C10, C12, C14 3 C11, C13, C15, C16 C18, C19, C20 3. Maxim Integrated Products 1
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1 9-57; Rev. 0; 7/0 MAX70 Evaluation Kit General Description The MAX70 evaluation kit (EV kit) is a fully assembled and tested surface-mount circuit board that demonstrates the MAX70B power-management IC. The IC is optimized for microprocessor-based applications. The MAX70B integrates three high-performance step-down DC-DC power supplies with associated supervisory and management functions. The first power supply () is configured for.v and provides up to 900mA. The second power supply (VCORE) is configured for.v and provides up to 00mA. The third power supply (VMEM) can be configured to.8v,.5v, or.v and provides up to 800mA. Power management functions include automatic power-up sequencing, power-on reset, manual reset with timer, and two levels of low-battery detection. The EV kit operates with a.6v to 5.5V input voltage range, allowing the use of batteries or a regulated DC power supply at the input. Features Triple-Output Power Supply.V Peripheral Output.V VCORE µp Core Output.8V,.5V, or.v Selectable VMEM Memory Output Internal Switches MHz Pulse-Width Modulation (PWM) Switching Adjustable Dead/Low-Battery Settings 900mA Available from the Output 800mA Available from the VMEM Output 00mA Available from the VCORE Output Surface-Mount Construction Fully Assembled and Tested Ordering Information PART TEMP RANGE IC PACKAGE MAX70EVKIT 0 C TO +70 C 6 QFN (6mm 6 mm) C.7µF ±0%, 6.V X5R ceramic capacitor (0805) TDK C0X5R0J75KT or Taiyo Yuden JMKBJ75MG Component List C9 0 Not installed, capacitor (0) C0, C, C.0µF ±0%, 0V X5R TDK C608X5RA05K C, C, C, C7 C5, C7 C6 C8 ±0%, 6.V X5R ceramic capacitors (06) TDK C6X5R0J06KT or Taiyo Yuden JMK6BJ06KL 000pF ±0%, 50V X7R TDK C608X7RH0KT or Taiyo Yuden UMK07CG0KZ 680pF ±0%, 50V X7R ceramic capacitor (060) TDK C608X7RH68KT or Taiyo Yuden UMK07CG68KZ 0.µF ±0%, 6V X7R ceramic capacitor (060) TDK C608X7RC0KT or Taiyo Yuden EMK07BJ0KA C, C, C5, C6 C8, C9, C0 0 Not installed, capacitors (060) JU -pin header JU -pin header L, L ±5%, 50V COG TDK C608COGH0JT or Taiyo Yuden UMK07CG0JZ.7µH,.A inductors Sumida CDRHD8-R7 L.7µH, 900mA inductor Sumida CDRHD6-R7NC R 67kΩ ± resistor (060) R 90.9kΩ ± resistor (060) R 7kΩ ± resistor (060) Maxim Integrated Products For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at , or visit Maxim s website at
2 MAX70 Evaluation Kit Component List (continued) R kω ±5% resistor (060) R5 8.06kΩ ± resistor (060) R6 kω ± resistor (060) R7 8kΩ ±5% resistor (060) R8 kω ±5% resistor (060) R9 R ±5% resistors (060) R Ω ±5% resistor (060) SW Momentary contact switch U MAX70BEGX (6-pin QFN, 6mm x 6mm) Shunts (JU, JU) MAX70 PC board MAX70B data sheet MAX70 EV kit data sheet Quick Start The MAX70 EV kit is a fully assembled and tested surface-mount board. Follow the steps below for board operation. Do not turn on the power supply until all connections are completed: ) Verify that a shunt is across pins and of jumper JU (ON). ) Verify that a shunt is across pins and of jumper JU (PGM). ) Connect a voltmeter across the pad and I pad to monitor the output voltage. ) Connect a voltmeter across the VCORE pad and C pad to monitor the VCORE output voltage. 5) Connect a voltmeter across the VMEM pad and M pad to monitor the VMEM output voltage. 6) Connect the positive terminal of a.5v supply to the pad. Connect the negative terminal to the pad. 7) Turn on the power supply and verify that the output is at.v, VCORE output is at.v, and VMEM output is at.5v. 8) Use a voltmeter to verify that LBO, OUTOK, and RSO are at.v and is at.5v. Detailed Description The MAX70 EV kit is a fully assembled and tested surface-mount circuit board that demonstrates the capability of the MAX70B triple-output step-down DC-DC converter optimized for microprocessor-based applications. The MAX70B integrates three high-performance, MHz PWM switching, step-down DC-DC power supplies. These power supplies can be used to power the microprocessor, memory, and I/O peripherals in a single system. The microprocessor VCORE supply is configured for.v and provides up to 00mA. The memory VMEM supply is configurable to.8v,.5v, or.v and provides up to 800mA. The I/O peripheral supply is configured for.v and provides up to 900mA. The VPLL output is a filtered output from VCORE that can be used to supply noise-sensitive circuitry such as a phase-lock loop. The EV kit input voltage range is.6v to 5.5V and requires up to A of current from the source with all outputs fully loaded. Input Source The MAX70 EV kit has a.6v to 5.5V input voltage range that allows the use of batteries or a regulated DC power supply as the power source. However, the EV kit requires a minimum of.6v at the input for the output supply to regulate to.v ±%. If the input voltage falls below.6v, tracks the input voltage. If VMEM is configured to regulate at.v, it also tracks the input voltage below.6v. Input Thresholds The MAX70B contains two low-battery detection thresholds, dead battery (DBI) and low-battery (LBI), that are used to monitor the input power source to the EV kit. These thresholds are programmable with external resistors. The DBI threshold is set to.7v and the Component Suppliers SUPPLIER PHONE FAX WEBSITE Sumida Taiyo Yuden TDK Note: Please indicate that you are using the MAX70 when contacting these component suppliers.
3 MAX70 Evaluation Kit Table. VMEM Output Settings (JU) SHUNT STATUS PIN CONNECTION VMEM OUTPUT (V) and PGM connected to. and PGM connected to.5 and PGM connected to.8 LBI threshold is set to.6v with resistors R, R, and R. If the input source falls below the LBI threshold, the low-battery LBO output is pulled low. The EV kit enters shutdown mode when the input source falls below the DBI threshold. Replace resistors R, R, and R with different values to reconfigure the DBI and LBI thresholds. Refer to the MAX70B data sheet to select new resistor values for R, R, and R. Power-Up Sequence The MAX70 EV kit power-up sequence is initiated when the input voltage is greater than the dead-battery setting (DBI) and greater than the UVLO threshold (.V). During initial power-up, first ramps up in a soft-start mode. Once reaches its regulation voltage, VMEM ramps to its target in soft-start mode. Finally, once VMEM reaches its regulation voltage, VCORE ramps to its target in soft-start mode. The reset output RSO is held low during this time. Once the VCORE output has reached its target voltage, a 65.5ms reset timer is started. RSO is pulled high when the timer expires. The timer may be manually reset by pushing the momentary switch SW or by applying a logic-low signal at the MR pad. The outputs stay on during the manual reset. Triple Outputs The MAX70 EV kit features three (VCORE, VMEM, and ) step-down DC-DC converters that can be set to regulate to different voltages. VCORE can supply 00mA at an output voltage of.v. The VCORE output voltage is set with resistors R5 and R6. Refer to the Setting the Output Voltages section in the MAX70B Table. Normal/Sleep Mode (JU) SHUNT STATUS and and None PIN CONNECTION ON connected to ON connected to ON connected to external controller EV KIT OPERATION Normal mode Sleep mode (VCORE disabled, and VMEM remain enabled) External controller determines operation mode data sheet for instructions on selecting resistors R5 and R6. VMEM can supply 800mA at an output voltage of.v,.5v, or.8v and can be set by configuring JU. See Table for JU configuration. output voltage is fixed to.v and can supply 900mA. SLEEP Mode The EV kit contains a -pin jumper (JU) that can be used to enable the MAX70B in normal mode or to place it in sleep mode. In normal operation, the three converters are enabled. In sleep mode, VCORE is in shutdown while and VMEM remain enabled. Sleep mode allows the microprocessor to enter sleep mode while memory and I/O peripherals are kept alive in a system application. See Table for JU configuration. Normal and sleep modes can also be controlled with an external device by removing the shunt on JU and applying a CMOS logic-level signal to the ON pad. OUTOK Output The MAX70 EV kit provides an OUTOK logic output signal to indicate the regulation state of VCORE. A logic low at the OUTOK pad indicates that the VCORE output has dropped to 9.5% of its regulation voltage. A logic high at OUTOK indicates that VCORE is 95.5% of its regulation voltage.
4 MAX70 Evaluation Kit OUTOK ON ON PGM COMP FB PG LX LX PG OUT INP COMP PG LX OUT INP COMP INP SW OUTOK U MAX70B R kω C8 C5 000pF C C C µf DBI LBI LBO RSO MR R 67kΩ R9 R0 R R C.7µF C9 R 7kΩ R 90.9kΩ IN JU 5 LBO JU RSO MR L.7µH VMEM VPLL C M VCORE I C0 µf C8 0.µF R8 kω C0 0 5 C7 000pF R7 8kΩ R Ω C6 680pF 9 R6 kω 8 C µf R5 8.06kΩ C6 C L.7µH L.7µH C C C9 C5 C7 Figure. MAX70 EV Kit Schematic
5 MAX70 Evaluation Kit Figure. MAX70 EV Kit Component Placement Guide Component Side Figure. MAX70 EV Kit PC Board Layout Component Side Figure. MAX70 EV Kit PC Layout Solder Side Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. Maxim Integrated Products, 0 San Gabriel Drive, Sunnyvale, CA Maxim Integrated Products Printed USA is a registered trademark of Maxim Integrated Products.
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9-005; Rev ; /06 General Description The MAX557 evaluation kit (EV kit) is a fully assembled and tested surface-mount circuit board that evaluates the MAX557 digital potentiometer. Included software generates
More informationMAX14972 Evaluation Kit Evaluates: MAX14972
19-6165; Rev 0; 12/11 MAX14972 Evaluation Kit General Description The MAX14972 evaluation kit (EV kit) provides a proven design to evaluate the MAX14972 dual SuperSpeed USB 3.0 equalizer/redriver utilizing
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19-2360; Rev 0; 3/02 MAX7432 Evaluation Kit General Description The MAX7432 evaluation kit (EV kit) is an assembled and tested circuit board that demonstrates the MAX7428, MAX7430, and MAX7432 standard
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9-6; Rev 0; 5/ MAX56PMB Peripheral Module General Description The MAX56PMB peripheral module provides the necessary hardware to interface the MAX56 6-bit DAC to any system that utilizes PmodK-compatible
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19-4069; Rev 0; 3/08 MAX6620 Evaluation Kit/Evaluation System General Description The MAX6620 evaluation system (MAX6620EVCMAXQU+) consists of the MAX6620 evaluation kit (MAX6620EVKIT+) and the Maxim CMAXQUSB+
More informationEvaluates: MAX MAX14970 Evaluation Kit. General Description. Quick Start (Application Circuit) Features. Table 1. Default Shunt Positions
General Description The MAX14970 evaluation kit (EV kit) provides a proven design to evaluate the MAX14970 dual-channel buffer. The EV kit contains four sections: an application circuit, characterization
More informationMAX44000PMB1 Peripheral Module
19-6335; Rev 0; 5/12 MAX44000PMB1 Peripheral Module General Description The MAX44000PMB1 peripheral module provides the necessary hardware to interface the MAX44000 ambient and infrared proximity sensor
More informationS 27-Bit Parallel Interface S Rosenberger Connector (Cable Included) S Proven PCB Layout S Fully Assembled and Tested. Maxim Integrated Products 1
19-90; Rev 0; 9/09 MAX97/MAX98 Evaluation Kit General Description The MAX97/MAX98 evaluation kit (EV kit) provides a proven design to evaluate the MAX97 7-bit,.5MHz to MHz DC-balanced LVDS serializer and
More informationC2, C18, C19, C20, C24
19-4550; Rev 0; 4/09 General Description The MAX17088 evaluation system (EV system) consists of the MAX17088 evaluation kit (EV kit) and the Maxim CMAXQUSB command module. Windows 2000/XP - and Windows
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9-60; Rev 0; / MAX0PMB Peripheral Module General Description The MAX0PMB peripheral module provides the necessary hardware to interface the MAX0 6-bit ADC to any system that utilizes PmodK-compatible expansion
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9-; Rev 0; /07 MAX9768 Evaluation Kit/Evaluation System General Description The MAX9768 evaluation kit (EV kit) is a fully assembled and tested printed-circuit board (PCB) that demonstrates the capabilities
More informationS USB-PC Connection (Cable Not Included) S USB Powered (No External Power Supply Required) S Real-Time Data Acquisition Through the USB
19-5610; Rev 1; 8/11 MAXADClite Evaluation Kit General Description The MAXADClite evaluation kit (EV kit) evaluates the MAX11645, Maxim's smallest, very-low-power, 12-bit, 2-channel analog-to-digital converter
More informationS IEEE 802.3af/at-Compliant PSE Circuit. Maxim Integrated Products 1
19-5740; Rev 0; 1/11 MAX5971A Evaluation Kit General Description The MAX5971A evaluation kit (EV kit) is a fully assembled and tested surface-mount circuit board featuring an Ethernet single-port power-sourcing
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9-99; Rev 0; /06 MAX96 Evaluation Kit General Description The MAX96 evaluation kit (EV kit) is a fully assembled and tested PC board that evaluates the MAX96 - channel, single-ended, -bit, SAR ADC. The
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19-6239; Rev 0; 3/12 General Description The MAX17048/MAX17049 evaluation kits (EV kits) consist of the MAX17048/MAX17049 evaluation kit (EV kit) and the Maxim DS91230+ command module. A Windows XP M -,
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19-6332; Rev 0; 5/12 MAX31723PMB1 Peripheral Module General Description The MAX31723PMB1 peripheral module provides the necessary hardware to interface the MAX31723 digital thermometer and thermostat to
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General Description The MAX98356 evaluation kit (EV kit) is a fully assembled and tested PCB that evaluates the MAX98356 PDM digital input Class D power amplifier. The EV kit operates from a single 2.5V
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19-6314; Rev 0; 5/12 MAX544X Evaluation Kit General Description The MAX544X evaluation kit (EV kit) provides a proven design to evaluate the MAX5441 MAX5442 serial-input, voltage-output, 16-bit digital-to-analog
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Introduction The AAT1157 evaluation board demonstrates performance, along with the suggested size and placement of external components, for the AAT1157 integrated buck regulator. The external components
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19-6340; Rev 0; 5/12 MAX54X Evaluation Kit General Description The MAX54X evaluation kit (EV kit) provides a proven design to evaluate the MAX541/MAX542 serial-input, voltage-output, 16-bit digital-to-analog
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19-4296; Rev 0; 10/08 General Description The MAX1379 evaluation kit (EV kit) is a fully assembled and tested PCB that evaluates the MAX1379 dual, 12-bit, 1.25Msps, simultaneous sampling ADC. The EV kit
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19-2972; Rev 0; 9/03 MAX2009/MAX2010 Evaluation Kits General Description The MAX2009/MAX2010 evaluation kits (EV kits) simplify the evaluation of the MAX2009 and MAX2010. These kits are fully assembled
More information+Denotes lead(pb)-free and RoHS compliant. C35 1 C36 1 D2 1 D3 1 FB1 1 P1 1
19-4306; Rev 0; 10/08 General Description The MAX9132 evaluation kit (EV kit) provides a proven design to evaluate the MAX9132 high-speed multipleport LVDS crossbar switches. The MAX9132 has three input
More informationEvaluates: MAX14571 MAX MAX14571 Evaluation Kit. General Description. Features. MAX14571 EV Kit Photo
General Description 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
More informationEvaluate: MAX14589E/MAX14594E/ MAX MAX14589E/MAX14594E/ MAX14689 Evaluation Kits. Features and Benefits. General Description.
Evaluation Kits General Description The MAX14589E/MAX14594E/ evaluation kits (EV kits) are fully assembled and tested circuit boards that demonstrate the functionality of the MAX14589E, MAX14594E, and
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