Why is there a global chip shortage?

With the development of 5g technology and artificial intelligence, as well as the trend of automobile intelligence, the demand for 5g radio frequency, PC, fingerprint recognition, car control, sensors and other chips is also growing rapidly. However, with the resumption of work, the rebound in car sales, and the increase in various demands, the pressure on the wafer factory has been transferred to the factory, but the supply cannot be increased immediately, which will inevitably lead to a shortage of cores.


From the second half of 2020, the global semiconductor industry of B32-1610 began to be out of stock, and chips of individual models and uses have gradually spread to the complete shortage of various products. According to media reports, in December 2020, SAIC Volkswagen, FAW-Volkswagen and other automakers will suspend production due to insufficient supply of chips. Although the responses of both companies were not affected, according to follow-up interviews by the media, the shortage of automotive chips has become a common phenomenon in the industry. In the first quarter of this year, Xiaomi, Samsung and other mobile phone brands all reported a severe shortage of chips, and production of the mid-to-low-end model is expected to be affected, and even some flagship chips will be out of stock.


So, why is there a chip shortage in the world?


First, the root cause is an imbalance between supply and demand. Studying at home and working from home reduced demand for cars and increased demand for computers and cell phones, replacing the production of chips for cars. However, with the resumption of work, the rebound in car sales, and the increase in various demands, the pressure on the wafer factory has been transferred to the factory, but the supply cannot be increased immediately, which will inevitably lead to a shortage of cores.


Multiple factors are predisposing factors. The 8-inch silicon wafer production line has low cost and mature technology, but its profitability is not as good as that of the 12-inch silicon wafer production line, and the number of 8-inch silicon wafer factories is gradually decreasing. In addition, many related manufacturers stopped production, the earthquake in Japan caused a shortage of material supply, and the cold wave in the United States caused the closure of chip factories. Various factors combined to cause core shortages.


The third is the lack of production capacity. With the development of 5g technology and artificial intelligence, as well as the trend of automobile intelligence, the demand for 5g radio frequency, PC, fingerprint recognition, car control, sensors and other chips is also growing rapidly. However, chip OEMs are special. It is difficult to solve the problem of insufficient production capacity in the short term by building new production lines and expanding production capacity.


The global shortage of chips will be a long-term problem, but may ease in the second half of the year. Chips are an industry that requires long-term investment in human, material, and financial resources. Therefore, in order to completely solve this problem, we must make up our minds, continue to increase investment, be down-to-earth, and earnestly push forward.



Related Articles

HMC349AMS8G RF Amplifier Datasheet, Specification, Pinout, FAQ

Release time:2023-12-28       Page View:550
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...

STM32F103C8T6,STM32F407VET6,STM32F103RCT6,STM32F405RGT6 Difference

Release time:2023-12-22       Page View:434
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, ...

LSM6DS3TR IMU Datasheet, Application,Pinout

Release time:2023-12-21       Page View:203
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 ...

What is NLSV4T244MUTAG Translators: Datasheet, Specification

Release time:2023-12-20       Page View:442
CatalogNLSV4T244MUTAGOverviewNLSV4T244MUTAGPinoutNLSV4T244MUTAGCAD ModelSymbolFootprint3D-ModelNLSV4T244MUTAG FeaturesNLSV4T244MUTAG ApplicationsNLSV4T244MUTAG AlternativesNLSV4T244MUTAG Typical Application CircuitNLSV4T244MUTAG Functional Block DiagramNLSV...

STM32F207ZGT6 Microcontroller Datasheet,Pinout,Specification

Release time:2023-12-19       Page View:564
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.

ATMEGA2560-16AU vs ATMEGA640-16AU Microcontroller: Difference

Release time:2023-12-18       Page View:288
ATMEGA2560-16AUvs ATMEGA640-16AUPinoutATMEGA2560-16AUvs ATMEGA640-16AUCAD-ModelATMEGA2560-16AUvs ATMEGA640-16AUPackageATMEGA2560-16AUvs ATMEGA640-16AUFunctional Block DiagramATMEGA2560-16AUvs ATMEGA640-16AUFeaturesATMEGA2560-16AUvs ATMEGA640-16AUApplica...

MT41K512M16HA-125 IT:A Datasheet, CAD-Model, Specification

Release time:2023-12-16       Page View:398
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...

MMPF0100F0AEP PMIC Datasheet, Features, Pinout

Release time:2023-12-13       Page View:207
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...

STM32F103C8T6 Microcontroller Datasheet, Pinout, Schematic

Release time:2023-12-12       Page View:500
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.

EP3C55F484I7N Vs EP3C40F484C8N FPGA Comparison: Datasheet, Features

Release time:2023-12-11       Page View:337
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...

ATMEGA128A-AU vs ATMEGA1284P-MU: Differences and Similarity

Release time:2023-12-08       Page View:220
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-AU 8-bit AVR Microcontroller Datasheet, Specification

Release time:2023-12-07       Page View:208
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...
RFQ
BOM