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PDF BD3005HFP Data sheet ( Hoja de datos )

Número de pieza BD3005HFP
Descripción Voltage Regulator
Fabricantes ROHM Semiconductor 
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TECHNICAL NOTE
Power Management LSI Series for Automotive Body Control
Regulators with
Voltage Detector and
Watchdog Timer
BD3004HFP,BD3005HFP
zDescription
The BD3004HFP,BD3005HFP low bias current regulator and watchdog timer features a high 50 V breakdown voltage and is compatible
with on-board vehicle microcontrollers. It offers an output current of 500 mA while limiting bias current to 80 µA (Typ.). The series supports
the use of ceramic capacitors as output phase compensation capacitors.The reset detection voltage can be changed by connecting a
resistor to the Vs pin.BD3004HFPThe watchdog timer can be switched on and off using the INH pin input logic.BD3005HFP
zFeatures
1) 5 V/500 mA regulators for microcontrollers
BD3004HFP: Adjustable detection voltage (Vs pin)
BD3005HFP:Built-in watchdog timer reset circuit (INH pin: watchdog timer on/off)
2) Super-low bias current: 80 µA (Typ.)
3) Low-saturation voltage type P-channel DMOS output transistors
4) High precision output voltage: 5 V ±2%
5) Low-ESR ceramic capacitors can be used as output capacitors
6) Vcc Maximum applied voltage: 50 V
7) Built-in overcurrent protection circuit and thermal shutdown circuit
8) Built-in reverse connection breakdown prevention circuit
9) Back current flow protection during sudden battery failures, making it a highly reliable 5 V regulator.
10) HRP7 package
zApplications
Onboard devices (Vehicle equipment, Car stereos, Satellite navigation systems, etc.)
zAbsolute maximum ratings (Ta = 25°C)
Parameter
Vcc applied voltage
Symbol
Vcc
Limit
15 to +50*1
Unit
V
Vs pin voltage(BD3004HFP)
Vs 0.3 to +15
V
INH pin voltage(BD3005HFP)
VINH
0.3 to +15
V
Regulator output pin voltage
VOUT
0.3 to +15
V
Reset output pin voltage
VRO
0.3 to +15
V
Watchdog input pin voltage
VCLK
0.3 to +15
V
Reset delay setting pin voltage
VCT
0.3 to +15
V
Output current
IOUT
500
mA
Power dissipation
Pd 1.6*2
W
Operating temperature range
Topr 40 to +125
°C
Storage temperature range
Tstg 55 to +150
°C
Maximum junction temperature
Tjmax
150
°C
*1 Must not exceed Pd.
*2 Reduced by 12.8 mW/°C over 25°C, when mounted on a glass epoxy board (70 mm × 70 mm × 1.6 mm).
Ver.B July 2006

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BD3005HFP pdf
Detection voltage adjustment
OUT
R4
Vs Detection voltage
1,25V(Typ.)
R3
R2=3.56MΩ
For a basic detection voltage of 4.1 V,
Vdet = Vs × (R1 + R2 / R1)
To change the detection voltage,
insert pull-down resistor R3 (with a resistance value lower than R1)
R1=1.56MΩ
between the Vs and GND pins, and pull-up resistor R4 (with a
resistance value lower than R2) between the Vs and Vo pins.
Vdet = Vs × (R3 + R4 / R3) [R3<<R1, R4<<R2]
(All resistance values are typical ones.)
zTiming chart
Fig.15
Vcc
0
VOUT
VdetH
Vdet
0
VINH
0
When VINH = high
WDT current off
VHS
VdetH = Vdet + VHS
CLK
0
TWCLK TWCLK
VthH
VCT0VthL
TWL
TdLH TWH
RESET
0
(1)(2)(3) (4)(5) (6) (7)
(4)(5)(8)(9) (4)(5) (10)(2)(3)(10)(2)(3)(4)(5)(10)(11)
Fig.16
zExplanation
(1) When the output voltage (VOUT) reaches 1.0 V, the reset pin voltage (RESET) will switch to low level.
(2) When VOUT reaches or exceeds the reset clear voltage (VdetH), the external capacitor connected to the CT pin will begin to charge.
When the CT pin voltage (VCT) reaches the upper switching threshold voltage (VthH), RESET will maintain a low-level signal. When
VCT reaches the VthH voltage, RESET will switch from low to high level. The time from VCT reaching or exceeding the VdetH voltage
until RESET reverses (the RESET transmission delay time: TdLH) is given by the following equation:
TdLH (s) (1.26 × CT (µF)) / Icto (µA) ‚ ‚ ‚ [1]
(3) The watchdog timer operates when RESET rises.
(4) When VCT reaches the lower switching threshold voltage (VthL), the CT pin switches from discharging to charging, and RESET
switches from high level to low level. The watchdog timer reset time TWL is given by the following equation:
TWL(s) (1.02 × CT (µF)) / Icto (µA) ‚ ‚ ‚ [2]
(5) The CT pin state switches from charge to discharge when VCT reaches VthH, and RESET switches from low to high.
The watchdog timer monitor time TWH is given by the following equation:
TWH(s) (1.02 × CT (µF)) / Ictc (µA) ‚ ‚ ‚ [3]
(6) The CT pin state may not switche from charge to discharge when the CLK input pulse width (TWCLK) is short.
Use a TWCLK input pulse width of at least 500 ns.
(7) When a pulse (positive edge trigger) of at least 500 ns is input to the CLK pin while the CT pin is discharging, VCT switches from
discharging to charging and then switches back to discharging once it charges to VthH.
(8) Watchdog timer operation is forced off when the INH pin switches to high. At that time, only the watchdog timer will be turned off, and
reset detection will operate normally.
(9) The watchdog timer function turns on when the INH pin switches to low. At that time, the external capacitor on the CT pin will be
discharged.
(10) RESET switches from high to low when OUT falls to the RESET detection voltage (VDET) or lower.
(11) When VOUT falls to 0 V, the RESET signal stays low until VOUT reaches 1.0 V
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BD3005HFP arduino
Datasheet
General Precaution
1. Before you use our Pro ducts, you are requested to care fully read this document and fully understand its contents.
ROHM shall n ot be in an y way responsible or liabl e for fa ilure, malfunction or acci dent arising from the use of a ny
ROHM’s Products against warning, caution or note contained in this document.
2. All information contained in this docume nt is current as of the issuing date and subj ect to change without any prior
notice. Before purchasing or using ROHM’s Products, please confirm the la test information with a ROHM sale s
representative.
3. The information contained in this doc ument is provi ded on an “as is” basis and ROHM does not warrant that all
information contained in this document is accurate an d/or error-free. ROHM shall not be in an y way responsible or
liable for an y damages, expenses or losses incurred b y you or third parties resulting from inaccur acy or errors of or
concerning such information.
Notice – WE
© 2014 ROHM Co., Ltd. All rights reserved.
Rev.001

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