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ILC5061
Power Supply reset Monitor with 1% Precision
Features
* * * * * * All-CMOS design in SOT-23 or SC70 package 1% precision in Reset Detection Only 1A of Iq 2mA of sink current capability Built-in hysteresis of 5% of detection voltage Voltage options of 2.6, 2.9, 3.1, 4.4, and 4.6V fit most supervisory applications * Open-Drain Reset Output
Description
All-CMOS Monitor circuits in either a 3-lead SOT-23 or SC70 package offer the best performance in power consumption and accuracy. The ILC5061 comes in a series of 1% accurate trip voltages to fit most microprocessor applications. Even though its output can sink 2mA, the device draws only 1A in normal operation. Additionally, a built-in hysteresis of 5% of detect voltage simplifies system design.
Applications
* * * * Microprocessor reset circuits Memory battery back-up circuitry Power-on reset circuits Portable and battery powered electronics
Block Diagram
VIN
Pin Package Configurations
Top View
VOUT
VOUT
1
VOUT
1
SC-70
VREF
VSS 2
3
VIN VSS 2
SOT-23
3
VIN
VSS
Rev. 2.2 1/31/02
ILC5061
PRODUCT SPECIFICATION
Absolute Maximum Ratings
Parameter Input Voltages Output Current Output Voltages Continuous Total Power Dissipation Operation Ambient temperature Storage Temperature SOT 23 Symbol VIN IOUT VOUT Pd Topr Tstg Ratings 12 50 VSS-0.3~+VIN+03 150 -30~+80 -40~+125 Units V mA V mW
oC oC
Electrical Characteristics TA = 25C
Parameter Detect Fail Voltage Hysteresis Range Symbol VDF VHYS VIN = 1.5V VIN = 2.0V VIN = 3.0V VIN = 4.0V VIN = 5.0V VDF = 2.1~ 6.0V N-ch VDS = 0.5V VIN = 1.0V VIN = 2.0V VIN = 3.0V VIN = 4.0V VIN = 5.0V -200 1.5 2.2 7.7 10.1 11.5 13.0 +100 +200 Conditions Min VDF X 0.99 VDF X 0.02 Type VDF 0.9 1.0 1.3 1.6 2.0 Max VDF X 1.01 2.6 3.0 3.4 3.8 4.2 10.0 Units V V
VDF X 0.05 VDF X 0.08
Supply Current
ISS
A
Operating Voltage
VIN
V
Output Current
IOUT
mA
Temperature Characteristics Delay Time Release Voltage Output Inversion)
DVDF/(DTopr * VDF) -30oCPpm/ oC ms
0.1
Note: 1. An additional resistor between the VIN pin and supply voltage may cause deterioration of the characteristics due to increasing VDR.
2
Rev. 2.2 1/31/02
PRODUCT SPECIFICATION
ILC5061
Functional Description
The following designators 1~6 refer to the timing diagram below. 1. While the input voltage (VIN) is higher than the detect voltage (VDF), the VOUT output pin is at high impedance state. 2. When the input VIN voltage falls lower than VDF, VOUT drops near to ground voltage 3. If the input voltage further decreases below the minimum operating voltage (VMIN), the VOUT output becomes unstable. In this condition, if the VOUT pin is pulled up, VOUT indicates the VIN voltage. 4. During an increase of the input voltage from the VSS voltage, VOUT is not stable in the voltage below the VMIN. Exceeding that level, the output stays at the ground level (VSS) between the minimum operating voltage (VMIN) and the detect release voltage (VDR). 5. If the input voltage increases more than VDR, then the VOUT output pin is at high impedance state. 6. The difference between VDR and VDF is the hysteresis in the system.
INPUT VOLTAGE (VIN) DETECT RELEASE VOLTAGE (VDR) 6 DETECT FAIL VOLTAGE (VDF)
MINIMUM OPERATING VOLTAGE (VMIN) GROUND VOLTAGE (VSS) OUTPUT VOLTAGE (VOUT)
GROUND VOLTAGE (VSS) 1 2 3 4 5
Rev. 2.2 1/31/02
3
ILC5061
PRODUCT SPECIFICATION
Typical Performance Characteristics (General conditions for all curves)
Output Voltage vs Output Current
80 OUTPUT CURRENT IOUT (mA) 70 60 50 3.0V 40 30 20 10 0 0 1 2 3 4 OUTPUT VOLTAGE VOUT (V) 1.5V 0 0 0.2 0.4 0.6 0.8 OUTPUT VOLTAGE VOUT (V) 2.0V 2.5V 3.5V ILC5061 VIN = 4.0V OUTPUT CURRENT IOUT (A) 800
Output Voltage vs Output Current
ILC5061
VIN = 0.8V 600
400
VIN = 0.7V
200
ISS vs Input Voltage*
4.0 ILC5061 20 OUTPUT CURRENT IOUT (mA)
Output Current vs Input Voltage
ILC5061 VDS = 0.5V 25C 15 80C Topr = -30C
3.0 ISS (A)
Topr = 80C
2.0
25C -30C
10
1.0
5
0 0 1 2 3 4 5 6 7 8 9 10 INPUT VOLTAGE VIN (V) * A spike of 1/2 to 1A may appear as VIN crosses VDR or VDF
0 0 1 2 3 4 5 INPUT VOLTAGE VIN (V)
4
Rev. 2.2 1/31/02
PRODUCT SPECIFICATION
ILC5061
SOT-23 Package
0.021 0.015
0.055 0.047
0.098 0.083
0.120 0.105 0.040 0.031 0.079 0.071 0.0059 0.0035 0-8
0.004 0.001
0.010 0.005
SC70 Package
.087 (2.2) .071 (1.8) .053 (1.35) .045 (1.15)
.087 (2.2) .079 (2.0)
.009 (.23) .005 (.13)
.043 (1.1) .032 (.80) .004 (.10) .010 (.25) .004 (.10) .026 (.65) .052 (1.3) .016 (.40) .012 (.30)
.018 (.45) .006 (.15)
Rev. 2.2 1/31/02
5
ILC5061
PRODUCT SPECIFICATION
Ordering Information
PART NUMBER ILC5061AM23 ILC5061AM25 ILC5061AM26 ILC5061AM27 ILC5061AM28 ILC5061AM29 ILC5061AM31 ILC5061AM32 ILC5061AM34 ILC5061AM44 ILC5061AM46 ILC5061M23 ILC5061M25 ILC5061M26 ILC5061M27 ILC5061M28 ILC5061M29 ILC5061M31 ILC5061M32 ILC5061M34 ILC5061M44 ILC5061M46 ILC5061AIC23 ILC5061AIC25 ILC5061AIC26 ILC5061AIC27 ILC5061AIC28 ILC5061AIC29 ILC5061AIC31 ILC5061AIC32 ILC5061AIC34 ILC5061AIC44 ILC5061AIC46 ILC5061IC23 ILC5061IC25 ILC5061IC26 ILC5061IC27 ILC5061IC28 ILC5061IC29 ILC5061IC31 ILC5061IC32 ILC5061IC34 ILC5061IC44 ILC5061IC46 TOP MARKING M3AY M5AY M6AY M7AY M8AY M9AY N1AY N2AY N4AY P4AY P6AY M3Y M5Y M6Y M7Y M8Y M9Y N1Y N2Y N4Y P4Y P6Y M3AY M5AY M6AY M7AY M8AY M9AY N1AY N2AY N4AY P4AY P6AY M3Y M5Y M6Y M7Y M8Y M9Y N1Y N2Y N4Y P4Y P6Y RESET THRESHOLD (V) 2.3 1% 2.5 1% 2.6 1% 2.7 1% 2.8 1% 2.9 1% 3.1 1% 3.2 1% 3.4 1% 4.4 1% 4.6 1% 2.3 2% 2.5 2% 2.6 2% 2.7 2% 2.8 2% 2.9 2% 3.1 2% 3.2 2% 3.4 2% 4.4 2% 4.6 2% 2.3 1% 2.5 1% 2.6 1% 2.7 1% 2.8 1% 2.9 1% 3.1 1% 3.2 1% 3.4 1% 4.4 1% 4.6 1% 2.3 2% 2.5 2% 2.6 2% 2.7 2% 2.8 2% 2.9 2% 3.1 2% 3.2 2% 3.4 2% 4.4 2% 4.6 2% OUTPUT TYPE Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active Open-Drain, active PACKAGE LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW LOW 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SOT23 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 3-Pin, SC70 PACKING METHOD 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R 3000 units in T&R
Note 1: Last digit in the "Top Marking" information (represented by "Y" in the above table) represents internal assembly lot number Note 2: Orientation of Tape & Reeled devices is Right. DISCLAIMER FAIRCHILD SEMICONDUCTOR RESERVES THE RIGHT TO MAKE CHANGES WITHOUT FURTHER NOTICE TO ANY PRODUCTS HEREIN TO IMPROVE RELIABILITY, FUNCTION OR DESIGN. FAIRCHILD DOES NOT ASSUME ANY LIABILITY ARISING OUT OF THE APPLICATION OR USE OF ANY PRODUCT OR CIRCUIT DESCRIBED HEREIN; NEITHER DOES IT CONVEY ANY LICENSE UNDER ITS PATENT RIGHTS, NOR THE RIGHTS OF OTHERS. LIFE SUPPORT POLICY FAIRCHILD'S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD 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 (c) 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 of the user.
www.fairchildsemi.com 1/31/02 0.0m 001 Stock#DSxxxxxxxx 2002 Fairchild Semiconductor Corporation
2. A critical component in 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.


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