Abandon 30 years of grudges! Japan and the United States jointly research 2nm, want to control the global semiconductor supply chain?
According to recent news, Japan will establish a research base for a new generation of semiconductors, and jointly research 2nm semiconductor chips with the United States, which is expected to be widely used in artificial intelligence and other fields. Japanese Minister of Economy, Trade and Industry Hikaru Hagi said that the cooperation between Japan and the United States in the field of semiconductors made him feel the strangeness of fate.
More than 30 years ago, Japan once occupied the world's leading position in the semiconductor field. However, under the suppression of the United States, the market share dropped from 50% to about 10%. Now that Japan and the United States have cooperated again in the semiconductor field, it is thought-provoking.
Japan's semiconductor industry controlled by the United States
After World War II in the last century, the Japanese economy was bleak. For its own development, the United States began to support the Japanese economy and let it provide cheap products to the United States. During this period, the United States allowed Japan to directly use its basic research results, and the Japanese semiconductor industry took this initial development.
In 1970, IBM, which almost monopolized the computer market at the time, announced the use of semiconductor memory in the latest computers. The memory on the computer also began to gradually change from the original magnetic core technology to semiconductor memory.
Optimistic about the semiconductor market. In 1974, the Ministry of International Trade and Industry of Japan took the lead and organized five companies, Hitachi, NEC, Fujitsu, Mitsubishi and Toshiba, and invested 300 billion yen to tackle key problems in semiconductor technology.
With the support of the government, Japanese semiconductors are progressing smoothly. DRAM, the main research result, surpassed the United States in market share in 1982. In 1985, Intel, which dominated the DRAM market, gave up the DRAM business that continued to lose money. In the following year, Japanese semiconductors accounted for the global market. The share reached 46%, surpassing the United States and becoming the first in the world.
According to the data released by the Ministry of Economy, Trade and Industry in 2021, Japanese semiconductors accounted for 50.3% of the global market share in 1988. Among the top ten global companies in 1992, Japan occupied 6 seats, namely NEC (2nd), Toshiba (3rd), Hitachi (5th), Fujitsu (7th), Mitsubishi (8th) and Panasonic (10th).
RF Switch ICs High Isolation, Nonreflective, GaAs, SPDT Switch,100 MHz to 4 GHzIntroduction:The HMC349AMS8G is a highly versatile RF (Radio Frequency) amplifier that caters to the demanding needs of modern communication systems. Developed by Analog Devices Inc., this integrated circuit (IC) offers exceptional performance...
This post is about A Comparative Analysis of STM32F103C8T6, STM32F407VET6, STM32F103RCT6, and STM32F405RGT6 MicrocontrollersIntroduction:Microcontrollers play a crucial role in modern electronic devices, enabling them to perform a wide range of tasks efficiently. Among the numerous microcontrollers available in the market, ...
This post is about to Unleashing the Potential of Advanced Motion of Sensing forLSM6DS3TRIntroductionMotion sensing technology has become an integral part of many electronic devices, ranging from smartphones and wearables to drones and virtual reality systems. The LSM6DS3TR is a state-of-the-art inertial measurement unit (IMU) that ...
An Overview of STM32F207ZGT6: Datasheet, Pinout, and SpecificationsIntroduction:The STM32F207ZGT6 is a powerful microcontroller from STMicroelectronics, equipped with an ARM Cortex-M3 core. It offers a wide range of features and capabilities that make it suitable for a variety of embedded applications.
SDRAM - DDR3L Memory IC 8Gbit Parallel 800 MHz 13.5 ns 96-FBGA (9x14)MT41K512M16HA Description DDR3L (1.35V) SDRAM is a low voltage version of the DDR3 (1.5V) SDRAM. Refer to a DDR3 (1.5V) SDRAM data sheet specifications when running in 1.5V compatible mode.DDR3SDRAMusesadoubledataratearchite...
MMPF0100F0AEP14 channel configurable power management integrated circuitThePF0100SMARTMOS power management integrated circuit (PMIC) provides a highly programmable/ configurable architecture, with fully integrated power devices and minimal external components. With up to six buck converters, six linear regulators,RTCsupply, and coi...
The STM32F103C8T6 microcontroller is a popular choice among electronics enthusiasts and professionals due to its powerful features and versatility. In this article, we will explore the datasheet, pinout, and schematic of this microcontroller, providing you with a comprehensive understanding of its functionalities and applications.
This post is about the Comparative Analysis of EP3C55F484I7N and EP3C40F484C8NIn the high-performance FPGA (Field-Programmable Gate Array) market, Altera's (now acquired by Intel and renamed Intel PSG) EP3C series has been attracting a lot of attention for its high performance and low power consumption. Today, we will compar...
The ATMEGA128A-AUand ATMEGA1284P-MUare two microcontrollers that share a common heritage but have some distinct differences. In this article, we will explore the similarities and differences between these two devices.ATMEGA128A-AU and ATMEGA1284P-MU are both members of theAVR familyof microcontrollers, designed and ma...
ATMEGA128A-AU8-bit Microcontrollers - MCU 128K Flash 4K EEPROM 4K SRAM 53 IO PinsIntroductionThe Atmel® ATmega128A is a low-power CMOS 8-bit microcontroller based on the AVR® enhanced RISC architecture. By executing powerful instructions in a single clock cycle, the ATmega128A achieves throughputs close to...
We use cookies to offer you a better experience. Detailed information on the use of
cookies on this website is provided in our Privacy Policy. By using this site, you consent to the use of
our cookies.