MAX17048G+T10

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MAX17048G+T10

IC BATT MON LI-ION 1CELL 8TDFN

  • Manufacturer
  • Mfr. Part #MAX17048G+T10
  • Package WFDFN-8
  • Datasheet
  • In Stock7522

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Specifications

Package Tape & Reel (TR),Cut Tape (CT)
Series ModelGauge™
ProductStatus Active
Function Battery Monitor
BatteryChemistry Lithium Ion
NumberofCells 1
Interface I²C
OperatingTemperature -20°C ~ 70°C (TA)
MountingType Surface Mount
Package/Case 8-WFDFN Exposed Pad

Overview

Description

The MAX17048G+T10 is a fuel gauge IC designed by Maxim Integrated, now part of Analog Devices, for battery-powered devices. This ultra-low-power device utilizes the company's sophisticated ModelGauge m3 algorithm to provide accurate battery state-of-charge (SOC) readings without requiring a full charge/discharge cycle for calibration. It is optimized for single-cell lithium-ion (Li-ion) and lithium-polymer (LiPo) batteries.
Key features include:
- Low quiescent current, enhancing battery life.
- Precision measurement of current, voltage, and temperature to report accurate SOC.
- No need for battery characterization, simplifying integration.
- I2C interface for easy communication with host microcontrollers.
- Small package size, ideal for compact electronic devices.
The MAX17048G+T10 is particularly suitable for portable applications such as smartphones, wearables, and other IoT devices, where accurate battery monitoring is crucial for user experience and device performance. Its integration into a device can significantly improve battery management, providing users with a reliable estimation of remaining battery life.

Features

The MAX17048G+T10 is a compact, low-power fuel gauge designed for lithium-ion (Li+) batteries. It features the ModelGauge m3 algorithm, providing high accuracy in state-of-charge (SOC) estimation without requiring battery characterization. The device offers a high degree of precision by taking into account temperature and battery aging effects to improve performance over a wide range of conditions.
Key features include:
- No Battery Characterization Required: Simplifies integration and reduces development time.
- High Accuracy: Delivers precise SOC readings, contributing to reliable battery life predictions.
- Low Power Consumption: Designed for energy efficiency, making it suitable for portable applications.
- I²C Interface: Facilitates easy communication with microcontrollers.
- Tiny Form Factor: Available in a small 1.4mm x 1.5mm package, fitting space-constrained applications.
- Battery Protection: Offers low voltage threshold protection.
- Temperature Compensation: Includes built-in temperature sensing for enhanced accuracy.
- Wide Operating Range: Operates effectively across various environmental conditions.
Overall, the MAX17048G+T10 is well-suited for applications requiring efficient and accurate battery monitoring, such as smartphones, tablets, and other portable electronics.

Package

The MAX17048G+T10 is packaged in a 6-pin, thin, ultra-small µDFN package.

Pinout

The MAX17048G+T10 is an ultra-low power, stand-alone fuel gauge for lithium-ion (Li+) batteries. It typically comes in a small 6-pin package, which is the μDFN (Micro Lead Frame Dual Flat No Lead) package. Here are the pin functions:
1. VDD (Pin 1): Supply voltage input. Connect to the positive terminal of the battery.
2. SDA (Pin 2): Serial data line for I2C communication.
3. SCL (Pin 3): Serial clock line for I2C communication.
4. GND (Pin 4): Ground connection. Connect to the negative terminal of the battery.
5. ALRT (Pin 5): Alert output. Provides an interrupt signal to the host microcontroller when specified conditions are met.
6. N.C. (Pin 6): Not connected. Not used in the circuit.
The MAX17048G+T10 uses the ModelGauge m3 algorithm for accurate fuel gauging, providing state-of-charge (SOC) information without requiring battery characterization or additional sensors.

Manufacturer

The MAX17048G+T10 is manufactured by Maxim Integrated, which is now part of Analog Devices, Inc. (ADI). Maxim Integrated is known for designing, manufacturing, and selling a broad range of analog and mixed-signal integrated circuits. These ICs are used in various electronics applications, including power management, interface, and embedded solutions. In 2021, Analog Devices completed its acquisition of Maxim Integrated, further strengthening its position in the semiconductor industry and expanding its portfolio of high-performance analog technologies.

Application

The MAX17048G+T10 is a fuel gauge IC designed for lithium-ion (Li+) and lithium polymer (LiPo) batteries. Its primary application areas include portable electronics such as smartphones, tablets, wearable devices, and other battery-operated gadgets. The IC provides accurate battery state-of-charge information, enhancing battery life and performance in energy-sensitive devices. Its ultra-low power consumption makes it suitable for applications where battery longevity is crucial.

Equivalent

The MAX17048G+T10 is a fuel gauge IC from Maxim Integrated, used for monitoring battery state of charge. Equivalent products include:
1. Texas Instruments bq27421-G1
2. Analog Devices LTC2941
3. Microchip MCP73831 (similar application but different functionality)
4. STMicroelectronics STC3100
These products offer similar functionalities but may vary in features like interface, accuracy, and application suitability. Always compare datasheets to ensure compatibility with your specific requirements.

Shipping

Shipping MethodsWe

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Shipping Fee Reference (DHL/FedEx):

DHL: Shipping cost ranges from $25-$45 (0.5kg), with an estimated delivery time of 2-5 business days.

FedEx: Shipping cost ranges from $25-$40 (0.5kg), with an estimated delivery time of 3-7 business days.

UPS: Shipping cost ranges from $25-$45 (0.5kg), with an estimated delivery time of 3-7 business days.

TNT: Shipping cost ranges from $25-$65 (0.5kg), with an estimated delivery time of 3-7 business days.

EMS: Shipping cost ranges from $30-$50 (0.5kg), with an estimated delivery time of 7-15 business days.

Registered Air Mail: Shipping cost is $2-$4 (0.1kg), with an estimated delivery time of 5-20 business days.

Payments

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