Anpec APR3012 Micropower microprocessor reset circuit Datasheet

APR3011/2/3
MicroPower Microprocessor Reset Circuit
Features
•
•
•
•
General Description
The APR3011/2/3 are designed to monitor voltage supplies in µP and digital systems. The quiescent current is
1.2V to 6V Input Voltage Range
Low Quiescent Current : Less than 1.5 µA
extremely low, typically 1.5µA, making it ideal for portable
battery operated equipment. The APR3011/2/3 operate
High Accuracy Detection Threshold : ±1.5%
by monitoring the system power supply voltage. When
the input voltage drops below a fixed threshold, the de-
Fixed Trimmed Reset Thresholds for 1.5V, 1.75V,
2.32V, 2.63V, 2.93V, 3.08V, 3.9V, 4.38V, 4.63V
•
•
vice asserts a reset signal for a fixed time period after Vcc
rises above the fixed threshold. The APR3011/2/3 series
Reset Timeout Period 250ms
are available with three output stage versions: APR3011
push-pull active low output, APR3012 push-pull active
Available Output Configurations
- Open-Drain Output
- CMOS Active High Output
high output, and APR3013 open drain active low output.
They are also designed to reject fast line transient glitches
- CMOS Active Low Output
•
•
•
on VCC. The APR3011/2/3 come in a miniature SOT-23-3,
SOT-23-5, and SOT-89 packages.
SOT-23-3, SOT-23-5, and SOT-89 Packages
No External Components
Lead Free and Green Devices Available
Pin Configuration
(RoHS Compliant)
Applications
VCC
NC
3
•
•
•
•
1
Computers
5
2
1
GND Reset (3011/3)
Reset (3012)
Cell Phones
Portable Electronics
NC
SOT-23-3 (Top View)
4
2
3
G N D V C C Reset (3011/3)
Reset (3012)
SOT-23-5 (Top View)
µP Power Supply Monitoring
1
2
GND
VCC
3
Reset (3011/3)
Reset (3012)
SOT-89 (Top View)
ANPEC reserves the right to make changes to improve reliability or manufacturability without notice, and advise
customers to obtain the latest version of relevant information to verify before placing orders.
Copyright  ANPEC Electronics Corp.
Rev. A.4 - Jan., 2009
1
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APR3011/2/3
Ordering and Marking Information
APR3011/2/3
Assembly Material
Handling Code
Temperature Range
Package Code
Voltage Code
APR3011/2/3 A/B : 11/2/3 X X
APR3011/2/3 -15 D :
Package Code
A : SOT-23-3 B : SOT-23-5 D : SOT-89
Temperature Range
I : -40 to 85 oC
Handling Code
TR : Tape & Reel
Voltage Code :
15 : 1.5V ~ 46 : 4.63V
Assembly Material
G : Halogen and Lead Free Device
Date Code
Voltage Code A:1.5V B:1.75V C:2.32V D:2.63V E:2.93V F:3.08V G:3.9V H:4.38V J:4.63V
APR3011/2/3
XXXXX 15
XXXXX - Date Code
;
15 - 1.5V
Note: ANPEC lead-free products contain molding compounds/die attach materials and 100% matte tin plate termination finish; which
are fully compliant with RoHS. ANPEC lead-free products meet or exceed the lead-free requirements of IPC/JEDEC J-STD-020C for
MSL classification at lead-free peak reflow temperature. ANPEC defines “Green” to mean lead-free (RoHS compliant) and halogen
free (Br or Cl does not exceed 900ppm by weight in homogeneous material and total of Br and Cl does not exceed 1500ppm by
weight).
Absolute Maximum Ratings
Symbol
VCC
Parameter
VCC to GND
RESET to GND (Push-Pull Output)
Rating
Unit
-0.3 to 6
V
-0.3 to VCC +0.3
VRESET
IMAX
IRESET
dVCC/dt
V
RESET to GND (Open Drain Output)
-0.3 to 6
Maximum Continuous Input Current
20
mA
RESET/RESET Current
20
mA
Rate of Rise of VCC
100
V/µs
-40 to 150
°C
260
°C
TJ
Junction Temperature Range
TL
Lead Temperature Soldering, 10 Seconds
RTH,JA
PD
Thermal Resistance – Junction to Ambient
SOT-23-3
357
SOT-23-5
357
SOT-89
180
Power Dissipation
°C/W
Internally Limited
W
Part Number Description
PART NUMBER
PART DESCRIPTION
APR3011
Reset Output Push Pull Active Low with Delay
APR3012
Reset Output Push Pull Active High with Delay
APR3013
Reset Output Open Drain Active Low with Delay
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APR3011/2/3
Electrical Characteristics
VIN = 5V, TA = -40 to 85°C unless otherwise noted. Typical values are at TA=25°C, VCC = 5V for 4.38V versions, VCC = 3.3V for 3.08/
2.93V versions, VCC = 3.0V for 2.63V. versions and VCC = 2.5V for 2.32V versions, VCC = 2.0V for 1.75V versions , VCC = 1.8V for
1.5V versions.
APR3011/2/3
Symbol
Parameter
VCC
Supply Voltage
ICC
Supply Current
VTH
Test Conditions
Unit
Min.
Typ.
Max.
1.2
-
6
V
VCC=1.5V~6V
-
1.5
4
µA
TA=-40 to 85°C
-
3
5
TA=25°C
-
±1.5%
-
TA=-40 to 85°C
-
±2%
-
-
20
-
mV
150
250
350
ms
-
-
0.5
V
0.8*VCC
-
-
-
25
-
µS
-
-
0.5
µA
Reset Threshold
VHYST
Hysteresis Range
TRTP
Reset Timeout Period
VOL
Reset Output Low
ISINK=1.2mA
VOH
Reset Output High
ISOURCE=0.6mA
TD
VCC to Reset Delay
VCC=VTH to (VTH-100mV)
ILE
Reset Output Leakage
Pin Description
(Note 1)
PIN
FUNCTION
NO.
NAME
1
GND
Ground connection
RESET
RESET output remains low while VCC is below the reset threshold and remains so for a fixed time
(APR3011/3) period after VCC raises above the reset threshold
2
RESET
RESET output remains high while VCC is below the reset threshold and remains so for a fixed time
(APR3012) period after VCC raises above the reset threshold.
3
VCC
Supply Voltage (+1.2V to +6V)
Note 1: The pin sequence here might not be correct for all different package types, and please refer pin configuration in page1 for
correct pin assignment.
Typical Application Circuit
VCC
VCC
VCC
100k
APR3013 RESET
GND
Copyright  ANPEC Electronics Corp.
Rev. A.4 - Jan., 2009
VCC
VCC
RESET µP
INPUT
APR3011 RESET
APR3012 (RESET)
GND
GND
3
VCC
RESET µP
INPUT
GND
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APR3011/2/3
Block Diagram
VCC
Reset
Generator
+ Timer
RESET
Oscillator
VREF
APR3011
GND
VCC
Reset
Generator
+ Timer
RESET
Oscillator
VREF
APR3012
GND
RESET
VCC
Reset
Generator
+ Timer
Oscillator
VREF
GND
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Rev. A.4 - Jan., 2009
APR3013
4
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APR3011/2/3
Timing Chart
Reset Threshold
Reset Threshold
Vcc
(APR3012)
RESET
Reset Timeout Period 250ms
Vcc to Reset Delay 25us
(APR3011/3)
RESET
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APR3011/2/3
Typical Operating Characteristics
Maximum Transient Duration vs.
Reset Threshold Overdrive VTH - VCC
Supply Current vs. Supply Voltage
2
Maximum Transient Duration (µs)
120
Supply Current (µA)
1.6
1.2
0.8
0.4
0
100
generate a reset signal
80
60
40
20
never generate a reset signal
0
0
1
2
3
4
5
10
6
1000
Reset Threshold Overdrive VTH - VCC (mV)
Supply Voltage (V)
Output Source Current vs. Reset High Output Voltage
Output Sink Current vs. Reset Low Output Voltage
50
70
Vcc=5V
Output Sink Current (mA)
50
Vcc=4V
40
30
Vcc=2.9V
45
60
Output Source Current (mA)
100
Vcc=3V
V
20
10
40
35
Vcc=2.5V
30
25
Vcc=2V
20
15
Vcc=1.5
V
10
5
0
0
0
1
2
3
4
5
0
6
Reset High Output Voltage (V)
Copyright  ANPEC Electronics Corp.
Rev. A.4 - Jan., 2009
1
2
3
4
5
6
Reset Low Output Voltage (V)
6
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APR3011/2/3
Typical Operating Characteristics (Cont.)
Reset Propagation Delay vs. Temperature
Normalized Reset Threshold vs. Temperature
60
1.008
Reset Propagation Delay (µs)
Normalized Reset Threshold (%)
1.006
1.004
1.002
1
0.998
0.996
50
40
VOD=100mV
30
20
10
0
0.994
-40 -20
0
20
40
60
80
-40
100 120
-20
0
40
60
80
100 120
Temperature (°C)
Temperature (°C)
Supply Current vs. Temperature
Reset Timeout Period vs. Temperature
600
3.5
500
3
Supply Current (µA)
Reset Timeout Period (ms)
20
400
300
200
100
2.5
Vcc=5V
2
1.5
Vcc=3V
1
0.5
0
0
-40
-20
0
20
40
60
80
100 120
-40
Temperature (°C)
Copyright  ANPEC Electronics Corp.
Rev. A.4 - Jan., 2009
-20
0
20
40
60
80
100 120
Temperature (°C)
7
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APR3011/2/3
Typical Operating Characteristics (Cont.)
Power Up
Power Down
Vcc(2V/div)
Vcc(2V/div)
RESET(2V/div)
RESET(2V/div)
Time (50ms/div)
Time (200ms/div)
Vcc to RESET Delay
Vcc(0.5V/div)
Vcc=VTH to (VTH-100mV)
RESET(2V/div)
Time (10µs/div)
Copyright  ANPEC Electronics Corp.
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APR3011/2/3
Application Information
VCC
VCC Transient Rejection
The APR3011/2/3 have the function to reject the transient
glitches from the power line. The Maximum Transient
Duration vs. Reset Threshold Overdrive shows at Typical
VCC
Characteristics.The transient voltage with the duration
under the curve will not generate a reset signal, e.g. a
RESET
transient of 100mV below the reset threshold voltage has
the duration more than 35µs, it will generate a reset signal.
Connect a 0.1µF bypass capacitor to the VCC pin can improve the transient immunity.
100K
GND
Reset Output
The APR3011/2/3 have 3 output stage versions: APR3001
Figure 1. Ensuring RESET Valid to VCC = 0 V
is an active low push-pull output. When the VCC drops
below the reset threshold, the RESET output generates
a low signal. APR3012 is an active high push-pull output.
When the VCC drops below the reset threshold, the RE-
+3.3V
+5.0V
output must be connected a pull-up resistor to a supply
voltage that is lower than 6V, it suits to use in multiple
VCC
VCC
voltage systems (see Figure 2). The APR3011 RESET
output is valid until the VCC=1.2V; when it is below 1.2V,
APR3013
SET output generates a high signal (see Timing Chart).
APR3013 is an active low open drain output, the RESET
RESET
the IC is shutdown, and the output becomes a floating
state. If it is a trouble, a resistor should be connected
GND
from reset output to the ground to keep the reset output
low (see Figure 1). For the APR3012, a pull-up resistor to
VCC is required to keep the valid reset output for VCC below
1.2V.
Copyright  ANPEC Electronics Corp.
Rev. A.4 - Jan., 2009
100K
RESET 5V
INPUT System
GND
Figure 2. APR3013 Open Drain Output with Multiple Supplies
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APR3011/2/3
Package Information
SOT-23-3
D
e
E
E1
SEE
VIEW A
c
b
0.25
A
L
GAUGE PLANE
SEATING PLANE
0
A1
A2
e1
VIEW A
S
Y
M
B
O
L
SOT-23-3
MIN.
MIN.
MAX.
A
A1
INCHES
MILLIMETERS
MAX.
1.45
0.00
0.057
0.15
0.000
0.006
0.051
A2
0.90
1.30
0.035
b
0.30
0.50
0.012
0.020
c
0.08
0.22
0.003
0.009
D
2.70
3.10
0.106
0.122
E
2.60
3.00
0.102
0.118
E1
1.40
1.80
0.055
e
0.95 BSC
e1
0.071
0.037 BSC
1.90 BSC
0.075 BSC
L
0.30
0.60
0
0°
8°
0.012
0°
0.024
8°
Note : Dimension D and E1 do not include mold flash, protrusions or gate
burrs. Mold flash, protrusion or gate burrs shall not exceed 10 mil
per side.
Copyright  ANPEC Electronics Corp.
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APR3011/2/3
Package Information
SOT-23-5
D
e
E
E1
SEE
VIEW A
b
c
0.25
A
L
0
GAUGE PLANE
SEATING PLANE
A1
A2
e1
VIEW A
S
Y
M
B
O
L
SOT-23-5
INCHES
MILLIMETERS
MIN.
MIN.
MAX.
A
MAX.
1.45
0.057
A1
0.00
0.15
0.000
0.006
A2
0.90
1.30
0.035
0.051
b
0.30
0.50
0.012
0.020
c
0.08
0.22
0.003
0.009
D
2.70
3.10
0.106
0.122
E
2.60
3.00
0.102
0.118
E1
1.40
1.80
0.055
0.071
e
0.95 BSC
0.037 BSC
e1
1.90 BSC
0.075 BSC
L
0.30
0.60
0
0°
8°
0.012
0°
0.024
8°
Note : 1. Follow JEDEC TO-178 AA.
2. Dimension D and E1 do not include mold flash, protrusions or gate
burrs. Mold flash, protrusion or gate burrs shall not exceed 10 mil
per side.
Copyright  ANPEC Electronics Corp.
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APR3011/2/3
Package Information
SOT-89
A
C
L
H
E
E1
D
D1
e
e1
B
B1
SOT-89
S
Y
M
B
O
L
A
MIN.
MAX.
MIN.
MAX.
1.40
1.60
0.055
0.063
MILLIMETERS
INCHES
B
0.44
0.56
0.017
0.022
B1
0.36
0.48
0.014
0.019
C
0.35
0.44
0.014
0.017
D
4.40
4.60
0.173
0.181
D1
1.62
1.83
0.064
0.072
E
2.29
2.60
0.090
0.102
E1
2.13
2.29
0.084
0.090
e
1.50 BSC
e1
3.00 BSC
0.059 BSC
0.118 BSC
H
3.94
4.25
0.155
L
0.89
1.20
0.035
0.167
0.047
Note : Follow JEDEC TO-243 AA.
Copyright  ANPEC Electronics Corp.
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APR3011/2/3
Carrier Tape & Reel Dimensions
P0
P2
P1
A
B0
W
F
E1
OD0
K0
A0
A
OD1 B
B
T
SECTION A-A
SECTION B-B
H
A
d
T1
Application
SOT-23-3
Application
SOT-23-5
Application
SOT- 89
A
H
T1
C
d
D
W
E1
F
178.0±2.00
50 MIN.
8.4+2.00
-0.00
13.0+0.50
-0.20
1.5 MIN.
20.2 MIN.
8.0±0.30
1.75±0.10
3.5±0.05
P0
P1
P2
D0
D1
T
A0
B0
K0
2.0±0.05
1.5+0.10
-0.00
1.0 MIN.
0.6+0.00
-0.40
3.20±0.20
3.10±0.20
1.50±0.20
4.0±0.10
4.0±0.10
A
H
T1
C
d
D
W
E1
F
178.0±2.00
50 MIN.
8.4+2.00
-0.00
13.0+0.50
-0.20
1.5 MIN.
20.2 MIN.
8.0±0.30
1.75±0.10
3.5±0.05
P0
P1
P2
D0
D1
T
A0
B0
K0
2.0±0.05
1.5+0.10
-0.00
1.0 MIN.
0.6+0.00
-0.40
3.20±0.20
3.10±0.20
1.50±0.20
W
E1
F
4.0±0.10
4.0±0.10
A
H
T1
C
d
D
178.0±2.00
50 MIN.
12.4+2.00
-0.00
13.0+0.50
-0.20
1.5 MIN.
20.2 MIN.
P0
P1
P2
D0
D1
T
A0
B0
K0
4.0±0.10
8.0±0.10
2.0±0.05
1.5+0.10
-0.00
1.5 MIN.
0.6+0.00
-0.40
4.80±0.20
4.50±0.20
1.80±0.20
12.0±0.30 1.75±0.10
5.50±0.05
(mm)
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APR3011/2/3
Devices Per Unit
Package Type
SOT-23-3
SOT-23-5
SOT-89
Unit
Tape & Reel
Tape & Reel
Tape & Reel
Quantity
3000
3000
1000
Taping Direction Information
SOT-23-3
USER DIRECTION OF FEED
SOT-23-5
USER DIRECTION OF FEED
SOT-89
USER DIRECTION OF FEED
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APR3011/2/3
Reflow Condition
(IR/Convection or VPR Reflow)
tp
TP
Critical Zone
TL to TP
Ramp-up
Temperature
TL
tL
Tsmax
Tsmin
Ramp-down
ts
Preheat
25
t 25°C to Peak
Time
Reliability Test Program
Test item
SOLDERABILITY
HOLT
PCT
TST
ESD
Latch-Up
Method
MIL-STD-883D-2003
MIL-STD-883D-1005.7
JESD-22-B,A102
MIL-STD-883D-1011.9
MIL-STD-883D-3015.7
JESD 78
Description
245°C, 5 sec
1000 Hrs Bias @125°C
168 Hrs, 100%RH, 121°C
-65°C~150°C, 200 Cycles
VHBM > 2KV, VMM > 200V
10ms, 1tr > 100mA
Classification Reflow Profiles
Profile Feature
Average ramp-up rate
(TL to TP)
Preheat
- Temperature Min (Tsmin)
- Temperature Max (Tsmax)
- Time (min to max) (ts)
Time maintained above:
- Temperature (TL)
- Time (tL)
Peak/Classification Temperature (Tp)
Time within 5°C of actual
Peak Temperature (tp)
Ramp-down Rate
Time 25°C to Peak Temperature
Sn-Pb Eutectic Assembly
Pb-Free Assembly
3°C/second max.
3°C/second max.
100°C
150°C
60-120 seconds
150°C
200°C
60-180 seconds
183°C
60-150 seconds
217°C
60-150 seconds
See table 1
See table 2
10-30 seconds
20-40 seconds
6°C/second max.
6°C/second max.
6 minutes max.
8 minutes max.
Note: All temperatures refer to topside of the package. Measured on the body surface.
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APR3011/2/3
Classification Reflow Profiles (Cont.)
Table 1. SnPb Eutectic Process – Package Peak Reflow Temperatures
3
3
Package Thickness
<2.5 mm
≥2.5 mm
Volume mm
≥350
225 +0/-5°C
225 +0/-5°C
Volume mm
<350
240 +0/-5°C
225 +0/-5°C
Table 2. Pb-free Process – Package Classification Reflow Temperatures
3
3
3
Volume mm
Volume mm
Volume mm
<350
350-2000
>2000
<1.6 mm
260 +0°C*
260 +0°C*
260 +0°C*
1.6 mm – 2.5 mm
260 +0°C*
250 +0°C*
245 +0°C*
≥2.5 mm
250 +0°C*
245 +0°C*
245 +0°C*
* Tolerance: The device manufacturer/supplier shall assure process compatibility up to and including the stated
classification temperature (this means Peak reflow temperature +0°C. For example 260°C+0°C) at the rated MSL
level.
Package Thickness
Customer Service
Anpec Electronics Corp.
Head Office :
No.6, Dusing 1st Road, SBIP,
Hsin-Chu, Taiwan, R.O.C.
Tel : 886-3-5642000
Fax : 886-3-5642050
Taipei Branch :
2F, No. 11, Lane 218, Sec 2 Jhongsing Rd.,
Sindian City, Taipei County 23146, Taiwan
Tel : 886-2-2910-3838
Fax : 886-2-2917-3838
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