MAX14571EVKIT [MAXIM]

6V to 36V Operating Voltage Range;
MAX14571EVKIT
型号: MAX14571EVKIT
厂家: MAXIM INTEGRATED PRODUCTS    MAXIM INTEGRATED PRODUCTS
描述:

6V to 36V Operating Voltage Range

文件: 总11页 (文件大小:605K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Evaluates: MAX14571MAX14573  
MAX14571 Evaluation Kit  
General Description  
Features  
The MAX14571 evaluation kit (EV kit) demonstrates  
the MAX14571 adjustable overvoltage and overcurrent  
protector in a 14-pin TSSOP surface-mount package with  
an exposed pad. The EV kit features jumper-configurable  
SETI resistors and can handle up to 36V input supply.  
6V to 36V Operating Voltage Range  
Jumper-Configurable Current Limit  
Proven PCB Layout  
Fully Assembled and Tested  
The EV kit can also be used to evaluate the MAX14572  
and MAX14573 devices with IC replacement of U1.  
Request free samples from the factory when ordering the  
EV kit.  
Ordering Information appears at end of data sheet.  
MAX14571 EV Kit Photo  
19-6772; Rev 0; 8/13  
Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Quick Start  
Detailed Description of Hardware  
The MAX14571 EV kit demonstrates the MAX14571  
adjustable overvoltage and overcurrent protector. The  
jumper configurations by default are configured to test  
internal UVLO and internal OVLO thresholds. There  
are jumpers that can be configured and resistor pads  
to test user-defined UVLO and OVLO thresholds. The  
overcurrent threshold is determined by external resistors  
connected to the SETI pin and is jumper configurable  
through jumper JU1.  
Required Equipment  
MAX14571 EV kit  
6V to 36V DC power supply  
5V DC power supply  
Voltage meter  
USB type-A to USB type-B cable  
Procedure  
The EV kit is fully assembled and tested. Follow the steps  
below to verify board operation. Caution: Do not turn on  
the power supply until all connections are completed.  
External Power Supply  
The EV kit is powered by a user-supplied 6V to 36V DC  
power supply connected between BP1 (INPUT POWER)  
and GND.  
1) Verify that the default jumper configurations are as in  
Table 1.  
2) Connect a voltage meter to the EV kit’s OUTPUT  
POWER red banana jack and the corresponding  
black GND banana jack.  
3) Connect the DC power supply to the EV kit’s INPUT  
POWER red banana jack and the corresponding  
black GND banana jack.  
Programmable Current Limit  
Jumper JU1 configures the RSETI resistor value that  
is connected to the SETI pin and sets the current  
limit/threshold for the switch (see Table 2). Refer to  
the MAX14571/MAX14572/MAX14573 IC data sheet for  
more information.  
4) Turn on the DC power supply and set it to 24V, then  
enable the power-supply output.  
No shunt connected to JU1 or JU2 forces the SETI pin to  
be unconnected, with the current limit set to 0A.  
5) Connect a USB cable from a computer to the USB  
connector J1 to enable the device. If a cable is not  
available, connect a 5V DC power supply between  
the EV kit’s TP3 test point and the corresponding  
GND test point, TP4.  
6) Verify that the voltage meter reads approximately 24V.  
7) Set the input power supply to 17V. The switch turns  
off and the voltmeter reading should slowly decrease  
to 0V.  
Overvoltage Lockout (OVLO)  
Jumper JU4 (shunted by default) connects the OVLO pin  
to GND and configures the device to have the internal  
33V preset OVLO. To configure a user-defined OVLO,  
disconnect JU4 and connect a shunt on jumper JU5. This  
allows the device to monitor the IN voltage. Connect a  
resistor on R12 to set the user-defined OVLO threshold.  
Use the following equation to set the OVLO threshold:  
8) Set the input power supply to 24V and verify that the  
voltmeter reads approximately 24V.  
9) Set the input power supply to 35V. The switch turns  
off and the voltmeter reading should slowly decrease  
to 0V.  
R11  
R12  
VOVLO =VBG x 1+  
where:  
R11 is 2.2MΩ  
V
is 1.21  
BG  
External LED2 indicates that an OVLO fault has occurred.  
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Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Undervoltage Lockout (UVLO)  
Enable (J1)  
Jumper JU3 (shunted by default) connects the UVLO pin  
to GND and configures the device to have the internal  
19.2V preset UVLO. To configure a user-defined UVLO,  
disconnect JU3 and connect a shunt on JU5. This allows  
the device to monitor the IN voltage. Connect a resistor  
on R10 to set the user-defined UVLO threshold. Use the  
following equation to set the UVLO threshold:  
To enable the device, connect a USB connector from the  
computer to the USB connector, J1. This provides 5V to  
VBUS and to the EN pin (JU8 connects VBUS to IN by  
default). If no cable is available, connect a 5V DC power  
supply between test point TP3 and the corresponding  
GND test point, TP4.  
Negative Input Test  
R9  
VUVLO =VBG x 1+  
When applying a negative input to V , the negative input  
IN  
R10  
test should be performed when the output capacitors are  
fully discharged and VBUS should not be supplied.  
where:  
R9 is 2.2MΩ  
V
BG  
is 1.21  
External LED2 indicates that an UVLO fault has occurred.  
Table 1. Default Jumper Settings (JU1JU11, JU13)  
JUMPER  
SHUNT POSITION  
DESCRIPTION  
1-2*  
3-4  
Sets current threshold to 0.709A.  
Sets current threshold to 2.304A.  
Sets current threshold to 4.197A.  
JU1  
5-6  
7-8  
Adjustable current limit using a potentiometer.  
1-2  
Connects the SETI pin to GND, asserts the FLAG output, and sets the current limit to 0A.  
Allows the user to connect JU1 shunts to configure the current limit.  
Connects the UVLO pin to GND and enables the internal UVLO threshold.  
JU2  
JU3  
Open*  
1-2*  
Allows the user to connect an external resistor-divider to set a user-defined UVLO  
threshold. Note: JU5 should also be connected.  
Open  
1-2*  
Connects the OVLO pin to GND and enables the internal OVLO threshold.  
JU4  
JU5  
Allows the user to connect an external resistor-divider to set a user-defined OVLO thresh-  
old. Note: JU5 should also be connected.  
Open  
Allows the user to connect an external resistor-divider to set a user-defined OVLO and  
UVLO threshold.  
1-2  
Connect JU3 and JU4 or connect an external resistor-divider for normal UVLO/OVLO  
operation.  
Open*  
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Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Table 1. Default Jumper Settings (JU1JU11, JU13) (continued)  
JUMPER  
SHUNT POSITION  
1-2  
DESCRIPTION  
Connects HVEN to V and disables the device.  
IN  
JU6  
Open*  
1-2*  
If open connect JU7.  
Connects HVEN to GND for normal operation.  
If open, connect JU6.  
JU7  
JU8  
Open  
1-2*  
Connects EN to VBUS and enables the device for normal operation.  
Disables the device.  
Open  
1-2*  
Enables reverse-current flow protection.  
Disables reverse-current flow protection.  
Allows LED2 to indicate a FLAG fault.  
Use external circuitry to connect to the FLAG output.  
Connects OUT to IN.  
JU9  
Open  
1-2*  
JU10  
JU11  
Open  
1-2  
Open*  
1-2  
Normal operation.  
Adds 2 330µF capacitors to OUT.  
Normal operation.  
JU13  
Open*  
*Default position.  
Table 2. Current-Limit/Threshold Setting (JU1)  
SHUNT POSITION  
RSETI  
16.2kΩ  
ILIM (mA)  
709mA  
1-2  
3-4  
5-6  
7-8  
4.99kΩ  
2.304A  
2.74kΩ  
4.197A  
1kΩ + 25kΩ (Adjustable pot)  
Adjustable  
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Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Component List  
DESIGNATION QTY  
DESCRIPTION  
Green LED (1206)  
DESIGNATION QTY  
DESCRIPTION  
1µF ±10%, 25V X7R ceramic  
capacitor (0603)  
Murata GRM188R71E105K  
LED1  
LED2  
1
1
Lumex SML-LX1206GW-TR  
C1  
C2  
1
1
1
1
4
1
Red LED (1206)  
Lumex SML-LX1206IC-TR  
0.1µF ±10%, 25V X7R ceramic  
capacitor (0603)  
Murata GRM188R71E104K  
R1, R3, R15  
R2  
3
1
1kΩ ±5% resistors (0805)  
10kΩ ±5% resistor (0805)  
0.47µF ±10%, 50V X7R ceramic  
capacitor (0603)  
TDK C1608X5R1H474K  
R4, R13, R14,  
R17  
C3  
4
100kΩ ±5% resistors (0805)  
R5, R10, R12  
0
1
1
1
2
Not installed, resistors (0805)  
16.2kΩ ±1% resistor (0805)  
4.99kΩ ±1% resistor (0805)  
2.74kΩ ±1% resistor (0805)  
2.2MΩ ±1% resistors (0805)  
4.4µF ±10%, 50V X7R ceramic  
capacitor (1206)  
Murata GRM31CR71H475K  
C4  
R6  
R7  
330µF ±20%, 50V aluminum  
(12.5mm)  
Panasonic EEVFK1H331Q  
R8  
C5–C8  
D1  
R9, R11  
25kΩ trimmer potentiometer  
Murata PV37Y253C01B00  
60V, 5A power Schottky diode  
(SMC)  
STMicroelectronics STPS5L60S  
R16  
1
5
4
3
TP1, TP9–  
TP12  
Yellow test points  
Keystone 5014  
600W TVS diode (SMB)  
STMicro SM6T36CA  
D2  
GND  
IN, OUT  
J1  
1
2
2
1
TP2, TP4, TP5,  
TP7  
Black test points  
Keystone 5011  
Black banana jacks  
Keystone 7007  
Red test points  
Keystone 5010  
TP3, TP6, TP8  
Red banana jacks  
Keystone 7006  
Overvoltage and overcurrent  
protector (14 SSOP-EP*)  
Maxim MAX14571EUD+  
U1  
U2  
1
1
USB type-B connector  
FCI 61729-0010BLF  
Dual buffer (6 SC70, 1.25mm wide)  
Fairchild NC7WZ07P6X  
8-pin (2 x 4) dual-row header,  
0.1in centers  
JU1  
1
Sullins Connector PEC36DAAN  
13  
1
Shunts  
JU2–JU11,  
JU13  
2-pin single-row headers  
Sullins PEC36SAAN  
PCB: MAX14571 EVKIT  
11  
*EP = Exposed pad.  
Component Suppliers  
SUPPLIER  
FCI (Berg Electronics)  
Keystone Electronics Corp.  
Lumex Inc.  
PHONE  
WEBSITE  
717-938-7200  
209-796-2032  
800-278-5666  
770-436-1300  
800-344-2112  
408-452-8585  
402-563-6866  
www.fciconnect.com  
www.keyelco.com  
www.lumex.com  
Murata Electronics North America, Inc.  
Panasonic Corp.  
www.murata-northamerica.com  
www.panasonic.com  
www.us.st.com  
STMicroelectronics  
Sullins  
www.vishay.com  
Note: Indicate that you are using the MAX14571 when contacting these component suppliers.  
Maxim Integrated  
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Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Figure 1. MAX14571 EV Kit Schematic  
Maxim Integrated  
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Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Figure 2. MAX14571 EV Kit Component Placement GuideComponent Side  
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Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Figure 3. MAX14571 EV Kit PCB LayoutComponent Side  
Maxim Integrated  
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Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Figure 4. MAX14571 EV Kit PCB LayoutSolder Side  
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Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Ordering Information  
PART  
TYPE  
MAX14571EVKIT#  
EV Kit  
#Denotes RoHS compliant.  
Maxim Integrated  
10  
www.maximintegrated.com  
Evaluates: MAX14571–MAX14573  
MAX14571 Evaluation Kit  
Revision History  
REVISION REVISION  
PAGES  
CHANGED  
DESCRIPTION  
NUMBER  
DATE  
0
8/13  
Initial release  
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642, or visit Maxim Integrated’s website at www.maximintegrated.com.  
Maxim Integrated cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim Integrated product. No circuit patent licenses  
are implied. Maxim Integrated reserves the right to change the circuitry and specifications without notice at any time.  
©
Maxim Integrated and the Maxim Integrated logo are trademarks of Maxim Integrated Products, Inc.  
2013 Maxim Integrated Products, Inc.  
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