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MAX6800UR26D1-T

Supervisory Circuits 3-Pin, Low-Power Microprocessor Reset Circuit

器件类别:电源/电源管理    电源电路   

厂商名称:Maxim(美信半导体)

厂商官网:https://www.maximintegrated.com/en.html

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器件:MAX6800UR26D1-T

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器件参数
参数名称
属性值
是否无铅
含铅
是否Rohs认证
不符合
厂商名称
Maxim(美信半导体)
零件包装代码
SOT-23
包装说明
SOT-23, 3 PIN
针数
3
Reach Compliance Code
not_compliant
ECCN代码
EAR99
其他特性
RESET THRESHOLD VOLTAGE IS 2.63V
可调阈值
NO
模拟集成电路 - 其他类型
POWER SUPPLY SUPPORT CIRCUIT
JESD-30 代码
R-PDSO-G3
JESD-609代码
e0
长度
2.92 mm
湿度敏感等级
1
信道数量
1
功能数量
1
端子数量
3
最高工作温度
125 °C
最低工作温度
-40 °C
封装主体材料
PLASTIC/EPOXY
封装代码
TSSOP
封装等效代码
TO-236
封装形状
RECTANGULAR
封装形式
SMALL OUTLINE, THIN PROFILE, SHRINK PITCH
峰值回流温度(摄氏度)
245
电源
0.8/5.5 V
认证状态
Not Qualified
座面最大高度
1.12 mm
最大供电电流 (Isup)
0.012 mA
最大供电电压 (Vsup)
5.5 V
最小供电电压 (Vsup)
0.78 V
标称供电电压 (Vsup)
5 V
表面贴装
YES
技术
BICMOS
温度等级
AUTOMOTIVE
端子面层
TIN LEAD
端子形式
GULL WING
端子节距
0.95 mm
端子位置
DUAL
阈值电压标称
+2.63V
处于峰值回流温度下的最长时间
NOT SPECIFIED
宽度
1.3 mm
文档预览
MAX6800/MAX6801/
MAX6802
3-Pin, Low-Power
μP Reset Circuits
General Description
The MAX6800/MAX6801/MAX6802 microprocessor (μP)
supervisory circuits monitor the power supplies in 2.85V to
5.0V μP and digital systems. They increase circuit reliability
and reduce cost by eliminating external components and
adjustments.
These devices perform a single function—they assert a
reset signal whenever the V
CC
supply voltage declines
below a preset threshold, keeping it asserted for a preset
timeout period after V
CC
has risen above the reset
threshold. The only difference among the three devices
is their output. The MAX6801 (push/pull) and MAX6802
(open-drain) have an active-low
RESET
output, while the
MAX6800 (push/pull) has an active-high RESET output.
The devices are guaranteed to be in the correct state for
V
CC
down to 0.7V. The MAX6802 is guaranteed to be in
the correct state for V
CC
down to 1.0V.
The reset comparator in these ICs is designed to ignore
fast transients on V
CC
. Reset thresholds are factory-
trimmable between 2.63V and 4.80V, in approximately
100mV increments. These devices are available with
a 1ms (min), 20ms (min), or 100ms (min) reset pulse
width. Ideal for space-critical applications, the MAX6800/
MAX6801/MAX6802 come packaged in a 3-pin SOT23.
For a lower threshold voltage version, see the MAX6332/
MAX6333/MAX6334.
● Ultra-Low 0.7V Operating Supply Voltage
● Low 4.0μA Supply Current
● Precision Monitoring of 2.85V to 5.0V Power-
Supply Voltages
● Reset Thresholds Available from 2.63V to 4.80V, in
Approximately 100mV Increments
● Fully Specified over Temperature
● Three Power-On Reset Timeout Periods Available
(1ms min, 20ms min, 100ms min)
● Low Cost
● Three Available Output Structures: Push/Pull
RESET, Push/Pull
RESET,
Open-Drain
RESET
● Guaranteed RESET/RESET Valid to V
CC
= 0.7V
(MAX6800/MAX6801)
● Power-Supply Transient Immunity
● No External Components Required
● 3-Pin SOT23 Package
● Pin-Compatible with MAX809/MAX810,
MAX6326/MAX6327/MAX6328, and
MAX6346/MAX6347/MAX6348
Benefits and Features
Applications
Typical Operating Circuit
Computers
Controllers
Intelligent Instruments
Critical μP/μC Power Monitoring
Portable/Battery-Powered Equipment
V
CC
V
CC
V
CC
MAX6801
µP
RESET
Selector Guide (Standard Versions*)
appears at end of data sheet.
RESET
GND
GND
19-1933; Rev 5; 2/16
MAX6800/MAX6801/
MAX6802
Absolute Maximum Ratings
Terminal Voltage (with respect to GND)
V
CC
......................................................................-0.3V
to +6V
Push/Pull RESET,
RESET
....................
-0.3V to (V
CC
+ 0.3V)
Open-Drain
RESET
.............................................-0.3V
to +6V
Input Current (V
CC
)
............................................................20mA
Output Current (RESET,
RESET)
......................................20mA
Continuous Power Dissipation (T
A
= +70°C)
3-Pin SOT23 (derate 4mW/°C above +70°C)
.............320mW
3-Pin, Low-Power
μP Reset Circuits
Operating Temperature Range
.........................
-40°C to +125°C
Junction Temperature
......................................................+150°C
Storage Temperature Range
............................
-65°C to +150°C
Lead Temperature (soldering, 10s)
.................................
+300°C
Soldering Temperature (reflow)
.......................................
+300°C
Lead (Pb)-free packages
.............................................+260°C
Package containing lead (Pb)
.....................................+240°C
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these
or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect
device reliability.
Electrical Characteristics
(V
CC
= full range, T
A
= -40°C to +125°C, unless otherwise noted. Typical values are at V
CC
= +5.0V and T
A
= +25°C, reset not
asserted.) (Note 1)
PARAMETER
Supply Voltage Range
(Note 2)
Supply Current
SYMBOL
V
CC
CONDITIONS
MAX6800/MAX6801
T
A
= 0°C to +125°C
MAX6802
MAX6800/MAX6801
T
A
= -40°C to +125°C
MAX6802
V
CC
= +3.0V
No load
V
CC
= +5.0V
MAX680_UR_ _D_-T,
Table 1
V
CC
falling at 10V/ms
MAX680_UR_ _D1-T
MAX680_UR_ _D2-T
MAX680_UR_ _D3-T
Reset
asserted
Reset not
asserted
Reset
asserted
Reset not
asserted
I
SINK
= 50µA, V
CC
≥ 1.0V
I
SINK
= 1.2mA, V
CC
≥ 2.5V
t
RP
T
A
= +25°C
T
A
= -40°C to +125°C
MIN
0.7
1.0
0.78
1.2
TYP
MAX
5.5
5.5
5.5
5.5
10
12
V
TH
+ 1.8%
V
TH
+ 3%
2
40
200
0.4
0.3
0.4
0.8 x V
CC
0.8 x V
CC
0.8 x V
CC
0.8 x V
CC
0.3
0.4
V
0.8 x V
CC
V
V
ms
UNITS
V
I
CC
4
5
V
TH
- 1.8%
V
TH
- 3%
1
20
100
V
TH
V
TH
30
1.5
30
150
µA
Reset Threshold
V
CC
Falling Reset Delay
Reset Active Timeout Period
V
TH
V
µs
RESET
Output Low-Voltage
(MAX6801/MAX6802)
RESET
Output High-Voltage
(MAX6801)
V
OL
V
OH
V
OH
V
OL
I
SOURCE
= 500µA, V
CC
≥ 3.0V
I
SOURCE
= 1µA, V
CC
≥ 1.0V
I
SOURCE
= 800µA, V
CC
≥ 5.0V
I
SOURCE
= 200µA, V
CC
≥ 1.8V
I
SINK
= 1.2mA, V
CC
≥ 4.25V
RESET Output Voltage
(MAX6800)
I
SINK
= 1.2mA, V
CC
≥ 3.0V
I
SINK
= 3.2mA, V
CC
≥ 5.0V
I
SOURCE
= 800µA, V
CC
≥ 4.25V
RESET
Output Leakage Current
0.5
µA
V
CC
> V
TH
,
RESET
not asserted
(MAX6802)
Note 1:
All parts are production tested at T
A
= +25°C. Overtemperature limits are guaranteed by design and not production tested.
Note 2:
I
SOURCE
for the MAX6800 is 100nA. I
SINK
for the MAX6801 is 100nA. I
SINK
for the MAX6802 is 50μA.
www.maximintegrated.com
Maxim Integrated │
2
MAX6800/MAX6801/
MAX6802
Typical Operating Characteristics
3-Pin, Low-Power
μP Reset Circuits
(Reset not asserted, T
A
= +25°C, unless otherwise noted.)
NORMALIZED RESET TIMEOUT PERIOD
vs. TEMPERATURE
MAX6800/01/02 toc01
MAX6800/01/02 toc02
SUPPLY CURRENT vs. TEMPERATURE
6.5
6.0
5.5
I
CC
(µA)
5.0
4.5
4.0
3.5
3.0
-50
-25
0
25
50
75
100
125
V
CC
= +3.3V
V
CC
= +5.0V
1.050
NORMALIZED RESET TIMEOUT PERIOD
1.040
1.030
1.020
1.010
1.000
0.990
0.980
0.970
0.960
0.950
RESET
(V
OL
)
vs. SUPPLY VOLTAGE
T
A
= +125°C
60
T
A
= +85°C
40
T
A
= +25°C
T
A
= -40°C
V
TH
= 2.93V
I
SINK
= 500mA
RESET
ASSERTED
MAX6801/MAX6802
MAX6800/01/02 toc03
80
OUTPUT VOLTAGE LOW (mV)
20
-50
-25
0
25
50
75
100
125
0
1.0
1.5
2.0
V
CC
(V)
2.5
3.0
TEMPERATURE (°C)
TEMPERATURE (°C)
RESET (V
OH
)
vs. SUPPLY VOLTAGE
MAX6800/01/02 toc04
OUTPUT VOLTAGE HIGH (V
CC
- V
OH
) (mV)
MAXIMUM TRANSIENT DURATION (µs)
75
PROPAGATION DELAY (µs)
V
TH
= 2.93V
I
SOURCE
= 100A
RESET ASSERTED
(MAX6800)
T
A
= +125°C
T
A
= +85°C
T
A
= +25°C
MAX6800/01/02 toc05
500
400
300
200
100
0
RESET DOES
NOT OCCUR
0.1
RESET OCCURS
90
80
70
60
50
40
30
20
10
0
V
CC
= FALLING AT 10V/ms
-50
-25
0
25
50
75
100
V
CC
= FALLING AT 1V/ms
50
25
T
A
= -40°C
1.0
1.5
2.0
V
CC
(V)
0
2.5
3.0
100
1000
RESET COMPARATOR OVERDRIVE (mV)
1
10
125
TEMPERATURE (°C)
www.maximintegrated.com
Maxim Integrated │ 3
MAX6800/01/02 toc06
100
600
MAXIMUM TRANSIENT DURATION
vs. RESET COMPARATOR OVERDRIVE
100
V
CC
FALLING PROPAGATION DELAY
vs. TEMPERATURE
MAX6800/MAX6801/
MAX6802
Pin Configuration
TOP VIEW
GND 1
3-Pin, Low-Power
μP Reset Circuits
MAX6800
MAX6801
MAX6802
3 V
CC
RESET
(RESET) 2
SOT23-3
( ) ARE FOR MAX6800
Pin Description
PIN
MAX6800
1
MAX6801/
MAX6802
1
2
NAME
GND
Ground
Active-Low Reset Output.
RESET
is asserted while V
CC
is below the reset
threshold and remains asserted for a reset timeout period (t
RP
) after V
CC
rises above the reset threshold.
RESET
on the MAX6801 is push/pull.
RESET
on the MAX6802 is open-drain.
Active-High Reset Output. RESET is asserted while V
CC
is below the reset
threshold and remains asserted for a reset timeout period (t
RP
) after V
CC
rises above the reset threshold. RESET on the MAX6800 is push/pull.
Supply Voltage Input
FUNCTION
RESET
2
3
3
RESET
V
CC
www.maximintegrated.com
Maxim Integrated │ 4
MAX6800/MAX6801/
MAX6802
Applications Information
Interfacing to μPs with Bidirectional
Reset Pins
Since the
RESET
output on the MAX6802 is open-
drain, this device interfaces easily with μPs that have
bidirectional reset pins, such as the Motorola 68HC11.
Connecting the μP supervisor’s
RESET
output directly to
the microcontroller’s (μC’s)
RESET
pin with a single pullup
resistor allows either device to assert reset (Figure
1).
In addition to issuing a reset to the μP during
power-up, power-down, and brownout conditions, these
devices are relatively immune to short-duration, negative-
going V
CC
transients (glitches). The
Typical Operating
Characteristics
show the Maximum Transient Duration
vs. Reset Comparator Overdrive graph. The graph shows
the maximum pulse width that a negative-going V
CC
transient may typically have without issuing a reset signal.
As the amplitude of the transient increases, the maximum
allowable pulse width decreases.
3-Pin, Low-Power
μP Reset Circuits
Ensuring a Valid Reset Output Down to
V
CC
= 0V
Negative-Going V
CC
Transients
When V
CC
falls below 1V and approaches the minimum
operating voltage of 0.7V, push/pull-structured reset
sinking (or sourcing) capabilities decrease drastically.
High-impedance CMOS-logic inputs connected to the
RESET
pin can drift to indeterminate voltages. This does
not present a problem in most cases, since most μPs and
circuitry do not operate when V
CC
drops below 1V. For
the MAX6801 application, where
RESET
must be valid
down to 0V, adding a pulldown resistor between
RESET
and GND removes stray leakage currents, holding
RESET
low (Figure
2a).
The pulldown resistor value is not critical;
100kΩ is large enough not to load
RESET
and small
enough to pull it low. For the MAX6800 application, where
RESET must be valid to V
CC
= 0V, a 100kΩ pullup resistor
between RESET and V
CC
will hold RESET high when
V
CC
falls below 0.7V (Figure
2b).
Since the MAX6802 has an open-drain, active-low output,
it typically uses a pullup resistor. With this device,
RESET
will most likely not maintain an active condition, but will
drift to a non-active level due to the pullup resistor and
the reduced sinking capability of the open-drain device.
Therefore, this device is not recommended for applications
where the
RESET
pin is required to be valid down to V
CC
= 0V.
V
CC
V
CC
100kΩ
V
CC
µP
MOTOROLA
68HCXX
RESET
V
CC
V
CC
MAX6801
RESET
GND
100kΩ
MAX6800
RESET
GND
100kΩ*
MAX6802
RESET
GND
GND
(a)
(b)
*ASSUMES HIGH-Z RESET INPUT TO THE µP
Figure 1. Interfacing to μPs with Bidirectional Reset Pins
Figure 2. Ensuring Reset Valid Down to V
CC
= 0V
www.maximintegrated.com
Maxim Integrated │
5
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