Details, datasheet, quote on part number: MAX14913EVKIT
PartMAX14913EVKIT
Category
TitleEV KIT FOR MAX14913
Description

Maxim’s MAX14913AKN+ has eight 640 mA smart high-side switches that can also be configured as push-pull drivers for high-speed switching. The propagation delay from input to switching of the high-side / low-side drivers is 1 µs (maximum). Each high-side driver has a low on-resistance of 230 mΩ (maximum) at 500 mA load current at TA = 125°C.



CompanyIntegra Technologies
DatasheetDownload MAX14913EVKIT datasheet
  
MAX14913EVKIT photo

Others parts numbering
MAX14913AKN+: IC OCTAL SWITCH P-P DRIVER 56QFN

 

Features, Applications

The MAX14912/MAX14913 have eight 640mA smart highside switches that can also be configured as push-pull drivers for high-speed switching. The propagation delay from input to switching of the high-side/low-side drivers is 1s (max). Each high-side driver has a low on-resistance of 230m (max) at 500mA load current = 125C. The device is configured and controlled either through pins or the SPI interface. The SPI interface is daisy-chainable, which allows efficient cascading of multiple devices. SPI also supports command mode, for the highest detailed diagnostic information. The MAX14912 allows configuration through SPI in parallel and serial setting modes, while the MAX14913 only supports configuration through SPI in serial setting mode. Open-load detection in high-side mode detects both open-wire conditions in the switch on/off states, and LED drivers provide indication of per-channel fault and status conditions. Internal active clamps accelerate the shutdown of inductive loads fast in high-side mode. The MAX14912/MAX14913 are available a 56-pin QFN x 8mm package.

Low Power and Heat Dissipation 230m (max) High-Side RON = 125C High-Efficiency 5V/100mA Buck Regulator Fast Switching Ideal for High-Speed Control Systems 0.1s (typ.) Propagation Delay (High-Side Mode) 0.5s (typ.) Propagation Delay (Push-Pull Mode) 200kHz Switching-Rate Capability in Push-Pull Mode Fast Inductive Load Demagnetization Robust Operation 60V Abs Max VDD Rating Safe-Demagnetization: Turn-Off of Unlimited Inductance IEC61000-4-2 8kV Air Gap/6kV Contact ESD Protection 1kV/42 Surge Protection with TVS on VDD Robust SPI Interface with Watchdog and CRC to +125C Ambient Operating Temperature Range Extensive Diagnostics Reduces System Downtime Per Driver and Chip Thermal Shutdown Open-Wire Detection in High-Side Mode Low Supply Voltage Warning Undervoltage Detection Overvoltage Detection on OUT Overcurrent Detection LED Drivers for Visual Fault and Output State Indication Flexible Interface for Ease of Design Serial and/or Parallel Control Interface Per-Channel Configuration and Monitoring Wide Logic Voltage Range to 5.5V) Small Package and High Integration Enables Compact High-Density I/O Modules 56-Pin QFN x 8mm Package Eight High-Side Switches/Push-Pull Drivers Daisy-Chainable SPI Interface

Applications
Industrial Digital Outputs PLC Systems Building Automation


(All voltages relative to GND.) VDD......................................................................... to +60V PGND.................................................................... to +0.3V BUKEN, LX................................................ -0.3V to (VDD + 0.3V) VPMP.................................................(VDD 0.3V) to (VDD + 6V) OUT_ (continuous voltage).............(VDD 49V) to (VDD 0.3V) V5, VL....................................................................... to +6V CFP............................................. (VDD 0.3V) to (VPMP + 0.3V) CFN......................................................... -0.3V to (VPMP + 0.3V) SDO.............................................................. -0.3V to (VL + 0.3V) SDI, CLK, CS........................................................... to +6V IN_, PUSHPL, FLTR, SRIAL, EN, FAULT, to +6V LED_, LD_.................................................... + 0.3V) Inductive Kickback Energy OUT_ pins: < 0.6A......... Unlimited OUT_ Load Current...........................................Internally Limited Continuous-Current (any other terminal).........................100mA Continuous Power Dissipation (TA = +70C) QFN (derate 47.6mW/C above 70C)....................... 3800mW Junction Temperature........................................Internally Limited Storage Temperature Range............................. to +150C Lead Temperature (Soldering, 10sec).............................. +300C

Thermal Resistances QFN56-EP package Junction-to-Ambient Thermal Resistance (JA), Multilayer Board............................................................21C/W Junction-to-Case Thermal Resistance (JC), Multilayer Board...........................................................1.0C/W

Note 1: Package thermal resistances were obtained using the method described in JEDEC specification JESD51-7, using a four-layer board. For detailed information on package thermal considerations, refer to www.maximintegrated.com/thermal-tutorial.

Stresses beyond those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.

(VDD to +125C, unless otherwise noted. Typical values are = +25C and VDD = +24V, CDCDC = 10F, LDCDC = 100H, CFLY = 200nF, CPUMP = 10F, unless otherwise noted.) PARAMETER SUPPLY VDD Supply Voltage VDD HS mode, EN = high, OUT_ outputs high (no switching), no load, V5 and VL supplied externally PP mode, EN = high, 100kHz switching on all OUT_, V5 and VL supplied externally, no load VDD Undervoltage-Lockout Threshold VDD Undervoltage-Lockout Hysteresis VDD Low-Voltage Warning Threshold VDD Low-Voltage Warning Hysteresis VDD_UV VDD_UVHYST VDD_LV VDD_LVHYST = 5V, VDD rising = 5V VDD falling 5V V SYMBOL CONDITIONS MIN TYP MAX UNITS


 

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MAX14913AKN+

Maxim’s MAX14913AKN+ has eight 640 mA smart high-side switches that can also be configured as push-pull drivers for high-speed switching. The propagation delay from input to switching of the high-side

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