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German Made Moog Servo Valve with Axial Flow Pump and Piston Pump for 0-70°C Operating Temperature

তোমার দর্শন লগ করা অনলাইন চ্যাট এখন

German Made Moog Servo Valve with Axial Flow Pump and Piston Pump for 0-70°C Operating Temperature

German Made Moog Servo Valve with Axial Flow Pump and Piston Pump for 0-70°C Operating Temperature
German Made Moog Servo Valve with Axial Flow Pump and Piston Pump for 0-70°C Operating Temperature German Made Moog Servo Valve with Axial Flow Pump and Piston Pump for 0-70°C Operating Temperature

বড় ইমেজ :  German Made Moog Servo Valve with Axial Flow Pump and Piston Pump for 0-70°C Operating Temperature

পণ্যের বিবরণ:
উৎপত্তি স্থল: জার্মান
পরিচিতিমুলক নাম: MOOG
সাক্ষ্যদান: ISO
মডেল নম্বার: D791-4002/D761-2617/S25J0QB5VSX2-B D791-4028/D761-2619/S25J0QB6VSX2-B D791-4046/D761-2619/S25J0QBA6
প্রদান:
ন্যূনতম চাহিদার পরিমাণ: 1
মূল্য: 2
প্যাকেজিং বিবরণ: কাঠের বাক্স
ডেলিভারি সময়: 2 সপ্তাহ
পরিশোধের শর্ত: মানিগ্রাম, ওয়েস্টার্ন ইউনিয়ন, টি/টি, ডি/এ, ডি/পি, এল/সি
যোগানের ক্ষমতা: 30

German Made Moog Servo Valve with Axial Flow Pump and Piston Pump for 0-70°C Operating Temperature

বিবরণ
হোয়াটসঅ্যাপ: +85267220981 মাউন্টিং টাইপ: ফ্ল্যাঞ্জ মাউন্ট
তত্ত্ব: অক্ষীয় প্রবাহ পাম্প পরিবহন প্যাকেজ: কাঠের বাক্স
কাঠামো: পিস্টন পাম্প ঘূর্ণন: 0.2-সিপি বিপরীতে পরিবহন করা যেতে পারে
সার্টিফিসারিয়ন: আইএসও খালি সংযোগ: থ্রেড বা ফ্ল্যাঞ্জড
ব্যবহার: তেল পাম্প: পিস্টন
গতি: 3 গতির সেটিংস অপারেটিং তাপমাত্রা: 0-70 ° C
বিশেষভাবে তুলে ধরা:

0-70°C Operating Temperature Moog Servo Valve

,

Axial Flow Pump Electro-hydraulic Servo Valve

,

Piston Pump Proportional Flow Control Valve

MOOG Electro-Hydraulic Flow Servo Valves
Product Models
  • D791-4002/D761-2617/S25J0QB5VSX2-B
  • D791-4028/D761-2619/S25J0QB6VSX2-B
  • D791-4046/D761-2619/S25J0QA6VSX2-B
  • 072-559A/S15F0FA4VBL
  • 072-558A/S22FOFA4VBL
Technical Specifications
Parameter Value Parameter Value
Rated Current 1A Voltage 24V/220V
Power 0.1 kW Brand MOOG
Place of Origin Germany Application LED touch control
Material PVC, Steel, Copper Rated Frequency 50 Hz
Type Servo proportional valve Control Electro hydraulic/Proportional
Additional Models
  • D633-308BR08KO1M0NSM2
  • D633-313BR16K01M0NSM2
  • D633-317B
  • D633-380B
  • D633-460B
  • D633-473BR08KO1F0VSX2
  • D633-500B
  • D633-7205
  • D633-7369
  • D633-E714A
  • D634-319CR40KO2M0NSP2
  • D634-341C
  • D634-371C
  • D634-381CR24K02MOVSP2
  • D634-501AR40KO2M0NSM2
  • D634-514A
  • D634-514C
  • D661-4070
  • D661-4108
  • D661-4209
  • D661-4303EG75JOCA6VSX2HA
  • D661-4359CG35J0AA5VSX2HA
  • D661-4443CG45JOAA6VSX2HA
  • D661-4444CG60JOAA6VSX2HA
  • D661-4455EG35H0C06VSX2HA
  • D661-4469CG75JOAA6VSX2HA+B97007-061
  • D661-4495E
  • D661-4506CG23JOAA6VSX2HA
  • D661-4538C
  • D661-4539C
  • D661-4546C
  • D661-4561C
  • D661-4577CG45H0AA4VSX2HA
  • D661-4591E G45HOCA4VSX2HO
  • D661-4636 G60KOAA5VSX2HA
  • D661-4651
  • D661-4652
  • G631-3016B
  • D661-4697C
  • D661-4770
  • D661-4900P60HAAM4VSX2-A
  • D661-4923P80HAAM7NSX2-A
  • D661-6428EG15KBC06NSX2HA
  • D661-6460C
  • D662-4010
  • D662-4014D01JABF6VSX2-A
  • D662-4049
  • D662-4069B
  • D662-4308K
  • D662-Z4334KP01JOMF6VSX2-A
  • D663-4007L03HABD6VSX2-A
  • D663Z4305KP03JXNF6VSX2-A
  • D663Z4323KP03JONF6VSX2-A
  • D664-P05JAMO5NSX2-O
  • D665-4753P15HAJM6SEA2-E
German Made Moog Servo Valve with Axial Flow Pump and Piston Pump for 0-70°C Operating Temperature 0
Frequently Asked Questions
What is an Electrohydraulic Servo Valve?

An electrohydraulic servo valve is a precision component that acts as an interface between the electrical control system and the hydraulic power system. It receives a low-power electrical analog signal and converts it into a proportional, high-power hydraulic output (flow and pressure). This makes it a crucial control core in electrohydraulic servo systems, responsible for both electrical-to-hydraulic signal conversion and power amplification.

How does a Moog Servo Valve work?

A Moog servo valve typically consists of a polarized electrical torque motor and a two-stage hydraulic amplifier.

First Stage: The torque motor deflects an armature and a flapper attached to it. This flapper moves between two nozzles, creating variable orifices that control the pressure on either end of the second-stage spool.

Second Stage: The differential pressure moves the spool, which then controls the flow of hydraulic fluid to the actuator. A feedback spring, connected to the flapper and engaging the spool, creates a force that balances the input signal torque, ensuring precise spool positioning proportional to the electrical command.

What are the key installation requirements?

Proper installation is critical for performance and longevity.

Filtration: Install a precision filter with a rating of 5 microns or less upstream of the servo valve. The hydraulic fluid cleanliness should be maintained at a maximum ISO DIS 4406 Code 16/13, with Code 14/11 recommended.

System Flushing: Before installing the servo valve, the entire hydraulic system must be thoroughly flushed to remove contaminants. Use a flushing manifold and circulate fluid under conditions simulating normal operation.

Mounting: The valve can be mounted in any orientation, ensuring port alignments match the manifold. The mounting surface should be clean, smooth, and flat. Use the specified screws and torque them to 96 inch-pounds.

Connections: Use O-ring seal connections (e.g., SAE J1926) and avoid welded fittings. Prefer crimped or 24-degree cone type connections.

What are common faults and how can I troubleshoot them?

Common faults can be categorized as follows:

Electrical Faults: Include power supply failure, cable damage, or poor contact. Check the supply voltage, cables, and connectors.

Mechanical Failures: Such as a stuck valve spool, damaged springs, or worn seals. Regular inspection, cleaning, lubrication, and part replacement are necessary.

Hydraulic Faults: Including oil contamination, low oil level, or oil leaks. Regularly replace and filter the oil, check oil levels, and repair leaks.

Valve Oscillation: Unstable operation may be caused by issues with the servo valve's resolution, wear of the valve port, or incorrect control system parameters.

Potential Trouble Probable Cause
Servovalve does not follow input command 1. Open coil or coil leads.
2. Clogged inlet filter.
Poor response 1. Clogged inlet orifices or nozzles.
2. Partially clogged filter.
3. "Sticky" spool.
No response to electrical signal Shorted coil assembly.
Low flow gain 1. Incorrect null adjustment.
2. Partially plugged orifice or filter.

যোগাযোগের ঠিকানা
Quanzhou Yisenneng Hydraulic Electromechanical Equipment Co., Ltd.

ব্যক্তি যোগাযোগ: Mr. liyun

টেল: +8615280488899

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