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In the field of diabetes management, continuous glucose monitoring (CGM) equipment is bringing about a revolution, providing patients with more accurate and convenient glucose monitoring programs. These devices provide rich information on blood glucose changes for patients and medical personnel by continuously monitoring the glucose concentration in the subcutaneous interstitial fluid, helping to achieve more scientific treatment decisions. Behind this critical medical technology, the Epson FA-118T crystal resonator plays an indispensable role and has become a core element driving the performance improvement of CGM devices.
The characteristics of Epson FA-118T in continuous blood glucose monitoring applications:
1. High precision frequency stability ensures the accuracy of data collection
The Epson FA-118T crystal resonator has excellent frequency stability and can provide stable and accurate clock signals for the signal processing circuits of devices. Its frequency tolerance can be controlled within ± 10ppm, ensuring that the sensor can collect data at a highly consistent frequency under different environmental conditions, effectively avoiding measurement errors caused by clock bias. For example, when the ambient temperature fluctuates, FA-118T can still maintain a stable frequency output, allowing CGM devices to accurately capture subtle changes in blood sugar, providing reliable blood sugar data for patients and helping medical personnel develop treatment plans that are more in line with the actual situation.
2. Compact size design, suitable for miniaturization needs
With the development of wearable device technology, CGM devices are gradually evolving towards miniaturization and lightweighting to enhance the comfort and convenience of patient wearing. The Epson FA-118T crystal resonator adopts an ultra compact package size of only 1.6x1.2x0.35mm, which saves valuable internal space for the device and can be easily integrated into various compact CGM device designs. Whether it is patch mounted, arm worn CGM devices, or other more sophisticated designs, FA-118T can be perfectly adapted, helping manufacturers create thinner, more portable products that meet the needs of patients to monitor blood sugar anytime and anywhere, and enhance the market competitiveness of products.
3. High reliability, adaptable to complex usage environments
When patients use CGM devices in their daily lives, they may face various complex environmental conditions, such as temperature changes, humidity effects, and minor collisions. The Epson FA-118T crystal resonator has undergone strict quality inspection and reliability testing, and has excellent environmental adaptability. Its working temperature range is -20 ° C to+75 ° C, and it can work normally in different temperature environments that may be encountered in daily use, maintaining stable performance. At the same time, the crystal resonator also performs well in shock and vibration resistance, and can withstand a certain degree of physical collision, ensuring stable clock signals for CGM equipment in various complex environments and ensuring reliable operation of the equipment.
4. Low power consumption characteristics, extending device battery life
CGM devices typically require long-term continuous operation to achieve uninterrupted monitoring of blood glucose levels. This requires the internal components of the device to have low-power characteristics to extend battery life, reduce the frequency of charging or battery replacement, and enhance the patient experience. The FA-118T crystal resonator performs well in this regard, and its low-power design can effectively reduce the overall energy consumption of the device. In practical applications, the use of FA-118T CGM devices can significantly reduce battery power consumption and significantly extend battery life under the same battery capacity.
Today, with the continuous advancement of blood glucose monitoring technology, the Epson FA-118T crystal resonator has become an ideal choice for CGM devices due to its advantages of high precision frequency stability, compact size, low power consumption, and high reliability. It not only provides the core support for the stable operation of CGM equipment, but also helps to improve the accuracy and convenience of diabetes management, bringing better health management experience to the majority of diabetes patients.