FAN5026

Features: • Highly flexible dual synchronous switching PWM controller includes modes for: DDR mode with in-phase operation for reduced channel interference 90° phase shifted two-stage DDR Mode for reduced input ripple Dual Independent regulators 180° phase shifted• Complete DDR Memory ...

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SeekIC No. : 004340376 Detail

FAN5026: Features: • Highly flexible dual synchronous switching PWM controller includes modes for: DDR mode with in-phase operation for reduced channel interference 90° phase shifted two-stage DDR Mode...

floor Price/Ceiling Price

Part Number:
FAN5026
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: 2024/12/21

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Product Details

Description



Features:

• Highly flexible dual synchronous switching PWM controller includes modes for:
DDR mode with in-phase operation for reduced channel interference
90° phase shifted two-stage DDR Mode for reduced input ripple
Dual Independent regulators 180° phase shifted
• Complete DDR Memory power solution
VTT Tracks VDDQ/2
VDDQ/2 Buffered Reference Output
• Lossless current sensing on low-side MOSFET or Precision current sensing using sense resistor
• VCC Under-voltage Lockout
• Wide power input range: 3 to 16V
• Excellent dynamic response with Voltage Feed-Forward and Average Current Mode control
• Power-Good Signal
• Also supports DDR-II and HSTL
• TSSOP28 package





Application

• DDR VDDQand VTT voltage generation
• Desktop Computer
• Graphics cards





Pinout

  Connection Diagram




Specifications

Parameter Min. Typ. Max. Units
VCC Supply Voltage 6.5 V
VIN 18 V
BOOT, SW, ISNS, HDRV 24 V
BOOT to SW 6.5 V
All Other Pins 0.3 VCC+0.3 V
Junction Temperature (TJ) 40 150 °C
Storage Temperature 65 150 °C
Lead Soldering Temperature, 10 seconds 300 °C




Product Product status Eco Status Pricing* Package type Leads Packing method Package Drawing Package Marking Convention**
FAN5026MTCX Full Production RoHS Compliant $1.11 TSSOP 28 TAPE REEL Line 1: $Y (Fairchild logo)
&Z (Asm. Plant Code)
&2 (2-Digit Date Code)
&K Line 2: 5026MTC Line 3: C2
* Fairchild 1,000 piece Budgetary Pricing
** A sample button will appear if the part is available through Fairchild's on-line samples program. If there is no sample button, please contact a Fairchild distributor to obtain samples

Package marking information for product FAN5026 is available. Click here for more information .





Description

The FAN5026 PWM controller provides high efficiency and regulation for two output voltages adjustable in the range from 0.9V to 5.5V that are required to power I/O, chip-sets, and memory banks in high-performance computers, set top boxes, and VGA cards. Synchronous rectification contributes to high efficiency over a wide range of loads. Efficiency is even further enhanced by using MOSFET's RDS(ON) as a current sense component.

Feed-forward ramp modulation, average current mode control scheme, and internal feedback compensation provide fast response to load transients. Out-of-phase operation with 180 degree phase shift reduces input current ripple. The controller can be transformed into a complete DDR memory power supply solution by activating a designated pin. In DDR mode of operation one of the channels tracks the output voltage of another channel and provides output current sink and source capability - features essential for proper powering of DDR chips. The buffered reference voltage required by this type of memory is also provided. The FAN5026 monitors these outputs and generates separate PGx (power good) signals when the soft-start is completed and the output is within ±10% of its set point. A built-in over-voltage protection prevents the output voltage from going above 120% of the set point. Normal operation is automatically restored when the over-voltage conditions go away. Under-voltage protection latches the chip off when either output drops below 75% of its set value after the soft-start sequence for this output is completed. An adjustable over-current function monitors the output current by sensing the voltage drop across the lower MOSFET. If precision current-sensing is required, an external currentsense resistor may optionally be used.






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