads the position of the servomotor and sends signals to the microcontroller. The microcontroller processes the signals and uses them to control the motor driver, which adjusts themotor’s speed and direction, positioning the servomotor intothe desired position. The motor driver is usually a power amplifier, which increases the current output of the microcontroller to the necessary level for the motor.There are also other types of servo controllers, such as velocity and position controllers. Velocity controllers measure the speed of the motor and provide feedback to the microcontroller in order to maintain the desired speed. Position controllers measure the position of the motor and provide feedback to the microcontroller in order to maintain the desired position.。
伦茨9300变频器功能介绍及应用实例
伦茨9300变频器功能介绍及应用实例
一、Bailey新9300变频器功能介绍
Baldor-Reliance® Bailey新9300变频器采用先进的技术,具有功
率强大的处理器和内置的功能,可以满足用户更高先进的应用需求。
1、智能型控制器:Bailey 9300变频器采用了基于32位处理器的高
端控制技术,具有强大的处理能力和解决问题的能力,可以轻松完成更复
杂的应用任务。
2、高性能传输:Bailey 9300变频器配备了高性能的传输功能,可
以达到极短的响应时间,有效缓解噪声,为用户提供更准确更可靠的控制。
3、功能强大:Bailey 9300变频器具有多种多样的功能,可以满足
复杂的控制需求,具有弯曲控制、位置控制、推力控制、数据采集等功能,可根据用户的实际需要选择不同的功能。
4、强大的编程能力:Bailey 9300变频器支持多种编程语言,如C、
C++、Java、Python等,支持多种通信协议,可以实现灵活的控制,满足
用户的更高要求。
二、Bailey新9300变频器应用实例
1、智能家居控制:Bailey 9300变频器可以应用于智能家居控制,
可以实现家居的智能化控制和辅助,使用户更加舒适方便的控制电子设备。
2、烟雾探测器:Bailey 9300变频器可以应用于烟雾探测器,可以
实时监测室内烟雾浓度并报警,大大提高空气检测的安全性。
伦茨变频器参数集
伦茨参数集与复制步骤操作模块EMZ9371BB适应9300变频器参数集(4套)复制方法:1、插入操作面板,按PRG键,按键,显示User Meun,2、按键,显示Code List,按键显示C002, 按键显示C003,3、按转向参数级,显示“Para”,4、在C003中选择参数11,5、按+,RDY不亮显示Busy ,所有参数集(4套)均拷贝给操作面板。
如果4、在C002中选择参数20,5、按+,RDY不亮显示Busy,将所有参数集(4套)拷贝并保存在变频器中。
操作面板EMZ8201BB适应8200和8210系列变频器F 参数集(2套)复制方法:1、按显示C0012、按或显示C0023、按显示C002的内容4、按或改变C002的内容5、按+显示STOC002 参数集-0-执行功能-1-用出厂值来改写第一套参数集-2-用出厂值来改写第二套参数集√-3-用操作面板的数据改写第一、二参数集-4-用操作面板的数据改写第一套参数集-5-用操作面板的数据改写第二套参数集√-6-向操作面板传送第一、二套参数集操作面板E82ZBC适应8200EV矢量变频器参数集(4套)复制方法:1、按或显示“Code”2、按或选择代码C0023、按或显示C002的参数4、按或显示205、按显示SA VE,则变频器所有参数集(4套)拷贝到操作面板。
如果4、按或显示105、按显示LOAD,则用操作面板参数改写变频器参数集(4套)怎样修改E82EV变频器地址参数(C0350):1、插上E82ZBC面板,按光标至set,再按1+2,显示“USEr”;2、按显示“ALL”,再按1+2;3、按光标至code,按+1+2至地址码为350;4、按地址值闪烁,按或修改地址值,再按贮存。
风机编号地址C350值16u01 116u02 2…….. ……..16u12 1215u1 25。