FPF1107 ONSEMI | Alldatasheet
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Technical content
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© 2009 Fairchild Semiconductor Corporation www.fairchildsemi.com FPF1107 / FPF1108 Rev. 1.0.1 FPF1107 / FPF1108 — Advance Load Management Switch FPF1107 / FPF1108 Advance Load Management Switch
Features
1.2V to 4V Input Voltage Operating Range Typical RDS(ON): - 35m Ω at VIN=3.3V - 55m Ω at VIN=1.8V - 85m Ω at VIN=1.2V Slew Rate Control with tR: 130µs Output Discharge Function on FPF1108 Low <1µA Quiescent Current at VON=VIN ESD Protected: Above 4000V HBM, 2000V CDM GPIO/CMOS-Compatible Enable Circuitry
Applications
Mobile Devices and Smart Phones Portable Media Devices Digital Cameras Advanced Notebook, UMPC, MID Portable Medical Devices GPS and Navigation Equipment
Description
The FPF1107/08 are low R DS P-channel MOSFET load switches of the IntelliMAX™ family. Integrated slew-rate control prevents inrush current from glitch supply rails with capacitive loads common in power applications. The input voltage range operates from 1.2V to 4V to fulfill today's lowest ultra-portable device supply requirements. Switch control is by a logic input (ON-pin) capable of interfacing directly with low-voltage CMOS control signals and GPIOs in embedded processors.
Ordering Information
(Typical) At 1.8VIN Input Buffer Output Discharge ON Pin Activity tR Eco Status Package FPF1107 QC 55m Ω CMOS NA Active HIGH 130µs Green 4-Ball, Wafer-Level Chip-Scale Package (WLCSP), 1.0 x 1.0mm, 0.5mm Pitch FPF1108 QD 55m Ω CMOS 65 Ω Active HIGH 130µs Green For Fairchild’s definition of Eco Status, please visit: http://www.fairchildsemi.com/company/green/rohs_green.html.
© 2009 Fairchild Semiconductor Corporation www.fairchildsemi.com FPF1107 / FPF1108 Rev. 1.0.1 4 FPF1107 / FPF1108 — Advance Load Management Switch Absolute Maximum Ratings Stresses exceeding the absolute maximum ratings may damage the device. The device may not function or be operable above the recommended operating conditions and stressing the parts to these levels is not recommended. In addition, extended exposure to stresses above the recommended operating conditions may affect device reliability. The absolute maximum ratings are stress ratings only. Symbol Parameter Min. Max. Unit VIN V IN, VOUT, VON to GND -0.3 4.2 V ISW Maximum Continuous Switch Current 1.2 A PD Power Dissipation at T A=25°C 1.0 W TSTG Storage Junction Temperature -65 +150 °C TA Operating Temperature Range -40 +85 °C ΘJA Thermal Resistance, Junction-to-Ambient 1S2P with 1 Thermal Via 95 °C/W 1S2P without Thermal Via 187 ESD Electrostatic Discharge Capability Human Body Model, JESD22-A114 4 kV Charged Device Model, JESD22-C101 2 Recommended Operating Conditions The Recommended Operating Conditions table defines the conditions for actual device operation. Recommended operating conditions are specified to ensure optimal performance to the datasheet specifications. Fairchild does not recommend exceeding them or designing to Absolute Maximum Ratings. Symbol Parameter Min. Max. Unit VIN Supply Voltage 1.2 4.0 V TA Ambient Operating Temperature -40 +85 °C
© 2009 Fairchild Semiconductor Corporation www.fairchildsemi.com FPF1107 / FPF1108 Rev. 1.0.1 5 FPF1107 / FPF1108 — Advance Load Management Switch
Electrical Characteristics
Unless otherwise noted, VIN=1.2 to 4.0V, TA=-40 to +85°C, typical values are at VIN=3.3V and TA=25°C. Symbol Parameter Conditions Min. Typ. Max. Units Basic Operation VIN Supply Voltage 1.2 4.0 V IQ(OFF) Off Supply Current V ON=GND VOUT=Open, VIN=4V 1 μA ISD(OFF) Off Switch Current V ON=GND VOUT=GND 1 μA IQ Quiescent Current IOUT=0mA, VON=VIN 1 μA IOUT=0mA, VON < VIN 3 RON On Resistance VIN=3.3V, IOUT=200mA, TA=25°C 35 50 mΩ VIN=1.8V, IOUT=200mA, TA=25°C 55 70 VIN=1.5V, IOUT=200mA, TA=25°C 70 VIN=1.2V, IOUT=200mA, TA=25°C 85 150 VIN=1.8V, IOUT=200mA, TA=85°C(3) 65 100 RPD Output Discharge R PULL DOWN VIN=3.3V, VON=0V, IFORCE=20mA, TA=25°C, FPF1108 65 110 Ω VIH On Input Logic High Voltage V IN=1.2V to 4.0V 1.1 V VIL On Input Logic Low Voltage V IN=1.2V to 4.0V 0.35 V ION On Input Leakage V ON=VIN or GND -1 1 μA Dynamic Characteristics tDON Turn-On Delay(4) VIN=3.3V, RL=10Ω, CL=0.1µF, TA=25°C, FPF1107/8 80 μs tR V OUT Rise Time(4) 130 μs tON Turn-On Time(4,6) 210 μs tDON Turn-On Delay(4) VIN=3.3V, RL=500Ω, CL=0.1µF, TA=25°C, FPF1107/8 70 95 μs tR V OUT Rise Time(4) 95 120 μs tON Turn-On Time(4,6) 165 215 μs FPF1107 tDOFF Turn-Off Delay(4) VIN=3.3V, RL=10Ω, CL=0.1µF, TA=25°C 2.0 2.5 μs tF V OUT Fall Time(4) 2.2 μs tOFF Turn-Off (4,7) 4.2 μs tDOFF Turn-Off Delay(4) VIN=3.3V, RL=500Ω, CL=0.1µF, TA=25°C 7.0 μs tF V OUT Fall Time(4) 110 μs tOFF Turn-Off (4,7) 117 μs FPF1108(5) tDOFF Turn-Off Delay(4) VIN=3.3V, RL=10Ω, CL=0.1µF, RPD=65Ω, TA=25°C 2.0 2.5 μs tF V OUT Fall Time(4) 1.9 μs tOFF Turn-Off (4,7) 3.9 μs tDOFF Turn-Off Delay(4) VIN=3.3V, RL=500Ω, CL=0.1µF, RPD=65Ω, TA=25°C 2.5 μs tF V OUT Fall Time(4) 10.6 μs tOFF Turn-Off (4,7) 13.1 μs Notes: 3. This parameter is guaranteed by design and characterization; not production tested. 4. t DON/tDOFF/tR/tF are defined in Figure 7. 5. Output discharge path is enabled during off.
Figure 7. Timing Diagram
© 2009 Fairchild Semiconductor Corporation www.fairchildsemi.com FPF1107 / FPF1108 Rev. 1.0.1 11 FPF1107 / FPF1108 — Advance Load Management Switch
Application Information
The IntelliMAXTM switch doesn’t require input capacitor. To reduce device inrush current effect, a 0.1µF ceramic capacitor, CIN, is recommended close to the VIN pin. A higher value of C IN can be used to further reduce the voltage drop experienced as the switch is turned on into a large capacitive load. Output Capacitor The IntelliMAX TM switch works without an output capacitor. However, if parasitic board inductance forces VOUT below GND when switching off, a 0.1µF capacitor, COUT, should be placed between VOUT and GND. Fall Time Device output fall time can be calculated based on RC constant of external components as follows: 2 . 2CRt LLF ××= (1) where tF is 90% to 10% fall time, R L is output load and CL is output capacitor. The same equation works for a device with a pull-down output resistor, then R L is replaced by a parallel connected pull-down and external output resistor combination, as follows: 2 . 2CRR RRt L PDL PDL F ××+ ×= (2) where t F is 90% to 10% fall time, R L is output load, RPD=65Ω is output pull-down resistor, and C L is the output capacitor. Resistive Output Load If resistive output load is missing, the IntelliMAX TM switch without pull-down output resistor is not discharging output voltage. Output voltage drop depends, in that case, mainly on external device leaks.
for this device to achieve optimum performance. Figure 28. Recommended Land Pattern and Layout
A. NO JEDEC REGISTRATION APPLIES. B. DIMENSIONS ARE IN MILLIMETERS. ±43 MICRONS (539-625 MICRONS). G. DRAWING FILENAME: MKT-UC004ABrev2.
0.005 CAB
Figure 29. 4 Ball, 1.0 x 1.0mm Wafer Level Chip Scale WLCSP Packaging warranty therein, which covers Fairchild products. http://www.fairchildsemi.com/packaging/.
© 2009 Fairchild Semiconductor Corporation www.fairchildsemi.com FPF1107 / FPF1108 Rev. 1.0.1 14 FPF1107 / FPF1108 — Advance Load Management Switch
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