Os motores de busca de Datasheet de Componentes eletrônicos
  Portuguese  ▼
ALLDATASHEETPT.COM

X  

TC1303B-1G0EUN Folha de dados(PDF) 26 Page - Microchip Technology

Nome de Peças TC1303B-1G0EUN
Descrição Electrónicos  500 mA Synchronous Buck Regulator, 300 mA LDO with Power-Good Output
Download  38 Pages
Scroll/Zoom Zoom In 100%  Zoom Out
Fabricante Electrônico  MICROCHIP [Microchip Technology]
Página de início  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

TC1303B-1G0EUN Folha de dados(HTML) 26 Page - Microchip Technology

Back Button TC1303B-1G0EUN Datasheet HTML 22Page - Microchip Technology TC1303B-1G0EUN Datasheet HTML 23Page - Microchip Technology TC1303B-1G0EUN Datasheet HTML 24Page - Microchip Technology TC1303B-1G0EUN Datasheet HTML 25Page - Microchip Technology TC1303B-1G0EUN Datasheet HTML 26Page - Microchip Technology TC1303B-1G0EUN Datasheet HTML 27Page - Microchip Technology TC1303B-1G0EUN Datasheet HTML 28Page - Microchip Technology TC1303B-1G0EUN Datasheet HTML 29Page - Microchip Technology TC1303B-1G0EUN Datasheet HTML 30Page - Microchip Technology Next Button
Zoom Inzoom in Zoom Outzoom out
 26 / 38 page
background image
TC1303A/TC1303B/TC1303C/TC1304
DS21949C-page 26
© 2008 Microchip Technology Inc.
5.5
Inductor Selection
For most applications, a 4.7 µH inductor is recom-
mended to minimize noise. There are many different
magnetic core materials and package options to select
from. That decision is based on size, cost and accept-
able radiated energy levels. Toroid and shielded ferrite
pot cores will have low radiated energy, but tend to be
larger and higher is cost. With a typical 2.0 MHz
switching frequency, the inductor ripple current can be
calculated based on the following formulas.
EQUATION 5-2:
Duty cycle represents the percentage of switch-on
time.
EQUATION 5-3:
The inductor ac ripple current can be calculated using
the following relationship:
EQUATION 5-4:
Solving for ∆IL = yields:
EQUATION 5-5:
When considering inductor ratings, the maximum DC
current rating of the inductor should be at least equal to
the maximum buck regulator load current (IOUT1), plus
one half of the peak-to-peak inductor ripple current (1/
2*
ΔIL). The inductor DC resistance can add to the
buck converter I2R losses. A rating of less than 200 mΩ
is recommended. Overall efficiency will be improved by
using lower DC resistance inductors.
TABLE 5-2:
TC1303A, TC1303B, TC1303C,
TC1304 RECOMMENDED
INDUCTOR VALUES
5.6
Thermal Calculations
5.6.1
BUCK REGULATOR OUTPUT
(VOUT1)
The TC1303/TC1304 is available in two different 10-pin
packages (MSOP and 3x3 DFN). By calculating the
power dissipation and applying the package thermal
resistance, (
θJA), the junction temperature is estimated.
The maximum continuous junction temperature rating
for the TC1303/TC1304 is +125°C.
To quickly estimate the internal power dissipation for
the switching buck regulator, an empirical calculation
using measured efficiency can be used. Given the
measured efficiency (Section 2.0 “Typical Perfor-
mance Curves”), the internal power dissipation is
estimated below:
EQUATION 5-6:
The first term is equal to the input power (definition of
efficiency, POUT/PIN = Efficiency). The second term is
equal to the delivered power. The difference is internal
power dissipation. This is an estimate assuming that
most of the power lost is internal to the TC1303B.
There is some percentage of power lost in the buck
inductor, with very little loss in the input and output
capacitors.
DutyCycle
V
OUT
V
IN
-------------
=
T
ON
DutyCycle
1
F
SW
----------
×
=
Where:
FSW = Switching Frequency.
V
L
L
ΔI
L
Δt
--------
×
=
Where:
VL = voltage across the inductor (VIN – VOUT)
∆t = on-time of P-channel MOSFET
ΔI
L
V
L
L
------
Δt
×
=
Part
Number
Value
(µH)
DCR
(MAX)
MAX
IDC (A)
Size
WxLxH (mm)
Coiltronics®
SD10
2.2
0.091
1.35 5.2, 5.2, 1.0 max.
SD10
3.3
0.108
1.24 5.2, 5.2, 1.0 max.
SD10
4.7
0.154
1.04 5.2, 5.2, 1.0 max.
Coiltronics
SD12
2.2
0.075
1.80 5.2, 5.2, 1.2 max.
SD12
3.3
0.104
1.42 5.2, 5.2, 1.2 max.
SD12
4.7
0.118
1.29 5.2, 5.2, 1.2 max.
Sumida Corporation®
CMD411
2.2
0.116
0.950 4.4, 5.8, 1.2 max.
CMD411
3.3
0.174 0.770 4.4, 5.8, 1.2 max.
CMD411
4.7
0.216 0.750 4.4, 5.8, 1.2 max.
Coilcraft®
1008PS
4.7
0.35
1.0
3.8, 3.8, 2.74 max.
1812PS
4.7
0.11
1.15 5.9, 5.0, 3.81 max
V
OUT1
I
OUT1
×
Efficiency
-------------------------------------
⎝⎠
⎛⎞
V
OUT1
I
OUT1
×
()
P
Dissipation
=


Nº de peça semelhante - TC1303B-1G0EUN

Fabricante ElectrônicoNome de PeçasFolha de dadosDescrição Electrónicos
logo
Microchip Technology
TC1303B-AA0EMF MICROCHIP-TC1303B-AA0EMF Datasheet
601Kb / 30P
500 mA Synchronous Buck Regulator, 300 mA LDO with Power-Good Output
2005
TC1303B-AA0EMF MICROCHIP-TC1303B-AA0EMF Datasheet
635Kb / 36P
500 mA Synchronous Buck Regulator, 300 mA LDO with Power-Good Output
2005
TC1303B-AA0EMFTR MICROCHIP-TC1303B-AA0EMFTR Datasheet
601Kb / 30P
500 mA Synchronous Buck Regulator, 300 mA LDO with Power-Good Output
2005
TC1303B-AA0EMFTR MICROCHIP-TC1303B-AA0EMFTR Datasheet
635Kb / 36P
500 mA Synchronous Buck Regulator, 300 mA LDO with Power-Good Output
2005
TC1303B-AA0EUN MICROCHIP-TC1303B-AA0EUN Datasheet
601Kb / 30P
500 mA Synchronous Buck Regulator, 300 mA LDO with Power-Good Output
2005
More results

Descrição semelhante - TC1303B-1G0EUN

Fabricante ElectrônicoNome de PeçasFolha de dadosDescrição Electrónicos
logo
Microchip Technology
MCP1601 MICROCHIP-MCP1601 Datasheet
683Kb / 22P
500 mA Synchronous BUCK Regulator
2003
TC1303B MICROCHIP-TC1303B Datasheet
601Kb / 30P
500 mA Synchronous Buck Regulator, 300 mA LDO with Power-Good Output
2005
TC1303A MICROCHIP-TC1303A Datasheet
635Kb / 36P
500 mA Synchronous Buck Regulator, 300 mA LDO with Power-Good Output
2005
TC1313 MICROCHIP-TC1313 Datasheet
542Kb / 28P
500 mA Synchronous Buck Regulator, 300 mA LDO
2005
TC1313 MICROCHIP-TC1313_09 Datasheet
621Kb / 32P
500 mA Synchronous Buck Regulator, 300 mA LDO
2009
MCP1602 MICROCHIP-MCP1602 Datasheet
464Kb / 26P
2.0 MHz, 500 mA Synchronous Buck Regulator with Power-Good
2007
logo
Texas Instruments
TPS77401-EP TI1-TPS77401-EP Datasheet
463Kb / 23P
250-mA LDO VOLTAGE REGULATOR WITH POWER-GOOD OUTPUT
logo
Microchip Technology
MCP1601 MICROCHIP-MCP1601_13 Datasheet
511Kb / 24P
500 mA Synchronous BUCK Regulator
11/29/12
logo
Rohm
BD4275FP2-C ROHM-BD4275FP2-C Datasheet
572Kb / 23P
500 mA Output LDO Regulator with Voltage Detector
logo
Nisshinbo Micro Devices...
RP114X NISSHINBO-RP114X Datasheet
1Mb / 36P
300 mA LDO REGULATOR
More results


Html Pages

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38


Folha de dados Download

Go To PDF Page


Ligação URL




Privacy Policy
ALLDATASHEETPT.COM
ALLDATASHEET é útil para você?  [ DONATE ] 

Sobre Alldatasheet   |   Publicidade   |   Contato conosco   |   Privacy Policy   |   roca de Link   |   Lista de Fabricantes
All Rights Reserved©Alldatasheet.com


Mirror Sites
English : Alldatasheet.com  |   English : Alldatasheet.net  |   Chinese : Alldatasheetcn.com  |   German : Alldatasheetde.com  |   Japanese : Alldatasheet.jp
Russian : Alldatasheetru.com  |   Korean : Alldatasheet.co.kr  |   Spanish : Alldatasheet.es  |   French : Alldatasheet.fr  |   Italian : Alldatasheetit.com
Portuguese : Alldatasheetpt.com  |   Polish : Alldatasheet.pl  |   Vietnamese : Alldatasheet.vn
Indian : Alldatasheet.in  |   Mexican : Alldatasheet.com.mx  |   British : Alldatasheet.co.uk  |   New Zealand : Alldatasheet.co.nz
Family Site : ic2ic.com  |   icmetro.com