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LSC2020 Rechargeable Lithium Battery Capacitor
LSC2020 Rechargeable Lithium Battery Capacitor Lithium batteries are designed to last longer, making them a good choice for high-tech and smart devices, and those electronics for which changing the battery is inconvenient. They can withstand extremely low temperatures so they can work without failing in a freezing climate.
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CR2450 HT Lithium Button Cell
High temperature resistance up to 125℃ Excellent performance in superhigh-temperature environments. High voltage, high energy density A 3V cell, about twice the voltage of a dry cell,with space-saving and lightweight. Excellent discharge stability The stable voltage characteristics are performed even when discharging for a long period of time. Superior storage characteristics Unique encapsulation technology achieves low self-discharge,annually less than 1%.
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CR 2025 HT Lithium Button Cell
High temperature resistance up to 125℃ Excellent performance in superhigh-temperature environments. High voltage, high energy density A 3V cell, about twice the voltage of a dry cell,with space-saving and lightweight. Excellent discharge stability The stable voltage characteristics are performed even when discharging for a long period of time. Superior storage characteristics Unique encapsulation technology achieves low self-discharge,annually less than 1%.
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CR1225 HT Lithium Button Cell
High temperature resistance up to 125℃ Excellent performance in superhigh-temperature environments. High voltage, high energy density A 3V cell, about twice the voltage of a dry cell,with space-saving and lightweight. Excellent discharge stability The stable voltage characteristics are performed even when discharging for a long period of time. Superior storage characteristics Unique encapsulation technology achieves low self-discharge,annually less than 1%.
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CR 1632 HT Lithium Button Cell
High temperature resistance up to 125℃ Excellent performance in superhigh-temperature environments. High voltage, high energy density A 3V cell, about twice the voltage of a dry cell,with space-saving and lightweight. Excellent discharge stability The stable voltage characteristics are performed even when discharging for a long period of time. Superior storage characteristics Unique encapsulation technology achieves low self-discharge,annually less than 1%.
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BR2430 Lithium Button Cell
High-temperature resistance Stable electrical performance under high-temperature conditions,safe in use. High voltage, high energy density A 3V cell, about twice the voltage of a dry cell,with space-saving and lightweight. Excellent discharge stability The staible voltage characteristics are performed even when discharging for a long period of time. Superior storage characteristics Unique encapsulation technology achieves low self-discharge,annually less than 2%.
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BR3032 Lithium Button Cell
High-temperature resistance Stable electrical performance under high-temperature conditions,safe in use. High voltage, high energy density A 3V cell, about twice the voltage of a dry cell,with space-saving and lightweight. Excellent discharge stability The staible voltage characteristics are performed even when discharging for a long period of time. Superior storage characteristics Unique encapsulation technology achieves low self-discharge,annually less than 2%.
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BR2325 Lithium Button Cell
Coin Cell Battery BR2325 are commonly used as CMOS batteries in laptops and in a variety of other specialty applications such as watches, keyless door entry, small electronics, PDA mem-backups, motherboard clock backups, toll passes, calculators, cameras, electronic translators, and medical devices.
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BR2354 lithium button cell
The BR2354 is a 420mAh 3V coin-type Lithium Battery with a voltage of 3V. It has terminals that are in contact with the pressure. It is well suited for application in a wide range of devices where miniaturization is becoming more popular. Because manganese dioxide, which is chemically very stable, is employed as active material in the plus terminal, it retains 90% of its capacity even after 10 years of storage if preservation requirements are met. It uses organic electrolytes with the least amount of creep, which is far superior in terms of leakage resistance when exposed to environmental changes.
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