Part Number Hot Search : 
PAA127S S9018 E101MPD 042N03 LR5910 RC128 MC56F OF68GKE
Product Description
Full Text Search
 

To Download MP2364DF Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 TM
EV2364DF-01A
1.5A, 23V, 1.4MHz Dual Step-Down Converter Evaluation Board
The Future of Analog IC Technology
TM
DESCRIPTION
The EV2364DF-01A is an evaluation board for the MP2364, a dual output, monolithic step-down switch mode converter with built-in internal power MOSFETs. It achieves 1.5A continuous output current for each output over a wide input supply range with excellent load and line regulation. The MP2364's current mode operation provides fast transient response and eases loop stabilization. Its fault protection includes cycle-by-cycle current limiting and thermal shutdown. In shutdown mode the regulator draws 40A of supply current.
FEATURES
* * * * * * * * * * 1.5A Current for Each Output Ceramic Input and Output Capacitors Up to 90% Efficiency Fixed 1.4MHz Frequency Wide 4.75V to 23V Operating Input Range Distributed Power Systems I/O and Core Supplies DSL Modems Set Top Boxes Cable Modems
APPLICATIONS
"MPS" and "The Future of Analog IC Technology" are Trademarks of Monolithic Power Systems, Inc.
ELECTRICAL SPECIFICATIONS
Parameter Input Voltage Output Voltage A Output Voltage B Symbol VIN VOUTA VOUTB Value 4.75 to 23 3.3 2.5 Units V V V
EV2364DF-01A EVALUATION BOARD
Efficiency vs Load Current
100 90 VOUT=3.3V VOUT=5V
EFFICIENCY (%)
80 70 60
VOUT=2.5V
(L x W x H) 2.2" x 1.6" x 0.4" (5.5cm x 4.1cm x 1.0cm) Board Number EV2364DF-01A MPS IC Number MP2364DF
50
0
0.5 1.0 LOAD CURRENT (A)
1.5
MP2364_EC01
EV2364DF-01A Rev. 1.1 3/1/2006
www.MonolithicPower.com MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited. (c) 2006 MPS. All Rights Reserved.
1
TM
EV2364DF-01A - 1.5A, 23V, 1.4MHz DUAL STEP-DOWN CONVERTER EV BOARD
EVALUATION BOARD SCHEMATIC
VIN 4.75V to 23V GND
D1 NS OPTIONAL 5V INPUT ONLY
SSA
ENA U1
ENA COMPA FBA SGB PGB SWB INB NC2 BSB SSB NC1 BSA INA SWA
C8 2.2nF
D4 NS OPTIONAL 5V INPUT ONLY
C2 10nF VOUTA 3.3V @ 1.5A GND C4 NS
C13 82pF VOUTB 2.5V @ 1.5A GND
D2 B230A-13
PGA SGA FBB
MP2364
C7 10nF
D3 B230A-13
C10 NS
COMPB ENB
C5 3.3nF
ENB
EV2364_S01
EV2364DF-01A BILL OF MATERIALS
Qty 2 2 2 2 1 1 2 1 2 2 2 1 1 3 1 1 Ref C1, C6 C2, C7 C3, C9 C4, C10 C5 C8 C11, C12 C13 D1, D4 D2, D3 L1, L2 3.3nF 2.2nF 10F 82pF Value Description Package Manufacturer P/N 0805 0603 1210 TDK: C2012X7R1C474K TDK: C1608X7R1H103K TDK: C3225X5R0J226M Panasonic: ECJ-1VB1H332K TDK: C1608X7R1H222K TDK: C3225X7R1E106M TDK: C1608C0G1H820J Diodes Inc: B230A-13 Sumida: CDRH6D28-5R0NC Any Any Any Any MPS: MP2364DF Distributor P/N Digikey: 445-1357-1-ND Digikey: 445-1311-1-ND Digikey: 445-1404-1-ND Digikey: PCC1778CT-ND Digikey: 445-1309-1-ND Digikey: 445-1434-1-ND Digikey: 445-1280-1-ND Digikey: B230ADICT-ND 0.47F Ceramic Capacitor, 16V, X7R 10nF 22F Ceramic Capacitor, 50V, X7R Ceramic Capacitor, 6.3V, X5R Do Not Stuff Ceramic Capacitor, 50V, X7R Ceramic Capacitor, 50V, X7R Ceramic Capacitor, 25V, X7R Ceramic Capacitor, 50V, NPO Do Not Stuff Schottky Diode, 30V, 2A, SMA Inductor, 5uH, 2.4A, SMD 0603 0603 0603 0603 0603 0603 1210 0603
R1 25.5k Resistor, 1% R2 7.5k Resistor, 5% R3, R5, R6 10k Resistor, 1% R4 16.9k Resistor, 1% U1 DC/DC Converter, TSSOP20
Any Any Any Any
EV2364DF-01A Rev. 1.1 3/1/2006
www.MonolithicPower.com MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited. (c) 2006 MPS. All Rights Reserved.
2
TM
EV2364DF-01A - 1.5A, 23V, 1.4MHz DUAL STEP-DOWN CONVERTER EV BOARD
PRINTED CIRCUIT BOARD LAYOUT
Figure 1--Top Silk Layer
Figure 2--Top Layer
Figure 3--Bottom Layer
EV2364DF-01A Rev. 1.1 3/1/2006
www.MonolithicPower.com MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited. (c) 2006 MPS. All Rights Reserved.
3
TM
EV2364DF-01A - 1.5A, 23V, 1.4MHz DUAL STEP-DOWN CONVERTER EV BOARD
QUICK START GUIDE
The output voltages of this board are set to 3.3V (VOUTA) and 2.5V (VOUTB). The board layout accommodates most commonly used inductors and output capacitors. 1. Attach the positive and negative ends of the first load to the VOUTA and GND pins, respectively. If using both outputs, attach the positive and negative ends of the second load to the VOUTB and GND pins, respectively. 2. Preset the power supply output to 4.75V to 23V and turn it off. 3. Connect the positive terminal of the power supply output to the VIN pin and the negative terminal of the power supply output to the GND pin. 4. Turn the power supply on. The MP2364 will automatically startup. 5. To use the Enable function, apply a digital input to the EN pin. Drive EN higher than 2.5V to turn on the regulator and less than 0.7V to turn it off. 6. The output voltages VOUTA and VOUTB can be changed by varying R1 and R4, respectively. Calculate the new values by the following formulae:
V R1 = R6 x OUTA - 1 0.92 V R4 = R3 x OUTB - 1 0.92
Where R6 = 10k and R3 = 10k Example: For VOUTA = 3.3V:
R1 = 10k x ( 3. 3 - 1) = 25.9k 0.92
Therefore, use a 25.5k standard 1% value resistor.
NOTICE: The information in this document is subject to change without notice. Please contact MPS for current specifications. Users should warrant and guarantee that third party Intellectual Property rights are not infringed upon when integrating MPS products into any application. MPS will not assume any legal responsibility for any said applications.
EV2364DF-01A Rev. 1.1 3/1/2006 www.MonolithicPower.com MPS Proprietary Information. Unauthorized Photocopy and Duplication Prohibited. (c) 2006 MPS. All Rights Reserved.
4


▲Up To Search▲   

 
Price & Availability of MP2364DF

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X