XC8101AA01MR-G Allicdata Electronics
Allicdata Part #:

XC8101AA01MR-G-ND

Manufacturer Part#:

XC8101AA01MR-G

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Torex Semiconductor Ltd
Short Description: IC HIGH SIDE LOAD SWITCH SOT25
More Detail: N/A
DataSheet: XC8101AA01MR-G datasheetXC8101AA01MR-G Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Voltage - Supply (Vcc/Vdd): Not Required
Base Part Number: XC8101
Supplier Device Package: SOT-25
Package / Case: SC-74A, SOT-753
Operating Temperature: -40°C ~ 85°C (TA)
Fault Protection: Current Limiting (Fixed)
Features: Load Discharge
Input Type: Non-Inverting
Rds On (Typ): 650 mOhm
Current - Output (Max): 200mA
Series: --
Voltage - Load: 1.8 V ~ 6 V
Interface: On/Off
Output Type: P-Channel
Output Configuration: High Side
Ratio - Input:Output: 1:1
Number of Outputs: 1
Switch Type: General Purpose
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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XC8101AA01MR-G, is a power management integrated circuit, which falls under the larger category of PMICs. PMICs, or Power Management Integrated Circuits, are electronic components responsible for managing power distribution and monitoring the electric current in a system in order to avoid pump overvoltage, short-circuiting, and thermal damage. Within PMICs, there are several categories of circuits, one of which is Power Distribution Switches, Load Drivers. The XC8101AA01MR-G falls into this category – it is an analog switch commonly used to switch between different rail voltages when appropriate, distributing power where needed while blocking it where not.

In order to understand the XC8101AA01MR-G’s application field and working principle, it is important to first understand the function of the power distribution switch. It is typically used when a single supply voltage is needed but multiple supplies are present. In this case, the power distribution switch will switch in between the supplies, making sure that only the necessary voltage is activated at any given time. As well, it also prevents overload on the power line, which can reduce the efficiency of the system.

The XC8101AA01MR-G is a power distribution switch, load driver integrated circuit, it is an analog switch that acts to switch between different rail voltages. It is a high-impedance digital switch, which has low gate-charge, low RDS(ON), low Gate-to-Source capacitance and enabling high-speed switching. This analog switch has an on-state resistance of 2ohms, off-state leakage current of 20nA (typ) at 25°C and a maximum supply voltage of 46V.

The working principle of the XC8101AA01MR-G is relatively simple. It is typically used in combination with logic enabled by a set threshold. In essence, when the said threshold is reached, the logic chip sends a signal to the XC8101AA01MR-G to activate the switch. The switch will then switch between the power supplies to provide the desired rail voltage. As well, when the threshold is not reached, the switch will block the voltage from passing through.

The main application field of the XC8101AA01MR-G is in consumer electronics, such as mobile phones, digital cameras and computers. These are all devices which require multiple voltage sources, and in order to protect against overload, the XC8101AA01MR-G is used as a power distributor to ensure the proper voltage is activated at any given time. In addition, it can also be used as a low-voltage logic translator, and in applications that require selecting between multiple supply voltages.

To summarize, the XC8101AA01MR-G is a Power Management Integrated Circuit that falls into the category of Power Distribution Switches, Load Drivers. It is an analog switch that is used to switch between different rail voltages, and the working principle of this switch is that it is activated by a logic signal when the said threshold is reached. The main application field of this analog switch is in consumer electronics, where it is used as a power distributor and logic translator, switching between multiple supplies to provide the needed voltage.

The specific data is subject to PDF, and the above content is for reference

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