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MITSUBISHI M62032FP VOLTAGE DETECTING, SYSTEM RESETTING IC GENERAL DESCRIPTION The M62032FP is an IC for detection of two different input voltages to reset almost all logic circuits including MCU. It contains a delay circuit with which any delay time can be obtained only by adding an external capacitor. The IC is widely applicable to a battery check circuit, a level detection circuit, a waveform shaping circuit, etc. FEATURES * A small number of external components * Built-in 2 input voltage detection circuits * Wide supply voltage range ............... 2 to 10V * Small 8-pin package * Open collector output APPLICATION Reset circuit of MPU, MCU and logics RECOMMENDED OPERATING CONDITION Supply voltage range ......................... 2 to 10V PIN CONFIGURATION (TOP VIEW) VIN1 1 VIN2 2 NC 3 GND 4 8 7 6 5 VRES VCC VO EXTERNAL CAPACITOR Outline 8P2S-A NC: NO CONNECTION M62032FP BLOCK DIAGRAM VCC 7 Vcc Vcc 6 VO VIN1 1 1.25V Vcc 5 EXTERNAL CAPACITOR VIN2 2 1.25V VRES 8 3 NC 4 GND ( 1 / 4) 1998.7.24- B MITSUBISHI M62032FP VOLTAGE DETECTING, SYSTEM RESETTING IC FUNCTIONAL DIAGRAM INPUT 1 INPUT 2 INPUT 2 INPUT 1 INPUT VOLTAGE 1.25V INPUT 2 INPUT 1 INPUT 1 INPUT 2 t OUTPUT H Td L t Td TERMINAL DESCRIPTION Terminal No. Symbol VIN1 VIN2 NC Functional Description Detecting voltage input 1 Detecting voltage input 2 No connection 1 2 3 4 5 6 7 8 GND EXTERNAL CAPACITOR Ground Delay capacitor connection Vo Vcc Output (open collector) Supply voltage It outputs "L" and "H" to the Vo terminal when VRES input is "H" and "L", respectively. VRES ( 2 / 4) 1998.7.24- B MITSUBISHI M62032FP VOLTAGE DETECTING, SYSTEM RESETTING IC ABSOLUTE MAXIMUM RATINGS (Ta=25C, unless otherwise noted) Symbol Vcc ISINK Vo VRES Pd Ktheta Topr Tstg Parameter Supply Voltage Output Sink Current Output Voltage Self Reset Input Voltage Power Dissipation Thermal Derating Operating Temperature Storage Temperature Conditions Ratings 10 8.0 10 10 300 3.0 -20 to +75 -40 to +125 Unit V mA V V mW mW/C Ta 25C C C ELECTRICAL CHARACTERISTICS (Ta=25C, unless otherwise noted) Symbol VS1 VS1 VIN Parameter Detecting Voltage 1 Hysteresis Voltage 1 Input Voltage Range Test Conditions Min Limits Typ Max Unit V mV V IIN Input Current 100 nA IPD Constant Current -1 uA VOL Low Output Voltage 1 IOL = 5mA 0.2 0.4 V tpd1 Delay Time Cd = 0.01uF 10 mS tpdmax Maximum Delay Time Cd = 0.68uF 680 1130 * The delay time can be varied by changing the connecting capacitance (Cd). Tpd = CV/I = Cd x 1(V)/1(uA) = Cd x 1E6 (sec) **When delay time setting goes over 100msec, add a condenser for chattering protection (0.01uF) to the output. VCC 7V VCC > 7V VIN = 1.25V 1.20 9 -0.3 -0.3 1.25 15 1.30 23 VCC 7.0 500 Symbol VS2 VS2 VIN IIN Parameter Detecting Voltage2 Hysteresis Voltage2 Input Voltage Range Input Current Test conditions Min Limits Typ Max Unit V mV V nA VCC 7V VCC > 7V VIN = 1.25V 1.20 9 -0.3 -0.3 1.25 15 100 1.30 23 VCC 7.0 500 Common specification Symbol Parameter Test conditions Min Limits Typ Max Unit V mA %/C %/C %/C Supply Voltage Range VCC ICC Circuit Current in OFF Detecting Voltage Temperature VS/T Coefficient VS/T The Hysteresis Voltage Temperature Coefficient TPLH/T Propagation Delay Time Temperature Coefficient IOH Output Leak Current Output "L" Propagation Delay Time TPHL VOPL VRESH IRESH VRESL Threshold Operating Voltage 2 VCC = 5V 0.7 0.01 0.01 0.10 10 0.67 0.55 10 1.4 1 CL = 100pF RL = 2.2k, VOL 0.4V RL = 100k, VOL 0.4V uA s V V A V 1998.7.24- B Self reset Input high voltage Input high current Input low voltage 2 VRES = 2V -0.3 ( 3 / 4) 0.80 0.70 VCC 80 0.8 MITSUBISHI M62032FP VOLTAGE DETECTING, SYSTEM RESETTING IC AN EXAMPLE OF THE APPLICATION CIRCUIT VCC 7 DETECTION INPUT 1 RL Supply Voltage 1 6 RESET(RESET) DETECTION INPUT 2 M62032FP 5 8 4 EXTERNAL CAPACITOR 0.01F MCU 2 GND * A forced reset signal (high) into pin 8 from outside can reset this IC (low output) regardless of input signals to pins 1 and 2. ! Mitsubishi Electric Corporation puts the maximum effort into making semiconductor products better and more reliable, but there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or property damage. Remember to give due consideration to safety when making your circuit design, in order to prevent fires from spreading, redundancy, malfunction or other mishap. ( 4 / 4) 1998.7.24- B |
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