We use cookies to ensure that we can provide you with the best experience on our website. By using our website, you are consenting to the use of cookies as set out in our policy. More Info

Anglia Components

Anglia Live

Supplier sections

ABL Aluminium Components
Abracon LLC
Advantech
American Technical Ceramics
Analog Devices
Antenova
Anysolar
Arcol
Arcolectric
Avalue
Bel components
Bergquist
Binder
Bivar
Bloomice
Bolb Inc
Bourns
Boyd
Bulgin
Bussmann
C&K
Calinar
Cambion
CamdenBoss
Carclo
CEL
Ceramate
Cliff Electronic Components
Conquer
Cornell Dubilier
Cosmic
Co-Tron
Cree
Cre-Sound
CTC
CTi
Deltron
Digi International
Diptronics
EAO
Eaton Bussmann/Coiltronics
ECE
Ecliptek
Efficient Power Conversion
Efore
Ekinglux
Elettronica Rossoni
EPCOS
EPOC
ESI
Eurohm
Fischer
Fox Electronics
Haimooo
Hammond Manufacturing
Harting
Harwin
Herald
Hirose
Hirschmann
Hittite
Honeywell
Hongfa
Hope RF
Hudson
Ilsi
Inalways
Invac
Ixys
JDI Europe
JNC
Kang yang
Keystone
Khatod
Kingtek
KOA
KYOCERA AVX
Laird Technologies
LEDIL
Linear Technology
LITE-ON Optoelectronics
Littelfuse
Lumberg
Lumileds
Magnetix
Magnetone
Marl
Mascot
Mitsubishi
Mmd
M-Pro
Mueller
Murata
MurataPS
Neutrik
Nichicon
Nover
Ohmite
OKO
Omron
Panasonic
PANJIT
Phoenix Contact
Pickering
Piher
Polymer Optics
Quay RF
Renata
RF360
ROHM
Roxburgh
Samsung
Schaffner
Schurter
Sensirion
Shindengen
SIMCom
Solomon Systech
Stanley Electric
STMicroelectronics
Studiomate
Taicom
Taiwan Semiconductor
Taiway
Taoglas
TDK
Tdk Invensense
Telit Cinterion
Tianbo
Titan-Opto
Tokyo Parts
Toshiba
Varta
Vigortronix
Walsin
Warth
WIMA
Winbond
Hybrid supercapacitors from Eaton Bussmann offer small footprint and high energy density, samples available from Anglia.
The Eaton Bussmann HS series hybrid supercapacitors are small-footprint, high-power energy storage devices ideal for a host of energy and industrial applications.

Rate this page

You can now follow us on Blogger, Facebook, LinkedIn, Twitter, WordPress, Live Journal or You Tube by clicking on the logos below.

Blogger Facebook Google+ Linkedin Twitter WordPress You Tube

Anglia delivers by

FedEx
Recognised as the UK’s number one for reliability, flexibility and customer service.

Analog Devices multi output regulators reduce component count and increase power density and reliability

Analog Devices is continuing to help industrial, medical and communications equipment designers improve power system performance by reducing board space with the introduction of the ADP5041 and ADP5040 multi-output regulators. The regulators meet the increasing demand for greater power density by combining a high-efficiency, 3-MHz, 1.2-A buck regulator and two 300-mA LDOs (low dropout regulators) in a small 20-lead LFCSP package. Unlike discrete power solutions that require up to 14 components and 126 mm² of board space, these highly integrated regulators provide a more integrated circuit solution using only nine components and 50 mm² of board space, to increase performance and reliability and lower system cost.

The ADP5041 and ADP5040 are ideal power management companions to mid-range FPGAs, microprocessor and DSP systems where core, IO and memory voltages are necessary. The ADP5041 regulator’s on-chip watchdog timer provides greater reliability by monitoring code execution integrity in processor-based systems and resetting the processor if it fails to strobe within a preset timeout period. The ADP5041 also features a high accuracy (±1.5% over temperature) reset generator that can be externally programmed to monitor low voltage power supply rails. A wide range of ordering options also is available to address multiple reset and watchdog timings.

The ADP5041 has a special circuit that detects a three-state condition when applied to the watchdog refresh input at the WDI pin typically controlled by a processor/DSP output port. When the processor sets this port in three-state mode, the watchdog refresh timer is disabled, preventing a watchdog reset to the processor. This feature is important when supporting processor/DSP sleep operation where the core is disabled and watchdog timer cannot be refreshed.

The ADP5040 and ADP5041 multi-output regulators reduce thermal dissipation by using high-efficiency switching regulators with up 96 percent buck power efficiency. For low-noise analog circuit applications, the LDOs maintain a power supply rejection greater than 60 dB for frequencies as high as 10 kHz while operating with a low headroom voltage. The ADP5041 and ADP5040 also provide a three-rail system power supply (1.2-A buck regulator and two 300-mA LDOs) with adjustable output voltages, which allows output voltages to be easily set using an external resistor divider network. The 3-MHz buck regulator switching frequency allows small ceramic inductors to be used to further reduce solution size and cost. These features allow the ADP5041 and ADP5040 to be easily and quickly modified for a variety of applications with short product design schedules such as portable medical and industrial devices.

 

  • ADP5041 andADP5040 Multi-output Regulator Key Features:

 

  • One 1.2-A buck regulator
  • Output voltage range = 0.8 V to 3.8 V
  • Current mode topology for excellent transient response
  • 3-MHz operating frequency
  • Peak efficiency up to 96 percent
  • Regulator total accuracy: ±3 percent

 

  • Two 300-mA LDOs
  • Output voltage range = 0.8 V to 4.75 V
  • Low input supply voltage from 1.7 V to 5.5 V
  • Stable with 2.2-μF ceramic output capacitors
  • High PSRR = 60-dB up to 10 kHz
  • Low output noise = 60 μV rms typical output noise at 1.2 V
  • Low dropout voltage = 150-mV at 300-mA load

 

Availability

 

Product Availability Junction Temperature Range Packaging
ADP5041 Now -40°C to 125°C 20-lead, 4 mm × 4 mm LFCSP package
ADP5040 Now -40°C to 125°C 20-lead, 4 mm × 4 mm LFCSP package

 

 

  • For additional support, connect with engineers and ADI product experts on EngineerZone™, an online technical support community:

 

 

For more information, or details on the full range of Analog Devices products available from Anglia, please email info@anglia.com

Back to product news

This news article was originally published in May 2012.

Anglia Sitemap

LinkedIn You Tube
Copyright © 1995-2024 Anglia Components Plc.
Please read our Privacy & Cookie Policy in conjunction with the Terms and Conditions and Terms of Use of this Website.
S1306-1577-WB02 (10.22.198.135)
19/10/17