| Allicdata Part #: | MC35FS4500CAER2-ND |
| Manufacturer Part#: |
MC35FS4500CAER2 |
| Price: | $ 3.19 |
| Product Category: | Integrated Circuits (ICs) |
| Manufacturer: | NXP USA Inc |
| Short Description: | FS4500 |
| More Detail: | PMIC |
| DataSheet: | MC35FS4500CAER2 Datasheet/PDF |
| Quantity: | 1000 |
| 2000 +: | $ 2.89578 |
| Series: | * |
| Part Status: | Active |
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PMIC or Power Management ICs are integral components of many electrical and electronic circuits, particularly in the fields of communications, computers and related products, automotive, medical and consumer electronics, as well as industrial and military applications. One of these is the MC35FS4500CAER2, which belongs to the specialized segment of Power Management ICs.
The MC35FS4500CAER2 is a 4-channel Field Effect Transistor Array with 8 lead PDIP (Plastic Dual In-line Package). It is a specialized kind of PMIC, with the specific role of limiting the amount of power output from each power source and evenly distributing the current from each source. It provides enhanced protection of power source devices from overloading, and ensures a safe and constant supply to power consuming circuits.
This device has many application fields, as its effective use can be found in portable and stand-alone applications including battery operation. It is ideal for applications that require low-power operation, including battery powered operation, or where a conventional power supply is not available. It can be used in systems with multiple voltage sources that require efficient divided power delivery and protection. It is suitable for handheld consumer electronics, medical, industrial, test and measurement, and telecommunications industries.
The working principle of the MC35FS4500CAER2 is based on P-Channel and N-Channel Field Effect Transistors (FETs). It consists of four transistors, two of the P-Channel type and two of the N-Channel type. These transistors are connected in parallel configuration with their gates tied to a common source, which is the control signal. When the control signal is low, the transistor is in the Off-state, meaning the power output is completely limited. When the control signal is high, the transistor is in the On-state, meaning power output is available. This allows for efficient control over power output.
All the transistors are arranged in a way that allows them to act as switches. They can be used to control the amount of current flowing from each power source. This feature is especially useful in battery systems, where the current is limited to prevent overdischarge and to ensure performance. Further, since the transistors are arranged in a parallel configuration, they can be used to efficiently distribute the current among the different power sources.
Besides its power management and distribution roles, the MC35FS4500CAER2 also provides good temperature and voltage protection for each power source, ensuring the highest possible levels of safety and reliability. This ensures that the system will not be damaged when the power load increases or decreases suddenly.
In addition, the MC35FS4500CAER2 can be used as a high-precision, low-power monitoring device. Its four channels can be used to accurately monitor the voltage and current levels of each power source. This feature is particularly useful in applications that require very precise and safe power delivery.
Overall, the MC35FS4500CAER2 is an effective and highly specialized Power Management IC. It has many application fields and can be used to efficiently distribute and monitor power in multiple voltage source systems. Its temperature and voltage protection features ensure system safety and performance. It is an ideal choice for applications that require low-power operation or precise monitoring.
The specific data is subject to PDF, and the above content is for reference
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MC35FS4500CAER2 Datasheet/PDF