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EN6337QI/EN6347QI

 

Evaluation Board User Guide  

Nov 2010 

 

Page 1 of 9 

 

Enpirion EN6337QI/EN6347QI DC-DC Converter 

w/Integrated Inductor Evaluation Board 

 
 

Introduction 

 

Thank you for choosing Enpirion, the source for ultra small foot print power converter 
products! This evaluation board user guide applies to two products with identical 
pinouts: The EN6337QI is a 3A device, and the EN6347QI is a 4A device. The term 
EN63x7QI will refer to both products throughout this document. This evaluation board 
user guide applies to the EN63x7

03 engineering devices. In addition to this document, 

you will also need the latest device datasheet. 
 

  The EN63x7QI features integrated inductor, power MOSFETS, controller, a bulk 

of the compensation network, and protection circuitry against system faults.  This 
level of integration delivers a substantial reduction in footprint and parts count 
over competing solutions. The evaluation board is optimized for engineering ease 
of testing through programming options, clip leads, test points etc. 

 

  The EN63x7QI features a customer programmable output voltage by means of a 

resistor divider. The resistor divider allows the user to set the output voltage to 
any value within the range 0.75V to (V

IN

-V

DROPOUT

).  The evaluation board, as 

shipped is populated with a 4 resistor divider option. The upper resistor is fixed 
and has a phase lead capacitor in parallel. One of the 4 lower resistors is 
selected with the jumper option for different output voltages to change V

OUT

retain the upper resistor and capacitor values and change only the lower resistor. 

  

  This device has no over-voltage protection feature. We strongly recommend the 

customer to ensure the feedback loop is truly closed before powering up the 
device especially if the load can not withstand the input voltage. 

 

  The input and output capacitors are X5R or X7R multi-layer ceramic chip 

capacitors. The Soft-start capacitor is a small 15nF X7R MLCC. Pads are 
available to have multiple input and output capacitors. This allows for evaluation 
of performance over a wide range of input/output capacitor combinations. 

 

  Clip-on terminals are provided for ENA, SS, POK, and LLM pins.  

 

  Banana jacks are provided for V

IN

 and V

OUT

 power terminals. Several signal and 

GND clip-on test points are also provided to measure V

IN

, V

OUT

, and GND nodes. 

 
 

Summary of Contents for EN6337QI

Page 1: ...rogrammable output voltage by means of a resistor divider The resistor divider allows the user to set the output voltage to any value within the range 0 75V to VIN VDROPOUT The evaluation board as shipped is populated with a 4 resistor divider option The upper resistor is fixed and has a phase lead capacitor in parallel One of the 4 lower resistors is selected with the jumper option for different ...

Page 2: ...jumper is provided for controlling the LLM SYNC pin This pin can be high for automatic LLM light load mode operation If it is pulled low the part will be in PWM mode only Foot print is also provided for a SMA connector to LLM SYNC input A switching input to this pin allows the device clock to be phase locked to an external signal This external clock synchronization allows for moving any offending ...

Page 3: ... the output connectors VOUT and GND as indicated in Figure 1 STEP 4 Select the output voltage setting jumper Figure 2 shows what output voltages are achieved by selecting each jumper position Populating multiple jumper positions will allow you to select higher output voltages You can populate up to all four jumper positions for the highest VOUT of approximately 3 73V with the resistors populated o...

Page 4: ...TEP 7 External Clock Synchronization Spread Spectrum Modes In order to activate this mode it may be necessary to a solder a SMA connector at J8 Alternately the input clock signal leads may be directly soldered to the through holes of J8 as shown below GND Ext Clock Figure 3 SMA Connector for External Clock Input Power down the device Move ENA into disable position Connect the clock signal as just ...

Page 5: ...ee running phase locked to a fixed frequency and spread spectrum Before measuring radiated EMI place a 10uF 0805 X7R capacitor at the input and output edges of the PCB footprint already provided on the board and connect the input power and the load to the board at or near these capacitors The added capacitor at the input edge is for high frequency decoupling of the input cables The one added at th...

Page 6: ...1 TP5 R5 TP15 R7 J9 1 3 5 2 4 6 8 7 RLLM R8 C10 R6 J2 1 2 J3 1 2 TP7 TP6 C11 R4 R9 CW R10 1 3 2 J1 1 2 3 J10 1 2 3 C12 J8 TP18 TP19 C9 TP14 TP4 TP13 TP21 FB1 C13 U2 6 5V D1 C1 J13 1 2 J4 J6 LLM PVIN PVIN TP1 TP2 J11 1 2 J12 1 2 J14 1 2 J7 J5 SS ENA POK GND VIN PGND VOUT SYNC ENA POK VIN J15 1 2 3 TP12 TP16 TP3 TP20 TP8 TP10 TP9 TP11 0805 0805 0805 0805 0805 0805 0805 1206 0805 0402 0402 0805 0805 ...

Page 7: ...d Input ripple output ripple and load transient deviation are best measured near the respective input output capacitors For more accurate ripple measurement please see Enpirion App Note regarding this subject 4 The board includes a pull up resistor for the POK signal and ready to monitor the power OK status at clip lead marked POK 5 A 15nF soft start capacitor is populated on the board for 1msec s...

Page 8: ...N VERTICAL 3 POSITION SMT J4 J7 4 BANANA JACK J9 1 CONNECTOR HEADER 8 POS 100 STR TIN R1 1 RES 332K OHM 1 8W 1 0805 SMD R2 1 RES 200K OHM 1 8W 0 1 0805 SMD R3 1 RES 604K OHM 1 8W 1 0805 SMD R4 1 RES 100K OHM 1 8W 1 0805 SMD R5 1 RES 187K OHM 1 8W 1 0805 SMD R7 1 RES 100K OHM 1 8W 0 1 0805 SMD R8 1 EN6337QI RES 75 0K OHM 1 8W 1 0805 SMD EN6347QI RES 60 4K OHM 1 8W 0 1 0805 SMD R9 1 THICK FILM RESIS...

Page 9: ...sign and or specifications at any time without notice Information furnished by Enpirion is believed to be accurate and reliable Enpirion assumes no responsibility for its use or for infringement of patents or other third party rights which may result from its use Enpirion products are not authorized for use in nuclear control systems as critical components in life support systems or equipment used...

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