psd5xx
Abstract: PSD503 PSD503B1 68HC11 80C196 app abstract
Text: Programmable Peripheral Application Note 028 PSD5XX Counter/Timers Operation By Ravi Kumar Abstract This application note explains the operation and programming of Counter/Timers on WSI's PSD5XX Family of FieldProgrammable Microcontroller Peripherals. Initializations required to implement each of
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256-TMR0
Abstract: HT48CA3 ha0076e
Text: HT48RAx/HT48CAx Software Application Note HT48RAx/HT48CAx Software Application Note D/N: HA0076E Introduction • CALL and JUMP will load the BP to program counter. · Interrupt will store the contents of program counter into stack. · RETI/RET will load the contents of stack into program counter.
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HT48RAx/HT48CAx
HA0076E
0000h
fOSC/1024
393kHz
300pF
400kHz
256-TMR0
HT48CA3
ha0076e
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1D16
Abstract: 2B16 2D16 2F16 flow sensor water
Text: APPLICATION NOTE 7544 Group Timer X Operation Event Counter Mode 1.0 Abstract The following article introduces and shows an application example of event counter mode of timer X. 2.0 Introduction The explanation of this issue is applied to the following condition:
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REJ05B0007-0100Z
1D16
2B16
2D16
2F16
flow sensor water
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1D16
Abstract: 1E16 2B16 3B16 F916
Text: APPLICATION NOTE 7544 Group Timer A Operation Event Counter Mode 1. Abstract The following article introduces and shows an application example of event counter mode of timer A. 2. Introduction The explanation of this issue is applied to the following condition:
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REJ05B0003-0200Z/Rev2
P00/CNTR
1D16
1E16
2B16
3B16
F916
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LDM-1000
Abstract: 1D16 2B16 2D16 3B16 PROCESS CONTROL TIMER circuit
Text: APPLICATION NOTE 7544 Group Timer X Operation Event Counter Mode 1. Abstract The following article introduces and shows an application example of event counter mode of timer X. 2. Introduction The explanation of this issue is applied to the following condition:
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REJ05B0007-0200Z/Rev2
LDM-1000
1D16
2B16
2D16
3B16
PROCESS CONTROL TIMER circuit
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PROCESS CONTROL TIMER APPLICATION
Abstract: PROCESS CONTROL TIMER process control timer abstract 2B16 2D16 3C16
Text: APPLICATION NOTE 7542Group Timer X Operation Event Counter Mode 1. Abstract The following article introduces and shows an application example of event counter mode of timer X. 2. Introduction The explanation of this issue is applied to the following condition:
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7542Group
REJ05B0018-0200Z
PROCESS CONTROL TIMER APPLICATION
PROCESS CONTROL TIMER
process control timer abstract
2B16
2D16
3C16
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PROCESS CONTROL TIMER using timer
Abstract: 2B16 2D16 3C16 PROCESS CONTROL TIMER circuit
Text: APPLICATION NOTE 7542Group Timer X Operation Event Counter Mode 1.0 Abstract The following article introduces and shows an application example of event counter mode of timer X. 2.0 Introduction The explanation of this issue is applied to the following condition:
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7542Group
REJ05B0018-0100Z
PROCESS CONTROL TIMER using timer
2B16
2D16
3C16
PROCESS CONTROL TIMER circuit
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process control timer introduction
Abstract: PROCESS CONTROL TIMER PROCESS CONTROL TIMER circuit 2B16 2D16 3C16 PROCESS CONTROL TIMER using timer process control timer abstract PROCESS CONTROL TIMER application
Text: APPLICATION NOTE 7542Group Timer X Operation Event Counter Mode 1. Abstract The following article introduces and shows an application example of event counter mode of timer X. 2. Introduction The explanation of this issue is applied to the following condition:
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7542Group
REJ05B0018-0200Z
process control timer introduction
PROCESS CONTROL TIMER
PROCESS CONTROL TIMER circuit
2B16
2D16
3C16
PROCESS CONTROL TIMER using timer
process control timer abstract
PROCESS CONTROL TIMER application
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1D16
Abstract: 1E16 2B16 3B16
Text: APPLICATION NOTE 7544 Group Timer A Operation Event Counter Mode 1.0 Abstract The following article introduces and shows an application example of event counter mode of timer A. 2.0 Introduction The explanation of this issue is applied to the following condition:
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REJ05B0003-0100Z
1D16
1E16
2B16
3B16
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pragma section
Abstract: No abstract text available
Text: APPLICATION NOTE H8/300H Tiny Series Using RTC Free-Running Function to Increment Counter Introduction The free-running counter function of the real-time clock RTC is used to increment an 8-bit counter. The 8-bit counter is incremented by the RTC overflow. When the 8-bit counter reaches 0xFF, it is initialized to 0x00 and starts counting
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H8/300H
H8/3687
REJ06B0102-0100Z/Rev
pragma section
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f06f
Abstract: free sample of block diagram 8bit counter
Text: APPLICATION NOTE H8/300H SLP Series Counting Up Using RTC Free Running Counter Function Introduction The free running counter function of the realtime clock RTC is used to increment an 8-bit counter set in RAM. The 8-bit counter is incremented by RTC overflow, and when overflow occurs when the 8-bit counter reaches H'FF, the
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H8/300H
H8/38076R
REJ06B0419-0100/Rev
f06f
free sample of block diagram
8bit counter
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HT48R10A-1
Abstract: Programmable Timer Counter programmable timer tm1 HT*48R10A-1
Text: Using the Timer/Counter in the HT48 Series of MCUs Using the Timer/Counter in the HT48 Series of MCUs HA0020E Introduction This present application uses the HT48R10A-1 as an example, and shows how to use the timer/counter within the HT48 series of MCUs. Examples are given on how to use the
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HA0020E
HT48R10A-1
100Hz
150Hz
Programmable Timer Counter
programmable timer tm1
HT*48R10A-1
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8 bit counter
Abstract: No abstract text available
Text: APPLICATION NOTE H8/300L SLP Series Using Interval Timing to Increment an 8-Bit "Counter" in RAM Introduction Using an interval function of Timer A, the 8-bit counter set in RAM is counted up. The counter starts from the initial value of H'00. After count value reaches H'FF, the counter is initialized to H'00 and resumes counting up.
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H8/300L
H8/38024
REJ06B0235-0100Z/Rev
8 bit counter
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synchronous counter using 4 flip flip
Abstract: 74LVX163 74LVX163M 74LVX163MTC 74LVX163MTCX 74LVX163MX 74LVX163SJ 74LVX163SJX M16A M16D
Text: 74LVX163 Low Voltage Synchronous Binary Counter with Synchronous Clear General Description The LVX163 is a synchronous modulo-16 binary counter This device is synchronously presettable for application in programmable dividers and has two types of Count Enable
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74LVX163
LVX163
modulo-16
synchronous counter using 4 flip flip
74LVX163
74LVX163M
74LVX163MTC
74LVX163MTCX
74LVX163MX
74LVX163SJ
74LVX163SJX
M16A
M16D
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000D
Abstract: 38D5 PRE1234 T12M E1234
Text: APPLICATION NOTE 38D5 Group Timer X Operation Event Counter Mode: Frequency Measurement 1. Abstract The following article introduces and shows an example of Timer X Operation (Event Counter Mode: Frequency Measurement) on the 38D5 Group device. 2. Introduction
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REJ05B0915-0100/Rev
000D
38D5
PRE1234
T12M
E1234
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Untitled
Abstract: No abstract text available
Text: APPLICATION NOTE 3823 Group Timer X Operation Event Counter Mode: Frequency Measurement 1. Abstract The following article introduces and shows an example of Timer X Operation (Event Counter Mode: Frequency Measurement) on the 3823 group device. 2. Introduction
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REJ05B0893-0100/Rev
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E1234
Abstract: AL P3d PRE1234 T12M
Text: APPLICATION NOTE 38D2 Group Timer X Operation Event Counter Mode: Frequency Measurement 1. Abstract The following article introduces and shows an example of Timer X Operation (Event Counter Mode: Frequency Measurement) on the 38D2 Group device. 2. Introduction
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REJ05B0980-0100/Rev
E1234
AL P3d
PRE1234
T12M
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Counter Extension
Abstract: Atmel 652 stepper motors control with 8 bit avr pwm Interleaved boost converter DTLs c code for bldc motor control using avr free DIAGRAM AVR GENERATOR AVR1330 stepper motors control with avr awex dc motor
Text: APPLICATION NOTE Atmel AT01616: Using the WeX Timer/Counter Extension Atmel AVR XMEGA E Features • Output matrix for timer/counter compare channels distribution • Configurable distribution of compare channel outputs across port pins • Redistribution of dead-time insertion resource between TC4 and TC5
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AT01616:
Counter Extension
Atmel 652
stepper motors control with 8 bit avr pwm
Interleaved boost converter
DTLs
c code for bldc motor control using avr
free DIAGRAM AVR GENERATOR
AVR1330
stepper motors control with avr
awex dc motor
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Counter Extension
Abstract: ATMEL 626 AtMEL 624 XMega 256 ATMEL 622 AVR1330 32e5
Text: APPLICATION NOTE Atmel AT01617: Using the FAULT Timer/Counter Extension Atmel AVR XMEGA E Features • • • • • Extension between the outputs of one timer/counter and WeX waveform inputs Synchronous or asynchronous waveforms retriggering Event controlled
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AT01617:
Counter Extension
ATMEL 626
AtMEL 624
XMega 256
ATMEL 622
AVR1330
32e5
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001C
Abstract: No abstract text available
Text: APPLICATION NOTE H8/300H Tiny Series Using External Interrupt to Start Incrementing Counter Introduction An IRQ0 interrupt is generated when the switch connected to the IRQ0 pin is turned on, and incrementing of the 16-bit counter set in the 16-bit general register, counter_sub, starts.
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H8/300H
16-bit
16-bit
H8/3664
REJ06B0017-0200/Rev
001C
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T12M
Abstract: No abstract text available
Text: APPLICATION NOTE 38C2 Group Timer X Operation Event Counter Mode: Frequency Measurement 1. Abstract The following article introduces and shows an example of how to use the Timer X Operation (Event Counter Mode: Frequency Measurement) on the 38C2 group device.
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REJ05B0491-0100Z/Rev
T12M
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74LVX163
Abstract: 74LVX163M 74LVX163MTC 74LVX163SJ M16A M16D MTC16
Text: Revised March 1999 74LVX163 Low Voltage Synchronous Binary Counter with Synchronous Clear General Description The LVX163 is a synchronous modulo-16 binary counter. This device is synchronously presettable for application in programmable dividers and has two types of Count Enable
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74LVX163
LVX163
modulo-16
74LVX163
74LVX163M
74LVX163MTC
74LVX163SJ
M16A
M16D
MTC16
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LVX163
Abstract: 74LVX163 74LVX163M 74LVX163MTC 74LVX163SJ M16A M16D MTC16
Text: Revised October 2003 74LVX163 Low Voltage Synchronous Binary Counter with Synchronous Clear General Description The LVX163 is a synchronous modulo-16 binary counter. This device is synchronously presettable for application in programmable dividers and has two types of Count Enable
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74LVX163
LVX163
modulo-16
74LVX163
74LVX163M
74LVX163MTC
74LVX163SJ
M16A
M16D
MTC16
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TL-B1
Abstract: TCB17 tmb12 TMB-12
Text: APPLICATION NOTE H8/38602R Group Counting Seconds by Using Timer B1 Introduction A second counter is implemented by using Timer B1. The second counter is placed in on-chip RAM in BCD representation, and the input clock source of Timer B1 is a subclock of 38.4 kHz.
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H8/38602R
H8/38602R
REJ06B0512-0100/Rev
TL-B1
TCB17
tmb12
TMB-12
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