Electronic Components Datasheet Search
  New Zealand  ▼
ALLDATASHEET.CO.NZ

X  

UCC28056CDBVT Datasheet(PDF) 33 Page - Texas Instruments

Part # UCC28056CDBVT
Description  UCC28056 6-Pin Single-Phase Transition-Mode PFC Controller
PDF  55 Pages
Scroll/Zoom Zoom In 100%  Zoom Out
Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

UCC28056CDBVT Datasheet(HTML) 33 Page - Texas Instruments

Back Button UCC28056CDBVT Datasheet HTML 29Page - Texas Instruments UCC28056CDBVT Datasheet HTML 30Page - Texas Instruments UCC28056CDBVT Datasheet HTML 31Page - Texas Instruments UCC28056CDBVT Datasheet HTML 32Page - Texas Instruments UCC28056CDBVT Datasheet HTML 33Page - Texas Instruments UCC28056CDBVT Datasheet HTML 34Page - Texas Instruments UCC28056CDBVT Datasheet HTML 35Page - Texas Instruments UCC28056CDBVT Datasheet HTML 36Page - Texas Instruments UCC28056CDBVT Datasheet HTML 37Page - Texas Instruments Next Button
Zoom Inzoom in Zoom Outzoom out
 33 / 55 page
background image
OutMax
DioAVGMax
Out
P
I
0.42 A
V
u
u
u
u
u
S
OutMax
InRMSMin
DioRMSMax
InRMSMin
Out
110%
P
V
4
2
2
I
1.3 A
3
V
V
S
u
u
T
T
u
u
u
S
S
³
2
InRMS
InRMS
DioRMS
DioRMS
InEq
Out
0
V
V
1
4
2
2
I
I
d
3
R
V
G
T
G
T
u
u
T
InRMS
Dio
Mos
Out
V
1
2
sin
V
G
T
G
T
T
T u
u
u
T u
Dio
Dio
InPkL
DioRMS
LPkS
InEq
V
I
I
2
sin
3
R
3
33
UCC28056
www.ti.com
SLUSD37E – OCTOBER 2017 – REVISED NOVEMBER 2019
Product Folder Links: UCC28056
Submit Documentation Feedback
Copyright © 2017–2019, Texas Instruments Incorporated
9.2.2.2.3
Boost Diode Selection
The Boost diode carries the Boost inductor current while the switch is OFF (TDCH), and carries zero current while
the switch is ON (TON). Equation 34 calculates The RMS diode current over a single switching cycle, at angle θ in
the Line half-cycle .
(34)
Equation 35 describes the duty cycle of Boost diode conduction for ideal transition mode operation .
(35)
Equation 36 describes the RMS Boost diode current across a complete Line half-cycle .
(36)
The maximum RMS current in the Boost diode occurs at maximum load and minimum Line.
(37)
Conduction power loss in the Boost diode is primarily a function of the average output current.
(38)
Use the previous calculations and these guidelines to select the Boost diode:
•
Ensure that the Boost diode voltage rating exceeds the maximum output voltage. Under transient or Line
surge testing the output voltage may rise far above its normal regulation level.
•
The Boost diode must have average and RMS current ratings that are higher than the numbers calculated by
Equation 37 and Equation 38.
•
Diodes are available with a range of different speed/recovery charge. Fast diodes, with low reverse recovery
charge, typically have higher forward voltage drop. Fast diodes have higher conduction loss but lower
switching loss. Slow diodes, with high reverse recovery charge, typically have lower forward voltage drop.
Slow diodes have lower conduction loss but higher switching loss. Ensure maximum efficiency by matching
the diode speed rating to the application.
•
When Line voltage is first applied, to the Boost converter input, an uncontrolled current flows through the
Boost diode while the output capacitor charges to the Line voltage peak level. The charging current is limited
only by the impedance of the Line and EMI filter stage, and may reach a very high magnitude during the
output capacitor charging period. Any diode carrying this current must be rated to carry this non-repetative
surge current. It is normal practice to add a bypass diode to divert most of this charging current away from
the Boost diode. The bypass diode can be a slow type with lower forward voltage drop. It is therefore cheaper
and more robust than the faster Boost diode.
•
For this example design the STTH5L06 diode from STMicroelectronics® was selected. This diode has a
voltage rating of 600 V and an average current rating of 5 A. It has a forward voltage drop of approximately
0.85 V giving a conduction loss in the Boost diode, of less than 0.5 W.



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 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55


Datasheet Download

Go To PDF Page


Link URL



Does ALLDATASHEET help your business so far?  [ DONATE ] 

About Alldatasheet   |   Advertisement   |   Contact us   |   Privacy Policy   |   Link to Datasheet    |   Link Exchange   |   Manufacturer List
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