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Panasonic Corporation and its subsidiaries (Panasonic Batteries, Panasonic Electronic Components & Panasonic Industrial Devices) are innovators in consumer electronics and technology products. Guided by a mission to contribute to the progress and development of society and the well-being of people worldwide, Panasonic is a strong proponent of responsible electronics recycling and of reducing the global carbon footprint. Panasonic Corporation was named to the 2008 Global 100's list of the Most Sustainable Corporations in the World.
Panasonic's MTM231232LBF P-channel MOSFET delivers a low drain-source on-state resistance of 40mΩ (typ.) at a VGS
of -4V. MTM231232LBF also features a low drive voltage of 2.5V, a drain
to source voltage of -20V, and a gate to source voltage of ±10V. This
MOSFET is idea for switching power with a -3A drain current or -16A
drain current if pulsed. Total power dissipation for this SMini3 package
Panasonic LNJ03004 high power LEDs are available in cool and warm white illumination colors with color temperatures ranging from 2700 K - 6500 K. Featuring a 82 CRI (color rendering index) and 24.7 lm - 54 lm luminous flux range, the LNJ03004 series is ideal for a variety of lighting applications.
Panasonic NN31000x PSiP Power Supply in Package DC/DC
Converter is a synchronous DC-DC step down regulator (1-ch), Power
Supply in Package (PSiP), which integrates a Controller IC that employs a
hysteretic control system, two Power MOSFETs, an Inductor and
Capacitors into a single 8.5 x 7.5 x 4.7mm QFN package. The easiness of
mounting PSiP onto a Printed Circuit Board (PCB), a very small footprint
and a highly reduced number of external components, offers very compact
and simplified solutions for applications requiring pointof-load
design. The number of external components have been reduced to only
input/output capacitor, slow start capacitor and feedback resistors.
Furthermore, for applications requiring an output voltage of 1.0 V / 3.3
V, the external feedback resistors can be eliminated, resulting into
even a smaller footprint. The PSiP achieves efficiencies of greater than
95 % with very good power dissipation capabilities.
Panasonic Qi Compliant Wireless Power System Controller
ICs are specifically designed to comply with the Qi version 1.1 of the
System Description Wireless Power Transfer, Volume 1 for Low Power
defined by Wireless Power Consortium. The AN32256A-PR provides
synchronous full bridge rectifier control, temperature detecting
circuit, full charge detection with adjustable current level, and
switching control of external power supply. The NN32251A-VT features
half-bridge (4-ch) or full bridge (2-ch) gate driver, single-coil,
expanded free positioning using multi-coils up to 4 coils, high accurate
voltage and current monitor for inverters, output controller by
frequency or duty, and temperature detecting circuit. The AN32258A-PR is
a receiver controller IC while the NN32251A-VT is a transmitter
controller IC which can supply power to any Qi-compliant wireless
Panasonic PAN1740 Series Bluetooth® Low Energy (BLE) Module is a single-mode Bluetooth system-on-chip module optimized for low power and small size. The PAN1740, the next generation Bluetooth Low Energy (BLE) Module from Panasonic, offers reduced form factor, significantly lower power consumption, and embedded BLE stack. This SMD component is manufactured in a very small 9.0x9.5x1.8mm footprint, one of the smallest BLE footprints available, with fully shielded case, chip antenna, and integrated crystal oscillators. The 5mA power consumption of the PAN1740 BLE module in Tx or Rx mode allows the use of coin cell batteries and decreases battery requirements up to 50% when compared to BLE devices currently on the market. The PAN1740 is qualified to the Bluetooth 4.0 standard with FCC, IC, and CE certifications pending.
Panasonic MN101L Resistive RAM (ReRAM) Embedded 8-bit MCUs are industry-leading, low-power microcomputers delivering enhanced processing performance, 50% lower power consumption, and over 5 times faster rewriting than flash memory or EEPROM. Featuring a small ROM code size of an 8-bit microcomputer, MN101L is based on a 16-bit microcomputer core with alterable (3 or 4) stage pipeline. The device provides improved processing performance for memory access instruction by reviewing the pipeline and 16-bit data by using a 16-bit bus. With the low-power consumption ReRAM, shorter processing time and voltage control by high-performance CPU, and leakage current reduction of new fabrication process, MN101L reduces power consumption by 50% compared to the existing Flash microcomputer. Unlike flash memory or EEPROM, MN101L does not require a data erase to provide over 5 times faster rewriting rate. This design makes the Panasonic's MN101L ReRAM Embedded 8-bit MCUs ideally suited for portable healthcare, security, and sensor equipment.
Panasonic PLCC packaged, surface mount LEDs can be driven at higher current levels than traditional LEDs. Using a long lifetime ALGalnP chip, these LEDs exhibit low luminous degradation and can withstand a wide range of temperatures, from -40 to +105°C, making them ideal for usage for indoor and outdoor signage and automotive applications.
Panasonic LN Series Lamp Type LEDs are available in square or round lens styles in five color variations: Red, Amber/Yellow, Green, Orange, and Blue. With a variety of lens options, and a low power consumption, these high output LEDs are perfect for usage in a wide range of applications, from home appliances to digital signage.
Panasonic Anti-Sulfur Thick Film Chip Resistors in Standard, Wide Terminal, and Array types provide excellent resistance to sulfuration by using an Ag-Pd based inner electrode. These Panasonic Anti-Sulfur Resistors ensure high reliability by utilizing metal glaze thick film resistive elements and three layers of electrodes. ERJ-U, ERJ-C1, and EXB-U devices are suitable for use in automotive, industrial, factory automation, and power supply applications that may be subject to a high-sulfur environment. These Panasonic resistors are ideal for use in a variety of applications, including ECU, Navigation Systems, DC-DC Power Supplies, Notebook PCs/Desktop PCs/Servers, and Memory Modules (SSD, DDR).
Panasonic EZT Type 1 - Metalized Polypropylene DC Link Film Capacitor
Module is enclosed in a PPS casing and UL94 HB Epoxy Resin Sealing to ensure that performance does not degrade under high heat and humidity making it ideal for automotive applications. Panasonic EZT Type 1 - Metalized Polypropylene DC Link Film Capacitor
Module has low ESR, low ESL, and is high ripple current capable, high
safety, self-healing and self-protecting. Due to an inbuilt fuse
function there is no catastrophic failure when the module reaches its
natural end of life. The Panasonic EZT Type 1 - Metalized Polypropylene
DC Link Film Capacitor Module features an open circuit failure mode by
fuse function patterned electrode and can replace an electrolytic
Panasonic SK8/SC8 Series N-Channel Power MOSFET offers Low Drain Source On-Resistance
values that are among the lowest in the industry by utilizing
Panasonic's ultra-fine processing technology. The SK8/SC8 Series N-Channel Power MOSFETs from Panasonic are also integrated with a built-in heat sink and power package. Other features include high speed switching, high heat dissipation, and small size package design. These components contribute to higher efficiency and PCB downsizing and are suitable for DC-DC conversion circuits.
Panasonic Industrial Flash Memory Cards are built for ruggedized
solutions, and operate in severe
environmental conditions, offering power failure robustness,
program/erase endurance, bit error auto refreshing, and industrial
temperature range. The SD/SDHC memory cards implement built-in
industrial NAND flash memory. The Single Level Cell (SLC) and Multi
Level Cell (MLC) SD cards have an exclusive Panasonic designed
controller with programmed intelligence to improve reliability and
performance, with features such as wear leveling, and bit error auto
refresh. They are designed for applications such as security
automation, broadcast equipment, and drive recorders. They are formatted
to comply with SD card specifications and are available in 2GB, 4GB,
8GB, or 16GB sizes.
Panasonic ELG-TEA Series Multi-layer Power Inductors exhibit superior DC current bias characteristics driven by Panasonic's proprietary laminating process technology in a small 0805 case size package. The new ELG-TEA series multi-layer power inductors from Panasonic also achieve an expanded temperature range from -40ºC to 125ºC, making them highly beneficial in applications where strenuous temperature exposure exists. The small size of the ELG-TEA inductor also minimizes space on the PCB. Six ELG-TEA models are available with inductance range from 0.47 to 4.7µH and 0.8 to 1.2 A rated current.
Panasonic NFC Tag LSI features ultra-low power and high security, to be used in all applications that utilize near field communication technology. With 4kB of integrated non-volatile FeRAM, the NFC Tag LSI provides fast, robust, and secure data storage. It is compliant with NFC forum standards and supports ISO/IEC14443 TypeB and FeliCa RF Interfaces.
Panasonic ECWH(A) Series Metallized Polypropylene Film Capacitors are designed for high frequency and current applications. The ECWH(A) Series Metallized Polypropylene Film Caps from Panasonic are small in size and offer excellent frequency characteristics, low loss, and low hum sound noise. ECWH(A) series caps have capacitance range from 0.010µF to 0.047µF, 800VDC rated voltage, and operating temperature range from -40ºC to +105ºC.
Panasonic ECWH(C) Metallized Polypropylene Film Capacitors offer very high dV/dt values in the range of up to 2000 volts per microsecond, which allows them to withstand very high levels of stress. The ECWH(C) Metallized Polypropylene Film Capacitor series from Panasonic offers excellent electrical characteristics for general resonance circuit applications and has expanded its voltage offering from 630VDC to 1250VDC and 3000VDC. This series is highly recommended for general resonance circuits and microwave oven/infrared heat (IH) cooker resonance circuits.
Panasonic's NN30 Series Synchronous DC/DC Step-Down Regulators integrates power MOSFETs that employ a hysteretic control system. This provides a high-speed response that minimizes output voltage fluctuations in the presence of load current spikes. Simplification of the applied circuit is facilitated by the use of small capacitance capacitors as well as lack of need for external system phase compensation. This leads to the downsizing of the overall design and the requirement of a smaller number of separately sourced parts. The NN30 Series has a user adjustable output voltage and a maximum current of 10A.
PanasonicAN260xxA SiGeC Bi-CMOS Low Noise Amplifiers (LNAs) use a 0.18µ SiGeC Bi-CMOS process to achieve high frequency performance with low noise and low power consumption. Panasonic AN260xxA LNAs Utilize an ultra-small package, facilitating design miniaturization in applications for smart phones, mobile DTV, GPS, WiFi, WIMAX, and WLAN, among others. AN260xxA LNAs have a wide frequency range from 40MHz to 5GHz to satisfy the needs of various applications.
Panasonic Electronic Components PAN1721 Series Bluetooth® Low Energy Modules are complete power optimized Bluetooth v4.0 Low Energy (BLE) solutions including an embedded processor, antenna, and BLE stack. PAN1721 is a cost-effective, ultra low-power, system-on-chip (SoC) for Bluetooth Low Energy and ultra low power consumption applications. The module includes an eight channel, 12-bit analog-to-digital converter, 19 GPIOs plus battery, and temperature sensors. A single device for both BLE master or slave nodes. The PAN1721 combines an excellent RF transceiver with a high performance low power 8051 microcontroller, in-system programmable flash memory, 8KB RAM, and many other powerful supporting features and peripherals. The PAN1721 is an ideal choice for applications where battery life is a critical application requirement, using only 500nA in sleep mode. Short transition times between operating modes and power efficient hardware further reduce current consumption.
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