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  2. Power Management
  3. Switching Regulators
  4. Step-Down (Buck) Regulators
  5. Internal Power Switch Buck Regulators
  6. MAX17570


Overview

Features and Benefits

  • Reduces External Components and Total Cost
    • No Schottky—Synchronous Operation
    • Internal Compensation
    • Internal Soft-Start
    • All-Ceramic Capacitors, Ultra-Compact Layout
  • Flexibility to Support Multiple Rails in a System
    • Wide 4.5V to 60V Input Voltage Range
    • Fixed 3.3V and 5V Output Options
    • Adjustable Output from 0.9V to 97% of VIN
    • Delivers Up to 300mA Load Current
    • 200kHz to 1MHz Adjustable Switching Frequency with External Clock Synchronization
  • Reduces Power Dissipation
    • 95.8% Peak Efficiency for VIN = 15V, VOUT = 12V, IOUT = 150mA
    • Shutdown Current = 2.2μA (typ)
    • PFM Options for Superior Light Load Efficiency
  • Operates Reliably in Adverse Industrial Environments
    • Hiccup-Mode Current Limit and Autoretry Startup
    • Open-Drain Power Good Output (RESET Pin)
    • Programmable EN/UVLO Threshold
    • Monotonic Startup into Prebiased Output
    • Overtemperature Protection
    • High Industrial -40°C to +125°C Ambient Operating Temperature Range/-40°C to +150°C Junction Temperature Range
    • Complies with CISPR32 (EN55032) Class B Conducted and Radiated Emissions

Product Details

The MAX17570 is a high-efficiency, high-voltage, synchronous step-down DC-DC converter with integrated MOSFETs operates over a wide 4.5V to 60V input voltage range. The converter delivers output current up to 300mA at 3.3V (MAX17570A, MAX17570D), 5V (MAX17570B, MAX17570E), and adjustable output voltages (MAX17570C, MAX17570F). When EN/UVLO and V<sub>CC</sub> UVLO are satisfied, an internal power-up sequence soft-starts the error-amplifier reference, resulting in a clean monotonic output-voltage soft-start independent of the load current. The V<sub>OUT</sub>/FB pin monitors the output voltage through a resistor-divider. RESET pin transitions to a high-impedance state 1024 cycles after the output voltage reaches 95% of regulation. By pulling the EN/UVLO pin to low, the device enters the shutdown mode and consumes only 2.2μA (typ) of standby current.

The MAX17570A/B/C operate in pulse-width modulation (PWM) mode at all loads and the MAX17570D/E/F operate in PFM mode at light loads. In PWM mode, the inductor current is allowed to go negative. PWM operation is useful in frequency sensitive applications and provides fixed switching frequency at all loads. In PFM mode, converter disables negative inductor current and additionally skips pulses at light loads for high efficiency. In PFM mode, the inductor current is forced to a fixed peak of 150mA every clock cycle until the output rises to 102.3% of the nominal voltage. Once the output reaches 102.3% of the nominal voltage, both high-side and low-side FETs are turned off and the part enters hibernate operation until the load discharges the output to 101.1% of the nominal voltage. Most of the internal blocks are turned off in hibernate operation to save quiescent current. After the output falls below 101.1% of the nominal voltage, the device comes out of hibernate operation, turns on all internal blocks, and again commences the process of delivering pulses of energy to the output until it reaches 102.3% of the nominal output voltage. The advantage of the PFM mode is higher efficiency at light loads because of lower quiescent current drawn from supply.

APPLICATIONS

  • Factory Automation
  • Aftermarket Automotive
  • General Point of Load

Product Lifecycle icon-recommended Recommended for New Designs

This product has been released to the market. The data sheet contains all final specifications and operating conditions. For new designs, ADI recommends utilization of these products.

Evaluation Kits (3)

Design Resources

ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well.  "Zero defects" for shipped products is always our goal.View our quality and reliability program and certifications for more information.

Part Number Material Declaration Reliability Data Pin/Package Drawing CAD Symbols, Footprints & 3D Models
MAX17570AATA+ Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570AATA+T Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570BATA+ Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570BATA+T Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570CATA+ Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570CATA+T Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570DATA+ Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570DATA+T Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570EATA+ Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570EATA+T Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570FATA+ Material Declaration Reliability Data 8-LFCSP-2X2X0.75
MAX17570FATA+T Material Declaration Reliability Data 8-LFCSP-2X2X0.75
Wafer Fabrication Data

Sample & Buy


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Pricing displayed is based on 1-piece. The USA list pricing shown is for budgetary use only, shown in United States dollars (FOB USA per unit), and is subject to change. International prices may vary due to local duties, taxes, fees and exchange rates.