LTC1629-6

Features: · Reduces Required Input Capacitance and Power Supply Induced Noise· True Remote Sensing Differential Amplifier· 0.6V, ±1% Voltage Reference Accuracy· PolyPhase Controller Operates from Two to Twelve Phases· Current Mode Control Ensures Current Sharing· Phase-Lockable Fixed Frequency: 15...

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SeekIC No. : 004401749 Detail

LTC1629-6: Features: · Reduces Required Input Capacitance and Power Supply Induced Noise· True Remote Sensing Differential Amplifier· 0.6V, ±1% Voltage Reference Accuracy· PolyPhase Controller Operates from Tw...

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Part Number:
LTC1629-6
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/21

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Product Details

Description



Features:

· Reduces Required Input Capacitance and Power Supply Induced Noise
· True Remote Sensing Differential Amplifier
· 0.6V, ±1% Voltage Reference Accuracy
· PolyPhase Controller Operates from Two to Twelve Phases
· Current Mode Control Ensures Current Sharing
· Phase-Lockable Fixed Frequency: 150kHz to 300kHz
· 1.8MHz Effective Switching Frequency Capability
· OPTI-LOOP® Compensation Reduces COUT
· Power Good Output Voltage Monitor
· Wide VIN Range: 4V to 36V Operation
· Very Low Dropout Operation: 99% Duty Cycle
· Adjustable Soft-Start Current Ramping
· Internal Current Foldback Plus Shutdown Timer
· Overvoltage Soft-Latch Eliminates Nuisance Trips
· Micropower Shutdown
· Available in 28-Lead SSOP Package



Application

·Desktop Computers
·Internet Servers
·Large Memory Arrays
·DC Power Distribution Systems



Pinout

  Connection Diagram


Specifications

Input Supply Voltage (VIN)...................................36V to 0.3V
Topside Driver Voltages (BOOST1,2) ...................42V to 0.3V
Switch Voltage (SW1, 2) .......................................36V to 5 V
SENSE1+, SENSE2+, SENSE1,
SENSE2 Voltages ................................ (1.1)INTVCC to 0.3V
EAIN, VOS
+, VOS
, EXTVCC, INTVCC,
RUN/SS, PGOOD Voltages ....................................7V to 0.3V
Boosted Driver Voltage (BOOST-SW) ...................7V to 0.3V
PLLFLTR, PLLIN, CLKOUT, PHASMD,
VDIFFOUT Voltages ..................................... INTVCC to 0.3V
ITH Voltage ......................................................2.7V to 0.3V
Peak Output Current <1ms(TGL1,2, BG1,2) ..................... 5A
INTVCC RMS Output Current ....................................... 50mA
Operating Ambient Temperature Range
LTC1629EG-6 (Note 6) .................................... 40 to 85
Junction Temperature (Note 2) ................................... 125
Storage Temperature Range ........................ 65 to 150
Lead Temperature (Soldering, 10 sec)........................ 300



Description

The LTC®1629-6 is a PolyPhaseTM synchronous stepdown current mode switching regulator controller with 0.6V reference that drives N-channel external power MOSFET stages in a phase-lockable fixed frequency architecture. The PolyPhase controller drives its two output stages out of phase at frequencies up to 300kHz to minimize the RMS ripple currents in both input and output capacitors. The output clock signal allows expansion for up to 12 evenly phased controllers for systems requiring 15A to 200A of output current.


The multiple phase technique of LTC1629-6 effectively multiplies the fundamental frequency by the number of channels used, improving transient response while operating each channel at an optimum frequency for efficiency. Thermal design is also simplified. An internal differential amplifier provides true remote sensing of the regulated supply's positive and negative output terminals as required for high current applications. A RUN/SS pin provides both soft-start and optional timed, short-circuit shutdown

. Current foldback limits MOSFET dissipation during short-circuit conditions when the overcurrent latchoff is disabled. OPTI-LOOP compensation allows the transient response to be optimized over a wide range of output capacitance and ESR values. The LTC1629-6 includes a power good output pin that indicates when the output voltage is inside the ±10% tolerance window.




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