Microchip Technology MIC826WYMT-T5
- MIC826WYMT-T5
- Microchip Technology
- IC SUPERVISOR 1 CHANNEL 6TDFN
- PMIC - Supervisors
- MIC826WYMT-T5 Datasheet
- 6-UFDFN Exposed Pad
- Tape & Reel (TR)
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Lead free / RoHS Compliant - 2366
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- 1 year quality assurance 》
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What is MIC826WYMT-T5
Microchip Technology Part Number MIC826WYMT-T5(PMIC - Supervisors), developed and manufactured by Microchip Technology, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
MIC826WYMT-T5 is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
MIC826WYMT-T5 Specifications
- Part NumberMIC826WYMT-T5
- CategoryPMIC - Supervisors
- ManufacturerMicrochip Technology
- DescriptionIC SUPERVISOR 1 CHANNEL 6TDFN
- PackageTape & Reel (TR)
- Series-
- TypeSimple Reset/Power-On Reset
- Operating Temperature-40°C ~ 125°C (TJ)
- Mounting TypeSurface Mount
- Package / Case6-UFDFN Exposed Pad
- Supplier Device Package6-TDFN (1.6x1.6)
- Number of Voltages Monitored1
- OutputPush-Pull, Totem Pole
- ResetActive High/Active Low
- Reset Timeout140ms Minimum
- Voltage - Threshold1.665V
Application of MIC826WYMT-T5
MIC826WYMT-T5 Datasheet
MIC826WYMT-T5 Datasheet , Tape & Reel (TR),Simple Reset/Power-On Reset,-40°C ~ 125°C (TJ),Surface Mount,6-UFDFN Exposed Pad,6-TDFN (1.6x1.6),1,Push-Pull, Totem Pole,Active High/Active Low,140ms Minimum,1.665V
MIC826WYMT-T5 Classification
PMIC - Supervisors
FAQ about PMIC - Supervisors
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1. What is a power monitor?
A power monitor is a device used to monitor the power status. It can monitor the voltage, current, temperature and other parameters of the power supply in real time, and issue alarm information in time to help users detect power failures in time and ensure the stable operation of the equipment.
The main functions of the power monitor include:
Improving the reliability and stability of the power system: By monitoring the voltage, current, power, frequency and other parameters of the power system in real time, timely discovering and alarming the power system's faults, abnormalities, overloads, short circuits, etc., to prevent power system failures from causing equipment downtime or data loss.
Optimizing the operating efficiency of the power system: Monitoring data can help optimize the operation of the power system, improve energy utilization, and reduce energy consumption and costs.
Provide real-time monitoring data and reports: The power parameters are collected by sensors, the monitor processes the data and issues an alarm, and the data transmission device transmits the monitoring data to the host computer or cloud server. Managers can perform real-time monitoring and data analysis, provide data reports and decision support. -
2. Why do we need PMIC ?
PMIC (power management IC) plays a vital role in modern electronic devices. It can effectively manage and optimize the use of power to ensure the stable operation of the equipment and extend the battery life.
The core functions of PMIC include:
Power status monitoring: real-time monitoring of parameters such as battery power, voltage and current, judging the power status according to the set threshold, and issuing warning signals when necessary.
Energy optimization: Automatically adjust the power supply mode according to the equipment usage and requirements to meet the needs of the equipment and avoid energy waste.
Protection function: Provide overload, overheating, short circuit and other protection functions to ensure the safe operation of the equipment.
Energy saving function: Automatically reduce the power supply power or enter the energy saving mode when the equipment is in standby mode to extend the battery life.
The importance of PMIC is reflected in many aspects:
Improve equipment performance and responsiveness: By optimizing power transmission, ensure that components receive the right power at the right time, thereby improving equipment performance and responsiveness.
Extend battery life: Reduce power waste, extend battery life, and reduce environmental impact.
Miniaturize equipment: Play a role in high power density and integration to achieve miniaturization of electronic products.
Ensure equipment safety: Through a variety of protection functions, ensure that the equipment can operate safely under various working conditions.
In summary, PMIC is indispensable in modern electronic devices. It not only improves the performance and safety of the equipment, but also extends battery life and reduces environmental impact. It is a key technology for realizing efficient, safe and miniaturized electronic devices. -
3. How to test PMIC(Power Management Integrated Circuit)?
The core steps of testing PMIC include observing external features, conducting comprehensive professional testing, and measuring PSRR.
First, observing external features is the first step in testing PMIC. Rationally observe the quality standards of power management chips, including their appearance, logos, etc., to ensure that the chip meets basic quality requirements.
Second, conduct comprehensive professional testing. Select representative specification models and conduct comprehensive tests on the power management chip, including electrical characteristics test, functional test and environmental adaptability test. The electrical characteristics test covers the input voltage range test to ensure that the chip works normally under different input voltages.
Finally, measure the PSRR (power supply rejection ratio). PSRR is an important parameter of PMIC, indicating how stable the input is when the power supply voltage changes. By measuring PSRR, the resistance of PMIC to power supply voltage changes can be evaluated.
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