Tuowei TPTP4101...

  • 2022-09-24 22:18:33

Tuowei TPTP4101 linear lithium battery charging and discharging protection chip 5V145 ℃ advantage product original spot imported hot sale

Tuowei TP TP4101 linear lithium battery charging and discharging protection chip 5V 145 ℃ advantage product original spot imported hot sale

TP4101

1000mA/500mA linear lithium battery charging and discharging protection chip

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describe

TP4100/TP4101 is a complete single-cell lithium-ion battery charge management and discharge protection chip, the first 5V power supply reverse polarity protection, with battery reverse polarity protection, compatible with 3mA-1000mA charging current. Its constant current/constant voltage linear control, thin DFN and TSOT packages and low external component count make it ideal for portable product applications.

External sense resistors and blocking diodes are not required due to the use of an internal PMOSFET architecture, coupled with a reverse charge protection circuit. Thermal feedback automatically adjusts the charge current to limit the die temperature during high power operation or high ambient temperature conditions. The chip has an adaptive function of power supply voltage and power, and can directly draw power from USB or solar energy. The full voltage is fixed at 4.2V, while the charge current can be set externally with a resistor. When the battery reaches 4.2V, the charging current drops to 1/10 of the set value, and the TP4100 will automatically terminate the charging.

The discharge management of TP4100 includes under-voltage protection, over-charge protection, output short-circuit protection, output over-current protection, chip over-temperature protection and delayed self-activation recovery after various protections. Other features include charge current monitor, under-voltage lockout , automatic recharge, and two pins for indicating charge status (TP4101 has one charge indicating status pin). The TP4100 is packaged in an 8-pin DFN3*3 package with a charging current range of 3mA-1000mA. The TP4101 is packaged in a 6-pin TSOT23 with a charging current range of 3mA-600mA.

Features

The first 5V power supply reverse connection protection;

Compatible with programmable charging currents ranging from 3mA to 1000mA;

Lithium battery positive and negative polarity reverse protection;

Trickle-constant current-constant voltage three-stage charging;

·Automatic power supply in charging mode;

4.2V preset charging voltage with an accuracy of ±1%;

The highest input can reach 8V;

20% constant current precharge;

·C/10 charge termination;

·The power supply current in charging standby mode is 80uA,

BAT standby current 4uA in discharge mode;

·Battery 2.6V under-voltage protection shutdown, charging self-recovery;

·Overcharge protection, output short circuit protection, output overcurrent protection;

·After protection, self-recovery after 8 seconds;

·Two thin packages are available DFN3*3-8/TSOT23-6.

Absolute Maximum Ratings

·Input power supply voltage (VCC): -5.5V~9V ·PROG: -0.3V~V CC +0.3V

BAT: -4.2V~9V

·CHRG: -0.3V~9V

BAT short circuit duration: continuous

·BAT pin current: 1200mA

·PROG pin current: 1500uA

·Maximum junction temperature: 145℃

·Working environment temperature range: -40℃~85℃

·Storage temperature range: -65℃~125℃

·Pin temperature (soldering time 10 seconds): 260℃

application

·Micro lithium battery equipment

· Wearable, highly integrated lithium battery equipment · Lithium battery portable equipment, etc.

typical application

Precautions for TP4100/TP4101 Test Use

1. In order to ensure reliable use in various situations and prevent chip damage caused by spikes and glitches, it is recommended that 10uF ceramic capacitors and 0.1uF ceramic capacitors be used for Vcc and BAT in TP4100/TP4101 applications. All capacitors must be located close to the chip lead. The feet should not be placed too far. In the application of reverse power supply protection environment, it is required to use an application circuit with dissipation resistance and increase the input capacitance.

2. If you need to test the charging current of TP4100/TP4101, the BAT terminal of the chip should be directly connected to the positive pole of the battery, and the ammeter cannot be connected in series. The ammeter can be connected to the Vcc terminal of the chip.

Hong Kong Xinrui guarantees original imported spot

Xinrui Electronics (Hong Kong) Co., Ltd., a professional component distributor (authorized and non-authorized brands) for 18 years, one-stop terminal manufacturer supporting: (quality assurance and integrity management) is the company's commitment to provide customers with brand original semiconductors, electronic products Component terminal supporting market, focusing on ESD/TVS electrostatic protection diodes, LDO low-power voltage regulators, MOS tubes, battery charging and management power supplies, LEDs, optocouplers, resistors and capacitors, PCB solutions (wireless Bluetooth solutions, One-stop Bluetooth sports solution, speaker, wireless power bank).

Main products: ESD electrostatic diodes, TVS diodes, battery charging and management power supplies, MOS tubes, LDO low-power voltage regulators.

Company: Xinrui Electronics (Hong Kong) Co., Ltd.

Contact: Miss Yao

Mobile: 13725590222

Tel: 0755-83780666/83265111

Fax: 0755-82800889

QQ: 3373563833

Address: 26B, Block B, Huaqiang Plaza, Futian North Road, Futian District, Shenzhen

Company website: www.xrdz-hk.com

Part of the company's stock:

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For more models, please inquire:

Xinrui Electronics (Hong Kong) is a professional supplier of integrated circuits and has many years of sales experience in our bank!

With a large stock of stock, integrity-based, customer first, the quality of products for customers!

Due to the large number of company models, it is impossible to upload them one by one. If you can't find the product you want on the website, please contact the salesperson. Our company can provide electronic components distribution service.

Company: Xinrui Electronics (Hong Kong) Co., Ltd.

Contact: Miss Yao

Mobile: 13725590222

Tel: 0755-83780666/83265111

Fax: 0755-82800889

QQ: 3373563833

Address: 26B, Block B, Huaqiang Plaza, Futian North Road, Futian District, Shenzhen

Company website: www.xrdz-hk.com

Hong Kong Xinrui guarantees original imported spot

According to Taiwan media reports, the patent war between Qualcomm and Apple is intensifying, and it is bound to continue from 2018 to 2019. Jim McGregor, chief analyst of Tirias Research, said bluntly that with the The "tit for tat" continues to heat up, fearing that the fate of the entire wireless industry will be in crisis.

According to Taiwan's "China Times" report on December 27, 2018, the patent war between Apple and Qualcomm is continuing to heat up. McGregor pointed out that in fact, the focus of the dispute between the two sides is on the licensing model of intellectual property (IP), as well as with wireless Industry-related licensing rates, this is not just a war between Apple and Qualcomm, but the entire wireless industry, as a leading innovator and IP licensor, "Qualcomm is neither the first nor the last. The company that became Apple's target.

The report quoted McGregor as saying that patents represent IP, which in many cases is reserved exclusively as a competitive threshold and is not easily licensed to other companies. Therefore, if the IP is violated, the holder can seek compensation or take other actions through legal means. In some cases, IP holders are willing to make their IP available to anyone for free, usually to establish an open-source hardware or software standard, while in other cases, IP holders choose to license the IP to A specific part of the value chain or possibly all parts of the value chain.

According to the report, in the case of the semiconductor industry, IP is usually licensed to semiconductor suppliers by the IP holder, however, in the wireless industry, IP is licensed to ODMs or OEMs, mainly end-device manufacturers, including smart Mobile phones and automobiles, etc. This licensing model was pioneered by early wireless suppliers such as Ericsson, Motorola and Nokia. However, the wireless industry has changed over the years.

According to the report, McGregor said that the average smartphone may use up to millions of patents, ranging from wireless network technology used for communication to user interfaces and apps implemented on the phone, and more importantly, it allows any In the semiconductor industry, anyone can innovate on the most popular computing and communications platform in the world today, allowing any semiconductor company to enter the market without fear of retaliation from IP holders or competitors.

According to the report, in the early stage of the development of smart phones, Texas Instruments was one of the leading manufacturers in the field of mobile SoC (system-on-chip), and there were more than a dozen semiconductor companies actively entering this market. Chaowei and Deyi have gradually withdrawn from the market, while other players such as MediaTek and several mainland startups have begun to enter the market. Apple, Huawei and Samsung have also begun to design their own SoCs. At the same time, the performance of mobile SoCs has already Progressing to the point of approaching PC processors, with wireless interfaces reaching or exceeding wired interfaces, smartphones have become the primary device for more than half of the world's population to provide applications such as photography, video recording, playing games, watching videos, electronic communication, and social networking.

According to reports, Apple pays licensing fees through its IP partners, especially SEP, and according to Tilias Research estimates, Apple pays all IP holders less than 20% of the hundreds of patent royalties per iPhone. Dollar. This means that the cost of the iPhone X accounts for less than 2% of the company's multi-billion-dollar R&D investment, and these proportions will decrease over time, even as the overall patent pool increases. However, every time Apple makes IP A $1 reduction in costs can bring in more than $200 million in annual profits. Apple has also lodged complaints with global regulators seeking to change the licensing model to push semiconductor IP licensing to chip suppliers rather than OEMs, which could force all IP holders to license directly to the rest of the smartphone value chain Significant reductions in licensing costs and changes in licensing models could have a huge impact on the wireless market as a whole, rather than focusing entirely on end devices in particular segments.