IC-Hersteller Analog Devices

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Analog Devices LTC3311-0.85 | Demoboard DC3059A

3.3V to 0.85V at 12.5A, 2MHz Automotive Low EMI Buck Regulator in a 1.04cm2 Solution

Details

TopologieAbwärtswandler
Eingangsspannung3-3.6 V
Schaltfrequenz1800-2200 kHz
Ausgang 10.85 V / 12.5 A

Beschreibung

Demonstration Circuit 3059A features the LTC®3311-0.85,fixed 0.85V, 12.5A synchronous step-down Silent Switcher® operating as a 2MHz, 3V to 3.6V input, 0.85V/12.5A output buck regulator. The LTC3311-0.85 supports fixed 0.85V output voltage with operating frequencies from 500kHz up to 5MHz. The LTC3311-0.85 is a compact, ultralow emission, high efficiency, and high speed synchronous monolithic step-down switching regulator. The LTC3311-0.85 has Active Voltage Positioning (AVP) where the output voltage is dependent on load current. At light loads the output voltage is regulated above the nominal value. At full load the output voltage is regulated below the nominal value. The DC load regulation is adjusted to improve transient performance and reduce required output capacitance.DC3059A is set up to run in forced continuous mode with a 2MHz switching frequency but can be configured to run at different switching frequencies, or in pulse skip mode. The LTC3311-0.85 oscillator can also synchronize to an external clock using MODE/SYNC turret, with the DC3059 default setup. Figure 5 shows the efficiency and power loss of the DC3059A with a 3.3V input in both operation modes.The DC3059A is optimized for keeping its output within ±3% of the target voltage during a 4A to 8A, 4A/μs load step transient. A fast load step transient circuit is placed on the back of the demo board to measure the load step response of the converter.The DC3059A also has an EMI filter to reduce conducted EMI. This EMI filter can be included by applying the input voltage at the VIN EMI terminal. The EMI performance of the board is shown in the EMI Test Results section. The red lines in the EMI performance graphs illustrate the CISPR25 Class 5 peak limits for the conducted and radiated emission tests.The LTC3311-0.85 data sheet gives a complete description of the part and its application information. The data sheet must be read in conjunction with this demo manual. The LTC3311-0.85 is assembled in a 3mm × 3mm LQFN package with exposed pads for low thermal resistance. The layout recommendations for low EMI operation and maximum thermal performance are available in the data sheet section Low EMI PCB Layout.

Eigenschaften

  • Pin Compatible with LTC3310/LTC3310S and LTC3311S
  • Silent Switcher® Architecture:
  • Ultralow EMI Emissions
  • High Efficiency—4.5mΩ NMOS and 16mΩ PMOS
  • Wide Bandwidth, Fast Transient Response
  • Safely Tolerates Inductor Saturation in Overload
  • VIN Range: 2.25V to 5.5V
  • VOUT Range: 0.5V to VIN
  • VOUT Accuracy: ±1% with Remote Sense
  • Peak Current Mode Control
  • Minimum On-Time: 35ns
  • Programmable Frequency to 5MHz
  • Precision 400mV Enable Threshold, 1µA in Shutdown
  • Output Soft-Start with Voltage Tracking
  • Power Good Output
  • Die Temperature Monitor
  • Configurable for Paralleling Power Stages in Forced Continuous Mode
  • Thermally-Enhanced 3mm × 3mm LQFN Package
  • AEC-Q100 Qualified for Automotive Applications

Typische Anwendungen

  • Communications
  • Industrial
  • Servers, Telecom Power Supplies, Distributed DC Power Systems (POL)
  • Automotive

Weiterführende Informationen

Artikeldaten

Artikel Nr. Daten­blatt Simu­lation Downloads ProduktserieZ @ 100 MHz
(Ω)
Zmax
(Ω)
Testbedingung ZmaxIR
(mA)
Z @ 1 GHz
(Ω)
H
(mm)
TypPinsReihenGenderVerpackung Muster
74279226101SPEC
8 Dateien WE-MPSB EMI Multilayer Power Suppression Bead 100 160 1100 MHz 8000 150 2.3 High Current
60800213421SPEC
3 Dateien WR-PHD 2.00 mm Jumper with Test Point 3000 2 Jumper Beutel
62000311121SPEC
6 Dateien WR-PHD 2.00 mm THT Pin Header 2000 Gerade 3 Single Pin Header Beutel
Artikel Nr. Daten­blatt Simu­lation
74279226101SPEC
60800213421SPEC
62000311121SPEC
Muster
Artikel Nr. Daten­blatt Simu­lation Downloads ProduktserieZ @ 100 MHz
(Ω)
Zmax
(Ω)
Testbedingung ZmaxIR
(mA)
Z @ 1 GHz
(Ω)
H
(mm)
TypPinsReihenGenderVerpackung Muster