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PDF BD49K37 Data sheet ( Hoja de datos )

Número de pieza BD49K37
Descripción Standard CMOS Voltage Detector IC
Fabricantes ROHM Semiconductor 
Logotipo ROHM Semiconductor Logotipo



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No Preview Available ! BD49K37 Hoja de datos, Descripción, Manual

Datasheet
Voltage Detector IC Series
Standard CMOS
Voltage Detector IC
BD48xxx series BD49xxx series
General Description
ROHM’s BD4 8xxx and B D49xxx seri es are hig hly
accurate, lo w current cons umption reset IC series. T he
line u p incl udes BD48 xxx de vices with N chan nel o pen
drain output a nd BD4 9xxx d evices with C MOS output.
The devices are available for specific detecti on voltages
ranging from 2.3V to 6.0V in increments of 0.1V.
Features
„ High accuracy detection
„ Ultra-low current consumption
„ Two output types (Nch open drain and CMOS output)
„ Wide Operating temperature range
„ Very small and low height package
„ Package SSOP5 is similar to SOT-23-5 (JEDEC)
„ Package SSOP3 is similar to SOT-23-3 (JEDEC)
Key Specifications
„ Detectio n voltage:
2.3V
„ High accuracy detection voltage:
„ Ultra-low current consumption:
to 6.0V (Typ.),
0.1V steps
± 1.0%
0 .9μA (Typ.)
„ Operating temperature range: -40°C to +105°C
Package
SSOP5:
SSOP3:
VSOF5:
2.90mm x 2.80mm x 1.15mm
2.90mm x 2.80mm x 1.15mm
1.60 mm x 1.60mm x 0.60mm
Applications
Circuits usin g microcontroll ers or logic circuit
require a reset.
s that
Typical Application Circuit
VDD1
BD48xxx
VDD2
RL
RST
Micro
controller
VDD1
CL
( Capacitor for
noise filtering
(Open Drain Output type
BD48xxx series
GND
GND
BD49xxx
RST
Micro
controller
CL
( Capacitor for
noise filtering
(CMOS Output type
BD49xxx series
Product structure:Silicon monolithic integrated circuit This product is not designed protection against radioactive rays.
www.rohm.com © 2012 ROHM Co., Ltd. All rights reserved.
TSZ2211114001
1/13
TSZ02201-0R7R0G300030-1-2
08.JUL.2012.Rev.006 http://www.Datasheet4U.com

1 page




BD49K37 pdf
BD48xxx series BD49xxx series
Datasheet
Marking
Cm
Ck
Ch
Cg
Cf
Ce
Cd
Cc
Cb
Ca
By
Br
Bp
Bn
Bm
Bk
Bh
Bg
Bf
Detection
Voltage
Part Number
6.0V BD48K60
5.9V BD48K59
5.8V BD48K58
5.7V BD48K57
5.6V BD48K56
5.5V BD48K55
5.4V BD48K54
5.3V BD48K53
5.2V BD48K52
5.1V BD48K51
5.0V BD48K50
4.9V BD48K49
4.8V BD48K48
4.7V BD48K47
4.6V BD48K46
4.5V BD48K45
4.4V BD48K44
4.3V BD48K43
4.2V BD48K42
Marking
Be
Bd
Bc
Bb
Ba
Ay
Ar
Ap
An
Am
Ak
Ah
Ag
Af
Ae
Ad
Ac
Ab
Aa
Detection
Voltage
Part Number
4.1V BD48K41
4.0V BD48K40
3.9V BD48K39
3.8V BD48K38
3.7V BD48K37
3.6V BD48K36
3.5V BD48K35
3.4V BD48K34
3.3V BD48K33
3.2V BD48K32
3.1V BD48K31
3.0V BD48K30
2.9V BD48K29
2.8V BD48K28
2.7V BD48K27
2.6V BD48K26
2.5V BD48K25
2.4V BD48K24
2.3V BD48K23
Marking
Ff
Fe
Fd
Fc
Fb
Fa
Ey
Er
Ep
En
Em
Ek
Eh
Eg
Ef
Ee
Ed
Ec
Eb
Detection
Voltage
Part
Number
6.0V BD49K60
5.9V BD49K59
5.8V BD49K58
5.7V BD49K57
5.6V BD49K56
5.5V BD49K55
5.4V BD49K54
5.3V BD49K53
5.2V BD49K52
5.1V BD49K51
5.0V BD49K50
4.9V BD49K49
4.8V BD49K48
4.7V BD49K47
4.6V BD49K46
4.5V BD49K45
4.4V BD49K44
4.3V BD49K43
4.2V BD49K42
Marking
Ea
Dy
Dr
Dp
Dn
Dm
Dk
Dh
Dg
Df
De
Dd
Dc
Db
Da
Cy
Cr
Cp
Cn
Detection
Voltage
4.1V
4.0V
3.9V
3.8V
3.7V
3.6V
3.5V
3.4V
3.3V
3.2V
3.1V
3.0V
2.9V
2.8V
2.7V
2.6V
2.5V
2.4V
2.3V
Part
Number
BD49K41
BD49K40
BD49K39
BD49K38
BD49K37
BD49K36
BD49K35
BD49K34
BD49K33
BD49K32
BD49K31
BD49K30
BD49K29
BD49K28
BD49K27
BD49K26
BD49K25
BD49K24
BD49K23
Marking
Kb
Ka
Hy
Hr
Hp
Hn
Hm
Hk
Hh
Hg
Hf
He
Hd
Hc
Hb
Ha
Gy
Gr
Gp
Detection
Voltage
Part Number
6.0V BD48L60
5.9V BD48L59
5.8V BD48L58
5.7V BD48L57
5.6V BD48L56
5.5V BD48L55
5.4V BD48L54
5.3V BD48L53
5.2V BD48L52
5.1V BD48L51
5.0V BD48L50
4.9V BD48L49
4.8V BD48L48
4.7V BD48L47
4.6V BD48L46
4.5V BD48L45
4.4V BD48L44
4.3V BD48L43
4.2V BD48L42
Marking
Gn
Gm
Gk
Gh
Gg
Gf
Ge
Gd
Gc
Gb
Ga
Fy
Fr
Fp
Fn
Fm
Fk
Fh
Fg
Detection
Voltage
Part Number
4.1V BD48L41
4.0V BD48L40
3.9V BD48L39
3.8V BD48L38
3.7V BD48L37
3.6V BD48L36
3.5V BD48L35
3.4V BD48L34
3.3V BD48L33
3.2V BD48L32
3.1V BD48L31
3.0V BD48L30
2.9V BD48L29
2.8V BD48L28
2.7V BD48L27
2.6V BD48L26
2.5V BD48L25
2.4V BD48L24
2.3V BD48L23
Marking
Np
Nn
Nm
Nk
Nh
Ng
Nf
Ne
Nd
Nc
Nb
Na
My
Mr
Mp
Mn
Mm
Mk
Mh
Detection
Part
Voltage
Number
6.0V BD49L60
5.9V BD49L59
5.8V BD49L58
5.7V BD49L57
5.6V BD49L56
5.5V BD49L55
5.4V BD49L54
5.3V BD49L53
5.2V BD49L52
5.1V BD49L51
5.0V BD49L50
4.9V BD49L49
4.8V BD49L48
4.7V BD49L47
4.6V BD49L46
4.5V BD49L45
4.4V BD49L44
4.3V BD49L43
4.2V BD49L42
Marking
Mg
Mf
Me
Md
Mc
Mb
Ma
Ky
Kr
Kp
Kn
Km
Kk
Kh
Kg
Kf
Ke
Kd
Kc
Detection
Voltage
4.1V
4.0V
3.9V
3.8V
3.7V
3.6V
3.5V
3.4V
3.3V
3.2V
3.1V
3.0V
2.9V
2.8V
2.7V
2.6V
2.5V
2.4V
2.3V
Part
Number
BD49L41
BD49L40
BD49L39
BD49L38
BD49L37
BD49L36
BD49L35
BD49L34
BD49L33
BD49L32
BD49L31
BD49L30
BD49L29
BD49L28
BD49L27
BD49L26
BD49L25
BD49L24
BD49L23
www.rohm.com © 2012 ROHM Co., Ltd. All rights reserved.
TSZ2211115001
5/13
TSZ02201-0R7R0G300030-1-2
08.JUL.2012.Rev.006

5 Page





BD49K37 arduino
BD48xxx series BD49xxx series
Datasheet
Application Information
Explanation of Operation
For bot h t he open dra in t ype (F ig.12) and t he CMOS out put t ype (F ig.13), t he det ection and releas e voltages ar e used as
threshold volt ages. When t he volt age ap plied t o t he V DD pins reach es t he appl icable t hreshold volt age, t he V OUT t erminal
voltage s witches f rom eit her “High” t o “Lo w” or f rom “L ow” t o “Hi gh”. Please ref er t o t he T iming W aveform a nd E lectrical
Characteristics for information on hysteresis.
Because t he B D48xxx ser ies uses a n op en drain output t ype, it is poss ible t o co nnect a pul l-up r esistor t o V DD or another
power supply [The output “High” voltage (VOUT) in this case becomes VDD or the voltage of the other power supply].
VDD
R1
Vref
R2
RL
VOUT
Q1
R3
GND
Fig.12 (BD48xxx series Internal Block Diagram)
R1
Vref
VDD
Q2
VOUT
R2
Q1
R3
GND
Fig.13 (BD49xxx series Internal Block Diagram)
Reference Data
Examples of Leading (tPLH) and Falling (tPHL) Output
Part Number
tPLH (μs) t
PHL (μs)
BD48x45
39.5
87.8
BD49x45
32.4
52.4
*This data is for reference only.
VDD=4.3VÆ5.1V
VDD=5.1VÆ4.3V
The figures will vary with the application, so please confirm actual operating conditions before use.
Timing Waveform
Example: the following shows the relationship between the input voltages VDD and t he output voltage VOUT when the
input power supply voltage VDD is made to sweep up and sweep down (the circuits are those in Fig.12 and 13).
VDD
VDET+ΔVDET
VDET
VOPL
0V
VOUT
VOH
tPHL
VOL
tPLH
tPHL
tPLH
①②③ ④
Fig.14 Timing Waveform
1 When the power supply is turned on, the output is unsettled from
after over the oper ating limit voltage (VOPL) unt il t PHL. Therefore it is
possible that the reset signal is not valid when the rise time of VDD is
faster than tPHL.
2 When VDD is greater than VOPL but less than the reset release
voltage (VDET + VDET), the output voltages will switch to Low.
3 If VDD exce eds t he reset releas e volt age (V DET + VDET), t hen
VOUT switches from L to H.
4 If VDD drops below t he d etection voltage ( VDET) when t he po wer
supply is powered down or when there is a power supply fluctuation,
VOUT switches to L (with a delay of tPHL).
5 The pot ential dif ference b etween t he d etection volt age and t he
release volt age is kno wn a s t he h ysteresis width ( VDET). T he
system is designed such that the output does not flip-flop with power
supply fluctuations within this hysteresis width, preventing
malfunctions due to noise.
www.rohm.com © 2012 ROHM Co., Ltd. All rights reserved.
TSZ2211115001
11/13
TSZ02201-0R7R0G300030-1-2
08.JUL.2012.Rev.006

11 Page







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