FAN5234 Fairchild Semiconductor, FAN5234 Datasheet

no-image

FAN5234

Manufacturer Part Number
FAN5234
Description
href="/whats_new/ddr
Manufacturer
Fairchild Semiconductor
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
FAN5234MTC
Manufacturer:
FAIRCHILD/仙童
Quantity:
20 000
Part Number:
FAN5234MTCX Q
Manufacturer:
FAIRCHILD
Quantity:
1 905
Part Number:
FAN5234QSCX
Manufacturer:
FAIRCHILD/仙童
Quantity:
20 000
© 2004 Fairchild Semiconductor Corporation
FAN5234 • Rev. 2.0.0
FAN5234
Dual Mobile-Friendly PWM / PFM Controller
Features
Applications
Related Resources
Ordering Information
FAN5234MTCX
Part Number
Wide Input Voltage Range for Mobile Systems:
2V to 24V
Excellent Dynamic Response with Voltage Feed-
Forward and Average-Current-Mode Control
Lossless Current Sensing on Low-Side MOSFET or
Precision Over-Current via Sense Resistor
V
Power-Good Signal
Light-Load Hysteretic Mode Maximizes Efficiency
300KHz or 600KHz Operation
TSSOP16 Package
Mobile PC Regulator
Handheld PC Power
Application Note — AN-6002 Component
Calculations and Simulation Tools for FAN5234
or FAN5236
Application Note — AN-1029 Maximum Power
Enhancement Techniques for SO-8 Power
MOSFET
CC
Under-Voltage Lockout
Temperature
-10 to +85°C
Operating
Range
16-Lead, Thin-Shrink Small-Outline Package (TSSOP)
Description
The FAN5234 PWM controller provides high efficiency
and regulation with an adjustable output from 0.9V to
5.5V required to power I/O, chip-sets, memory banks, or
peripherals in high-performance notebook computers,
PDAs,
rectification and hysteretic operation at light loads
contribute to a high efficiency over a wide range of
loads. The Hysteretic Mode of operation can be
disabled if PWM Mode is desired for all load levels.
Efficiency is further enhanced by using the MOSFET’s
R
Feed-forward ramp modulation, average current mode
control, and internal feedback compensation provide
fast response to load transients. The FAN5234 monitors
these outputs and generates a PGOOD (power-good)
signal 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 cease.
Under-voltage protection latches the chip off when the
output drops below 75% of its set value after the soft-
start sequence is completed. An adjustable over-current
function monitors the output current by sensing the
voltage drop across the lower MOSFET.
DS(ON)
Package
as a current-sense component.
and
internet
appliances.
Packing Method
Tape and Reel
November 2010
Synchronous
www.fairchildsemi.com

Related parts for FAN5234

FAN5234 Summary of contents

Page 1

... DS(ON) Feed-forward ramp modulation, average current mode control, and internal feedback compensation provide fast response to load transients. The FAN5234 monitors these outputs and generates a PGOOD (power-good) signal 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 ...

Page 2

... VCC + ILIM SS1 FPWM 16 R4 AGND 8 PGOOD 2 Block Diagram © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 VIN Q1A FA N5 234 HDRV Q1B LDRV 10 PGND 9 ISNS 12 VSEN 6 VOUT 5 Figure 1. 1.18V Output Regulator Figure 2 ...

Page 3

... MOSFET. 15 BOOT BOOT. Positive supply for the upper MOSFET driver. Connect as shown in Figure 2. Forced PWM Mode. When logic HIGH, inhibits the regulation from entering Hysteretic 16 FPWM Mode. © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 VIN FPWM 1 16 PGOOD BOOT 2 15 ...

Page 4

... Fairchild does not recommend exceeding them or designing to Absolute Maximum Ratings. Symbol V V Supply Voltage Supply Voltage Ambient Temperature A Θ Thermal Resistance, Junction to Ambient JA © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 Parameter Parameter Min. 4.75 4 Min. Max. 6 6.5 -0.3 V +0.3 CC -10 +150 -65 +150 +300 Typ ...

Page 5

... Under-Voltage Shutdown TSD I Over-Current Threshold SNS UVLO Over-Voltage Threshold Output Drivers HDRV Output Resistance LDRV Output Resistance © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 Conditions Min. LDRV, HDRV Open; V Forced Above SEN Regulation Point Shutdown (EN-0) VIN Pin = Input Voltage 10 Source ...

Page 6

... PGOOD Output Low Leakage Current Soft-Start Voltage, PGOOD Enabled EN, FPWM Inputs V Input High INH V Input Low INL © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 (Continued) Conditions % of Set Point, 2µs Noise Filter % of Set Point, 2µs Noise Filter I = 4mA PGOOD PULLUP 6 Min ...

Page 7

... Functional Description Overview The FAN5234 is a PWM controller intended for low- voltage power applications in notebook, desktop, and sub-notebook PCs. The output voltage of the controller can be set in the range of 0. external resistor divider. The synchronous buck converter can operate from an unregulated DC source (such as a notebook battery), with voltage ranging from 2V to 24V, or from a regulated system rail ...

Page 8

... ON ) ⎜ ⎟ = − R 100 ⎜ ⎟ SENSE μ 150 A ⎝ ⎠ © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 PWMMode HystereticMode Setting the Current Limit A ratio of I established when a 0.9V internal reference drives the ILIM pin LIM ...

Page 9

... PWM control signal into the MOSFET gate drive signals, providing necessary amplification, level shifting, and shoot-through protection. It also has functions that help optimize the IC performance over a wide range of © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0 ISNS ...

Page 10

... If V drops below the under-voltage threshold, the OUT chip shuts down immediately. © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 Over-Current Sensing If the circuit's current-limit signal (“I is HIGH at the beginning of a clock cycle, a pulse- skipping circuit is activated and HDRV is inhibited. The circuit continues to pulse skip in this manner for the next eight clock cycles ...

Page 11

... Power MOSFET Selection Losses in a MOSFET are the sum of its switching (P and conduction (P In typical applications, the FAN5234 converter's output (15) voltage is low with respect to its input voltage. Therefore, the lower MOSFET (Q2) is conducting the full-load current for most of the cycle. Q2 should ...

Page 12

... G(SW) (20) where Q MOSFET to its threshold (V For the high-side MOSFET, V high as 20V in a typical portable application. Care (21) should be taken to include the delivery of the MOSFET's gate power (P dissipation required for the FAN5234: (22 and ATE SW where Q Low-Side Losses Q2 switches on or off with its parallel Schottky diode conducting ...

Page 13

... It is not recommended to use high density interconnect systems, or micro-vias, on these signals. The use of blind or buried vias should be limited to the low-current signals only. The use of normal thermal vias is at the discretion of the designer. © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 Qty. Ref. Vendor 1 C1 AVX ...

Page 14

... Package specifications do not expand the terms of Fairchild’s worldwide terms and conditions, specifically the warranty therein, which covers Fairchild products. Always visit Fairchild Semiconductor’s online packaging area for the most recent package drawings: http://www.fairchildsemi.com/packaging/. © 2004 Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 4.55 4.4±0.1 Figure 11. 16-Lead, Thin-Shrink Outline Package 14 5 ...

Page 15

... Fairchild Semiconductor Corporation FAN5234 • Rev. 2.0.0 15 www.fairchildsemi.com ...

Related keywords