FAN2106 Fairchild Semiconductor, FAN2106 Datasheet

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FAN2106

Manufacturer Part Number
FAN2106
Description
This part is covered in Fairchild's href="http://www
Manufacturer
Fairchild Semiconductor
Datasheet

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Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
FAN2106MP
Quantity:
3 000
Part Number:
FAN2106MPX
Manufacturer:
FAIRCHILD/仙童
Quantity:
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© 2009 Fairchild Semiconductor Corporation
FAN2106 • Rev. 1.1.1
FAN2106 — TinyBuck™
3-24V Input, 6A, High-Efficiency,
Integrated Synchronous Buck Regulator
Features
Applications
Ordering Information
FAN2106EMPX
Part Number
FAN2106MPX
6A Output Current
Wide Input Range: 3V - 24V
Output Voltage Range: 0.8V to 80% V
Over 95% Peak Efficiency
1% Reference Accuracy Over Temperature
Programmable Frequency Operation: 200KHz to
600KHz
Fully Synchronous Operation with Integrated
Schottky Diode on Low-Side MOSFET Boosts
Efficiency
Internal Bootstrap Diode
Internal Soft-Start
Power-Good Signal
Starts on Pre-Biased Outputs
Accepts Ceramic Capacitors on Output
External Compensation for Flexible Design
Programmable Current Limit
Under-Voltage, Over-Voltage, and Thermal
Protections
5x6mm, 25-Pin, 3-Pad MLP Package
Servers & Telecom
Graphics Cards & Displays
Computing Systems
Point-of-Load Regulation
Set-Top Boxes & Game Consoles
Temperature Range
-10°C to 85°C
-40°C to 85°C
Operating
IN
Molded Leadless Package (MLP) 5x6mm
Molded Leadless Package (MLP) 5x6mm
Description
The FAN2106 TinyBuck™ is a highly efficient, small-
footprint,
synchronous buck regulator.
The FAN2106 contains both synchronous MOSFETs
and a controller/driver with optimized interconnects in
one package, which enables designers to solve high-
current requirements in a small area with minimal
external components. Integration helps to minimize
critical inductances, making component layout simpler
and more efficient compared to discrete solutions.
The
compensation, programmable switching frequency,
and current limit. These features allow design
flexibility and optimization. High-frequency operation
allows for all-ceramic solutions.
The summing current-mode modulator uses lossless
current sensing for current feedback and over-current
protection. Voltage feedforward helps operation over a
wide input voltage range.
Fairchild’s
combined with low-R
thermally efficient MLP package, provide the ability to
dissipate high power in a small package.
Output over-voltage, under-voltage, over-current, and
thermal shutdown protections help protect the device
from damage during fault conditions. FAN2106
prevents pre-biased output discharge during startup in
point-of-load applications.
Related Resources
Package
AN-8022 — TinyCalc™ Calculator User Guide
TinyCalc™ Calculator Design Tool
FAN2106
constant-frequency,
advanced
provides
DS(ON)
BiCMOS
internal MOSFETs and a
for
Packing Method
Tape and Reel
Tape and Reel
6A,
power
September 2011
external
www.fairchildsemi.com
integrated
process,
loop

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FAN2106 Summary of contents

Page 1

... FAN2106EMPX -40°C to 85°C © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 Description The FAN2106 TinyBuck™ highly efficient, small- footprint, constant-frequency, synchronous buck regulator. IN The FAN2106 contains both synchronous MOSFETs and a controller/driver with optimized interconnects in ...

Page 2

... Typical Application Diagram Block Diagram © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 Figure 1. Typical Application Figure 2. Block Diagram 2 www.fairchildsemi.com ...

Page 3

... No Connect. This pin is not used. Ramp Amplitude. A resistor (R 25 RAMP and provides voltage feedforward functionality. © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 BOOT ) from this pin to AGND can be used to program the current- ILIM ) from this pin to AGND sets the PWM switching T ...

Page 4

... Power Dissipation Note: 1. Typical thermal resistance when mounted on a four-layer, two-ounce PCB, as shown in Figure 26. Actual results are dependent on mounting method and surface related to the design. © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 Conditions Conditions VCC to AGND VIN to PGND FAN2106MPX FAN2106EMPX ...

Page 5

... Current LIM Over-Temperature Shutdown Over-Temperature Hysteresis Over-Voltage Threshold Under-Voltage Shutdown Fault Discharge Threshold Fault Discharge Hysteresis Soft-Start V to Regulation (T0.8) OUT Fault Enable/SSOK (T1.0) © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 Conditions SW = Open 0.7V 5V 600KHz SW Shutdown Rising V CC Hysteresis R = 50K ...

Page 6

... FB OK Drive Resistance PGOOD Threshold (Compared REF PGOOD Output Low Note: 2. Specifications guaranteed by design and characterization; not production tested. 3. See Figure 4 for Temperature Coefficient © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 (Continued) Conditions Auto-Restart Mode, V ...

Page 7

... R T Figure 6. Frequency vs. R 1.60 1.40 1.20 1.00 0.80 0.60 -50 0 Temperature ( Figure 8. R vs. Temperature, Normalized © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 1.20 1.10 1.00 0.90 0.80 50 100 150 - vs. Temperature, Figure 5. Reference Bias Current (I FB 1.02 1.01 1.00 0.99 0.98 -50 80 100 120 140 (K  ) Figure ...

Page 8

... V =12V IN 80 300KHz Load (A) Figure 13. 1.8V Efficiency Over Frequency vs. OUT Load (Circuit Value Changes) © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 FAN2106 Figure 10. Application Circuit: 1.8V 1400 1200 1000 800 600 18V IN 400 200 vs. Load Figure 12 ...

Page 9

... Typical Performance Characteristics Typical operating characteristics using the circuit shown in Figure 10. V Figure 15. SW and V OUT Figure 17. Transient Response, 2-6A Load EN Figure 19. Startup, 3A Load © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 (Continued) V OUT SW Ripple, 6A Load Figure 16. Startup with 1V Pre-Bias OUT ...

Page 10

... If the parallel combination of R1 and R internal SS ramp is not released and the regulator does not start. Enable FAN2106 has an internal pull-up to the ENABLE (EN) pin so that the IC is enabled once V UVLO threshold. Connecting a small capacitor across EN and AGND delays the rate of voltage rise on the EN pin ...

Page 11

... Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 Application Information Bias Supply The FAN2106 requires a 5V supply rail to bias the IC and provide gate-drive energy. Connect a  1.0µf X5R or X7R decoupling capacitor between VCC and PGND. Since V supply current is frequency and voltage dependent. ...

Page 12

... The second level of protection is set externally at the ILIM pin by connecting a resistor (R between ILIM and AGND. Current-limit protection is enabled whenever the lower of the two thresholds is reached ( see Figure 24 ). FAN2106 uses its internal low- side MOSFET for current-sensing. The current-limit threshold voltage ( compared to a scaled version ...

Page 13

... IN Application note AN-8022 (TinyCalc™) calculate the compensation components. © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 Recommended PCB Layout value, the modulator Good PCB layout and careful attention to temperature rise is essential for reliable operation of the regulator. Four-layer PCB with two-ounce copper on the top and ...

Page 14

... Always visit Fairchild Semiconductor’s online packaging area for the most recent package drawings: http://www.fairchildsemi.com/packaging/. Always visit Fairchild Semiconductor’s online packaging area for the most recent package drawings: http://www.fairchildsemi.com/packaging/. © 2009 Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 2X RECOMMENDED LAND PATTERN ALL VALUES TYPICAL EXCEPT WHERE NOTED OPTIONAL LEAD DESIGN (LEADS & ...

Page 15

... Fairchild Semiconductor Corporation FAN2106 • Rev. 1.1.1 15 www.fairchildsemi.com ...

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