TOKYO — (BUSINESS WIRE) — December 4, 2013 — Toshiba Corporation (TOKYO:6502) today announced the launch of load switch ICs embedded with reverse current blocking circuits[1] and thermal shutdown circuits[2] that offer an ON resistance of 8.5mΩ[3], the industrys lowest[4]. The ICs are suited for use as power management switches in smartphones, tablets, Ultrabooks and other mobile devices. Samples shipment starts from today with mass production scheduled for spring 2014.
Toshiba Load Switch ICs with Reverse Current Blocking and Thermal Shutdown Circuits (Photo: Business Wire)
The new products, TCK111G and TCK112G, achieve low ON resistance and low operating voltage in a 1.0mm x 1.5mm compact package by adopting Toshiba's unique CMOS process and analog circuit design techniques. As smartphones, tablets, Ultrabooks and other mobile devices require longer battery hours, lighter weight and smaller size, there is increasing demand for ultra-compact, low power consumption, low power dissipation switches.
Toshiba will increase its line-up of compact, high performance load switch IC to meet the requirements of the rapidly increasing mobile equipment market, with devices suitable for other markets also in the pipeline.
Applications
Power management switches for smartphones, tablets, Ultrabooks and other mobile devices.
Key Features
- Low ON resistance: 8.5mΩ
- Wide voltage operation: 1.1 to 5.5V
- Low standby current: 0.5uA[5]
- Reverse current blocking circuit
- Thermal shutdown circuit
- Auto discharge[6]
- Small package: WCSP6C (1.0mm x 1.5mm, t:0.5mm)
Outline of the New Products |
||||||||||
Part Number | Function | |||||||||
Inrush Current
|
Reverse Current Blocking | Thermal Shutdown | Auto Discharge |
Control Pin
|
||||||
TCK111G |
O |
O |
O |
- |
Pull-down
|
|||||
TCK112G |
O |
O |
O |
O |
||||||
Notes
[1] A circuit that prevents flow of current towards the input
pin when output pin voltage is larger than the input pin voltage.
[2]
A circuit that prevents excessive heating and damage to the device
caused by unintentional current and large load current, and also from
increase in ambient temperature.
[3] Sample typical value under the
conditions of Input voltage: 1.1V, Output current: -3.0A, room
temperature.
[4] Silicon semiconductor CMOS IC devices under 1.5mm2
as of December 5, 2013. Toshiba survey.
[5] Sample typical value
under the conditions of Input voltage: 5.5V, room temperature during
standby.
[6] A function that quickly removes electric charge
gathered in the elements connected to the output.
* Ultrabook is a registered trademark of Intel Corporation in the United States and/or other countries.
Follow this link for more on Toshiba load switch ICs.
http://www.semicon.toshiba.co.jp/eng/product/linear/index.html
Customer Inquiries:
Small Signal Device Sales and Marketing
Department
Tel: +81-3-3457-3416
Information in this document, including product prices and specifications, content of services and contact information, is current on the date of the announcement but is subject to change without prior notice.
About Toshiba
Toshiba is a world-leading diversified manufacturer, solutions provider and marketer of advanced electronic and electrical products and systems. Toshiba Group brings innovation and imagination to a wide range of businesses: digital products, including LCD TVs, notebook PCs, retail solutions and MFPs; electronic devices, including semiconductors, storage products and materials; industrial and social infrastructure systems, including power generation systems, smart community solutions, medical systems and escalators & elevators; and home appliances.
Toshiba was founded in 1875, and today operates a global network of more than 590 consolidated companies, with 206,000 employees worldwide and annual sales surpassing 5.8 trillion yen (US$61 billion). Visit Toshiba's web site at www.toshiba.co.jp/index.htm
Photos/Multimedia Gallery Available: http://www.businesswire.com/multimedia/home/20131204006630/en/
Contact:
Media Inquiries:
Toshiba Corporation
Semiconductor & Storage
Products Company
Koji Takahata, +81-3-3457-4963
Email Contact