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PDF BD8966FVM Data sheet ( Hoja de datos )

Número de pieza BD8966FVM
Descripción 0.8A 1ch Synchronous Buck Converter
Fabricantes ROHM Semiconductor 
Logotipo ROHM Semiconductor Logotipo



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No Preview Available ! BD8966FVM Hoja de datos, Descripción, Manual

Datasheet
4.0V to 5.5V, 0.8A 1ch
Synchronous Buck Converter with
Integrated FET
BD8966FVM
General Description
The BD8966FVM is ROHM’s high efficiency
step-down switching regulator designed to produce a
voltage as low as 1V from a supply voltage of 5V. It
offers high efficiency by using synchronous switches
and provides fast transient response to sudden load
changes by implementing current mode control.
Features
Fast Transient Response because of Current Mode
PWM Control System
High Efficiency for All Load Ranges with
Synchronous Rectifier (Nch/Pch FET)
Soft-Start Function
Thermal Shutdown and UVLO Functions
Short-Circuit Current Protection with Time Delay
Function
Shutdown Function
Applications
Power Supply for LSI including DSP, Microcomputer
and ASIC
Key Specifications
Input Voltage Range:
Output Voltage Range:
Output Current:
Switching Frequency:
Pch FET ON-Resistance:
Nch FET ON-Resistance:
Standby Current:
Operating Temperature Range:
4.0V to 5.5V
1.0V to 2.5V
0.8A (Max)
1MHz (Typ)
350m(Typ)
350m(Typ)
0μA (Typ)
-25°C to +85°C
Package
W(Typ) x D(Typ) x H(Max)
Typical Application Circuit
MSOP8
2.90 mm x 4.00 mm x 0.90 mm
VCC
CIN
VCC,PVCC
L
EN SW
VOUT
ADJ
ITH GND,PGND
RITH
CO
R2
CITH
R1
Figure 1. Typical Application Circuit
Product structureSilicon monolithic integrated circuit
www.rohm.com
© 2012 ROHM Co., Ltd. All rights reserved.
TSZ2211114001
This product has no designed protection against radioactive rays
1/21
TSZ02201-0J3J0AJ00060-1-2
22.Jan.2015 Rev.003

1 page




BD8966FVM pdf
BD8966FVM
Typical Performance Curves – continued
[VOUT=1.8V]
VCC=5V
Datasheet
Output Current: IOUT [mA]
Figure 8. Efficiency vs Output Current
Temperature: Ta [°C]
Figure 9. Frequency vs Temperature
Temperature: Ta [°C]
Figure 10. ON-Resistance vs Temperature
Temperature: Ta [°C]
Figure 11. EN Voltage vs Temperature
www.rohm.com
© 2012 ROHM Co., Ltd. All rights reserved.
TSZ2211115001
5/21
TSZ02201-0J3J0AJ00060-1-2
22.Jan.2015 Rev.003

5 Page





BD8966FVM arduino
BD8966FVM
Datasheet
4. Switching Regulator Efficiency
Efficiency η may be expressed by the equation shown below:
VOUT
VIN
IOUT
I IN
100
POUT
PIN
100
POUT
POUT Pd
100
%
Efficiency may be improved by reducing the switching regulator power dissipation factors Pdα as follows:
Dissipation factors:
(1) ON-Resistance Dissipation of Inductor and FET : Pd(I2R)
 Pd I 2 R IOUT 2 RCOIL RON
Where:
RCOIL is the DC resistance of inductor
RON is the ON-Resistance of FET
IOUT is the OUTPUT current.
(2) Gate Charge/Discharge Dissipation: Pd(Gate)
PdGateCgs f V 2
Where:
Cgs is the gate capacitance of FET
f is the switching frequency
V is the gate driving voltage of FET
(3) Switching Dissipation : Pd(SW)
 Pd SW
VIN 2
CRSS I OUT
I DRIVE
f
Where:
CRSS is the reverse transfer capacitance of FET
IDRIVE is the peak current of gate.
(4) ESR Dissipation of Capacitor: Pd(ESR)
Pd ESRI RMS 2 ESR
Where:
IRMS is the ripple current of capacitor
ESR is the equivalent series resistance.
(5) Operating Current Dissipation of IC: Pd(IC)
Pd ICVIN I CC
Where:
ICC is the circuit current.
www.rohm.com
© 2012 ROHM Co., Ltd. All rights reserved.
TSZ2211115001
11/21
TSZ02201-0J3J0AJ00060-1-2
22.Jan.2015 Rev.003

11 Page







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