LM3706XLBP-308
更新时间:2024-09-19 04:00:56
品牌:TI
描述:1-CHANNEL POWER SUPPLY MANAGEMENT CKT, PBGA9, MICRO, SMD-9
LM3706XLBP-308 概述
1-CHANNEL POWER SUPPLY MANAGEMENT CKT, PBGA9, MICRO, SMD-9
LM3706XLBP-308 数据手册
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PDF下载June 2001
LM3706/LM3707
Microprocessor Supervisory Circuits with Low Line
Output and Watchdog Timer
n No external components required
n RESET (LM3706) or RESET (LM3707) outputs
n Precision supply voltage monitor
n Factory programmable Reset and Watchdog Timeout
Delays
n Available in micro SMD package for minimum footprint
General Description
The LM3706/LM3707 series of microprocessor supervisory
circuits provide the maximum flexibility for monitoring power
supplies and battery controlled functions in systems without
backup batteries. The LM3706/LM3707 series are available
in a 9-bump micro SMD package.
±
±
n
n
0.5% Reset threshold accuracy at room temperature
2% Reset threshold accuracy over temperature
Built-in features include the following:
Reset: Reset is asserted during power-up, power-down, and
brownout conditions. RESET is guaranteed down to VCC of
1.0V.
extremes
n Reset assertion down to 1V VCC (RESET option only)
n 28 µA VCC supply current
Low Line Output: This early power failure warning indicator
goes low when the supply voltage drops to a value which is
2% higher than the reset threshold voltage.
Applications
n Embedded Controllers and Processors
n Intelligent Instruments
Watchdog Timer: The WDI (Watchdog Input) monitors one of
the µP’s output lines for activity. If no output transition occurs
during the watchdog timeout period, reset is activated.
n Automotive Systems
n Critical µP Power Monitoring
Features
n Standard Reset Threshold voltage: 3.08V
n Custom Reset Threshold voltages: For other voltages
between 2.2V and 5.0V in 10mV increments, contact
National Semiconductor Corp.
Typical Application
20011603
© 2001 National Semiconductor Corporation
DS200116
www.national.com
Connection Diagram
Top View
(looking from the coating side)
micro SMD 9 Bump Package
BPA09
20011601
Pin Descriptions
Bump No.
Name
VCC
Function
2
3
Power Supply input.
RESET
Reset Logic Output. Pulses low for tRP (Reset Timeout Period) when triggered, and stays
low whenever VCC is below the reset threshold or when MR is below VMRT. It remains low
for tRP after either VCC rises above the reset threshold, or after MR input rises above
VMRT (LM3706 only).
RESET
LLO
Reset Logic Output. RESET is the inverse of RESET (LM3707 only).
Low-Line Logic Output. Early Power-Fail warning output. Low when VCC falls below VLLOT
(Low-Line Output Threshold). This output can be used to generate an NMI (Non-Maskable
Interrupt) to provide an early warning of imminent power-failure.
Ground reference for all signals.
5
6
7
GND
WDI
Watchdog Input Transition Monitor: If no transition activity occurs for a period exceeding
tWD (Watchdog Timeout Period), reset is engaged.
1, 4, 8
9
NC
NC
No Connect.
No Connect. Bump 9 is test input used at factory only. Leave floating.
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2
Block Diagram
20011605
3
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Ordering Information
20011604
*
For other voltages between 2.2V and 5.0V, please contact National Semiconductor sales office.
LM3706/LM3707
Reset Timeout
Period
Watchdog
Timeout Period
1600ms
Package
Marking
%%I6
Part Number
Output
LM3706XQBP-308
LM3706XQBPX-308
LM3707XQBP-308
totem-pole
totem-pole
totem-pole
totem-pole
200ms
200ms
1600ms
%%I6
200ms
1600ms
%%I7
LM3707XQBPX-308
200ms
1600ms
%%I7
%% is the datecode and will vary with time.
Table Of Functions
Part
Active
Low
Reset
x
Active
High
Output
Reset
Timeout
Watchdog
Low
Line
Output
x
Number
(X = totem-pole)
(Y = open-drain)
Timeout
Period
Reset
Period
*
LM3706
LM3707
X, Y
X
Customized
Customized
Customized
Customized
x
x
*
= available upon request. Contact National
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4
Absolute Maximum Ratings (Note 1)
Power Dissipation
(Note 3)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Operating Ratings (Note 1)
Temperature Range
−40˚C ≤ TJ ≤ 85˚C
Supply Voltage (VCC
All Other Inputs
)
−0.3V to 6.0V
−0.3V to VCC + 0.3V
ESD Ratings (Note 2)
Human Body Model
Machine Model
1.5kV
150V
LM3706/LM3707 Series Electrical Characteristics
Limits in the standard typeface are for TJ = 25˚C and limits in boldface type apply over full operating range. Unless otherwise
specified: VCC = +2.2V to 5.5V.
Symbol
POWER SUPPLY
VCC Operating Voltage
Parameter
Conditions
Min
Typ
Max
Units
LM3706
LM3707
1.0
1.2
5.5
5.5
50
V
Range: VCC
ICC
VCC Supply
Current
All inputs = VCC; all outputs floating
28
µA
RESET THRESHOLD
VRST
Reset Threshold
VCC falling
−0.5
−2
+0.5
+2
VRST
%
VCC falling: TA = 0˚C to 70˚C
−1.5
+1.5
VRSTH
tRP
Reset Threshold
Hysteresis
0.0032•VRST
mV
Reset Timeout
Period
Reset Timeout Period = E, J, N, S
Reset Timeout Period = F, K, P, T
Reset Timeout Period = G, L, Q, U
Reset Timeout Period = H, M, R, V
VCC falling at 1mV/µs
1
1.4
28
2
20
40
ms
µs
140
1120
200
1600
20
280
2240
tRD
VCC to Reset
Delay
RESET (LM3707)
VOL RESET
>
VCC 2.25V, ISINK = 900µA
0.3
0.3
0.4
>
VCC 2.7V, ISINK = 1.2mA
V
>
VCC 4.5V, ISINK = 3.2mA
>
VOH
RESET
VCC 1.2V, ISOURCE = 50µA
0.8 VCC
0.8 VCC
>
VCC 1.8V, ISOURCE = 150µA
>
VCC 2.25V, ISOURCE = 300µA
0.8 VCC
V
>
VCC 2.7V, ISOURCE = 500µA
0.8 VCC
>
VCC 4.5V, ISOURCE = 800µA
VCC − 1.5V
ILKG
Output Leakage
Current
VRESET = 5.5V
1.0
µA
RESET (LM3706)
VOL RESET
>
VCC 1.0V, ISINK = 50µA
0.3
0.3
0.3
0.3
0.4
>
VCC 1.2V, ISINK = 100µA
>
VCC 2.25V, ISINK = 900µA
>
VCC 2.7V, ISINK = 1.2mA
V
>
VCC 4.5V, ISINK = 3.2mA
>
VOH
RESET
VCC 2.25V, ISOURCE = 300µA
0.8 VCC
0.8 VCC
>
VCC 2.7V, ISOURCE = 500µA
>
VCC 4.5V, ISOURCE = 800µA
VCC − 1.5V
WDI
5
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LM3706/LM3707 Series Electrical Characteristics (Continued)
Limits in the standard typeface are for TJ = 25˚C and limits in boldface type apply over full operating range. Unless otherwise
specified: VCC = +2.2V to 5.5V.
Symbol
Parameter
Watchdog Input
Current
Conditions
Min
−1
Typ
Max
+1
Units
WDI
µA
WDIT
tWD
Watchdog Input
Threshold
0.2•VCC
1.225
0.8•VCC
V
Watchdog
Watchdog Timeout Period = E, F, G, H
Watchdog Timeout Period = J, K, L, M
Watchdog Timeout Period = N, P, Q, R
Watchdog Timeout Period = S, T, U, V
4.3
71
6.2
102
9.3
153
Timeout Period
ms
1120
17900
1600
25600
2400
38400
LLO
>
VOL
LLO Output
Voltage
VCC 2.25V, ISINK = 900µA
0.3
0.3
0.4
>
VCC 2.7V, ISINK = 1.2mA
>
VCC 4.5V, ISINK = 3.2mA
V
V
>
VOH
VCC 2.25V, ISOURCE = 300µA
0.8 VCC
0.8 VCC
>
VCC 2.7V, ISOURCE = 500µA
>
VCC 4.5V, ISOURCE = 800µA
VCC − 1.5V
LLO OUTPUT
VLLOT
LLO Output
1.01•VRST
1.02•VRST
1.03•VRST
Threshold
(VLLO − VRST, VCC
falling)
VLLOTH
Low-Line
0.0032•VRST
mV
µs
Comparator
Hysteresis
tCD
Low-Line
VCC falling at 1mV/µs
20
Comparator Delay
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device
is intended to be functional, but do not guarantee specific performance limits. For guaranteed specifications and test conditions, see the Electrical Characteristics.
The guaranteed specifications apply only for the test conditions listed. Some performance characteristics may degrade when the device is not operated under the
listed conditions.
Note 2: The Human Body model is a 100 pF capacitor discharged through a 1.5 kΩ resistor into each pin. The machine model is a 200pF capacitor discharged
directly into each pin.
Note 3: The maximum allowable power dissipation is a function of the maximum junction temperature, T (MAX), the junction-to-ambient thermal resistance, θ
,
J-A
J
and the ambient temperature, T . The maximum allowable power dissipation at any ambient temperture is calculated using:
A
Where the value of θ
for the micro SMD package is 220˚C/W.
J-A
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6
Typical Performance Characteristics
Supply Current vs Supply Voltage
3.3V Supply Current vs Temperature
20011611
20011615
Normalized Reset Threshold Voltage vs Temperature
Reset Timeout Period vs VCC
20011612
20011632
Max. Transient Duration vs Reset Comparator Overdrive
(VCC = 3.3V)
Reset Timeout Period vs Temperature
20011610
20011616
7
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Typical Performance Characteristics (Continued)
Watchdog Timeout Period vs Temperature
(tWD programmed as 6.2ms)
Low-Line Comparator Propagation Delay vs Temperature
20011614
20011613
if no transition occurs and the timeout period is reached, the
LM3706/LM3707 assumes that the microprocessor has
locked up and the reset output is activated.
Circuit Information
Reset Output
WDI is a high impedance input.
The Reset input of a µP initializes the device into a known
state. The LM3706/LM3707 microprocessor supervisory cir-
cuits assert a forced reset output to prevent code execution
errors during power-up, power-down, and brownout condi-
tions.
Special Precautions for the micro SMD Package
As with most integrated circuits, the LM3706 and LM3707
are sensitive to exposure from visible and infrared (IR) light
radiation. Unlike a plastic encapsulated IC, the micro SMD
package has very limited shielding from light, and some
sensitivity to light reflected from the surface of the PC board
or long wavelength IR entering the die from the side may be
experienced. This light could have an unpredictable affect on
the electrical performance of the IC. Care should be taken to
shield the device from direct exposure to bright visible or IR
light during operation.
>
RESET is guaranteed valid for VCC
1V. Once VCC ex-
ceeds the reset threshold, an internal timer maintains the
output for the reset timeout period. After this interval, reset
goes high. The LM3706 offers an active-low RESET; The
LM3707 offers an active-high RESET.
Any time VCC drops below the reset threshold (such as
during a brownout), the reset activates. When VCC again
rises above the reset threshold, the internal timer starts.
Reset holds until VCC exceeds the reset threshold for longer
than the reset timeout period. After this time, reset releases.
Micro SMD Mounting
The micro SMD package requires specific mounting tech-
niques which are detailed in National Semiconductor Appli-
cation Note AN-1112. Referring to the section Surface
Mount Technology (SMT) Assembly Considerations, it
should be noted that the pad style which must be used with
the 9-pin package is the NSMD (non-solder mask defined)
type.
Reset Threshold
The LM3706/LM3707 family is available with a reset voltage
of 3.08V. Other reset thresholds in the 2.20V to 5.0V range,
in steps of 10 mV, are available; contact National Semicon-
ductor for details.
For best results during assembly, alignment ordinals on the
PC board may be used to facilitate placement of the micro
SMD device.
Low-Line Output (LLO)
The low-line output comparator is typically used to provide a
non-maskable interrupt to a µP when VCC begins falling. LLO
monitors VCC and goes low when VCC falls below VLLOT
(typically 1.02 • VRST) with hysteresis of 0.0032 • VRST
.
Watchdog Timer Input (WDI)
The watchdog timer input monitors one of the microproces-
sor’s output lines for activity. Each time a transition occurs on
this monitored line, the watchdog counter is reset. However,
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8
Timing Diagrams
20011628
FIGURE 1. LM3706 Reset Time with WDI
20011629
FIGURE 2. LLO Output
9
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Typical Application Circuits
20011640
FIGURE 3. LM3706 Long Delay Timer/Oscillator
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10
Physical Dimensions inches (millimeters)
unless otherwise noted
9 bump micro SMD Package
NS Package Number BPA09FFB
The dimensions of X1, X2 and X3 are given below
X1 = 1.412mm
X2 = 1.412mm
X3 = 0.850mm
NOTES: UNLESS OTHERWISE SPECIFIED
1. EPOXY COATING
2. 63Sn/37Pb EUTECTIC BUMP
3. RECOMMEND NON-SOLDER MASK DEFINED LANDING PAD.
4. PIN 1 IS ESTABLISHED BY LOWER LEFT CORNER WITH RESPECT TO TEXT ORIENTATION. REMAINING PINS ARE NUMBERED COUNTER
CLOCKWISE.
5. XXX IN DRAWING NUMBER REPRESENTS PACKAGE SIZE VARIATION WHERE X1 IS PACKAGE WIDTH, X2 IS PACKAGE LENGTH AND X3 IS
PACKAGE HEIGHT.
6.NO JEDEC REGISTRATION AS OF AUG.1999.
11
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Notes
LIFE SUPPORT POLICY
NATIONAL’S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT
DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT AND GENERAL
COUNSEL OF NATIONAL SEMICONDUCTOR CORPORATION. As used herein:
1. Life support devices or systems are devices or
systems which, (a) are intended for surgical implant
into the body, or (b) support or sustain life, and
whose failure to perform when properly used in
accordance with instructions for use provided in the
labeling, can be reasonably expected to result in a
significant injury to the user.
2. A critical component is any component of a life
support device or system whose failure to perform
can be reasonably expected to cause the failure of
the life support device or system, or to affect its
safety or effectiveness.
National Semiconductor
Corporation
Americas
National Semiconductor
Europe
National Semiconductor
Asia Pacific Customer
Response Group
Tel: 65-2544466
Fax: 65-2504466
National Semiconductor
Japan Ltd.
Tel: 81-3-5639-7560
Fax: 81-3-5639-7507
Fax: +49 (0) 180-530 85 86
Email: support@nsc.com
Email: europe.support@nsc.com
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English Tel: +44 (0) 870 24 0 2171
Français Tel: +33 (0) 1 41 91 8790
Email: ap.support@nsc.com
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National does not assume any responsibility for use of any circuitry described, no circuit patent licenses are implied and National reserves the right at any time without notice to change said circuitry and specifications.
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