MAX17222 Evaluation Kit Evaluates: MAX17220 MAX17225 General Description Quick Start Required Equipment Procedure
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1 MAX7 Evaluation Kit Evaluates: MAX7 MAX75 General Description The MAX7 evaluation kit (EV kit) evaluates the MAX7 MAX75 IC family of ultra-low quiescent current step-up DC-DC converters. The MAX7 EV kit features two independent circuits to evaluate two different IC packages of the MAX7 MAX75 family. Both circuits on the EV kit operate over an input range of 4mV to 5.5V, depending on load, with.88v typical startup with 3kΩ load. Each circuit provides resistor-configurable output voltages from.8v to 5V in mv/step. The EV kit comes with the MAX7ELT+ and MAX75ENT+ installed. Features Two Independent Circuits on One Board Evaluates the MAX7 MAX75 IC Family in a 6-pin µdfn Evaluates the MAX7 MAX75 IC Family in a 6-pin Wafer-Level Package (WLP) 4mV to 5.5V Input Range.8V to 5V Configurable Output Voltage in mv/step Up to ma/5ma/45ma Output Current Proven -Layer oz Copper PCB Layout Demonstrates Compact Solution Size Fully Assemble and Tested MAX7 EV Kit Files FILE MAX7 EV BOM MAX7 EV PCB Layout Diagrams MAX7 EV Schematic MAX7 EV Minimal Component Schematic DECRIPTION EV Kit Bill of Material EV Kit Layout EV Kit Schematic Minimal Component Circuit Ordering Information appears at end of data sheet. Quick Start Required Equipment MAX7 EV kit.8v to 5V, 3A DC power supply Electronic load capable of 5mA to 45mA Digital voltmeter (DVM) Procedure The EV kit is fully assembled and tested. Follow the steps below to verify board operation. Caution: Do not turn on power supply until all connections are completed. <<Testing the 3V Output Circuit>> ) Verify that jumper JU is in its default position, as shown in Table. ) Connect the power supply between the and nearest terminal posts. 3) Connect the electronic load between the 3V output and nearest terminal posts. 4) Connect the DVM between the 3V output and nearest terminal posts. 5) Set the input power supply to.8v and turn on the power supply. 6) Set the electronic load to 5mA and enable the electronic load. 7) Verify that the voltage at the 3V terminal post is approximately 3V. <<Testing the 5V Output Circuit>> ) Verify that jumper JU is in its default position, as shown in Table. ) Connect the power supply between the and nearest terminal posts. 3) Connect the electronic load between the 5V output and nearest terminal posts. 4) Connect the DVM between the 5V output and a nearest terminal posts. 5) Set the input power supply to 3V, and turn on the power supply. 6) Set the electronic load to 45mA, and enable the electronic load. 7) Verify that the voltage at the 5V terminal post is approximately 5V ; Rev 3; 8/7
2 MAX7 Evaluation Kit Evaluates: MAX7 MAX75 Detailed Description of Hardware The MAX7 EV kit evaluates the MAX7 MAX75 IC family of ultra-low quiescent current stepup DC-DC converters. The MAX7 EV kit features two independent circuits to evaluate two different IC packages of the MAX7 MAX75 family. Both circuits on the EV kit operate over an input range of 4mV to 5.5V. Each circuit provides resistor-configurable output voltages from.8v to 5V in mv/step. The MAX7 EV Kit comes with a MAX7ELT+ (µdfn) and a MAX75ENT+ (WLP) installed. The MAX7ELT+ circuit is configured for a 3V output, and can deliver 5mA with.8v input. The MAX75ENT+ circuit is configured for a 5V output, and can deliver 45mA with 3V input. EN for the MAX75 Circuit The MAX75 circuit on the EV kit provides a jumper (JU) to enable or disable the MAX75. Refer to Table for JU jumper settings. EN for the MAX7 Circuit The MAX7 circuit on the EV kit provides a jumper (JU) to enable/disable the MAX7. Refer to Table for JU jumper settings. Battery Holders The MAX7 EV kit provides battery holders for each of the two circuits. The battery holder V can accommodate a CR63 Lithium Coin cell to power the MAX75 circuit, while the V can hold an Energizer 364/363 silver oxide cell to power the MAX7 circuit. Table. EN on MAX75 (JU) JU SHUNT POSITION DESCRIPTION -* Enabled. EN = (through pullup resistor R) -3 Disabled. EN = Not Installed Enabled. EN = high (through internal pullup resistor) Spare Resistors and Inductors The EV kit provides spare resistors and inductors on the PCB s bottom side. The spare resistors can be used to reconfigure the EV kit to a different output voltage (V,.5V, 3V, or 3.3V). The spare inductors can be used to reconfigure the EV Kit output current ratings. Table. EN on MAX7 (JU) JU SHUNT POSITION *Default position. DESCRIPTION -* Enabled. EN = (through pullup resistor R) -3 Disabled. EN = Not Installed Enabled. EN = high (through internal pullup resistor) Component Suppliers Coilcraft Murata/TOKO TDK SUPPLIER Wurth Elektronik WEBSITE Note: Indicate that you are using the MAX7 MAX75 when contacting these component suppliers. Ordering Information PART MAX7EVKIT# #Denotes RoHS TYPE EV Kit *Default position. Maxim Integrated
3 MAX7 Evaluation Kit Evaluates: MAX7 MAX75 MAX7 EV Kit Bill of Materials ITEM REF_DES /D NP QTY MFG PART # MFG VALUE DESCRIPTION 3V, 5V, LX, LX TEKTRONICS CONNECTOR; WIREMOUNT; CIRCUIT BOARD TEST POT MIATURE PROBE; STRAIGHT; 4PS; C, C - GRM55R6J6M E44 MURATA UF CAPACITOR; SMT (4); CERAMIC CHIP; UF; 6.3V; TOL=%; TG=-55 DEGC TO +85 DEGC; TC=X5R; 3 C4, C4 - GRM55R6A6M E44 MURATA UF CAPACITOR; SMT (4); CERAMIC CHIP; UF; V; TOL=%; TG=-55 DEGC TO +85 DEGC; TC=X5R; 4, J-J4,,, KEYSTONE 54- TERMAL; TURRET; P DIA=.9; TOTAL LENGTH=.5; BOARD HOLE=.98; BRASS; T PLATG; 5 JU, JU - PEC3SAAN SULLS PEC3SAAN CONNECTOR; MALE; THROUGH HOLE; BREAKAWAY; STRAIGHT; 3PS 6 L - DFE6E-RM MURATA.UH DUCTOR; SMT (86); WIREWOUND CHIP;.UH; TOL=+/- %;.8A 7 LC - MLP5MRDT S TDK UH DUCTOR; SMT (4); FERRITE CHIP; UH; TOL=+/-%;.5A 8 LF - DFE688S- RM=P MURATA UH DUCTOR; SMT (63); MAGNETICALLY SHIELDED; UH; TOL=+/-%;.9A 9 LV - DFM8PANRMG L MURATA.UH DUCTOR; SMT (63); CERAMIC CHIP;.UH; TOL=+/-%;.A; LW - DFE6E-RM MURATA UH WURTH LX C.UH WURTH LY C.UH 3 L - XFL4-ME COILCRAFT.UH VISHAY DALE/PANASO 4 R - CRCW6ZS; ERJ-8GEYRV DUCTOR; SMT (86); WIREWOUND CHIP; UH; TOL=+/- %;.9A DUCTOR; SMT (); MOLDED CHIP;.UH; TOL=+/-%;.A EVKIT PART-DUCTOR; SMT; SHIELDED;.UH; TOL=+/- %; 5.A; DUCTOR; SMT; METAL COMPOSITE CORE;.UH; TOL=+/- %; 8A; -4 DEGC TO +5 DEGC NIC RESISTOR; 6; OHM; %; JUMPER;.5W; THICK FILM 5 R, R - HMC4JT C RESISTOR; 4; OHM; 5%; 4PPM;.63W; THICK FILM 6 R3, R4, R3, R4-4 ERJ-GERX PANASONIC RESISTOR; 4; OHM; %; JUMPER;.W; THICK FILM 7 R, RC - RMCF6FT33K C 33K RESISTOR; 6; 33K OHM; %; PPM;.5W; THICK FILM 8 RA - RMCF6FT768K C 768K RESISTOR; 6; 768K OHM; %; PPM;.5W; THICK FILM 9 RB - RMCF6FT34K C 34K RESISTOR; 6; 34K OHM; %; PPM;.5W; THICK FILM RESISTOR; 6; 8.6K OHM; %; PPM;.5W; THICK RD - RMCF6FT8K6 C 8.6K FILM TEST POT; JUMPER; STR; TOTAL LENGTH=.4; BLACK; SULATION=PBT;PHOSPHOR BRONZE CONTACT=GOLD SU, SU - SX-B KYCON SX-B PLATED MAX75ENT EVKIT PART - IC; PACKAGE OUTLE: -8; PACKAGE U - MAX75ENT+ MAXIM + CODE: N6E+; WLP6 3 U - MAX7ELT+ MAXIM MAX7ELT + EVKIT PART - IC; PACKAGE OUTLE: -64; PACKAGE CODE: L6-; DFN6 4 V - BHX-63-SM MEMORY PROTECTION DEVICES C. BHX-63- SM BATTERY HOLDER; SMT; CR63 SURFACE MOUNT BATTERY RETAER WITH SULATOR; CONTACTS: PHOSPHOR BRONZE C59; NICKEL PLATED 8-5U THICK 5 V - BK-879 MEMORY PROTECTION DEVICES C. BK-879 BATTERY HOLDER; SMT; CO CELL RETAER FOR 6.8MM DIA. BATTERIES;.5MM PHOSPHOR BRONZE; NICKEL PLATED 6 PCB - MAX MAXIM PCB PCB:MAX 3M ELECTRONIC SOLUTIONS DIVISION SJ- 53(BLACK) BUMPER; BLACK-HEMISPHERICAL SHAPE EVKIT EH3;.44D/.BH; RESILIENT ELASTOMER POLYURETHANE 7 MTH-MTH4 4 SJ-53(BLACK) C, C3, 8 C, C3 DNP N/A N/A PACKAGE OUTLE 4 NON-POLAR CAPACITOR 9 C5, C5 DNP N/A N/A PACKAGE OUTLE 63 NON-POLAR CAPACITOR 3 TP-TP8 DNP 5 KEYSTONE N/A TEST POT; P DIA=.; TOTAL LENGTH=.3; BOARD HOLE=.4; WHITE; PHOSPHOR BRONZE WIRE SILVER; TOTAL 49 Maxim Integrated 3
4 MAX7 Evaluation Kit Evaluates: MAX7 MAX75 MAX7 EV Kit Schematic V BK-879 V BHX-63-SM C C C UF JU C UF JU 3 3 R R C3 C B B A3 L.UH U MAX7ELT+ EN LX OUT SEL L.UH U MAX75ENT+ EN LX OUT SEL 4 A A B3 R3 R 33K % R3 R LX 3V R4 3V C4 UF C5 LX 5V R4 5V C4 C5 UF 3V 5V Maxim Integrated 4
5 MAX7 Evaluation Kit Evaluates: MAX7 MAX75 MAX7 Minimal Component Circuit Schematic L.UH U MAX7ELT+ C UF R 5 6 EN 3 LX OUT SEL 4 R 33K % C7 UF 3V L.UH U MAX75ENT+ C UF R B B EN A3 LX A OUT A SEL B3 R C7 UF 5V Maxim Integrated 5
6 MAX7 Evaluation Kit Evaluates: MAX7 MAX75 MAX7 EV Kit PCB Layout Diagrams MAX7 EV Kit Top Silkscreen MAX7 EV Kit Bottom MAX7 EV Kit Top MAX7 EV Kit Bottom Silkscreen Maxim Integrated 6
7 MAX7 Evaluation Kit Evaluates: MAX7 MAX75 Revision History REVISION NUMBER REVISION DATE DESCRIPTION PAGES CHANGED /7 Initial release 3/7 Updated Bill of Materials 4 4/7 Updated text and replaced schematic, BOM, and PCB layout diagrams 8 3 8/7 Updated text and replaced schematic, BOM, and PCB layout diagrams 8 For pricing, delivery, and ordering information, please contact Maxim Direct at , or visit Maxim Integrated s website at. 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. 7 Maxim Integrated Products, Inc. 7
8 Mouser Electronics Authorized Distributor Click to View Pricing, Inventory, Delivery & Lifecycle Information: Maxim Integrated: MAX7EVKIT#
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