LX1677
TM ®
AMD64 Processor VRM Controller
P RODUCTION D ATA S HEET
DESCRIPTION
KEY FEATURES High Current Biphase Operation Outputs As Low As 0.800V † Biphase LoadSHARETM ‡ Transient Correction Loop™ Reduces Required Capacitance Differential Amplifier For Remote Voltage Sensing Integrated High Current MOSFET Drivers 200KHz to 1MHz Frequency Operation Programmable Slew Rate Control For Start-Up Sequence and VID change VID Changes On The Fly Power Good Indicator Short Circuit Protection Output Over Voltage and Under Voltage Protection No current-sense resistors
APPLICATIONS
The LX1677 is a highly integrated VRM power supply controller IC featuring two PWM switching regulator stages. The two constant frequency voltage-mode PWM phases are configured as a single biphase high current output core supply. In biphase operation, the high current (>35A) output is generated by a LoadSHARETM† technique that balances the currents in the two phases. Power loss and noise, due to the ESR of the input capacitors, are minimized by operating the PWMs 180° out of phase. A synchronized Transient Correction Loop† provides exceptional control of the output droop and overshoot during very high di/dt load changes, the circuit can be configured for droop only, overshoot only or both. This architecture also minimizes capacitor requirements while
maximizing regulator response. A true differential input amplifier is used for remote voltage sensing at the processor core. A VID code generator provides an internal reference that will set the output voltage. This VID code can be changed during operation and the reference will slew the output voltage to its new setting at a preset rate. During VID changes on the fly the Power Good indication will stay valid. The current through the lower phase 1 MOSFET will be sampled using its RDS(ON) for current limit and shut down. For further protection, an over voltage circuit will trip at a specified setting and clamp the output by turning off the upper MOSFETs and turning on the lower MOSFETs. The upper MOSFET drivers use a bootstrap capacitor to provide the upper drive voltage over the input voltage range of 6 to 24 volts.
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IMPORTANT: For the most current data, consult MICROSEMI’s website: http://www.microsemi.com † Protected By US Patents: US6292378,US6285571 ‡ Protected By US Patents: US6825571, US6356063, US6605931
AMD Athlon 64™ and AMD Opteron™ Processors Processor Core Voltage Supply Voltage Regulator Modules
PRODUCT HIGHLIGHT
T r a n s ie n t C o r e c tio n L o o p V in + 5 V V in 6 to 2 4 V
70nH
5 B it V ID
LX1677
V in 6 to 2 4 V Vout
LX1677 LX1677
PACKAGE ORDER INFO
TJ (°C) 0 to 70
PW
Plastic TSSOP 38-Pin LX1677CPW
LQ
Plastic MLPQ 38-Pin LX1677CLQ
RoHS Compliant / Pb-free Transition DC: 0518
RoHS Compliant / Pb-free Transition DC: 0512
Note: Available in Tape & Reel. Append the letters “TR” to the part number. (i.e. LX1677CLQ-TR)
Copyright © 2000 Rev 1.1, 2003-03-03
Microsemi
Integrated Products Division 11861 Western Avenue, Garden Grove, CA. 92841, 714-898-8121, Fax: 714-893-2570
Page 1
LX1677
TM ®
AMD64 Processor VRM Controller
P RODUCTION D ATA S HEET
ABSOLUTE MAXIMUM RATINGS
PACKAGE PIN OUT
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Note: Exceeding these ratings could cause damage to the device. All voltages are with respect to Ground. Currents are positive into, negative out of specified terminal. x denotes respective pin designator 1, 2, or 3
THERMAL DATA
LQ
Plastic MLPQ 38-Pin 8°C/W 35°C/W
THERMAL RESISTANCE-JUNCTION TO CASE, θJC THERMAL RESISTANCE-JUNCTION TO AMBIENT, θJA
PW
Plastic TSSOP 38-Pin 12.2°C/W 38°C/W
THERMAL RESISTANCE-JUNCTION TO CASE, θJC THERMAL RESISTANCE-JUNCTION TO AMBIENT, θJA
EA2EO2 FB+ FBDFOUT EO1 EA1DACOUT PWGD GND VIN ROSC ENA VID4 VID3 VID2 VID1 VID0 VS2
1
VID2 VID1 VID0 VS2 HO2 VC2 VCC
Supply Input Voltage (VCCL, VCC)................................................-0.3V to 6.0V Battery Input Voltage (VIN) ..............................................................-0.3V to 24V Current Limit Sense (ILIM1, ILIM3) ................................................-0.3V to 30V Topside Driver Supply Input Voltage (VC1, VC2, VC3)........ -0.3 to VSx + 6.0V Topside Driver Return Input Voltage (VS1, VS2)................................-5V to 24V Differential Sense Input Voltage (FB+, FB-)....................................-0.3V to 6.0V VID0 – VID4, Input Voltage ...............................................................-0.3V to 6V High Side Driver Peak (
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