MAX6333UR15D1 [VISHAY]
IC 1-CHANNEL POWER SUPPLY SUPPORT CKT, PDSO3, SOT-23, 3 PIN, Power Management Circuit;型号: | MAX6333UR15D1 |
厂家: | VISHAY |
描述: | IC 1-CHANNEL POWER SUPPLY SUPPORT CKT, PDSO3, SOT-23, 3 PIN, Power Management Circuit 光电二极管 |
文件: | 总6页 (文件大小:50K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
MAX6332 and MAX6333
Vishay Semiconductor
3 Pin, Low-Power, µP Reset Circuits
Pin Configuration
SOT-23 (Top View)
Description
• The MAX6333 and 6332 are system supervisor
circuits designed to monitor V in digital systems
CC
1
GND
and provide a reset signal to the host processor
when necessary. No external components are
required.
V
3
cc
• When the processor power supply voltage drops
below the reset threshold, the reset output is driven
Reset/
Reset
2
active, in less than 40µs (T ). Reset is main-
D1
tained active for a time period (T ), after the V
D2
cc
rises above the threshold voltage.
• To prevent jitter, the reset threshold voltage has a
built-in hysteresis of 0.4% of V
Fig. 1 – Typical Application Diagram
.
TH
• The MAX6333 has an active-low reset output,
while the MAX6332 has an active-high reset
output. Both devices have push/pull output drives.
V
CC
V
V
CC
CC
• The reset signal is guaranteed valid, down to
MAX6332
MAX6333
V
cc
= 1.0V.
µP
• Low supply current of 3µA makes these devices
well suited for battery powered applications. They
are designed to reject fast transients from causing
false resets.
RESET
INPUT
RESET
(RESET)
GND
GND
• Both devices are available in a space-saving
SOT-23 package.
Features
Applications
• Tight reset voltage tolerances ± 1.8%
• Computers
• Low supply current: <3µA
• Critical µP/µC power monitoring
• Battery powered equipment
• Automotive electronics
• Precision monitoring of 1.8V and 2.5V
powersupply voltages
• Other threshold voltage options available from
1.5V to 2.5V in approximately 100mV increments
• Three reset active time-out period options:
typical 1.5mS, 30mS, 150mS
• Reset output guaranteed down to 1.0V
• V transient immunity
cc
• No external components
Document Number #####
27-Nov-01
www.vishay.com
1
MAX6332 and MAX6333
Vishay Semiconductor
Ordering Information
Reset Active High
Reset Timeout Period (Typical)
1: 1.5mS
2: 30mS
3: 150mS (Standard)
MAX6332URxxDx
MAX6333URxxDx
Reset Active Low
Reset Voltage Options (Typical)
15: 1.5V
16: 1.6V (Standard)
18: 1.8V (Standard)
19: 1.9V
20: 2.0V (Standard)
21: 2.1V
22: 2.2V (Standard)
23: 2.3V (Standard)
24: 2.4V
25: 2.5V
Sample stock is generally available on standard parts.
Contact our local sales office for availability of non standard versions (minimum order quantity is 10,000 pcs).
Marking Information
XX X XX
Threshold Voltage
(No Period)
Reset Timeout Period
Active Low
Active High
1.5mS
30mS
150mS
A
D
E
L
Q
R
First Two Digits of the Part Number
Example:
MAX6332 1.8V 150mS
MAX6333 1.8V 150mS
Timeout Period
Timeout Period
63R18
63E18
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2
Document Number #####
27-Nov-01
MAX6332 and MAX6333
Vishay Semiconductor
Absolute Maximum Ratings(1)
Parameter
Symbol
Value
Unit
V
Supply Voltage
Vcc
6.0
–0.3 to (Vcc + 0.3)
20
Reset/Reset
V
Input Current, Vcc
mA
mA
V/µS
°C
Output Current, Reset/Reset
dV/dT (Vcc)
20
100
Operating Temperature Range
Storage Temperature Range
TA
–40 to +125
–65 to +150
Tstg
°C
Power Dissipation (TA ≤ 70°C)
SOT-23 (Derate 4mW/°C above 70°C)
PD
260
mW
Note: (1) Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device.
Electrical Characteristics TA = –40°C to 125°C unless otherwise noted. Typical values are at TA = 25°C
Parameter
Symbol
Test Conditions
Min
Typ
Max
5.5
Unit
TA = 25°C
1
–
Vcc Range
VRANGE
TA = –40 to +85°C
TA = –40 to +125°C
Vcc = 3.0V
1
–
5.5
V
1.2
–
–
5.5
–
7.0
Supply Current
(No Load)
µA
ICC
T
A = 25°C
–
–
3.0
TA = 25°C
VTH –1.8%
VTH –3%
VTH
VTH
0.4
VTH+1.8%
VTH+3%
Reset Threshold
VTH
V
TA = –40 to +125°C
Threshold Hysteresis
VTH HIST
%VTH
MAX6332 VCC > VTH
MAX6333 VCC < VTH
ISINK = 50µA, VCC ≥1.0V
ISINK = 500µA, VCC ≥1.8V
Reset Output Voltage Low
Reset Output Voltage High
VOL
–
–
V
V
0.4
0.3
MAX6332 VCC < VTH
MAX6333 VCC > VTH
ISOURCE = 200µA, VCC≥1.8V 0.8VCC
ISOURCE = 500µA, VCC≥2.7V 0.8VCC
VOH
–
–
–
VCC Falling Reset Delay
Reset Timeout Period
TD1
TD2
VCC to VTH – 100mV
–
40
µS
MAX633xUR−D1
MAX633xUR−D2
MAX633xUR−D3
1
20
100
1.5
30
150
2
40
200
mS
Document Number #####
27-Nov-01
www.vishay.com
3
MAX6332 and MAX6333
Vishay Semiconductor
Ratings and
Characteristic Curves(TA = 25°C unless otherwise noted)
Fig. 2 – Timing Diagram
V
V
TH
TH
V
CC
T
T
D2
50%
T
T
D1
50%
Reset
Reset
D2
50%
50%
D1
Fig. 3 – Transient Rejection
140
120
100
Supply (V ) Transients
CC
These devices have a certain immunity to fast negative
going transients. The graph titled “Transient Rejection”
shows the maximum allowable transient amplitude and
duration to avoid triggering an unintended reset. As
shown in the graph shorter transients can have larger
amplitudes without triggering resets.
80
60
40
20
0
0.01
0.1
1
Transient Amplitude (V)
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4
Document Number #####
27-Nov-01
MAX6332 and MAX6333
Vishay Semiconductor
Ratings and
Characteristic Curves(TA = 25°C unless otherwise noted)
Fig. 4 – Reset Time vs.Temperature
Fig. 5 – I vs.Temperature
CC
2.35
170
165
2.30
2.25
160
155
150
145
140
MAX6333UR25D3
MAX6333UR25D3
2.20
2.15
2.10
--50
--20
10
40
70
100
130
130
100
--50
--20
10
40
70
100
130
Temperature (°C)
Temperature (°C)
Fig. 6 – Reset V vs.Temperature
Fig. 7 – I vs. V
CC CC
th
2
2.506
2.504
2.502
1.6
1.2
0.8
0.4
85°C
2.500
2.498
2.496
2.494
2.492
2.490
2.488
2.486
40°C
MAX6333UR25D3
0°C
0
0
1
2
3
4
5
--50
--20
10
40
70
100
Temperature (°C)
VCC (V)
Fig. 8 – TD1 Delay vs.Temperature
43
42
41
40
39
38
37
--40
--20
0
20
40
60
80
Temperature (°C)
Document Number #####
27-Nov-01
www.vishay.com
5
MAX6332 and MAX6333
Vishay Semiconductor
Ratings and
Characteristic Curves(TA = 25°C unless otherwise noted)
Fig. 9 – Threshold Hysteresis
vs.Temperature
Fig. 10 – Reset V vs.Temperature
OL
0.5
0.265
0.260
0.255
0.4
0.3
0.2
0.1
0.250
0.245
0.240
0.235
0.230
0.225
0.220
MAX6333URxxDx
0
--40
--20
0
20
40
60
80
100
--50
--20
10
40
70
100
130
Temperature (°C)
Temperature (°C)
SOT-23 Case Outline
3.10
2.70
Top View
Mounting Pad Layout
3
0.031 (0.8)
3.00
2.60
1.80
1.40
0.035 (0.9)
1
2
0.079 (2.0)
1.90
(TYP.)
Dimensions in millimeters
1.40
0.037 (0.95)
1.00
0.037 (0.95)
0.25
0.10
1.25
0.70
θ1 9°
1°
0.55
0.35
0.15
0.50
0.35
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Document Number #####
27-Nov-01
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