MICROCHIP TC52_13

TC52
Dual Channel Voltage Detector
Features
General Description
• Two Independent Voltage Detectors in One
Package
• Highly Accurate: ±2%
• Low Power Consumption: 2.0A, Typ.
• Detect Voltage Range: 1.5V to 5.0V
• Operating Voltage: 1.5V to 10.0V
• Output Configuration: N-Channel Open-Drain
• Space-Saving 5-Pin SOT-23A Package
The TC52 consists of two independent low power
voltage detectors in a space-saving 5-pin SOT-23A
package. Typical supply current consumption is only
2A at an input voltage of 2V. The voltage detection
threshold settings are factory-programmed and
guaranteed to ±2% accuracy. Threshold settings over a
range of 1.5V to 5.0V are available. The TC52 is
available with open drain (NMOS) configurations.
Small size, high precision, low supply current, and low
installed cost makes the TC52 the ideal voltage
detector for a wide variety of voltage monitoring
applications.
Typical Applications
• Battery Life Monitors and Recharge Voltage
Monitors
• Memory Battery Backup Circuitry
• Power-On Reset Circuits
• Power Failure Detection
• Delay Circuitry
Functional Block Diagram
VIN1
+
VOUT1
–
Device Selection Table
Part Number
Package
TC52-xxxxxxxxxx
Temp. Range
VIN2
5-Pin SOT-23A -40°C to +85°C
+
Other output voltages are available. Please contact Microchip
Technology Inc. for details.
VOUT2
–
GND
Package Type
VREF
5-Pin SOT-23A
VOUT2
VIN2
5
4
TC52
1
2
3
VOUT1
VIN1
GND
 2001-2012 Microchip Technology Inc.
DS21430C-page 1
TC52
1.0
ELECTRICAL
CHARACTERISTICS
Absolute Maximum Ratings*
Input Voltage ........................................................+12V
Output Current ....................................................50mA
Output Voltage.......................VIN + 0.3V to VSS – 0.3V
Power Dissipation
5-Pin SOT-23A ...........................................100mW
Operating Temperature Range.............-40°C to +85°C
Storage Temperature Range ..............-40°C to +125°C
*Stresses above 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 above those indicated in the
operation sections of the specifications is not implied.
Exposure to Absolute Maximum Rating conditions for
extended periods may affect device reliability.
TC52 ELECTRICAL SPECIFICATIONS
Electrical Characteristics: TA = 25°C, unless otherwise specified. Note 1.
Symbol
Parameter
Min
Typ
Max
Units
Test Conditions
VIN
Operating Voltage
1.5
—
10.0
V
VDF (T) = 1.5 to 5.0V
ISS
Supply Current
—
—
—
—
—
1.35
1.50
1.95
2.40
3.00
3.90
4.50
5.10
5.70
6.30
A
VIN1 = 1.5V
VIN1 = 2.0V
VIN1 = 3.0V
VIN1 = 4.0V
VIN1 = 5.0V
IIN2
Input Current VIN2
—
—
—
—
—
0.45
0.50
0.65
0.80
1.00
1.30
1.50
1.70
1.90
2.10
A
VIN1 = 1.5V
VIN1 = 2.0V
VIN1 = 3.0V
VIN1 = 4.0V
VIN1 = 5.0V
VDET1 -
Channel 1 Detect Voltage
VT1 x 0.98
VT1 ±0.5%
VT1 x 1.02
V
Note 2
VDET2 -
Channel 2 Detect Voltage
VT2 x 0.98
VT2 ±0.5%
VT2 x 1.02
V
Note 2
VHYS1
Hysteresis Range 1
VDET1 - x 0.02 VDET1 - x 0.05 VDET1 - x 0.08
VHYS2
Hysteresis Range 2
VDET2 - x 0.02 VDET2 - x 0.05 VDET2 - x 0.08
IOUT
Output Current
0.3
3.0
5.0
6.0
7.0
2.2
7.7
10.1
11.5
13.0
—
—
—
—
—
VDET -/
(TOPR VDET -)
Temperature Characteristics
—
±100
—
tDLY
Detection Time
—
—
0.2
Note
1:
2:
V
V
mA
VOL = 0.5V, VIN1 = 1.0V
VIN1 = 2.0V
VIN1 = 3.0V
VIN1 = 4.0V
VIN1 = 5.0V
ppm/°C -40°C  TOPR 85°C
msec
Time from VIN = VDET - to
VOUT = VOL
Additional resistance between the VIN1 pin and the supply voltage may alter the electrical characteristics.
VT1, VT2 are the factory-programmed voltage detection thresholds.
DS21430C-page 2
 2001-2012 Microchip Technology Inc.
TC52
2.0
PIN DESCRIPTIONS
The descriptions of the pins are listed in Table 2-1.
TABLE 2-1:
PIN FUNCTION TABLE
Pin No.
(5-Pin SOT-23A)
Symbol
3.0
Description
1
VOUT1
2
VIN
3
GND
Ground terminal.
4
VIN2
Detect voltage 2.
5
VOUT2
Detector #1 output.
Supply voltage input, detect voltage 1.
Detector #2 output.
DETAILED DESCRIPTION
In normal steady-state operation and for either
channel, when VIN > VDET -, the output is high, see
Figure 3-1. (In the case of the TC52N, this is an opendrain condition.) If and when the input falls below
VDET -, the output pulls down (Logic 0) to VSS.
Generally, VOUT can pull down to within 0.5V of VSS at
rated output current and input voltages. (Also see
Section 1.0, Electrical Characteristics).
FIGURE 3-1:
The output, VOUT, stays valid until the input voltage falls
below the minimum operating voltage, VINMIN, of 0.7V.
Below this minimum operating voltage, the output is
undefined. During power-up or anytime VIN has fallen
below VINMIN, VOUT will remain undefined until VIN rises
above VINMIN, at which time the output becomes valid.
VOUT is maintained in its active low state while VINMIN <
VIN < VDET +. (VDET + = VDET - + VHYST). If and when
the input rises above VDET +, the output will assume its
inactive state (open-drain for TC52N).
TIMING DIAGRAM
VINx
VDET+
VHYST
Release Voltage
or RESET Voltage
Detect Voltage VDET–
Minimum Operating
Voltage
Ground Level
VOUTx
Output Voltage
Ground Level
 2001-2012 Microchip Technology Inc.
DS21430C-page 3
TC52
4.0
APPLICATIONS INFORMATION
4.1
The circuit shown in Figure 4-1 provides both a
processor supply monitor/reset function, as well as a
low battery detect function. As shown, the
TC52N3330ECT (N-Channel outputs) uses Detector 2
to monitor the system power supply rail. When the
power supply is 10% below its nominal output voltage
rating, the VOUT2 output is driven and held low. When
the power supply voltage is above 3.0V nominal, VOUT2
is driven to an open circuit and the combination of R1
and C1 provides a reset time out delay. Detector 1
monitors the voltage on the main supply battery. A low
battery condition is indicated when the battery voltage
falls to 3.3V, at which time the main processor is
interrupted to initiate a warning or system shutdown.
Pin 2 (VIN1) acts as both the input to Voltage Detector
#1, as well as the power supply input for the chip. As
such, always assign VIN1 to monitor voltages between
1.5V and 10V. Failure to do this will result in unreliable
detector operation due to an out-of-tolerance supply
voltage. In high noise environments, it may be
necessary to install a small input bypass capacitor
(0.01F to 0.1F) from VIN1 to ground to minimize onchip power supply noise.
FIGURE 4-1:
Battery and Main Supply Monitor
SUPPLY MONITOR AND PROCESSOR SUPERVISOR
+3.3V
TC105
Step Down
DC/DC
Converter
+
–
6V
Battery
System
3.3V
VIN2
VOUT2
+C
1
– 1µF
GND
+3.3V
TC52N3330ECT
R2
47K
VIN1
DS21430C-page 4
R1
47K
VOUT1
RESET
Processor
INT
 2001-2012 Microchip Technology Inc.
TC52
5.0
PACKAGING INFORMATION
5.1
Package Marking Information
3
1
2
represents N-channel indication and integer part
of output voltage
3
Symbol
Output
C
N
CMOS
Nch
represents registration serial number
Symbol
Detect Voltage 1 Detect Voltage 2
0P
4.5
2.7
Note: Symbols for other custom voltages set prior to shipment.
4
5.2
represents assembly lot code
Taping Form
Component Taping Orientation for 5-Pin SOT-23A (EIAJ SC-74A) Devices
User Direction of Feed
Device
Marking
W
PIN 1
P
Standard Reel Component Orientation
TR Suffix Device
(Mark Right Side Up)
Carrier Tape, Number of Components Per Reel and Reel Size
Package
Carrier Width (W)
Pitch (P)
Part Per Full Reel
Reel Size
8 mm
4 mm
3000
7 in
5-Pin SOT-23A
 2001-2012 Microchip Technology Inc.
DS21430C-page 5
TC52
5.3
Package Dimensions
Note:
For the most current package drawings, please see the Microchip Packaging Specification located
at http://www.microchip.com/packaging
SOT-23A-5
.075 (1.90)
REF.
.071 (1.80)
.059 (1.50)
.122 (3.10)
.098 (2.50)
.020 (0.50)
.012 (0.30)
PIN 1
.037 (0.95)
REF.
.122 (3.10)
.106 (2.70)
.057 (1.45)
.035 (0.90)
.006 (0.15)
.000 (0.00)
.010 (0.25)
.004 (0.09)
10° MAX.
.024 (0.60)
.004 (0.10)
Dimensions: inches (mm)
DS21430C-page 6
 2001-2012 Microchip Technology Inc.
TC52
6.0
REVISION HISTORY
Revision C (December 2012)
Added a note to each package outline drawing.
 2001-2012 Microchip Technology Inc.
DS21430C-page 7
TC52
NOTES:
DS21430C-page 8
 2001-2012 Microchip Technology Inc.
TC52
PRODUCT IDENTIFICATION SYSTEM
To order or obtain information, e.g., on pricing or delivery, refer to the factory or the listed sales office.
PART CODE
TC52
N
45
27
E
CT
XX
Output Configuration:
N = Open Drain
Detected Voltage 1*:
Ex: 45 = 4.5V
Detected Voltage 2*:
Ex: 27 = 2.7V
Temperature:
E: -40°C to +85°C
Package Type and Pin Count:
CT: 5-Pin SOT-23A
Taping Direction:
TR: Standard Taping
*Other voltages are available. Please contact Microchip Technology Inc. for details.
Sales and Support
Data Sheets
Products supported by a preliminary Data Sheet may have an errata sheet describing minor operational differences and recommended workarounds. To determine if an errata sheet exists for a particular device, please contact one of the following:
1.
2.
Your local Microchip sales office
The Microchip Worldwide Site (www.microchip.com)
Please specify which device, revision of silicon and Data Sheet (include Literature #) you are using.
New Customer Notification System
Register on our web site (www.microchip.com/cn) to receive the most current information on our products.
 2001-2012 Microchip Technology Inc.
DS21430C-page9
TC52
NOTES:
DS21430C-page10
 2001-2012 Microchip Technology Inc.
Note the following details of the code protection feature on Microchip devices:
•
Microchip products meet the specification contained in their particular Microchip Data Sheet.
•
Microchip believes that its family of products is one of the most secure families of its kind on the market today, when used in the
intended manner and under normal conditions.
•
There are dishonest and possibly illegal methods used to breach the code protection feature. All of these methods, to our
knowledge, require using the Microchip products in a manner outside the operating specifications contained in Microchip’s Data
Sheets. Most likely, the person doing so is engaged in theft of intellectual property.
•
Microchip is willing to work with the customer who is concerned about the integrity of their code.
•
Neither Microchip nor any other semiconductor manufacturer can guarantee the security of their code. Code protection does not
mean that we are guaranteeing the product as “unbreakable.”
Code protection is constantly evolving. We at Microchip are committed to continuously improving the code protection features of our
products. Attempts to break Microchip’s code protection feature may be a violation of the Digital Millennium Copyright Act. If such acts
allow unauthorized access to your software or other copyrighted work, you may have a right to sue for relief under that Act.
Information contained in this publication regarding device
applications and the like is provided only for your convenience
and may be superseded by updates. It is your responsibility to
ensure that your application meets with your specifications.
MICROCHIP MAKES NO REPRESENTATIONS OR
WARRANTIES OF ANY KIND WHETHER EXPRESS OR
IMPLIED, WRITTEN OR ORAL, STATUTORY OR
OTHERWISE, RELATED TO THE INFORMATION,
INCLUDING BUT NOT LIMITED TO ITS CONDITION,
QUALITY, PERFORMANCE, MERCHANTABILITY OR
FITNESS FOR PURPOSE. Microchip disclaims all liability
arising from this information and its use. Use of Microchip
devices in life support and/or safety applications is entirely at
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hold harmless Microchip from any and all damages, claims,
suits, or expenses resulting from such use. No licenses are
conveyed, implicitly or otherwise, under any Microchip
intellectual property rights.
Trademarks
The Microchip name and logo, the Microchip logo, dsPIC,
FlashFlex, KEELOQ, KEELOQ logo, MPLAB, PIC, PICmicro,
PICSTART, PIC32 logo, rfPIC, SST, SST Logo, SuperFlash
and UNI/O are registered trademarks of Microchip Technology
Incorporated in the U.S.A. and other countries.
FilterLab, Hampshire, HI-TECH C, Linear Active Thermistor,
MTP, SEEVAL and The Embedded Control Solutions
Company are registered trademarks of Microchip Technology
Incorporated in the U.S.A.
Silicon Storage Technology is a registered trademark of
Microchip Technology Inc. in other countries.
Analog-for-the-Digital Age, Application Maestro, BodyCom,
chipKIT, chipKIT logo, CodeGuard, dsPICDEM,
dsPICDEM.net, dsPICworks, dsSPEAK, ECAN,
ECONOMONITOR, FanSense, HI-TIDE, In-Circuit Serial
Programming, ICSP, Mindi, MiWi, MPASM, MPF, MPLAB
Certified logo, MPLIB, MPLINK, mTouch, Omniscient Code
Generation, PICC, PICC-18, PICDEM, PICDEM.net, PICkit,
PICtail, REAL ICE, rfLAB, Select Mode, SQI, Serial Quad I/O,
Total Endurance, TSHARC, UniWinDriver, WiperLock, ZENA
and Z-Scale are trademarks of Microchip Technology
Incorporated in the U.S.A. and other countries.
SQTP is a service mark of Microchip Technology Incorporated
in the U.S.A.
GestIC and ULPP are registered trademarks of Microchip
Technology Germany II GmbH & Co. & KG, a subsidiary of
Microchip Technology Inc., in other countries.
All other trademarks mentioned herein are property of their
respective companies.
© 2001-2012, Microchip Technology Incorporated, Printed in
the U.S.A., All Rights Reserved.
Printed on recycled paper.
ISBN: 9781620768020
QUALITY MANAGEMENT SYSTEM
CERTIFIED BY DNV
== ISO/TS 16949 ==
 2001-2012 Microchip Technology Inc.
Microchip received ISO/TS-16949:2009 certification for its worldwide
headquarters, design and wafer fabrication facilities in Chandler and
Tempe, Arizona; Gresham, Oregon and design centers in California
and India. The Company’s quality system processes and procedures
are for its PIC® MCUs and dsPIC® DSCs, KEELOQ® code hopping
devices, Serial EEPROMs, microperipherals, nonvolatile memory and
analog products. In addition, Microchip’s quality system for the design
and manufacture of development systems is ISO 9001:2000 certified.
DS21430C-page 11
Worldwide Sales and Service
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DS21430C-page 12
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11/27/12
 2001-2012 Microchip Technology Inc.