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In addition, according to relevant market research institutions, due to 5G, Internet of Things (IoT) and autonomous driving, the MEMS oscillator market will reach 10 billion USD by 2024. SiTime has begun to focus its strategic objectives on expanding the markets of automobiles, Internet of Things and 5G/ communication. Compared with the traditional Shi Ying crystal oscillator, the new MEMS oscillator is entering the major application markets with the following six advantages.
1、MEMS oscillator simplifies the system design.
On the surface, the design of oscillator using Shi Ying crystal seems straightforward, especially considering the maturity of this technology. However, countless design parameters need to be considered when matching the crystal with the oscillator circuit. These parameters include crystal motion impedance, resonant mode, driving level and negative resistance of the oscillator, which are indicators to measure the gain of the oscillator.In addition, the parallel resonant mode crystal must consider the load capacitance, which should consider the parasitic capacitance of PCB and the on-chip integrated capacitance that may be included in the oscillator circuit. All these parameters must be carefully considered to ensure the reliable start-up and operation of the circuit. Because the oscillator circuit requires the close matching between the resonator and the oscillator circuit, the crystal supplier cannot guarantee the start-up of the crystal.
On the contrary, MEMS oscillator is a complete solution. The oscillator manufacturer matches the quartz resonator with the oscillator circuit, thus reducing the burden of circuit board designers. As the matching error is eliminated, SiTime guarantees the start-up of the oscillator. In short, MEMS oscillator is a plug-and-play solution, which greatly simplifies system design.
2、And provide high quality and high reliability.
Compared with the special manufacturing process of Shi Ying crystal, MEMS oscillator manufacturers adopt the standard semiconductor packaging process, which includes the production of silicon wafer-level resonator and oscillator integrated circuits, and the mold combination with the plastic packaging of standard lead frames.SiTime's MEMS First process uses standard silicon manufacturing technology to seal MEMS in a very high temperature, clean and vacuum environment. This creates a very clean and moisture-free environment for MEMS, and eliminates the possibility of Activity Dip caused by pollution or moisture.All SiTime products are designed and put into production by powerful 6-Sigma process. Products shall be fully characterized and identified according to appropriate JEDEC and AEC standards. In order to ensure the highest quality, SiTime performs batch acceptance test (LAT) on the temperature range on the samples of each production batch. The ultra-high quality of SiTime has been verified in thousands of devices. Its actual field scrap rate is lower than 2 DPPM, ranking first in the semiconductor industry. After more than six years of shipment, SiTime has no faults in MEMS field.
3、MESM oscillator has low EMI sensitivity.
Electromagnetic energy, which is common in most systems, can connect the crystal resonator and the integrated circuit containing the oscillator circuit through the exposed PCB traces. This noise can be coupled into the oscillator circuit and transmitted to the output terminal, thus increasing the jitter and noise of the system. However, the integrated oscillator has no exposed PCB connection between the resonator and the oscillator IC, and the bonding wire or ball connecting the MEMS resonator and the IC is very short. This makes MEMS oscillator less sensitive to electromagnetic interference. As shown in the following table and figure, SiTime silicon crystal oscillator is 11.3dBm lower than crystal resonator (134 times in linear scale).
4、MEMS oscillator occupies less board space.
MEMS oscillator is a fully integrated solution, which does not require external components, such as power decoupling cover. SiTime's 1.5mm x 0.8mm (1508) footprint is smaller than the smallest Shi Ying crystal footprint of 1.6mm x 1.2mm. When the load capacitance required by 32kHz Shi Ying crystal is taken into account, the total plate area or the volume of Xtal solution is more than three times that of the original.
5、Lower vibration sensitivity and stronger impact resistance.
Compared with the similar Shi Ying crystal oscillator, time MEMS oscillator has lower vibration sensitivity and stronger impact resistance. Some systems that need very stable frequencies, such as wireless base stations and small cells, may have system failures and service interruptions due to vibration. SiTime MEMS oscillator has anti-vibration ability, because the mass of MEMS resonator is about 1,000 to 3,000 times lower than that of quartz resonator. This means that applying a certain acceleration, such as shock or vibration, to MEMS structure will result in a force much lower than its Shi Ying, and thus a lower frequency shift.
Fig. 5 shows that the vibration sensitivity of SiTime MEMS oscillator is 10 times lower than that of Shi Ying oscillator. Please note that this figure is based on the measured Shi Ying oscillator, not the passive crystal resonator, but the similar result is the expected quartz crystal resonator.
6、Any frequency of MEMS oscillator is easily available.
二、Scene application of MEMS crystal oscillator
2.1, automotive MEMS timing solution
Aiming at the application of automobile timing system, SiTime Company, by virtue of breakthrough technology and rapid innovation, has covered automobile camera, ADAS computer, Ethernet, radar and laser radar, high-precision global navigation satellite system, infotainment system, engine and power system, wireless charger, etc. Its automotive MEMS oscillator products are 30 times more robust and AEC-Q100 compatible. It is designed for automotive applications that conform to ASIL (Automotive Safety Integrity Level), such as advanced drive assist system (ADAS), vehicle Ethernet, powertrain and electronic control unit (ECU).Secondly, according to the data of SiTime, each car has 20-70 oscillator opportunities, and the cost of each MEMS car is 3-10 USD. The advantages of MEMS oscillators in these extreme temperature and severe vibration environments are as follows: 1. The best stability ± 20ppm, extended temperature from -55oC to 125o, shock resistance, vibration and noise 50 times better than Shi Ying oscillator; 2. Best manufacturability. SOT23 has the best solder joint reliability and easy visual inspection; EMI control, no PCB change, configurable rise/fall time control.
In short, SiTime has powerful oscillators such as SiT2024, SIT8925, SiT8924, SIT8925, etc. They are the best solutions for automotive applications, because they conform to ASIL (Automotive Safety Integrity) vehicle Ethernet, powertrain and electronic control unit (ECU) of ADAS.
2.2. Application of MEMS silicon crystal oscillator 5G
三、Replacement case of MEMS crystal oscillator
The scene of silicon crystal oscillator replacing Shi Ying crystal oscillator is rapidly improving, especially in the tide of shortage, and the replacement will be more urgent. I love the application cases of communication equipment, industrial control, power supply and FPGA supporting clocks recommended by our solution network in conjunction with Sitime, the original silicon crystal oscillator factory, to help solution providers and terminal equipment manufacturers make selection and substitution, and provide free research and development samples. The frequency point of silicon crystal oscillator has four advantages: no vibration, no deviation, no temperature drift and no fear of falling, which can effectively improve the stability and reliability of products, and is especially suitable for development projects with large temperature difference, large vibration and many frequency points.
Case 1: SIT8008 Low Power Programmable Oscillator
Compatibility: without PCB modification, it can directly replace Shi Ying crystal oscillator;
Frequency accuracy: any frequency point from 1 MHz to 1-110MHZ, with 6 decimal places;Voltage range: 1.8V--3.3V full voltage range;
Package specifications: 7050, 5032, 3225, 2520, 2016 full package range support;
Sample delivery: 24-hour sample supply at any frequency point.
Application scenarios: Ethernet devices, servers, SSD, optical communication, audio and video, industrial control, power supply and other industrial applications.Commitment: immediate delivery, environmental protection, and quality assurance throughout the process.
Case 2: SIT9121 High Performance Differential Crystal Oscillator
Frequency accuracy: any frequency point of 1-220MHZ, with 6 decimal places;Voltage range: 2.5V-3.3V voltage range;Specifications: 7050, 5032, 3225 packages;Output signal: LVDSLVPECL signal mode;Application scenario: PCI-E clock, SONET device, FPGA clock and system clock, storage device, data center device.
Comparison of aging parameters between silicon crystal oscillator and Shi Ying crystal oscillator
Case 3: SIT535X Temperature Compensated Crystal Oscillator (TCXO)
Temperature compensation range: ± 100ppbupto±
High precision and stability (no temperature drift) in the full temperature range of 220ppb;
Frequency accuracy: any frequency point of 1-220MHZ, with 6 decimal places;
Voltage range: 2.5V2.8V3.3V;
Package specification: 503210-Pin package;
Output: LVCMOS& sine wave output;
Application scenarios: small base station, IEEE1588, GPS/GNSS, synchronous Ethernet equipment, test instruments, radar and other products.
Generally speaking, with the expansion of MEMS silicon crystal oscillator technology, the traditional Shi Ying crystal oscillator will be replaced. Compared with Shi Ying crystal oscillator, MEMS silicon crystal oscillator breaks through multiple technical limitations and solves the difficulties and pain points of clock circuit scheme for electronic design engineers.
四、selection of MEMS crystal oscillator products
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