Modem Chip

MDM-9628-0-328PSP-TR-00-0

  • Enhanced Data Throughput: With support for Carrier Aggregation, the MDM-9628 can achieve higher data rates, significantly improving user experiences in data-intensive applications such as video streaming, cloud services, and real-time communication.
  • Robust Processing Capabilities: This module integrates a powerful application processor, enabling efficient handling of complex tasks and applications. This makes it suitable for a wide range of use cases, including automotive telematics, industrial IoT, and smart city applications.

Product Description

The Qualcomm MDM-9628-0-328PSP-TR-00-0 is a state-of-the-art communication module designed to deliver robust and high-speed connectivity across a variety of applications. Engineered with advanced features, it stands out in the realm of mobile broadband solutions, making it ideal for both consumer and industrial markets.

One of the defining characteristics of the MDM-9628 is its multi-mode LTE support, which allows it to connect to various LTE networks around the world. This feature not only ensures a reliable connection in diverse settings but also provides users with the flexibility to roam across different regions without losing connectivity. The addition of Carrier Aggregation enhances this capability by enabling the module to combine multiple frequency bands, resulting in significantly higher data throughput. This is particularly advantageous for applications demanding high bandwidth, such as video conferencing, online gaming, and large file transfers.

In terms of processing power, the MDM-9628 integrates a sophisticated application processor that can manage demanding applications with ease. This makes the module suitable for advanced use cases, such as autonomous vehicles, where real-time data processing is essential for safety and efficiency. The processor’s capability to handle multitasking also supports the development of innovative applications that require simultaneous operations.

Security is another critical aspect of the MDM-9628. With an emphasis on protecting user data and device integrity, the module incorporates a range of security features, including end-to-end encryption and secure boot mechanisms. This is particularly important for applications in sectors such as healthcare and finance, where data protection is paramount.

The inclusion of GNSS functionality allows the MDM-9628 to offer precise location tracking and navigation services. This feature enhances its applicability in sectors such as transportation, logistics, and smart city initiatives, where location-based services play a crucial role in operational efficiency.

Additionally, the module’s low power consumption is a significant advantage for developers looking to build battery-operated devices. By optimizing energy usage, it prolongs device lifespan, making it suitable for remote monitoring systems and IoT devices that operate in the field.

In summary, the Qualcomm MDM-9628-0-328PSP-TR-00-0 represents a powerful and flexible solution for modern wireless communication needs. Its combination of high-speed connectivity, advanced processing capabilities, comprehensive security features, and energy efficiency makes it a preferred choice for a wide range of applications, driving innovation in both consumer and industrial markets. The MDM-9628 is poised to play a pivotal role in the evolution of connected devices and systems in our increasingly digital world.


Specification

  • Form Factor: Compact and versatile, designed for easy integration into various device types.

  • Operating Temperature Range: Typically designed to operate in a broad temperature range, making it suitable for deployment in both indoor and outdoor environments.

  • Power Supply Requirements: Operates on standard voltage levels, simplifying the integration process into existing systems.

  • Data Rates: Capable of supporting high data rates for both upload and download, enhancing overall performance for mobile broadband applications.

  • Interface Options: Features multiple interfaces, including USB, UART, and I2C, providing flexibility for connecting with other components and systems.


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