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ISC-2425-25+ Scheda tecnica(PDF) 2 Page - Mini-Circuits |
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ISC-2425-25+ Scheda tecnica(HTML) 2 Page - Mini-Circuits |
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2 / 11 page ![]() www.minicircuits.com P.O. Box 350166, Brooklyn, NY 11235-0003 (718) 934-4500 sales@minicircuits.com PAGE 2 OF 11 ISC-2425-25+ ISM Signal Generator & Controller USB & I2C 50Ω -30 dBm to +25 dBm 2400 to 2500 MHz Feature Advantages Dynamic range > 50 dB, the output power can vary from -30 dBm to +25 dBm in 0.01 dB steps Enables very precise power control into any applicator Course control: 0.5 dB and Fine control: 0.01 dB Frequency selection: with 1kHz steps in the 2.4 – 2.5 GHz ISM band This allows the optimum frequency for the application to be set Phase setting with 1˚ resolution When multiple signal sources are used in coherent mode power can be delivered very accurately USB-based, serial communication interface Enables easy connection and interaction with other system controller hardware or external computers DC supply through a dedicated two-pin connector or via a USB connector An external DC supply enables higher power output (25 dBm) Versus 20 dBm when the supply voltage is directly from the USB port Internal low frequency (LF) 10 MHz clock can be shared via an LVDS signal through the AUX connectors Enables coherent operation with other external hardware and other signal generator boards Pulse modulation and CW operation. PWM duty cycles in 1% steps, ranging from 1 – 99 %. The default PWM frequency is 1 kHz These different power output modes of the ISC-2425-25+ allow the user to fine-tune the power to their application Fast minimum reflected power lock and tracker Supports optimized and efficient power delivery into any application or load by monitoring the reflected power in real-time Closed loop mode (DLL) The Digital Locked Loop (DLL) is an algorithm on the ISC board’s microcontroller. It tunes the RF signal towards the best-matched frequency within a user-defined frequency range. The DLL is suitable for driving applications with changing impedance conditions Feed forward (open loop) mode In this mode, the autogain feature of the controller is switched off, and the user must determine the output power manually Chain/coherent mode Allows an ISC board to be configured as stand-alone or master or slave in a chain of ISC controllers. This is useful for specific use cases such as phase-coherent heating Integrated powerful microcontroller Capable of accommodating the board control firmware and user-defined application-level SW Application programmer’s interface The user can create their control program to control the RF generator Power amplifier status inputs The user can read the calibrated RF power, current and temperature measurements from Mini-Circuits connectorized amplifiers such as the ZHL-2425-250X+ Embedded memory The user can store calibration data, use-case profiles, modulation patterns etc. Dedicated I2C functions Enables easy communication with connected power amplifier modules such as the ZHL-2425-250X+ Fast reflected power sweep across the frequency band (2.4 to 2.5 GHz) Allows the user to adapt the system in real time to dynamic load conditions Safe operating area (SOA), (configurable, fast protection algorithms) Allows the user to set limits to ensure the power amplifier is protected against thermal and RF overstress KEY FEATURES Trademarks: Windows is a registered trademark of Microsoft Corporation in the United States and other countries. Linux is a registered trademark of Linus. Neither Mini-Circuits nor the Mini-Circuits ISC-series of ISM RF & MW signal generators and controllers are affiliated with or endorsed by the owners of the above referenced trademarks. Mini-Circuits and the Mini-Circuits logo are registered trademarks of Scientific Components Corporation. APPLICATION SUPPORT: y Easy to integrate with Mini-Circuits connectorized RF & MW Energy amplifiers providing automatic output power calibration control and system protection y Closed loop RF output power control y Feedforward (open loop) RF power control mode to explore unknown load conditions y Fast minimum reflected power lock and tracker for optimized and efficient power delivery into any application / load y Single channel and multi-channel operation y Coherent and incoherent operation in multi-channel environment |
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