BH2JNB1WHFV ROHM [Rohm], BH2JNB1WHFV Datasheet - Page 2

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BH2JNB1WHFV

Manufacturer Part Number
BH2JNB1WHFV
Description
CMOS Type series regulator
Manufacturer
ROHM [Rohm]
Datasheets

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Absolute maximum ratings
Recommended operating ranges (not to exceed Pd)
Recommended operating conditions
Electrical characteristics
© 2009 ROHM Co., Ltd. All rights reserved.
BH□□NB1WHFV Series
www.rohm.com
(Unless otherwise specified, Ta = 25°C, V
Applied power supply voltage
Power dissipation
Operating temperature range
Storage temperature range
Power supply voltage
Output current
Input capacitor
Output capacitor
Output voltage
Circuit current
Circuit current (STBY)
Ripple rejection ratio
Load response 1
Load response 2
Dropout voltage 1
Dropout voltage 2
Line regulation
Load regulation 1
Load regulation 2
Overcurrent protection
limit current
Short current
STBY pull-down resistance
STBY control voltage
*1: Reduce by 4.1 mW/C over 25C, when mounted on a glass epoxy PCB (70 mm  70 mm  1.6 mm).
*2 Make sure that the output capacitor value is not kept lower than this specified level across a variety of temperature, DC bias characteristic.
* This IC is not designed to be radiation-resistant.
Parameter
And also make sure that the capacitor value cannot change as time progresses.
Parameter
Parameter
Parameter
Symbol
C
C
OFF
ON
IN
O
ISHORT
Symbol
VDLO1
VDLO2
VSTBH
VSTBL
VSAT1
VSAT2
ILMAX
ISTBY
RSTB
IGND
VDL1
V
LTV1
LTV2
RR
0.1
2.2
OUT
Min.
*2
*2
Symbol
Symbol
IN
VMAX
Topr
I
V
Tstg
V
OUT
Pd
= V
OUT
IN
Typ.
−0.3
Min.
275
OUT
1.5
 0.99
+ 1.0 V, STBY = 1.5 V, C
Max.
−0.3 to +6.0
−55 to +125
−40 to +85
2.5 to 5.5
0 to 150
2/8
V
410
Typ.
250
250
550
Limit
Limit
60
80
25
25
80
50
OUT
1
6
9
*1
Unit
F
F
V
OUT
Max.
1100
100
150
450
V
1.0
0.3
20
30
90
 1.01
IN
The use of ceramic capacitors is recommended.
The use of ceramic capacitors is recommended.
Unit
mW
Unit
mA
°C
°C
V
V
IN
= 0.1 F, C
Unit
mV
mV
mV
mV
mV
mV
mV
mA
mA
k
A
A
dB
V
V
V
I
I
STBY = 0 V
VRR = −20 dBv, fRR = 1 kz,
I
I
I
V
V
V
I
I
I
V
V
OUT
OUT
OUT
OUT
OUT
OUT
OUT
OUT
O
IN
IN
IN
O
O
= 2.2 F)
= V
= 0 V
Conditions
= 0.98  V
= 0.98  V
= V
= 1 mA
= 50 mA
= 10 mA
= 1 mA to 30 mA
= 30 mA to 1 mA
= 50 mA
= 1 mA to 100 mA
= 1 mA to 150 mA
OUT
OUT
 0.98
Conditions
+ 0.5 V to 5.5 V,
OUT
Technical Note
OUT
2009.04 - Rev.A
, I
, I
OUT
OUT
= 100 mA
= 30 mA

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