Description
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BrandDEIF
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ModelAGC 242
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Product NameAdvanced Multi-Line Genset Controller / Intelligent Generator Power Management Unit
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Country of OriginDenmark
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HS Code8537101100
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Dimensions230mm×160mm×65mm
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Weight1.9kg
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Operating Temperature-20°C to +60°C
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Storage Temperature-40°C to +85°C
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Power Supply24VDC
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Warranty12 month
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Product StatusNew and original
DEIF AGC 242 Product Introduction and Technical Specifications
Input Technical Parameters
Power Supply Input: Supports ultra-wide DC power supply range of 18VDC to 72VDC, compatible with 24VDC and 48VDC standard industrial battery power systems. It can resist short-term voltage fluctuations and transient power surges, adapting to unstable power supply conditions of on-site genset power loops.
Voltage and Current Sampling Input: Equipped with high-precision AC sampling channels, supporting line voltage sampling from 100VAC to 690VAC. It matches 1A and 5A standard current transformer secondary signals, realizing real-time high-precision collection of genset voltage, current, frequency and phase angle data for synchronization judgment and load calculation.
Analog Sensor Input: Built-in multi-channel configurable analog input interfaces, compatible with 4-20mA standard industrial signals and PT100 temperature sensors. It can accurately monitor key engine operating parameters including coolant temperature, oil pressure and fuel level.
Digital Switch Input: Multiple isolated digital input terminals are configured to collect circuit breaker status feedback, external interlock signals, fault reset signals and emergency stop signals, realizing comprehensive real-time status monitoring of the genset and power distribution system.
Output Technical Parameters
Relay Control Output: Equipped with 12-channel programmable relay outputs, with rated load capacity of 6A at 250VAC/DC. It can directly drive genset start-stop actuators, circuit breaker closing and tripping loops and other on-site execution equipment with stable driving performance.
Analog Regulation Output: Supports 3-channel analog output signals, which can output stable regulation signals to match engine speed governors and excitation regulators, realizing precise speed adjustment and voltage stabilization of generator sets.
Alarm and Status Output: Customizable multi-channel alarm output functions, which can output fault alarm, overload warning, synchronization completion, mains normal/mains failure status signals to realize real-time equipment status prompt and fault reminder.
Communication Output: Integrated CAN bus and RS485 industrial communication interfaces, supporting standard industrial communication protocols. It realizes remote parameter configuration, real-time operating data upload and fault information transmission, and can be seamlessly connected with upper computer monitoring systems and DCS platforms.

AGC 242 DEIF Product Core Advantages
Integrated Multi-Functional Control: It integrates genset automatic start-stop, mains switching, grid synchronization, parallel load sharing and multi-dimensional fault protection into one compact device, replacing multiple discrete control accessories. It simplifies the on-site control system structure and effectively reduces equipment procurement and installation costs.
Stable and Reliable Operation Performance: Adopts industrial-grade anti-interference hardware components and DEIF’s verified mature control algorithm. It has strong resistance to on-site electromagnetic interference and environmental vibration, supporting long-term unattended stable operation of generator sets and reducing equipment failure rate.
Accurate Power Regulation Capability: Supports isochronous and droop load control modes, realizing precise active and reactive load distribution among parallel generator sets. It effectively avoids unbalanced load operation, optimizes genset operating efficiency and reduces fuel consumption.Product Core Advantages
Intelligent Integrated Control: Integrates genset automatic start-stop, mains failure switching, grid synchronization, parallel operation, load management and multi-level fault protection in one device, replacing multiple traditional discrete control modules. It simplifies the power control system structure and reduces equipment investment costs.
High Operation Reliability: Adopts industrial-grade hardware components and DEIF’s self-developed mature control algorithm, with strong anti-electromagnetic interference ability. It supports hot standby redundancy and multi-master parallel operation, effectively avoiding system single-point failure and ensuring continuous and stable power supply of generator sets.
Precise Power Management Performance: Realizes accurate active and reactive load distribution among parallel gensets, with high synchronization precision and fast response speed. It effectively optimizes genset operating efficiency, reduces fuel consumption, and avoids unbalanced load operation and equipment overload risks.

AGC 242 DEIF Wiring Method
The DEIF AGC 242 adopts rear terminal block centralized wiring design with clear functional partition, including DC power supply area, AC sampling area, digital input area, relay output area, analog regulation area and communication wiring area, realizing standardized and orderly on-site wiring construction.
For power supply wiring, connect the on-site storage battery power supply to the dedicated DC power terminals in strict accordance with positive and negative polarity standards, and fasten the wiring terminals to avoid poor contact caused by equipment vibration and ensure continuous and stable power supply for the controller.
For AC sampling wiring, connect the secondary signal lines of voltage transformers and current transformers to the corresponding sampling terminals strictly according to phase sequence and polarity. Shielded cables are adopted for wiring and reliable grounding treatment is implemented to suppress on-site electromagnetic interference and guarantee sampling accuracy.
For sensor and digital signal wiring, connect temperature and pressure sensors to analog input terminals according to signal specifications, and access on-site circuit breaker status, interlock and emergency stop signals to digital input terminals to complete full collection of genset operating information.
For control and regulation output wiring, connect relay output terminals to genset start-stop loops and circuit breaker control loops, and connect analog output terminals to speed governing and excitation equipment to realize automatic regulation and control functions. For communication wiring, complete RS485 or CAN bus cable connection and protocol matching according to upper system requirements.
After all wiring is completed, conduct comprehensive circuit inspection, insulation test and signal simulation debugging. Calibrate synchronization parameters, load sharing logic and protection threshold values, and perform machine trial operation to verify that the controller’s automatic control, protection and communication functions operate normally and stably.
