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600-00473-Z2

型号:

600-00473-Z2

描述:

高效率PFC演示板[ High-efficiency PFC Demonstration Board ]

品牌:

CIRRUS[ CIRRUS LOGIC ]

页数:

16 页

PDF大小:

1461 K

CDB150x-01  
CS1501 90W, High-efficiency PFC  
Demonstration Board  
Features  
General Description  
Variable On Time, Variable Frequency, DCM PFC  
The CDB150x-01 board demonstrates the performance  
of the CS1501 digital PFC controller with a 90 watt out-  
put at a link voltage of 400 volts.  
Controller  
Line Voltage Range: 90 to 265 VAC RMS  
Output voltage: 400 V  
Rated Pout: 90 W  
Efficiency: 97% @ 90 W, 230 VAC  
No-load Power Dissipation: <0.3 W  
Low Component Count  
ORDERING INFORMATION  
CDB150x-01 PFC Demonstration Board - Supports CS1501  
Supports Cirrus Logic Product CS1501  
Regulated  
DC Output  
AC Line  
Input  
Actual Size:  
254mm x 44mm  
Copyright Cirrus Logic, Inc. 2011  
(All Rights Reserved)  
MAR ‘11  
DS927DB3  
www.cirrus.com  
CDB150x-01  
IMPORTANT SAFETY INSTRUCTIONS  
Read and follow all safety instructions prior to using this demonstration board.  
This Engineering Evaluation Unit or Demonstration Board must only be used for assessing IC performance in a  
laboratory setting. This product is not intended for any other use or incorporation into products for sale.  
This product must only be used by qualified technicians or professionals who are trained in the safety procedures  
associated with the use of demonstration boards.  
Risk of Electric Shock  
The direct connection to the AC power line and the open and unprotected boards present a serious risk of electric  
shock and can cause serious injury or death. Extreme caution needs to be exercised while handling this board.  
Avoid contact with the exposed conductor or terminals of components on the board. High voltage is present on  
exposed conductor and it may be present on terminals of any components directly or indirectly connected to the AC  
line.  
Dangerous voltages and/or currents may be internally generated and accessible at various points across the board.  
Charged capacitors store high voltage, even after the circuit has been disconnected from the AC line.  
Make sure that the power source is off before wiring any connection. Make sure that all connectors are well  
connected before the power source is on.  
Follow all laboratory safety procedures established by your employer and relevant safety regulations and guidelines,  
such as the ones listed under, OSHA General Industry Regulations - Subpart S and NFPA 70E.  
Suitable eye protection must be worn when working with or around demonstration boards. Always  
comply with your employer’s policies regarding the use of personal protective equipment.  
All components, heat sinks or metallic parts may be extremely hot to touch when electrically active.  
Heatsinking is required for Q1. The end product should use tar pitch or an equivalent compound for this  
purpose. For lab evaluation purposes, a fan is recommended to provide adequate cooling.  
Contacting Cirrus Logic Support  
For all product questions and inquiries contact a Cirrus Logic Sales Representative. To find the one nearest to you  
go to www.cirrus.com  
IMPORTANT NOTICE  
Cirrus Logic, Inc. and its subsidiaries ("Cirrus") believe that the information contained in this document is accurate and reliable. However, the information is subject  
to change without notice and is provided "AS IS" without warranty of any kind (express or implied). Customers are advised to obtain the latest version of relevant  
information to verify, before placing orders, that information being relied on is current and complete. All products are sold subject to the terms and conditions of sale  
supplied at the time of order acknowledgment, including those pertaining to warranty, indemnification, and limitation of liability. No responsibility is assumed by Cirrus  
for the use of this information, including use of this information as the basis for manufacture or sale of any items, or for infringement of patents or other rights of third  
parties. This document is the property of Cirrus and by furnishing this information, Cirrus grants no license, express or implied under any patents, mask work rights,  
copyrights, trademarks, trade secrets or other intellectual property rights. Cirrus owns the copyrights associated with the information contained herein and gives  
consent for copies to be made of the information only for use within your organization with respect to Cirrus integrated circuits or other products of Cirrus. This con-  
sent does not extend to other copying such as copying for general distribution, advertising or promotional purposes, or for creating any work for resale.  
CERTAIN APPLICATIONS USING SEMICONDUCTOR PRODUCTS MAY INVOLVE POTENTIAL RISKS OF DEATH, PERSONAL INJURY, OR SEVERE PROP-  
ERTY OR ENVIRONMENTAL DAMAGE ("CRITICAL APPLICATIONS"). CIRRUS PRODUCTS ARE NOT DESIGNED, AUTHORIZED OR WARRANTED FOR  
USE IN PRODUCTS SURGICALLY IMPLANTED INTO THE BODY, AUTOMOTIVE SAFETY OR SECURITY DEVICES, LIFE SUPPORT PRODUCTS OR OTHER  
CRITICAL APPLICATIONS. INCLUSION OF CIRRUS PRODUCTS IN SUCH APPLICATIONS IS UNDERSTOOD TO BE FULLY AT THE CUSTOMER'S RISK  
AND CIRRUS DISCLAIMS AND MAKES NO WARRANTY, EXPRESS, STATUTORY OR IMPLIED, INCLUDING THE IMPLIED WARRANTIES OF MERCHANT-  
ABILITY AND FITNESS FOR PARTICULAR PURPOSE, WITH REGARD TO ANY CIRRUS PRODUCT THAT IS USED IN SUCH A MANNER. IF THE CUSTOMER  
OR CUSTOMER'S CUSTOMER USES OR PERMITS THE USE OF CIRRUS PRODUCTS IN CRITICAL APPLICATIONS, CUSTOMER AGREES, BY SUCH USE,  
TO FULLY INDEMNIFY CIRRUS, ITS OFFICERS, DIRECTORS, EMPLOYEES, DISTRIBUTORS AND OTHER AGENTS FROM ANY AND ALL LIABILITY, IN-  
CLUDING ATTORNEYS' FEES AND COSTS, THAT MAY RESULT FROM OR ARISE IN CONNECTION WITH THESE USES.  
Cirrus Logic, Cirrus, and the Cirrus Logic logo designs are trademarks of Cirrus Logic, Inc. All other brand and product names in this document may be trademarks  
or service marks of their respective owners.  
2
DS927DB3  
CDB150x-01  
1. INTRODUCTION  
The CS1501 is a high-performance Variable Frequency Discontinuous Conduction Mode (VF-DCM), ac-  
tive Power Factor Correction (PFC) controller, optimized to deliver the lowest system cost in switched  
mode power supply (SMPS) applications. The CS1501 uses a digital control algorithm that is optimized  
for high efficiency and near-unity power factor over a wide input voltage range (90-265 VAC).  
Using an adaptive digital control algorithm, both the ON time and the switching frequency are varied on a  
cycle-by-cycle basis over the entire AC line to achieve close-to-unity power factor. The feedback loop is  
closed through an integrated digital control system within the IC.  
The variation in switching frequency also provides a spread-frequency spectrum, thus minimizing the con-  
ducted EMI filtering requirements. Burst mode control minimizes the light-load/standby losses. Protection  
features such as overvoltage, overcurrent, overpower, open circuit, overtemperature, and brownout help  
protect the device during abnormal transient conditions. Details of these features are provided in the  
CS1501 data sheets.  
The CDB150x-01 board demonstrates the performance of the CS1501 with input voltage range of 90-265  
VAC, typically seen in universal input applications. This board has been designed for 400V Vlink, 90  
Watts, full load.  
Extreme caution needs to be exercised while handling this board. This board is to be used by trained pro-  
fessionals only. Prior to applying AC power to the CDB150x-01 board, the CS1501 needs to be biased  
using an external 13 VDC power supply.  
This document provides the schematic for the board. It includes oscilloscope screen shots that indicate  
operating waveforms. Graphs are also provided that document the performance of the board in terms of  
Efficiency vs. Load, Total Harmonic Distortion vs. Load, and Power Factor vs. Load for the CS1501 PFC  
controller IC.  
DS927DB3  
3
CDB150x-01  
2. SCHEMATIC  
E R P M U R I E J  
J P  
8 0 0 0 . " W  
1
+
4
DS927DB3  
CDB150x-01  
3. BILL OF MATERIALS  
DS927DB3  
5
CDB150x-01  
6
DS927DB3  
CDB150x-01  
4. BOARD LAYOUT  
DS927DB3  
7
CDB150x-01  
8
DS927DB3  
CDB150x-01  
5. PERFORMANCE PLOTS  
Vin=110  
Vin=220  
99  
97  
95  
93  
91  
89  
87  
85  
5
6
7
8
9
10  
13.5  
18  
27  
36  
45  
63  
90  
94.5  
Output Power (W)  
Figure 6. Efficiency vs. Load at 110 VAC, 220 VAC  
20  
18  
16  
14  
12  
10  
8
Vin=110  
Vin=220  
6
4
2
0
10  
13.5  
18  
27  
36  
45  
63  
90  
94.5  
Output Power (W)  
Figure 7. Distortion vs. Load at 110 VAC, 220 VAC  
DS927DB3  
9
CDB150x-01  
1
0.95  
0.9  
Vin=110  
Vin=220  
0.85  
0.8  
0.75  
0.7  
10  
13.5  
18  
27  
36  
45  
63  
90  
94.5  
Output Power (W)  
Figure 8. Power Factor vs. Load at 110 VAC, 220 VAC  
410  
408  
406  
404  
402  
400  
398  
396  
394  
392  
390  
Vin=110  
Vin=220  
1
2
3
4
5
6
7
8
9
10  
13.5  
18  
27  
36  
45  
63  
90  
94.5  
Output Power (W)  
Figure 9. V  
vs. Output Power at 110 VAC, 220 VAC  
Link  
10  
DS927DB3  
CDB150x-01  
Figure 10. Steady State Waveforms — 110 VAC  
Figure 11. Switching Frequency Profile at Peak of AC Line Voltage — 110 VAC  
DS927DB3  
11  
CDB150x-01  
Figure 12. Switching Frequency Profile at Trough of AC Line Voltage — 110 VAC  
Figure 13. Steady State Waveforms — 220 VAC  
12  
DS927DB3  
CDB150x-01  
Figure 14. Switching Frequency Profile at Peak of AC Line Voltage — 220 VAC  
Figure 15. Switching Frequency Profile at Trough of AC Line Voltage — 220 VAC  
DS927DB3  
13  
CDB150x-01  
Figure 16. Load Transient — 9 W to 90 W, 1 W/uS, 110 VAC  
Figure 17. Load Transient — 90 W to 9 W, 1 W/uS, 110 VAC  
14  
DS927DB3  
CDB150x-01  
Figure 18. Load Transient — 9 W to 90 W, 1 W/uS, 220 VAC  
Figure 19. Load Transient — 90 W to 9 W, 1 W/uS, 220 VAC  
DS927DB3  
15  
CDB150x-01  
6. REVISION HISTORY  
Revision  
DB1  
Date  
Changes  
FEB 2011  
FEB 2011  
MAR 2011  
Initial Release.  
DB2  
Updated Efficiency vs. Load plot with more current data.  
Updated BOM & Layers to rev C.  
DB3  
16  
DS927DB3  
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