LINER LTC1232CN8

LTC1232
Microprocessor
Supervisory Circuits
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FEATURES
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DESCRIPTIO
The LTC®1232 provides power supply monitoring,
watchdog timing and external reset for microprocessor
systems. A precise internal voltage reference and
comparator circuit monitor the power supply line. When
an out-of-tolerance condition occurs, the reset outputs
are forced to active states. The RST output is guaranteed
to remain logic low even with VCC as low as 1V.
Guaranteed Reset Assertion at VCC = 1V
8-Pin SO Plastic Package
2.0mA Maximum Supply Current
4.62V/4.37V Precision Voltage Monitor
Power OK/Reset Time Delay: 600ms
Minimum External Component Count
Superior Upgrade for DS1232
The LTC1232 has an internal watchdog timer which forces
the reset outputs to active states when the Strobe input is
not forced low prior to a preset time-out period. The
watchdog timing can be set to operate on time-out periods
of typically 150ms, 600ms or 1.2 seconds.
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APPLICATIO S
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Critical µP Power Monitoring
Intelligent Instruments
Computers and Controllers
Automotive Systems
The LTC1232 performs push-button reset control.
The LTC1232 debounces the push-button input
and guarantees an active reset pulse width of 250ms
minimum.
, LTC and LT are registered trademarks of Linear Technology Corporation.
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TYPICAL APPLICATIO
RST Output Voltage vs
Supply Voltage
5
PB RST
MPU
(e.g. 6805)
VCC
100k
5V DC
ST
TD
I/O LINE
LTC1232
TOL
RST
GND
RST
RESET
LTC1232 • TA01
RST OUTPUT VOLTAGE (V)
5V DC
4
3
2
1
0
0
1
3
4
2
SUPPLY VOLTAGE (V)
5
LTC1232 • TA02
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LTC1232
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PACKAGE/ORDER I FOR ATIO
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ABSOLUTE
RATI GS
(Note 1, 2 and 3)
Terminal Voltage
VCC ....................................................... –0.3V to 7.0V
ST and RST .......................................... –0.3V to 7.0V
All Other Inputs and Outputs ...... –0.3V to VCC +0.3V
Power Dissipation .............................................. 500mW
Operating Temperature Range
LTC1232C ............................................... 0°C to 70°C
LTC1232I ........................................... –40°C to 85°C
Storage Temperature Range ................. –65°C to 150°C
Lead Temperature (Soldering, 10 sec).................. 300°C
TOP VIEW
PB RST 1
8
VCC
TD 2
7
ST
TOL 3
6
RST
GND 4
5
RST
ORDER
PART NUMBER
LTC1232CN8
N8 PACKAGE
8-LEAD PDIP
TJMAX = 100°C, θJA = 130°C/W
ORDER
PART NUMBER
TOP VIEW
PB RST 1
8
VCC
TD 2
7
ST
TOL 3
6
RST
GND 4
5
RST
LTC1232CS8
LTC1232IS8
S8 PART MARKING
S8 PACKAGE
8-LEAD PLASTIC SO
TJMAX = 100°C, θJA = 180°C/W
1232
1232I
Consult LTC Marketing for parts specified with wider operating temperature ranges.
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PRODUCT SELECTIO GUIDE
BATTERY
BACKUP
POWER
FAIL
WARNING
RAM
WRITE
PROTECT
PINS
RESET
WATCHDOG
TIMER
LTC1232
8
X
X
LTC690
8
X
X
X
X
LTC691
16
X
X
X
X
LTC694
8
X
X
X
X
LTC695
16
X
X
X
X
X
LTC699
8
X
X
LTC1235
16
X
X
X
X
X
PUSH-BUTTON
RESET
CONDITIONAL
BATTERY
BACKUP
X
X
X
X
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LTC1232
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RECO
E DED OPERATI G CO DITIO S
The ● denotes the specifications which apply
over the full operating temperature. VCC = full operating range.
SYMBOL
PARAMETER
VCC
Supply Voltage
VIH
VIL
CONDITIONS
MIN
TYP
MAX
UNITS
●
4.5
5
5.5
V
ST and PB RST Input High Level
●
2
VCC +0.3
V
ST and PB RST Input Low Level
●
–0.3
0.8
V
DC ELECTRICAL CHARACTERISTICS
The ● denotes the specifications which apply over the full operating
temperature. VCC = full operating range.
SYMBOL
PARAMETER
CONDITIONS
IIL
Input Leakage
(Note 3)
●
–1
IOH
Output Current at 2.4V
(Note 5)
●
–1
–13
mA
IOL
Output Current at 0.4V
(Note 5)
●
2
6
mA
ICC
Supply Current
(Note 4)
●
VCCTP
VCC Trip Point
TOL = GND
●
VCCTP
VCC Trip Point
TOL = VCC
●
VHYS
VCC Trip Point Hysteresis
VRST
RST Output Voltage at VCC = 1V
AC CHARACTERISTICS
MIN
TYP
MAX
1
UNITS
µA
0.5
2
4.5
4.62
4.74
V
4.25
4.37
4.49
V
40
ISINK = 10µA
4
mA
mV
200
mV
The ● denotes the specifications which apply over the full operating temperature.
VCC = full operating range.
SYMBOL
PARAMETER
CONDITIONS
tPB
PB RST = VIL
●
40
tRST
RESET Active Time
●
250
tST
ST Pulse Width
●
20
tRPD
VCC Detect to RST and RST
●
tf
VCC Slew Rate 4.75V–4.25V
●
300
tRPU
VCC Detect to RST and RST
(Reset Active Time)
●
250
tR
VCC Slew Rate 4.25V–4.75V
●
0
tTD
ST Pin Detect to RST and RST
(Watchdog Time-Out Period)
●
●
●
60
250
500
CIN
Input Capacitance
5
pF
COUT
Output Capacitance
5
pF
tR = 5µs
TD = GND
TD = Floating
TD = VCC
Note 1: Absolute Maximum Ratings are those values beyond which the life
of a device may be impaired.
Note 2: All voltage values are with respect to GND.
Note 3: The PB RST pin is internally pulled up to VCC with an internal
impedance of 10k typical. The TD pin has internal bias current.
MIN
TYP
MAX
UNITS
ms
610
1000
ms
ns
100
ns
µs
610
1000
ms
ns
150
610
1200
250
1000
2000
ms
ms
ms
Note 4: Measured with outputs open.
Note 5: The RST pin is an open drain output.
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LTC1232
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TI I G DIAGRA S
Push-Button Reset
PB RST
Power Down
tF
VIH
VIL
tPB
VCC
tRST
RST
4.50V
tRPD
VIH
VIL
RST
4.75V
4.25V
RST
LTC1232 • TD01
VOH
VOL
RST
LTC1232 • TD03
Strobe Input
Power Up
tR
tST
VCC
4.50V
4.75V
4.25V
tRPU
tTD
LTC1232 • TD02
RST
VOH
VOL
RST
LTC1232 • TD04
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BLOCK DIAGRA
VCC
8
TOL
3
6
RST
5
RST
+
5%, 10%
SWITCH
RESET PULSE
GENERATOR
C1
–
1.3V
OSC
PB RST
1
LEVEL SENSE
AND
DEBOUNCE
ST
7
LEVEL SENSE
TD
2
TIME-OUT
SELECTION
WATCHDOG
TIMER
LTC1232 • BD01
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LTC1232
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TYPICAL PERFOR A CE CHARACTERISTICS
VCC Trip Point vs Temperature
VCC Trip Point vs Temperature
4.63
VCC = 5V
TOL = VCC
TOL = GND
672
4.61
4.60
4.59
4.58
RESET ACTIVE TIME (ms)
4.37
VCC TRIP POINT (V)
4.62
VCC TRIP POINT (V)
Reset Active Time vs Temperature
696
4.38
4.36
4.35
4.34
50
25
75
0
TEMPERATURE (˚C)
100
125
4.32
–50 –25
50
25
75
0
TEMPERATURE (˚C)
LTC1232 • TPC01
600
100
552
–50 –25
125
50
25
75
0
TEMPERATURE (˚C)
Time-Out Period vs Temperature
100
125
LTC1232 • TPC03
LTC1232 • TPC02
RST Output Voltage vs Supply Voltage
5
696
VCC = 5V
TD = NO CONNECTION
TA = 25°C
EXTERNAL PULL-UP = 10µA
672
RST OUTPUT VOLTAGE (V)
WATCHDOG TIME-OUT PERIOD (ms)
624
576
4.33
4.57
–50 –25
648
648
624
600
576
552
–50 –25
4
3
2
1
0
50
25
75
0
TEMPERATURE (˚C)
100
125
LTC1232 • TPC04
0
1
3
4
2
SUPPLY VOLTAGE (V)
5
LTC1232 • TPC05
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PI FU CTIO S
VCC: 5V Supply Input. The VCC pin should be bypassed
with a 0.1µF capacitor.
GND: Ground Pin.
PB RST: Logic Input to be Directly Connected to a PushButton. The PB RST input requires an active low signal
which is debounced and timed for a minimum of 40ms.
When this condition is satisfied, the reset pulse generator
forces the reset outputs to active states. The reset outputs
remain in active states for a minimum of 250ms after
PB RST is released from logic low level.
TOL: Input to Select 5% or 10% Variation on VCC. When
TOL is connected to GND, the reset pulse generator forces
the reset outputs to active states as VCC falls below 4.75V
(4.62V typical). When TOL is connected to VCC, the reset
pulse generator forces the reset outputs to active states as
VCC falls below 4.5V (4.37V typical).
TD: Time-Out Delay. TD is a three-level input to select three
different time-out periods. The time-out period is set by
the TD input to be 150ms with TD connected to GND,
600ms with TD left floating, and 1.2 seconds with TD
connected to VCC.
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LTC1232
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PI FU CTIO S
active low for a minimum of 250ms from the moment the
push-button reset input is released from logic low level.
RST: Open Drain Logic Output for µP Reset Control.
The LTC1232 provides three ways to generate µP reset.
First, when VCC falls below VCC trip point (4.75V with
TOL = GND and 4.5V with TOL = VCC), RST goes active low.
After VCC returns to 5V, the reset pulse generator forces
RST to remain active low for a minimum of 250ms.
Second, when the watchdog timer is not serviced prior to
a selected time-out period, the reset pulse generator also
forces RST to active low for a minimum of 250ms and
repeats for every time-out period. Third and the last, when
the PB RST pin stays active low for a minimum of 40ms,
RST becomes active low. The RST output will remain
RST: RST is an Active High Logic Output. It is the inverse
of RST.
ST: Logic Input to Reset the Watchdog Timer. Driving ST
either high or low longer than the time-out period set by
the TD input, forces the reset outputs to active states for
a minimum of 250ms. The timer resets itself and begins to
time-out again with each high to low transition on the ST
input (see Figure 2).
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APPLICATIO S I FOR ATIO
Power Monitoring
The LTC1232 uses a bandgap voltage reference and a
precision voltage comparator, C1, to monitor the 5V
supply input on VCC (see Block Diagram). When VCC falls
below the V CC trip point (4.62V typical with
TOL = GND and 4.37V typical with TOL VCC), the reset
outputs are forced to active states. The VCC trip point
accounts for a 5% or 10% variation on VCC, so the reset
outputs become active when VCC falls below the VCC trip
point. On power-up, the reset signals are held in active
states for a minimum of 250ms after the VCC trip point is
reached to allow the power supply and microprocessor
to stabilize. On power-down, the RST signal remains
active low even with VCC as low as 1V. This capability helps
hold the microprocessor in stable shutdown condition.
Figure 1 shows the timing diagram of the RST signal.
V2
VCC
The precision voltage comparator, C1, typically has 40mV
of hysteresis which ensures that glitches at VCC pin do not
activate the reset outputs. Response time is typically 10µs.
To help prevent mitriggering due to transient loads, VCC
pin should be bypassed with a 0.1µF capacitor with the
leads trimmed as short as possible.
Push-Button Reset
The LTC1232 provides a logic input pin, PB RST, for direct
connection to a push-button. This push-button reset input
requires an active low signal. Internally, this input signal is
debounced and timed for a minimum of 40ms. When this
V2
V1
t1
V1
t1
RST
V1 = VCC TRIP POINT
V2 = VCC TRIP POINT + VHYS
t1 = RESET ACTIVE TIME
LTC1232 • TA03
Figure 1. Reset Active Time
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LTC1232
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APPLICATIO S I FOR ATIO
condition is satisfied, the reset pulse generator forces the
reset outputs to active states. The reset signals will remain
active for a minimum of 250ms from the moment the
push-button reset input is released from logic low level
(see Timing Diagram).
VCC = 5V
ST
t1
t1
t2
t2
t1
RST
t1 = RESET ACTIVE TIME
t2 = WATCHDOG TIME-OUT PERIOD
Watchdog Timer
LTC1232 • TA04
The LTC1232 provides a watchdog timer function to
monitor the activity of the microprocessor. If the microprocessor does not stimulate the strobe input, ST, within
a selected time-out period, the reset outputs are forced to
active states for a minimum of 250ms. The time-out period
is selected by the Time-Out Delay input, TD, to be 150ms
with TD connected to GND, 600ms with TD left floating,
and 1.2 seconds with TD connected to VCC. The 1.2 second
time-out period is adequate for many systems to serve the
watchdog timer immediately after a reset. Figure 2 shows
the timing diagram of watchdog time-out period and reset
active time. The watchdog time-out period is restarted as
Figure 2. Watchdog Time-Out Period and Reset Active Time
soon as the reset outputs are inactive. When a high-to-low
transition occurs at the ST pin prior to time-out, the
watchdog time is reset and begins to time-out again. To
ensure the watchdog time does not time-out, a high-to low
transition on the ST pin must occur at or less than the
minimum time-out period. If the input to the ST pin
remains either high or low, reset pulses will be issued for
every time-out period selected by the TD pin. The watchdog timer is disabled when VCC falls below the VCC trip
point.
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PACKAGE DESCRIPTIO
N8 Package
8-Lead PDIP (Narrow .300 Inch)
(Reference LTC DWG # 05-08-1510)
.400*
(10.160)
MAX
8
7
6
5
1
2
3
4
.255 ± .015*
(6.477 ± 0.381)
.300 – .325
(7.620 – 8.255)
.009 – .015
(0.229 – 0.381)
+.035
.325 –.015
(
8.255
+0.889
–0.381
)
.045 – .065
(1.143 – 1.651)
.130 ± .005
(3.302 ± 0.127)
.065
(1.651)
TYP
.100
(2.54)
BSC
.125
(3.175) .020
MIN (0.508)
MIN
.018 ± .003
(0.457 ± 0.076)
N8 0502
NOTE:
1. DIMENSIONS ARE
INCHES
MILLIMETERS
*THESE DIMENSIONS DO NOT INCLUDE MOLD FLASH OR PROTRUSIONS.
MOLD FLASH OR PROTRUSIONS SHALL NOT EXCEED .010 INCH (0.254mm)
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Information furnished by Linear Technology Corporation is believed to be accurate and reliable.
However, no responsibility is assumed for its use. Linear Technology Corporation makes no representation that the interconnection of its circuits as described herein will not infringe on existing patent rights.
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LTC1232
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PACKAGE DESCRIPTIO
S8 Package
8-Lead Plastic Small Outline (Narrow .150 Inch)
(Reference LTC DWG # 05-08-1610)
.189 – .197
(4.801 – 5.004)
NOTE 3
.045 ±.005
.050 BSC
8
7
6
5
N
N
.245
MIN
.160 ±.005
1
.030 ±.005
TYP
.150 – .157
(3.810 – 3.988)
NOTE 3
.228 – .244
(5.791 – 6.197)
2
3
N/2
N/2
RECOMMENDED SOLDER PAD LAYOUT
.010 – .020
× 45°
(0.254 – 0.508)
.008 – .010
(0.203 – 0.254)
1
2
.053 – .069
(1.346 – 1.752)
0°– 8° TYP
.016 – .050
(0.406 – 1.270)
NOTE:
1. DIMENSIONS IN
.014 – .019
(0.355 – 0.483)
TYP
INCHES
(MILLIMETERS)
2. DRAWING NOT TO SCALE
3. THESE DIMENSIONS DO NOT INCLUDE MOLD FLASH OR PROTRUSIONS.
MOLD FLASH OR PROTRUSIONS SHALL NOT EXCEED .006" (0.15mm)
3
4
.004 – .010
(0.101 – 0.254)
.050
(1.270)
BSC
SO8 0502
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Linear Technology Corporation
LW/TP 1002 1K REV A • PRINTED IN USA
1630 McCarthy Blvd., Milpitas, CA 95035-7417
(408) 432-1900 ● FAX: (408) 434-0507
●
www.linear.com
© LINEAR TECHNOLOGY CORPORATION 1992