Microwave Generator Systems for OEM Integration
Industrial microwave source systems for 2450 MHz and 915 MHz applications, configured around power level, RF transmission, control, cooling and equipment-interface requirements.
SDACME supports microwave generator supply and project-configured subsystem integration for equipment manufacturers, research platforms and industrial microwave systems. System scope can be defined according to the selected generator, waveguide arrangement, monitoring requirements and OEM interface.


High-power microwave generator configuration for industrial system integration.
RF transmission, monitoring, tuning and control components are confirmed according to the selected model and project.
What Is a Microwave Generator System?
A microwave generator system is more than a microwave power supply. It combines the microwave source with the RF transmission, monitoring, control and equipment-interface functions required to deliver microwave energy into an industrial process or OEM machine.
A project-configured microwave source package built around the generator core and extended, where required, with RF isolation, power monitoring, tuning, waveguide transmission, control interfaces and integration components.
微波电源
Provides and regulates the electrical power required by the microwave source. Depending on the selected generator, the power section can also incorporate operating control, status monitoring and protection functions.
Microwave Head / Magnetron
The microwave head contains the RF-generating section, typically centered on the magnetron and microwave-launch structure. It converts electrical power into microwave energy at the specified operating frequency.
微波发生器
The generator combines the power and control section with the microwave head and the core connections required for operation. It forms the central microwave source around which the wider RF system is configured.
微波发生器系统
Extends the generator core with the RF transmission, protection, monitoring, tuning, control and mechanical interfaces required by the application. The final scope is configured around the selected generator and equipment.
Different terms describe different levels of the microwave supply.
Define the supply scope around your integration requirements.
Circulators, water loads, directional couplers, tuners, rigid or flexible waveguide and external control interfaces can be selected according to the generator configuration, RF layout and OEM equipment requirements.
From Electrical Power to Microwave Energy at the Load
An industrial microwave generator system is engineered as a complete RF energy path. The generator creates the microwave power, while isolation, monitoring, matching and waveguide components connect that source to the customer’s applicator, chamber or process load.
网站功率
Electrical input is defined according to the selected generator configuration and installation requirements.
电力与控制
Supplies and regulates the electrical power required by the microwave source and supports generator operation.
微波头
The magnetron-based microwave source converts electrical power into RF energy at the selected operating frequency.
RF Isolation
Circulator, isolator and load arrangements can be selected to manage reflected microwave power in the RF chain.
Power Monitoring
Directional coupling can support forward and reflected power measurement where required by the system design.
Matching & Tuning
Matching components such as a three-stub tuner can be introduced according to the load and RF integration design.
Waveguide Run
Rigid or flexible waveguide, bends, transitions and interfaces connect the microwave source to the process equipment.
Applicator / Chamber / Load
The microwave system terminates at the customer’s process-side equipment, where RF energy is applied to the intended load.
The power/control section and microwave head form the central microwave source platform.
RF transmission and integration components are selected according to power, frequency, load and equipment layout.
The RF system is integrated with the customer’s applicator, chamber or process load and the required site utilities.
Design the generator as part of the complete RF path.
Frequency, power level, reflected-power conditions, waveguide route, load characteristics, control interface and cooling requirements should be evaluated together when configuring an OEM microwave generator system.
Configure the Supply Around Your Microwave System
A microwave generator system can be supplied at different levels. The generator core provides the microwave source, while RF transmission, monitoring, tuning, controls and mechanical interfaces are selected according to the equipment architecture and project scope.
Frequency, power level, waveguide interface, reflected-power management, control method, cooling arrangement and the connection to the customer’s process equipment all influence the final microwave subsystem scope.
Typical Generator Core
The core microwave source platform around which the wider generator system is configured.
Electrical power conversion, regulation and generator operating functions.
Magnetron-based RF generation section matched to the selected operating frequency.
Required connections between the power/control section and microwave head for the selected generator.
Project-Configured Components
Components selected according to the RF layout, power level, load characteristics and OEM equipment requirements.
Circulator, isolator and water-load arrangements can be configured for reflected-power management.
Directional coupling and forward / reflected power monitoring can be integrated where required.
Tuning components can be selected according to the microwave load and RF matching strategy.
Rigid or flexible waveguide, transitions, bends and mechanical interfaces can be configured for the RF route.
Communication and external equipment interfaces are defined according to the selected generator and project.
Equipment & Site Interface
The microwave subsystem must be matched to the process equipment and facility conditions defined for the project.
RF output connects to the process-side applicator, chamber or other microwave load.
Load geometry and operating conditions influence RF transmission and matching decisions.
Available electrical supply and installation conditions are confirmed during project definition.
Cooling connections and other facility-side utilities are coordinated with the selected equipment configuration.
Required safety and operating interlocks are defined according to the agreed OEM integration architecture.
One system can be supplied at different integration levels.
Provide the main system interfaces before quotation.
Early interface information helps define which parts belong in the microwave subsystem and which connect to the OEM machine.
Request the system level you actually need.
SDACME can define the microwave source and integration scope around the selected generator and OEM equipment requirements. The proposal can therefore focus on the interfaces and RF components needed for the specific machine architecture, rather than assuming the same component package for every project.
Power Supply + Microwave Head: The Core Microwave Source
The core microwave generator combines the electrical power and control section with the microwave head that generates RF energy. These two functions work together as the central source platform before project-specific transmission, monitoring and matching components are added.

Electrical conversion and RF generation are separate, but engineered as one source.
The power section provides the electrical conditions and operating control required by the microwave source. The microwave head contains the RF-generating section, centered on the magnetron and its microwave-launch structure.
For OEM integration, both sides must be reviewed together: the electrical and control interfaces on one side, and the RF, cooling and mechanical interfaces on the other.
微波电源
Provides the controlled electrical power required for magnetron operation and generator management.
- Power conversion Converts the available electrical input into the conditions required by the selected microwave source.
- 功率调节 Supports adjustment and regulation of microwave-source operation according to the generator design.
- Operating control Provides the generator-side control functions available on the selected configuration.
- Status & protection Monitoring and protection functions are implemented according to the selected model and system design.
微波头
Contains the microwave-generating section that converts controlled electrical power into RF energy.
- Magnetron source Generates microwave energy at the operating frequency specified for the selected generator.
- RF output structure Couples the generated microwave energy into the downstream RF transmission path.
- Cooling interface Cooling requirements are matched to the selected microwave head and system configuration.
- Mechanical / RF interface The downstream waveguide and equipment interface must be coordinated with the project RF layout.
The generator core sits between site power and the RF system.
Review both sides of the generator core.
A generator cannot be selected only from its rated microwave power. The electrical, control, cooling, mechanical and RF interfaces must match the equipment into which the source will be integrated.
Specify whether you need the generator core or a wider RF subsystem.
If your machine already has waveguide, matching or process-side equipment, SDACME can review the interface around the required microwave source. For a new OEM design, additional RF transmission, monitoring and integration components can be defined as part of the system proposal.
Isolation, Monitoring & Matching Around the Microwave Source
The microwave generator core creates RF power, but the downstream system must also manage how that energy travels toward the load and how reflected energy returns through the RF chain. Isolation, monitoring and tuning components are therefore selected around the generator, waveguide route and process equipment.
Configure the RF chain around both forward and reflected power.
Reflected-power conditions depend on the load, applicator, matching state and complete RF arrangement.
循环器/隔离器
Used in the microwave transmission chain to provide isolation and help route reflected microwave energy away from the source.
Selected according to generator model, power level and RF system configuration.
水载荷
Provides an RF energy-absorption path in microwave systems where reflected energy is directed through the isolation chain.
Inclusion depends on the selected generator and reflected-power strategy.
定向耦合器
Supports RF monitoring by coupling a controlled portion of the microwave signal for forward- and reflected-power measurement where configured.
Monitoring architecture and measurement functions are confirmed by model and project.
Three-Stub Tuner
A tuning component used to adjust the microwave transmission system for improved matching between the source, waveguide arrangement and connected load.
Evaluated as a project-configured component according to the RF system.

Tuning is evaluated together with the load and waveguide path.
The microwave generator, tuner and process load do not operate as independent components. The RF behavior is influenced by the waveguide route, chamber or applicator interface and the electrical characteristics of the connected load.
For new OEM equipment, matching requirements can be reviewed during system design. For an existing machine, interface drawings, waveguide dimensions and load information help determine whether additional tuning or RF changes are required.
Protection starts with the complete RF design.
Reflected-power monitoring and isolation components help manage abnormal or changing load conditions, but the RF system should still be designed around the applicator, chamber, matching condition and expected operating range.
What information helps define the RF component package?
Select RF components as part of the complete microwave system.
Circulators, isolators, water loads, monitoring components and tuners are matched to the selected frequency, power level, waveguide arrangement and equipment load. The required combination is defined during system configuration rather than assumed from generator power alone.
Connect the Microwave Source to Your Equipment
Waveguide integration defines the physical RF path between the microwave generator and the applicator, chamber or process load. Frequency, flange interface, route geometry, transitions, installation space and load conditions should be reviewed together before the transmission system is finalized.
Treat the waveguide run as part of the complete RF system.
Six interfaces should be defined before the waveguide layout is released.
The waveguide system and RF components must correspond to the operating-frequency platform selected for the generator.
Confirm the generator-side and equipment-side connection dimensions before selecting adapters or transitions.
Define the distance and physical route between the microwave source and process equipment before finalizing the RF layout.
Allow installation and service space for the microwave head, RF components, waveguide sections and connection hardware.
Applicator, chamber and load characteristics influence the RF behavior of the complete generator-to-load transmission path.
Reflected-power conditions should be considered together with matching, isolation and the expected operating range of the load.
Build the RF route around the machine layout—not the other way around.
The appropriate waveguide arrangement depends on where the generator is installed relative to the process equipment. Straight sections, bends, flexible sections, transitions and matching components can be combined according to the mechanical and RF requirements of the project.
For OEM equipment, reviewing the machine layout early helps reduce unnecessary transitions and makes space available for service, cooling connections and RF components.
New OEM machine or existing equipment?
The required engineering information is different depending on whether the RF system is being designed from the beginning or connected to an existing machine.
OEM Equipment Integration
The generator and RF route can be coordinated with the machine layout before the equipment design is finalized.
- Generator position
- Microwave-head orientation
- RF component space
- Waveguide path
- Applicator / chamber connection
- Service and cooling access
现有设备集成
Existing RF interfaces should be documented before the replacement or additional microwave source is configured.
- Existing frequency and power
- 波导类型和尺寸
- Flange and connection details
- Existing RF components
- 安装空间可用
- Photos / drawings of the interface
What should be confirmed for an OEM waveguide connection?
Drawings are usually more useful than a long description.
For an existing machine, interface drawings, waveguide dimensions and clear photos of the current RF connection help define the generator-to-equipment interface. For a new machine, a preliminary layout showing the generator, chamber and available installation space is enough to begin the integration review.
Evaluate waveguide compatibility as a complete RF interface.
Matching one flange dimension is only part of the integration. The operating frequency, power level, waveguide route, existing RF components, applicator and expected load conditions should be reviewed together when connecting a microwave generator to OEM or existing equipment.
Connect the Generator to Your Machine Control System
An OEM microwave generator must coordinate with the machine’s operating sequence, power command, status monitoring, safety interlocks and fault handling. Control interfaces are therefore defined around the selected generator and the customer’s PLC, HMI or supervisory control architecture.
Local operation and machine-level control can work together.
The generator controller manages microwave-source operation, while the OEM machine can exchange commands, operating status, alarms and interlock conditions through the agreed interface.
Exact signal definitions, register maps, analog ranges and fault-handling logic are confirmed for the selected generator and project configuration.
Generator Operation
Generator controls manage operating mode, microwave output and coordination with the connected equipment.
- Local touchscreen / HMI operation
- Local / remote operating mode
- Start / stop command
- Adjustable microwave power
- External machine-control integration
运行状态
Available operating information can be used by the local HMI or transferred to the machine-control system according to the selected configuration.
- Microwave power / setpoint information
- Forward / reflected-power information
- Electrical operating values
- Temperature / cooling status
- 报警和故障信息
Fault & Interlock Handling
Protection logic supervises generator and system conditions and coordinates the appropriate alarm or shutdown response.
- Electrical input / overcurrent conditions
- Reflected-power abnormalities
- Arc / abnormal-load conditions
- Temperature and cooling conditions
- Emergency stop / external interlocks
Choose the interface around the OEM machine architecture.
The exact control package is confirmed before the technical agreement so that the generator and machine use compatible commands, signals and communication methods.
Define what the machine sends—and what the generator returns.
A useful OEM control specification separates commands, operating feedback, alarms and safety interlocks instead of treating the communication interface as a single connection.
界面
Fault handling should match the complete machine sequence.
Tell us how your machine should communicate with the generator.
Confirm the control interface before releasing the OEM electrical design.
For PLC integration, provide the required command method, run and fault signals, communication protocol, interlock sequence and emergency-stop logic. SDACME can then define the generator-side interface for the selected configuration and provide the corresponding signal or communication information for integration.
Prepare the Utilities Around the Microwave Generator System
Reliable OEM integration depends on more than the microwave source. Electrical capacity, cooling conditions, grounding, equipment position, waveguide routing and maintenance access should be defined before the generator configuration and installation layout are finalized.
Four site interfaces surround the microwave source.
Size the cooling system for the selected generator configuration.
Microwave generator systems require cooling conditions matched to the selected power level and equipment architecture. The number of cooling circuits, connection points, required flow, temperature, pressure and water quality are confirmed by model and project.
Cooling capacity should be reviewed together with ambient conditions, piping length, pressure losses, condensation margin and the operating duty of the equipment.
Cooling-Water Source
Capacity matched to configurationCooling Distribution
Circuit arrangement by model / projectGenerator / Head
Required cooling connectionsReview the complete cooling loop before installation.
Available chiller or plant cooling capacity for the selected generator configuration.
Number of cooling circuits and required generator-side connection points.
Required flow is confirmed from the selected model and cooling architecture.
Supply-water temperature and condensation margin should suit the site conditions.
Available pressure should account for piping, fittings and pressure loss.
Water-quality requirements are specified according to the equipment configuration.
Site Power & Grounding
Confirm the available electrical supply before the generator power section and upstream distribution are finalized.
- Voltage & frequency Confirm the site supply available for the selected configuration.
- Electrical capacity Verify sufficient upstream capacity for generator operation.
- Protective devices Coordinate the generator with the agreed upstream protection.
- 接地 Define the protective grounding and equipment-bonding arrangement.
Equipment Position & Access
Cabinet position, microwave-head location and RF route should leave enough space for installation, operation and maintenance.
- Cabinet location Confirm available floor or mounting space and cable access.
- 微波头的位置 Coordinate orientation with the RF and cooling interfaces.
- Waveguide / cable route Define routing before finalizing the equipment arrangement.
- Maintenance clearance Preserve access for inspection, service and connection work.
Plan the equipment positions before releasing the final RF layout.
The power cabinet, microwave head, RF transmission line, process equipment and cooling connections form one installation layout. Their relative positions affect cable lengths, waveguide routing, access and utility connections.
Include ambient and piping conditions in the installation review.
Review room conditions and their effect on equipment cooling and condensation risk.
Keep equipment areas accessible and provide appropriate surrounding clearance.
Plan supply and return lines, fittings and connection points around the machine layout.
Consider drainage and service requirements associated with the cooling installation.
Coordinate abnormal cooling conditions with generator operation.
Cooling status can form part of the machine and generator interlock chain. The final logic should reflect the selected generator, cooling arrangement and OEM equipment sequence.
Send these site conditions with your system inquiry.
This information helps define the generator interfaces, cooling arrangement and installation scope before quotation.
Confirm which site utilities are included in the project scope.
External chillers, plant cooling-water piping, facility electrical distribution and process equipment should be listed explicitly in the quotation or technical agreement when they are part of the required supply. This keeps the generator interfaces and site-preparation responsibilities clear before installation.
From Application Requirements to an Integration-Ready Microwave System
OEM microwave integration is most efficient when the generator, RF path, controls, cooling and equipment interfaces are defined together. SDACME uses the project requirements to establish the microwave source configuration and the interfaces needed for integration with the customer’s machine.
Start with the machine interface—not only the generator power.
The required microwave power is only one part of the selection. Frequency, RF connection, control architecture, cooling conditions, installation space and the intended supply boundary should be reviewed before the final system configuration is released.
Define the interfaces before the system is built.
Each stage reduces uncertainty between the microwave source and the OEM machine.
Application Requirements
Define the machine, process load, required microwave function, operating conditions and expected system duty.
Frequency & Power
Select the microwave-source platform around the required operating frequency and microwave power level.
RF接口
Review waveguide, flange, RF components, route geometry and the interface to the applicator or chamber.
Controls & Interlocks
Define local / remote operation, machine commands, communication, operating feedback and safety interlocks.
Cooling & Site Conditions
Confirm electrical supply, cooling arrangement, installation environment and equipment locations.
Scope Review
Confirm which generator, RF, control and integration components are included in the agreed project supply.
Testing & Verification
The agreed generator and subsystem functions are checked according to the selected configuration and project requirements.
Delivery & Integration
The microwave subsystem is delivered with the agreed interfaces for connection to the OEM machine and site utilities.
You do not need a finished machine design to start the discussion.
A preliminary machine layout and the main microwave requirements are usually enough for an initial OEM review. More detailed electrical, control, cooling and RF-interface information can then be confirmed as the project develops.
Convert the machine requirements into a clear supply boundary.
The final proposal should make it clear which elements belong to the microwave subsystem and which interfaces connect to the customer’s equipment or site.
微波源
Generator power/control section, microwave head and associated core connections.
Core generatorRF Integration
Isolation, monitoring, tuning, waveguide and RF interfaces selected according to the project.
Project configuredOEM Controls
Required commands, communication, operating feedback and machine interlock interfaces.
Interface definedMachine & Site
Process equipment, facility power, cooling utilities and external installation scope as agreed for the project.
Project boundaryVerify the agreed configuration before system handoff.
Testing should reflect the selected generator and the functions included in the project. The verification scope can cover generator operation, control functions, monitoring, protection and other agreed subsystem interfaces.
The same system-engineering process can start from two situations.
Design the microwave subsystem together with the equipment.
Generator location, RF route, controls and utilities can be coordinated while the machine architecture is still being developed.
Best input: preliminary machine layoutStart from the interfaces already installed on the machine.
Existing generator information, waveguide dimensions, controls, cooling connections and interface photos help define compatibility requirements.
Best input: drawings + existing interface dataFreeze the interfaces before manufacturing the final subsystem.
Confirm the generator configuration, RF connection, controls, cooling requirements, mechanical interfaces and supply scope in the project documentation. This provides a clear technical basis for both SDACME and the OEM equipment team.
Send your application, power requirement and equipment interface.
SDACME can review the information and define the microwave generator system configuration for your OEM project.
Questions About 微波发生器系统与 OEM 集成
These questions cover system scope, generator architecture, RF components, waveguide interfaces, controls, cooling and the information needed to configure a microwave subsystem for new or existing industrial equipment.
A microwave generator system extends the microwave source into an equipment-ready RF subsystem.
The generator core combines the power/control section and microwave head. Depending on the selected configuration, the wider system can also include RF isolation, monitoring, matching, waveguide transmission and OEM control interfaces required to connect the source to the customer’s equipment.
01 微波发生器系统包含哪些组件?
A microwave generator system is built around the generator core, which typically consists of the power/control section, microwave head and the required core connections between them.
Depending on the selected generator and OEM project, the system can also be configured with RF isolation, reflected-power handling, directional monitoring, tuning, waveguide transmission and external control interfaces. The final supply scope is confirmed for the specific project.
02 微波电源和微波发生器的区别是什么?
The microwave power supply provides and regulates the electrical power required by the microwave source. It is one part of the generator architecture.
The microwave generator combines the electrical power/control section with the microwave head that produces RF energy. A complete microwave generator system can then extend this core with the RF and equipment interfaces required by the application.
03 SDACME 公司只提供发电机核心组件还是提供 OEM 级微波子系统?
Yes. The required supply level can be defined around the customer’s equipment architecture.
A project may require the microwave generator core only, or a wider OEM subsystem that includes selected RF transmission, monitoring, tuning, control and integration components. The boundary is agreed before the final configuration and quotation are released.
04 是否包括循环泵、水载、定向耦合器、调谐器和波导?
No. These components should not be treated as one universal standard package for every microwave generator.
Their selection depends on the generator model, operating frequency, microwave power, reflected-power strategy, waveguide arrangement, load characteristics and the required OEM supply scope. The quotation or technical agreement should identify which RF components are included.
05 我该如何选择 2450 MHz 和 915 MHz 的微波发生器系统?
Frequency selection should be evaluated together with the required microwave power, RF architecture, process load, equipment dimensions and the interfaces already used by the customer’s machine.
For an existing installation, the current frequency, waveguide system and RF interface are especially important. For a new OEM design, SDACME can review the system requirements before the generator platform is finalized.
06 微波发生器可以与PLC或机器控制系统集成吗?
Yes. Generator operation can be coordinated with an external machine-control system when the required interfaces are defined for the selected configuration.
Available control architecture can include local HMI operation, Local/Remote control, RS485 and Modbus RTU, while additional signals or communication methods can be configured according to the project. Command methods, status signals, interlocks and communication details should be confirmed before the OEM electrical design is finalized.
07 What information is needed for waveguide and RF integration?
Useful information includes operating frequency, microwave power, waveguide type, flange or connection dimensions, route length, bends, equipment orientation and the location of the applicator or chamber.
For existing equipment, drawings and clear photos of the current waveguide, tuner, circulator, coupler and equipment interface can significantly improve the initial compatibility review.
08 What cooling and site information should be provided?
Provide the available electrical supply, cooling source, equipment layout and relevant installation conditions.
Cooling requirements such as circuit arrangement, flow, supply-water temperature, pressure and water quality are confirmed according to the selected generator configuration. Cabinet position, microwave-head location, waveguide route, grounding and maintenance clearance should also be considered during site planning.
09 Can a microwave generator system be connected to existing equipment?
It can be evaluated for existing equipment, but compatibility should be reviewed at the system-interface level rather than from generator power alone.
The existing frequency, microwave power, waveguide dimensions, flange, RF components, cooling connections, control interface and available installation space should be documented before the replacement or additional microwave source is configured.
10 What information should I send to request an OEM microwave system proposal?
Start with the application, required frequency, microwave power, quantity and basic equipment layout.
If available, also provide the applicator or chamber information, waveguide and flange interface, site electrical supply, control or PLC requirements, cooling conditions and the required supply scope. Existing-equipment projects should include drawings, photos and current generator information whenever possible.
The correct microwave generator system is defined by its interfaces.
Generator power is important, but an OEM system also depends on frequency, RF transmission, reflected-power conditions, controls, cooling and the connection to the process equipment. Defining these interfaces early creates a clearer supply scope and a more useful technical proposal.
Have a generator-system requirement?
Send the main application and interface information for an initial OEM system review.
Tell Us What Your Microwave System Needs to Connect To
A useful microwave generator system proposal starts with the application, frequency, power and equipment interfaces. Send the information you already have—drawings and preliminary layouts are welcome even if the machine design is not yet complete.
Start with the engineering information that affects system selection.
You do not need to complete every item before contacting SDACME. The information below helps identify the generator platform, RF transmission requirements, control interface, cooling conditions and expected supply scope.
What information should be included in the RFQ?
Provide what is already known. Missing interface details can be reviewed during the OEM integration process.
应用
Describe what the microwave source will be used for and the equipment or process into which it will be integrated.
工作频率
Specify the required frequency platform or provide the existing equipment frequency for interface review.
微波功率
Provide the required microwave output or information about the generator currently used by the equipment.
数量
Indicate the number of microwave generators or subsystems required for the machine or project.
Applicator / Chamber / Load
Provide information about the process-side microwave load, chamber or applicator connected to the RF system.
波导和护板
For an existing machine, provide waveguide type, dimensions, flange information and the current RF route.
Electrical Input
Provide the available site voltage, frequency and relevant electrical conditions for the generator installation.
Control / PLC Interface
Describe how the OEM machine should command the generator and what status, alarms or communication are required.
冷却条件
Provide information about the available cooling source and site cooling-water conditions where available.
设备布局
Show the intended locations of the power cabinet, microwave head and process equipment.
所需供应范围
Indicate whether you need the generator core or a wider microwave subsystem with RF and OEM integration components.
Drawings & Existing Data
Existing-equipment projects should include drawings, current generator information and clear interface photos whenever possible.
Choose the information path that matches your project.
The machine is still being designed.
Send the preliminary equipment layout and main microwave requirements. Generator position, RF route, control interfaces and utilities can then be reviewed together with the machine design.
The microwave system already has installed interfaces.
Send the existing generator information, RF connection, waveguide and flange dimensions, control interface, cooling connections and photographs or drawings of the installed system.
Drawings and interface photos can shorten the initial review.
For OEM integration, a simple layout often communicates more than a long written description. Mark the microwave-generator position, chamber or applicator, waveguide path and available utility connections where possible.
From RFQ information to system proposal.
Review the application, microwave-source requirement and available interface information.
Identify RF, control, cooling, electrical and mechanical interfaces that require confirmation.
Define the generator platform and the project-configured components required for the OEM subsystem.
Confirm the agreed configuration and supply boundary for quotation and further engineering.
Ready to Discuss Your OEM Microwave System?
Send the application, required microwave power and the equipment interface information you already have. SDACME can review the requirements and define the next engineering steps for the project.
