1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁢⁠‍
  2. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁠‍
    1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁣‍
    2. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‍⁠‍⁠‌⁠‍
    3. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁢‌⁣‌‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣‌‍‌‍⁠‍
      ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁢⁠‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁣‍⁠⁢‌
      ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍‌‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠⁢⁠⁣⁠⁣
        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁣‍‌‍⁢‍
      ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁠⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍⁢‌
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁠‍⁠‍‌‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‌⁢‌⁠‌⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁠⁢⁣‌⁢‌
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠⁣‍‌⁠‌‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁢‌⁠⁢⁠‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍‌⁠⁣‌⁠‍

      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‌⁠⁢‍

      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁤‍⁢‍‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁠⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁠⁣⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁣‍⁠⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‍‌‍⁠‍⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁣⁠⁠⁣‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁤‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁠⁢⁣‍⁢‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁠⁠‍⁢⁢⁣
    4. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍‌⁣
    5. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‌⁣⁢⁣‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁢⁠‍‌⁠⁢‍

      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‍⁢‌⁣⁢‌

      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁢‍⁠⁢‌‍

      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‌⁢‌⁣⁠‍

      1. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁠‌‍‌⁣‍
    6. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁣⁠‍⁠‍

      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠⁠⁠‍⁠‌⁣
      ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁣

    7. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‍⁠‍
    8. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁠⁢‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‌⁢‍
      ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍‌⁢‌‍⁠⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‌⁢‌
    9. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁠‌‍
    10. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠⁣‍⁠‍⁠‍
        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁠‍⁢‌⁠‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁣
        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁠⁢‍‌‍⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁠‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁣‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍‌⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁢⁤‍⁢‌
        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁢⁠‌⁢⁢⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁢‌⁢‌⁠‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁢‌
        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣‌⁣⁢‌‍

        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍‌⁢‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍‌⁠‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁠‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁢‍
        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣⁠⁤‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁠‍
        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‍⁢‍

        ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‍⁢‌

        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‍⁤‍
      1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍‌‍
        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁢‌⁢⁢⁠‍
      2. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‍‌⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‍‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‌⁣
          ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁣⁢‍
        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣‌‍‌⁢⁠‍

        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍⁢⁤⁠⁣

        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍⁢‍⁠⁠⁢‍

        ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁢⁤‌⁢‌‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁢⁠‍
          ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁤‍
          ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁠⁣
          ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁢‌‍
          ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‍⁢⁠‍
          ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁢‌⁣⁠⁢‍

          ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍⁠‍⁠⁠‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁢‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁣‍
          ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁤‍
        1. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍‌⁣‍⁢‍
        2. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁣‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁠⁣‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁣⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢‌‍

          ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍⁢‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁢‌⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‍⁠‍⁠⁢‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁠⁣
        3. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁢‌‍⁢⁠‌‍
          Welcome to the official website of Shenzhen Guanhua Weiye Technology Co., Ltd.
          Products information
          You are here:Home >> News >> Products information...
          Zhongwei/Csmemicon model SC8F5773-MTP low-power AD type MCU chip

          Zhongwei/Csmemicon model SC8F5773-MTP low-power AD type MCU chip

          The SC8F5773 MCU model is an MTP chip with rich functions, packaged as TSSOP20. Due to its rich built-in functions, the SC8F5773 MCU model is particularly suitable for applications in products that require precise power management and control, such as various types of battery power systems Has th...

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          CMS8S6990NA Microcontroller MCU, CMS8S6990NA

          CMS8S6990NA Microcontroller MCU, CMS8S6990NA

          Zhongwei CMS8S6990NA is an enhanced 1T 8051 Flash MCU, packaged as QFN20, with rich functions and high performance parameters

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          Zhongwei/Csmemicon-CMS79F112-SOP14-MCU microcontroller

          Zhongwei/Csmemicon-CMS79F112-SOP14-MCU microcontroller

          Zhongwei CMS79F112 is a microcontroller with an autonomous 8-bit RISC core. Encapsulated as SOP14, it integrates Flash, SRAM, and internal EEPROM, as well as UART, PWM, ADC, LCD/LED driver, touch and other functions. These features make their application in household appliances ...

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          Zhongwei/Csmemicon-CMS32F033QN32-QFN32 microcontroller

          Zhongwei/Csmemicon-CMS32F033QN32-QFN32 microcontroller

          The CMS32F033 series MCU is an enhanced MCU launched by Zhongwei Semiconductor based on ARM-Cortex M0. Its high performance and versatility are widely used in many fields such as wireless charging, security, energy storage cabinets, industrial communication control, and smart transportation....

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          WINSOK (Micro-Tech) MOS Transistor Application in Screwdriver Brushless Motors - WSF2048

          WINSOK (Micro-Tech) MOS Transistor Application in Screwdriver Brushless Motors - WSF2048...

          Dear motor engineers, today I‘m introducing the MOS transistor WSF2048, which is an N-channel TO-252 packaged MOS transistor with a voltage tolerance of 20V and a current capacity of 40A, featuring an internal resistance of 6.2mΩ. It is primarily used for driving and controlling motors. The specific...

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          The Application of MOS Tubes in Automotive Emergency Starting Power Supplies (Episode 1): SOP-8 Encapsulated MOS Tubes - WSP6946 with a Withstand Voltage of 9.6 milliohms at 60V6.5A

          The Application of MOS Tubes in Automotive Emergency Starting Power Supplies (Episode 1): SOP-8 Encapsulated MOS Tubes - WSP6946 with a W...

          The Application of MOS Tubes in Automotive Emergency Start Power Supplies (Episode 1): The SOP-8 packaged MOS tube WSP6946 has a withstand voltage of 9.6 milliohms at 60V6.5A, corresponding to the AOS Wandai model AO4828/AOSD62666E, Ansemy model FDS5351, and Weishi model Si4946C...

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          WINSOK Micro Master MOS Tube TOLL Package New Product WSM350N04-40V350A, Internal Resistance 1.3 milliohms

          WINSOK Micro Master MOS Tube TOLL Package New Product WSM350N04-40V350A, Internal Resistance 1.3 milliohms...

          Dear electronic hardware engineers, are you still worried about a series of troubles caused by insufficient PCB space due to excessive peak voltage and large volume of MOS transistors on high-power power supplies during shutdown? WINSOK (Micro Semiconductor) has launched MOS transistor products using ...

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          WINSOK Micro Master MOS Tube TOLL Package New Product - WSM300N04-40V300A, Internal Resistance 1 milliohm

          WINSOK Micro Master MOS Tube TOLL Package New Product - WSM300N04-40V300A, Internal Resistance 1 milliohm...

          Dear electronic hardware engineers, are you still worried about a series of troubles caused by insufficient PCB space due to excessive peak voltage and large volume of MOS transistors on high-power power supplies during shutdown? WINSOK (Micro Semiconductor) has launched MOS transistor products using ...

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          WINSOK MICROSOME MOS TUBE TOLL PACKAGE NEW PRODUCT-WSM400N06G-60V400A, INTERNAL RESISTANCE 1.3NM

          WINSOK MICROSOME MOS TUBE TOLL PACKAGE NEW PRODUCT-WSM400N06G-60V400A, INTERNAL RESISTANCE 1...

          Dear electronic hardware engineers, are you still worried about MOS tubes on high-power electronic products due to small space, slow heat dissipation and easy to burn, explosion tubes and other related problems? WINSOK (MICROSEMICONDUCTOR) LAUNCHED THE TOLL ENCAPSULAT...

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          Application of MOS tube in aromatherapy machine and RF frequency importer

          Application of MOS tube in aromatherapy machine and RF frequency importer

          The aromatherapy machine is mainly divided into 1.7M, 2.4M and 3M. This time we bring the 24V 2.4M solution of our partner. Judging from this scheme, the first choice to see is the atomizer, which is an atomizer from Kori ultrasonic electronics, followed by our WSF15N10G single N tube VDS:100V ID: ...

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          Application of MOS in Outdoor Power Supply

          Application of MOS in Outdoor Power Supply

          Outdoor energy storage power supply has the characteristics of stable and reliable overall performance, simple operation, low noise and good maintenance, and is gradually becoming the mainstream outdoor power consumption solution. Product development must be supplemented by stable and good quality electronic componen...

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          Application of MOS Tube in Cosmetic Instrument

          Application of MOS Tube in Cosmetic Instrument

          MOS tube plays an important role in cosmetic instruments. Now I will show you the application of MOS tube in cosmetic instruments. Including the introduction of hair removal instrument scheme, RF introduction instrument scheme and the main application models of micro-MOS tubes on beauty instruments. ...

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          Application of Mos Tube in Brushless Motor

          Application of Mos Tube in Brushless Motor

          The performance of brushless motor depends on the motor driver to a great extent. As an important part of executive components, the motor must have the characteristics of high precision, high speed and high efficiency; Therefore, to improve the performance of the drive motor, it is necessary to start with the power ...

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          Guanhua Weiye will interpret the parameters of MOS tube for you!

          Guanhua Weiye will interpret the parameters of MOS tube for you!

          As one of the most basic devices in the semiconductor field, MOS transistors are widely used in both IC design and board-level circuit applications. So how much do you know about the parameters of MOS transistors? Guanhua Weiye, as a medium and low voltage MOS specialist, will provide you with detailed e...

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          What is a MOS field effect tube?

          What is a MOS field effect tube?

          MOS field effect tube is a metal-oxide-semiconductor field effect tube, abbreviated as MOSFET (Metal-Oxide-Semiconductor Field-Effect-Transistor), which belongs to the insulated gate type....

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          The difference between N-channel MOS tube and P-channel MOS tube helps manufacturers to better choose packaging MOS tube manufacturers!

          The difference between N-channel MOS tube and P-channel MOS tube helps manufacturers to better choose packaging MOS tube manufacturers!...

          Presumably, circuit design designers have considered a question when choosing a MOS tube. Should they choose a P-channel MOS tube or an N-channel MOS tube? As a manufacturer, you must want your products to be able to compete with other businesses at a lower price, and you also need to repeatedly choose. H...

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          Only knowing the working principle of MOS tube can we apply this more efficient electronic component

          Only knowing the working principle of MOS tube can we apply this more efficient electronic component...

          Knowing the working principle of MOS tube can apply this higher-efficiency electronic component. As an indispensable electronic component of electronic equipment, MOS tube is also an electronic component that manufacturers need to understand....

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          How to understand the working principle of high-power mos tube?

          How to understand the working principle of high-power mos tube?

          The power amplifier circuit is an amplifier circuit for the purpose of outputting larger power. Therefore, it is required to output a larger voltage and current at the same time. The high-power mos tube works close to the limit state. Generally, the load is directly driven, and the load capacity is stronger....

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          HfPRd
          1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁢⁠‍
          2. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁠‍
            1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁣‍
            2. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‍⁠‍⁠‌⁠‍
            3. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁢‌⁣‌‍
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣‌‍‌‍⁠‍
              ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁢⁠‍
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁣‍⁠⁢‌
              ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍‌‍
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠⁢⁠⁣⁠⁣
                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁣‍‌‍⁢‍
              ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁠⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍⁢‌
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁠‍⁠‍‌‍
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‌⁢‌⁠‌⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁠⁢⁣‌⁢‌
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠⁣‍‌⁠‌‍
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁢‌⁠⁢⁠‍
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍‌⁠⁣‌⁠‍

              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‌⁠⁢‍

              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁤‍⁢‍‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁠⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁠⁣⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁣‍⁠⁢‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‍‌‍⁠‍⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁣⁠⁠⁣‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁤‍
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁠⁢⁣‍⁢‍
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁠⁠‍⁢⁢⁣
            4. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍‌⁣
            5. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‌⁣⁢⁣‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁢⁠‍‌⁠⁢‍

              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤‍⁢‌⁣⁢‌

              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁢‍⁠⁢‌‍

              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‌⁢‌⁣⁠‍

              1. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁠‌‍‌⁣‍
            6. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‌⁣⁠‍⁠‍

              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠⁠⁠‍⁠‌⁣
              ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁣

            7. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‍⁠‍
            8. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁠⁢‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‌⁢‍
              ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍‌⁢‌‍⁠⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‌⁢‌
            9. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁠‌‍
            10. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠⁣‍⁠‍⁠‍
                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁠‍⁢‌⁠‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁣
                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁠⁢‍‌‍⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁠‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁣‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍‌⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁢⁤‍⁢‌
                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁢⁠‌⁢⁢⁠‍⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁢‌⁢‌⁠‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁢‌
                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣‌⁣⁢‌‍

                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍‌⁢‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍‌⁠‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢⁠‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁢‍
                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣⁠⁤‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁠‍
                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢‍⁢‍

                ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‍⁢‌

                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‍⁤‍
              1. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍‌‍
                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣⁢‌⁢⁢⁠‍
              2. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‍‌⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‍‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠‌⁣
                  ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁣⁢‍
                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁣‌‍‌⁢⁠‍

                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍⁢⁤⁠⁣

                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍⁢‍⁠⁠⁢‍

                ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁢⁤‌⁢‌‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁢⁠‍
                  ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁤‍
                  ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁠⁣
                  ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁢‌‍
                  ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠⁤⁠⁣‍⁢⁠‍
                  ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌‍⁢‌⁣⁠⁢‍

                  ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍⁠‍⁠⁠‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁢‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁣‍
                  ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁤‍
                1. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁠‍‌⁣‍⁢‍
                2. ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁣‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌‍⁠⁣‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁣⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁢⁢‌‍

                  ‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤‍⁢‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁢‌⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢‍⁠‍⁠⁢‌‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍⁤⁠⁠‍‍⁤⁤⁤⁤⁤⁤⁤⁤‌‍‌⁠⁠⁣
                3. ⁠⁤⁤⁤⁤⁤⁤⁤⁤‌⁠‌⁢⁢‌‍⁢⁠‌‍