SIM8230: Advanced and Flexible 5G Connectivity for Demanding IoT Applications

Release time:2024-12-19
author:AMEYA360
source:simcom
reading:939

  The 5G RedCap specification, introduced in version R17 of the 3GPP standard, addresses the growing need for efficient connectivity in IoT devices that do not require the full performance of 5G. Also known as "Reduced Capability," this technology offers a more cost-effective and energy-efficient alternative to 4G, LTE-M, and NB-IoT.

SIM8230: Advanced and Flexible 5G Connectivity for Demanding IoT Applications

  RedCap provides an optimal balance between speed and energy efficiency, making it ideal for applications that demand constant connectivity without requiring maximum 5G capacity.

  The SIM8230 module from SIMCom fits perfectly into this context, offering multi-band compatibility, intensive data transmission, and easy integration into IoT devices. Its efficient design meets the needs for economical connectivity, providing a viable solution for a wide range of IoT applications.

  The SIM8230 is a multi-band 5G NR/LTE-FDD/LTE-TDD module that supports 5G SA according to version R17 (3GPP), providing advanced connectivity capabilities. It stands out for its compatibility with a wide range of protocols, facilitating integration into various platforms.

  Compact and Easy to Integrate

  Equipped with interfaces like PCIe, USB 2.0, and GPIO, the SIM8230 offers developers great flexibility to customize their projects. Its LGA format optimizes design and installation, allowing for a more durable assembly and improving heat dissipation, saving space and simplifying installation.

  Rapid 5G Implementation with Minimal Reprogramming

  The compatibility of the SIM8230’s AT commands with the SIM7600/8200/8260 series reduces costs and accelerates time to market. This is especially advantageous for companies that need to implement 5G solutions quickly without requiring extensive reprogramming.

  Additionally, the SIM8230 is based on the Qualcomm X35 platform, which introduces the world's first 5G NR-Light modem-RF system, designed to enhance connectivity at the intelligent edge. This optimized architecture combines energy efficiency and lower complexity design, allowing compact devices to make the most of 5G connectivity. Thanks to its energy- saving features and improved performance, the X35 not only facilitates a smooth migration from LTE CAT-4+ devices but also enables a new wave of use cases for IoT devices, facilitating the rollout of 5G solutions with minimal reprogramming.

  Technical Specifications of the SIM8230

  - The SIM8230 is available in different regional versions to adapt to connectivity needs in various markets: The SIM8230C, SIM8230E, SIM8230G, SIM8230JP, SIM8230NA, and SIM8230SA models are presented in an LGA+LCC format with dimensions of 30.0x30.0x2.5 mm, optimized for compact devices. For M2 formats, the SIM8230C-M2, SIM8230E-M2, SIM8230G-M2, and SIM8230JP-M2 models have dimensions of 42.0x31.4x3.4 mm. Additionally, the SIM8230C-PCIE, SIM8230E-PCIE, SIM8230G-PCIE, and SIM8230JP-PCIE models are available in PCIe format with dimensions of 50.8x31.0x3.6 mm.

  - Supported Frequencies: 5G NR (Sub6G), LTE-FDD, LTE-TDD.

  - GNSS: Compatibility with global navigation systems, ideal for geolocation applications (GPS/GLONASS/BeiDou).

  - Temperature Range: Operates between -40℃ and +85℃, ensuring reliability in extreme weather conditions.

  - Electrical Characteristics: Operates with a voltage of 3.3 to 4.4 V, providing wide compatibility.

  - Data Transfer Performance: Sub-6G SA with speeds of up to 220 Mbps download and 100 Mbps upload; LTE with up to 200 Mbps download and 75 Mbps upload, providing solid performance on LTE networks.

  - Software Functions: Support for protocols such as TCP/IP, IPV4, IPV6, Multi-PDP, FTPS, HTTPS, MQTTS, and DNS, as well as USB/FOTA functionality for remote firmware updates.

  - Interfaces and Connectivity: Includes interfaces such as USB, UART, PCM, GPIO, I2C, and PCIe. Supports SIM cards of 1.8V/2.95V, expanding its compatibility.

  - Certifications: The SIM8230 is currently in the process of obtaining international certifications such as CE (RED), FCC, GCF, PTCRB and MNO TA.

  Versatile and Robust Applications

  The SIM8230 stands out as a key module in CPE and MiFi applications, offering efficient 5G connectivity and FWA access that meet the needs of both industrial and residential sectors. Its optimized design and low energy consumption make it ideal for remote environments, providing high-speed internet access in MiFi devices and converting 5G signals into WiFi in CPE installations.

  Moreover, its versatility makes it a preferred option for emerging sectors such as telemedicine, smart cities, and connected automotive, opening new possibilities for innovative IoT solutions. Its high efficiency, security, and flexibility make it an adaptable solution for future demands, ensuring fast and reliable connections in an increasingly interconnected world.

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  SIMCom's GNSS Modules Now Integrated with Swift's Skylark Precise Positioning Service  SAN FRANCISCO, CA – October 28, 2025 – Swift Navigation, a leader in precise positioning technology for mass-market applications, and SIMCom, a leading global IoT wireless modules and solutions supplier, today announced a partnership to deliver centimeter-level GNSS accuracy to high-volume robotics applications worldwide.  The collaboration integrates Swift's Skylark™ Precise Positioning Service with SIMCom's high-performance SIM66MD and SIM66D GNSS modules.  This powerful combination allows manufacturers and developers using these modules to easily activate centimeter-accurate satellite positioning, dramatically improving the performance, safety, and reliability of robotic lawnmowers, delivery robots, agricultural vehicles, and other autonomous systems. SIMCom's modules are renowned for their compact designs, low power consumption, and wide array of interfaces, making them ideal for seamless integration into diverse IoT and autonomous devices.  Swift's Skylark Nx RTK, the highest-precision variant of Skylark, leverages a proprietary atmospheric model to deliver continuous 1-2 cm accuracy across vast geographic areas, including all of Western Europe. This carrier-grade network eliminates the need for developers to manage base stations or switch between multiple correction providers, simplifying the deployment of high-precision outdoor robots at scale.  "SIMCom's commitment to high performance and versatile design in their GNSS modules aligns perfectly with Swift’s mission to make high-precision positioning accessible and scalable," said Daniel Optendrenk, Vice President of Sales and Business Development at Swift Navigation. "By integrating Skylark with the SIM66MD and SIM66D, we are directly addressing the critical need for reliable, low-cost precision in outdoor autonomous systems, giving developers the tools they need to achieve truly seamless operation."  "The demand for high-accuracy, low-power positioning is growing across all our target segments, particularly in the emerging field of autonomous robotics," said Chunlin Zhu, GNSS Product Line Director at SIMCom. "This partnership ensures that our popular modules can immediately access Swift’s leading precise positioning network, providing a seamless path for our customers to achieve centimeter-level accuracy and gain a competitive edge in deploying fully autonomous solutions."  Key benefits for autonomous navigation:  ● Autonomous Operation: Centimeter-level accuracy is essential for robots to execute complex tasks, such as following precise mowing patterns, planting seeds with exact spacing, or navigating narrow construction sites.  ● Safety and Geofencing: Precise localization enables reliable enforcement of virtual boundaries (geofencing), preventing robots from entering restricted zones or colliding with obstacles, which is critical for safety in public or shared spaces.  ● Improved Efficiency: Reliable 1-2 cm precision reduces path errors, minimizes overlap in coverage (e.g., in farming or lawn care), and ensures the robot consistently reaches its exact target destination, maximizing battery life and operational uptime.
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