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avrdude.pdf
can enter the programming specifications. Currently, the following MCU types are understood: uc3a0512 AT32UC3A0512 c128 AT90CAN128 c32 AT90CAN32 c64 AT90CAN64 pwm2 AT90PWM2 pwm2b AT90PWM2B pwm3 AT90PWM3 pwm316 AT90PWM316 pwm3b AT90PWM3B 1200 AT90S1200 (****) 2313 AT90S2313 2333 AT90S2333 2343 AT90S2343
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pwmdemo.c
******************************************************************* Title: Pulse Width Modulation (PWM) example Author: Peter Fleury <pfleury@gmx.ch> http://jump.to/fleury Date: December 2003 Software: AVR-GCC 3.3 Hardware: AT90S8515 at 4 Mhz, ATmega8 with 1 Mhz Description: This example shows how to
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PDF
ZXBM5210.pdf
is proportional to the input PWM signal duty. For example, for a 12V mpin is maintained at 12V while varying the DD PWM control signal duty to adjust the motor speed linearly. The timing diagram below shows the output O1 and O2 in
in „Overcurrent Protecion (OCP) bei integrierten Voll-/Halbbrücken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HVG-100-SPEC.pdf
75%/480VAC) INPUT (Please refer to “TOTALHARMONIC DISTORTION (THD)” section) EFFICIENCY (Typ.) 89% 90% 91% 91% 90.5% 90.5% 91% 91% AC CURRENT (Typ.) 0.38A/ 347VAC 0.28A/ 480VAC INRUSH CURRENT (Typ.) COLD START 25A(twid=90μ s measured at 50pea) at 480VAC; Per NEMA410 MAX. No. of PSUs on 16A CIRCUIT BREAKER
in „0-10V auf z.B. 4-7V skalieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MELEXIS_Sensor-IC-MLX90316KDC_EN.pdf
mode(7) 8.5 11 mA Supply Current) Idd (7) Fast mode 13.5 16 mA POR Level VDD POR Supply Under Voltage 2 2.7 3 V Analog Output mode -8 8 mA Output Current Iout PWM Output mode -20 20 mA Vout = 0 V 12 15 mA Output Short Circuit Current Ishort Vout = 5 V 12 15 mA Vout = 14 V AT 25°C) 24 45 mA Pull-down to
in „MLX90316 mit Atmega8 über SPI“ · Mikrocontroller und Digitale Elektronik ·
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AVR_Product_Update_November_2002.pdf
- I 4.0-6.0 0-12 20PDIP,SOIC,SSOP now AT90S2313 2 128 128 15 - 1 - - - 1 1 - - I 2.7-6.0 0-4 20PDIP,SOIC now AT90S2313 2 128 128 15 - 1 - - - 1 1 - - I 4.0-6.0 0-10 20PDIP,SOIC now AT90LS2323 2 128 128 3 - - - - - 1 - - - I 2.7-6.0 0-4 20PDIP,SOIC now AT90S2323 2 128 128 3 - - - - - 1 - - - I 4.0-6.0 0-10 8PDIP,SOIC now AT90LS2343 2 128 128 5 - - - - - 1 - - - I 2.7-6.0 0-1 8PDIP,SOIC now AT90LS2343 2 128 128 5 - - - - - 1 - - - I 2.7-6.0 0-4 8PDIP,SOIC
in „Veraltete AVR's ?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZXLD1366.pdf
mode is given by: IOUTavg0.2D PWM /R Sfor D PWM >0.001] This mode is preferable if optimum LED 'whiteness' is required. It will also provide the widest possible dimming range (approx. 1000:1) and higher efficiency at the expense
in „Spannungsteiler zwischen Arduino und KSQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2097320.pdf
mode is given by: IOUTavg0.2D PWM /R Sfor D PWM >0.001] This mode is preferable if optimum LED 'whiteness' is required. It will also provide the widest possible dimming range (approx. 1000:1) and higher efficiency at the expense
in „ZXLD1366 Beschaltung ADJ Pin“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP1640.pdf
FIGURE 2-4: 2.0V V PFM / PWM OUT Q OUT Temperature in PFM Mode. Mode Efficiency vs. I . OUT V = 3.3V 300 100 OUT VIN 2.5V VOUT= 5.0V 90 275 V = 1.2V ) IN 80 µ % 70 e250 ( 60 VIN 0.8V V = 1.2V d c IN o225 e 50
in „ESP32-C6 an 18650 Akku betreiben“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Startbildschirm der Software AVR Studio 4
Value Welcome to AVR Studio 4 Select debug platform and device Debug platform: Device: AVR Dragon AT86RF401 AVR ONE! AT89S51 AVR Simulator AT89S52 AVR Simulator 2 AT90CAN128 ICE200 AT90CAN32 ICE40 AT90CAN64 ICE50 JTAG ICE AT90PWM1 JTAGICE mkII AT90PWM216 AT90PWM28 AT90PWM3 Port: Auto Open platform options
in „AT89S52 mit AVRisp MKII auslesen / flashen“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
avrtut.pdf
} } else { /* Taster ist nicht gedrückt */ bPortD = 1; // Aktuellen Zustand speichern } } } Übung 2, Makefile # Makefile für die Übung TastenEntPrellen # (c) Christian Schifferle Oktober 2002 #Hier muss der verwendete AVR-Controller eingetragen werden #(at90s8515, at90s8535, attiny22, atmega603 etc
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HLG-120H-spec.pdf
10V PWM signal (frequency range 100Hz ~ 3KHz): 100% 90% +V + + % 80% n 70% - r -V - c 60% u DIM+ u 50% O Additive PWM signal 40% 30% DIM- 20% “DO NOT connect "DIM- to -V" 10% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% Duty cycle of additive 10V PWM signal dimming input ◎ Applying additive resistance: 100% + +V + 90% ) 80% ( -V - - n 70% r DIM+ t 60% p u 50% Additive Resistance O 40% DIM- 30% 20% “DO NOT connect
in „Netzteil für Getriebemotor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
7937v130.pdf
WLEDs, L=10mH, D=1N5819, Ci=Co=1mF, ILED=20mA Ci=Co=1mF, ILED=20mA 100% 80% 95 a VIN=3.6V, L=10uH, 90 M Ci=Co=1uF, 3LEDs D )85 I 60% 100Hz y / 200Hz n80 6S1P E 500Hz c75 3S2P e f a 40% 1KHz E70 e 65 A 60 20% 2.5 3.0 3.5 4.0 4.5 5.0 VIN(V) 0% Efficiency vs. VIN 0% 20% 40% 60% 80% 100% ShutdownPIN PWM
in „Was ist das für ein SMD-Bauteil?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HT7937_datasheet.pdf
WLEDs, L=10mH, D=1N5819, Ci=Co=1mF, ILED=20mA Ci=Co=1mF, ILED=20mA 100% 80% 95 a VIN=3.6V, L=10uH, 90 M Ci=Co=1uF, 3LEDs D )85 I 60% 100Hz y / 200Hz n80 6S1P E 500Hz c75 3S2P e f a 40% 1KHz E70 e 65 A 60 20% 2.5 3.0 3.5 4.0 4.5 5.0 VIN(V) 0% Efficiency vs. VIN 0% 20% 40% 60% 80% 100% ShutdownPIN PWM
in „LCD Monitor defekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8833.pdf
Current-Control Motor Driver • Wide Power Supply Voltage Range: – Capable of Driving Two DC Motors or One 2.7 V – 10.8 V Stepper Motor • PWM Winding Current Regulation/Limiting – Low MOSFET On-Resistance: • Thermally Enhanced Surface Mount Packages HS + LS 360 mΩ (PWP and RTY) • Output Current (at V M 5 V,
in „TI DRV8833 Muss man den PWM Pin wechseln?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
takt.c
stdint.h> #include <inttypes.h> #include <avr/interrupt.h> #include <avr/signal.h> #if defined(__AVR_AT90S2313__) # define OC1 PB3 # define OCR OCR1 # define DDROC DDRB #elif defined(__AVR_AT90S2333__) || defined(__AVR_AT90S4433__) # define OC1 PB1 # define DDROC DDRB # define OCR OCR1 #elif defined(__AVR_AT90S4414__) || defined(__AVR_AT90S8515__) || \ defined(__AVR_AT90S4434__) || defined(__AVR_AT90S8535__) || \ defined(__AVR_ATmega163__) # define OC1 PD5 # define DDROC DDRD # define OCR OCR1A #elif defined
in „16 Bit Zähler 8535“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS_40210.pdf
0-7923-7270-0 generally will result in a higher loop bandwidth at2] J. Sun, D.M. Mitchell, M. Greuel, P.T. Krein, R.M. Bass, “Average Models for PWM the expense of lower efficiency. The DCM converter will likely be smaller due to the smaller Converters in Discontinuous
in „Problem mit dem Hochsetzsteller (TPS 40210)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0046274001518549145.pdf
CURRENTLEVEL 500mA 600mA 700mA(default) 900mA 1050mA 1400mA RATED POWER 60.3W OUTPUT DC VOLTAGE RANGE 2 ~ 90V 2 ~ 90V 2 ~ 86V 2 ~ 67V 2 ~ 57V 2 ~ 42V OPENCIRCUITVOLTAGE(max.) 102V 76V CURRENT RIPPLE Note.5 5.0% max. @rated current CURRENT TOLERANCE ±5% AUXILIARY DC OUTPUT Nominal 12V(deviation 11.4~12.6V
in „PWM-Signal 24V 500Hz wandeln in 10V PWM“ · Haus & Smart Home ·
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PDF
AVR_Product_Update_M__03.pdf
- 1 - - - I 4.0-6.0 0-1220 PDIP,SOIC,SSOP now AT90S2313 2 128 128 15 - 1 - - - 1 1 - - I 2.7-6.0 0-4 20 PDIP,SOIC now AT90S2313 2 128 128 15 - 1 - - - 1 1 - - I 4.0-6.0 0-10 20 PDIP,SOIC now AT90LS2323 2 128 128 3 - - - - - 1 - - - I 2.7-6.0 0-4 8 PDIP,SOIC now AT90S2323 2 128 128 3 - - - - - 1 - - - I 4.0-6.0 0-10 8PDIP,SOIC now AT90LS2343 2 128 128 5 - - - - - 1 - - - I 2.7-6.0 0-1 8PDIP,SOIC now AT90LS2343 2 128 128 5 - - - - - 1 - - - I 2.7-6.0 0-4 8PDIP,SOIC
in „Atmel Familie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LPF_40_D.pdf
90K 100K OPEN Output current 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 100%~108% 1 ~ 10V dimming function for output current adjustment (Typical) Dimming value 1V 2V 3V 4V 5V 6V 7V 8V 9V 10V OPEN Output current 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 100%~108% 10V PWM signal for output current adjustment (Typical): Frequency range :100Hz ~ 3KHz Duty value 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% OPEN Output current 10% 20% 30% 40% 50% 60% 70%
in „High Power LED dimmen - PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HLG-40H-SPEC.pdf
90% 100% Duty cycle of additive 10V PWM signal dimming input ◎ Applying additive resistance: 100% + +V + 90% ) 80% ( -V - - n 70% r DIM+ t 60% p u 50% Additive Resistance O 40% DIM- 30% 20% “DO NOT connect
in „LED Raumbeleuchtung flimmerfrei dimmen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS_HLG240H.pdf
, 80ms at full lo230VAC /115VAC HOLD UP TIME (Typ.) 15ms at full loa230VAC /115VAC VOLTAGE RANGE Note.5 90 ~ 305VAC 127 ~ 431VDC FREQUENCY RANGE 47 ~ 63Hz POWER FACTOR (Typ.) PF>0.98/115VAC, PF>0.95/230VAC at full load (Please refer to "Power Factor Characteristic" curve) INPUT EFFICIENCY (Typ.) 90% 90% 92% 93% 93% 93.5% 94% 93% 93% AC CURRENT (Typ.) 4A/ 115VAC 2A/ 230VAC 1.2A/ 277VAC INRUSH CURRENT (Typ.) COLD START 75A/230VAC LEAKAGE CURRENT <0.75mA/ 277VAC OVER CURRENT Note.4 95 ~ 108% Protection
in „PWM-Signal 24V 500Hz wandeln in 10V PWM“ · Haus & Smart Home ·
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PDF
AMIS-30543-D.pdf
Table 14 SPI Status registers not able to deliver the requested current to the motor. Under Address SR2). The conditions to reset flag <TSD> is to be these conditions the PWM controller duty cycle will be at a temperature lower than Ttw and to clear the <TSD> flag 100% and after 200 ms the error pin and
in „Puls aus Sinuswelle herausrechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Control_Loop_Cookbook__SLUP113a__TI.pdf
tolerance band), then the E/A gain must Certainly it is more difficult to implement. Slope be set at 0.2V/0.1V = a gain of 2.0. In Strategy #2 matching is much more difficult to optimize when above, this technique would be helpful. there are two slopes to consider. The PWM com- Triangle vs. Sawtooth
in „SG3524 bleibende Regelabweichung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PLLsync.pdf
response to a 120 mA Fig. 13. Jitter histogram of (a) D-PLL divided clock and (b) the load step measured at 90 MHz, 120 MHz and 180 MHz with switching node at the output of the bridge. corresponding inductor values of 24 nH, 15 nH and 8.2 nH, respectively. The output capacitor was set to 25 nF for all cases
in „Reglerentwurf Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MBI5030.pdf
tw(DCLK) 25.0 - - ns GCLK tw(GCLK) 125.0 - - ns Output Rise Time of Output Ports tOR - 90.0 - ns Output Fall Time of Output Ports tOF - 70.0 - ns Error Detection Minimum Duration tEDD*** - 2.0 - μ s *There will be one GCLK latency at the first PWM output data. Refer to the Timing Waveform
in „Atmega8+MBI5030+SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ltc4010.pdf
Charger Efficiency Charger Soft-Start 90 100 DCIN = 5.5V DCIN = 20V OUT = 2A IOUT = 2A 10 ) SWITCHING 85 90 ( 5 G TGATE ) ) T ( 80 ( O 5 C C V BGATE E E 80 0 I I F 75 F 2 A E E FAST CHARGE CURRENT M 1 S 70 A 70 ) PRECHARGE 0 CURRENT 65 60 1
in „NiMH-Ladeschaltung mit LTC4010 lädt nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Meanwell_LDD-L_LED_Treiber.PDF
Unit: mm (inch) 9.9 [0.39] 3.81 [ 0.15 ] Pin No. Output Comment 1 +Vin DC Supply 1 3 4 ON/OFF and PWM 2.54 [0.10] 3 PWM DIM Dimming (Leave open if ] ] not used) 0 . BOTTOM 8 SIDE [ 4 -Vin Don't connect VIEW 7 VIEW 2 to -Vout 1 2 5 -Vout LED - Connection 6 5 6 +Vout LED + Connection 8.9 [0.33] 7.62[0.30
in „High-Power RGB-LEDs sterben wie die Fliegen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2__HV9961_.pdf
C O I Maximum input current mA IN A IN,MAX (limited by UVLO) # 1.5 - - V = 8.0V, T = 125 C O IN A PWM Dimming V PWMD input low voltage * - - 0.8 V V = 8.0 - 450V EN(lo) IN V EN(hi) PWMD input high voltage * 2.2 - - V V IN8.0 - 450V Internal pull-down resistance R EN at PWMD - 50 100 150 kΩ V PWMD =
in „LED-Treiber Dimensionierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MP3202_r0.91.pdf
6V at a total output current of 180mA. A 2.2µF output capacitor is sufficient for most applications but up to 1µF may be used. A 10µH inductor with VSW 5V/div. low DCR (inductor resistance) is recommended
in „TFT LED Backlight PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HV9910.pdf
f Oscillator frequency 20 25 30 kHz R OSC= 1.00MΩ OSC 80 100 120 kHz R OSC= 226kΩ D MAXhf Maximum PWM Duty Cycle - - 100 % F PWMhf 25kHz, at GATE, CS to GND. V LD Linear Dimming pin voltage range 0 - 250 mV @TA = <85°C, V =IN2V TBLANK Current sense blanking interval 150 215 280 ns V CS= 0.55V LDV LD
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PDF
4-Wire_PWM_Controlled_Fans.pdf
revolution • Open-collector or open-drain type output • Motherboard will have a pull up to 12V, maximum 13.2V 2.4 PWM Control Input Signal The following requirements are measured at the PWM (control) pin of the fan cable connector: PWM Frequency: Target frequency 25 kHz, acceptable operational range 21 kHz
in „Wie funktioniert die Ansteuerung von PWM (4-Pin) PC-Lüftern?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Netzteil_36V.pdf
REGULATION Ó2.0% Ó1.5% Ó1.0% Ó0.5% Ó0.5% Ó0.5% Ó0.5% Ó0.5% Ó0.5% SETUP, RISE TIME Note.72500ms, 80ms at full lo230VAC / 115VAC ; B type 2500ms, 200ms at 95% loa230VAC / 115VAC HOLD UP TIME (Typ.) 16ms at full loa230VAC
in „Netzteil funktioniert nicht richtig mit meinem Aufbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX16801A-MAX16802B.pdf
CCRegulator Set Point VCCSP IN 7 10.5 V from CC IN Supply Current After Startup IIN VIN= +24V 1.4 2.5 mA Shutdown Supply Current UVLO/EN = low 90 µA GATE DRIVER R Measured at NDRV sinking, 100mA 2 4 Driver Output Impedance ON(LOW) Ω RON(HIGH) Measured at NDRV sourcing, 20mA 4 12 Driver Peak Sink Current
in „High Brightness LEDs > 50W µC als regelbare KSQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AIC1896.pdf
O300 O V =30V m m 100 OUT u200 Maximum output current u Maximum output current i i 50 a100 defined at 90% of no load a defined at 90% of no load M output voltage M output voltage 0 3 4 5 6 7 8 9 10 11 2 3 4 5 6 7 8 9 10 Supply Voltage (V) Supply Voltage (V) Fig. 13(a) Maximum Output current vs. Supply
in „Stepup von 5V auf 12V mit AIC1896“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Using_the_Siemens_S65_Display.pdf
to add a protection device. That might protect the circuit against hardware/software malfunctions. PWM Programming example ATmega128 (AVR) // backlight PWM generation // use timer 2 in fast PWM mode for this PORTB &= ~_BV(PB7// clear port before enable DDRB |= _BV(PB7// will be used for OC2, must be
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
Using_the_Siemens_S65_Display.pdf
to add a protection device. That might protect the circuit against hardware/software malfunctions. PWM Programming example ATmega128 (AVR) // backlight PWM generation // use timer 2 in fast PWM mode for this PORTB &= ~_BV(PB7// clear port before enable DDRB |= _BV(PB7// will be used for OC2, must be
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
Using_the_Siemens_S65_Display.pdf
to add a protection device. That might protect the circuit against hardware/software malfunctions. PWM Programming example ATmega128 (AVR) // backlight PWM generation // use timer 2 in fast PWM mode for this PORTB &= ~_BV(PB7// clear port before enable DDRB |= _BV(PB7// will be used for OC2, must be
in „Reengineering: Siemens S65 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3465.pdf
The LT3465 switches at 1.2MHz, allowing the use of tiny ■ High Efficiency: 81%(LT3465) 79%(LT3465A) Typical external components. The faster LT3465A switches at 2.4MHz.Constantfrequencyswitchingresultsinlowinput ■ Requires
in „s65 display stromversorgung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Intel_4_Wire_PWM_Spec.pdf
or open-drain type output • Motherboard will have a pull up to 12V, maximum 12.6V 2.1.4 PWM Control Input Signal The following requirements are measured at the PWM (control) pin of the fan cable connector see Figure 7 and Table 1: PWM Frequency: Target frequency 25 kHz, acceptable operational
in „PC-Lüfter mit Netzteil betreiben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4_Wire_PWM_Spec.pdf
or open-drain type output • Motherboard will have a pull up to 12V, maximum 12.6V 2.1.4 PWM Control Input Signal The following requirements are measured at the PWM (control) pin of the fan cable connector see Figure 7 and Table 1: PWM Frequency: Target frequency 25 kHz, acceptable operational
in „ESP, N-Mosfet 12V Fan PWM mit Mos-Modul“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4_Wire_PWM_Spec.pdf
or open-drain type output • Motherboard will have a pull up to 12V, maximum 12.6V 2.1.4 PWM Control Input Signal The following requirements are measured at the PWM (control) pin of the fan cable connector see Figure 7 and Table 1: PWM Frequency: Target frequency 25 kHz, acceptable operational
in „Frage bezüglich Powerbooster Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4_Wire_PWM_Spec.pdf
or open-drain type output • Motherboard will have a pull up to 12V, maximum 12.6V 2.1.4 PWM Control Input Signal The following requirements are measured at the PWM (control) pin of the fan cable connector see Figure 7 and Table 1: PWM Frequency: Target frequency 25 kHz, acceptable operational
in „Grundlegende Frage zu PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4_Wire_PWM_Spec.pdf
or open-drain type output • Motherboard will have a pull up to 12V, maximum 12.6V 2.1.4 PWM Control Input Signal The following requirements are measured at the PWM (control) pin of the fan cable connector see Figure 7 and Table 1: PWM Frequency: Target frequency 25 kHz, acceptable operational
in „PWM- Lüftersteuerung mit esp32 WROOM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
4_Wire_PWM_Spec.pdf
or open-drain type output • Motherboard will have a pull up to 12V, maximum 12.6V 2.1.4 PWM Control Input Signal The following requirements are measured at the PWM (control) pin of the fan cable connector see Figure 7 and Table 1: PWM Frequency: Target frequency 25 kHz, acceptable operational
in „Wie funktioniert die Ansteuerung von PWM (4-Pin) PC-Lüftern?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4_Wire_PWM_Spec.pdf
or open-drain type output • Motherboard will have a pull up to 12V, maximum 12.6V 2.1.4 PWM Control Input Signal The following requirements are measured at the PWM (control) pin of the fan cable connector see Figure 7 and Table 1: PWM Frequency: Target frequency 25 kHz, acceptable operational
in „4Pin luefter Spezifikation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Timer_-_AVR-AN130.pdf
described as a clock divider. Generally, it is implemented as a counter with several output signals at different counting stages. In the case of the AT90S8535, a 10-bit counter is used to divide the input clock in four (six in case of the Timer2) different prescaled clocks. The multiplexer is used to
in „Timererklärung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr450.pdf
500 26.2 5 9542 475 28.8 4 8652 450 32 6 7840 425 34 4 7095 400 37 5 6410 375 39.4 5 5778 The values in the table are calculated from the voltage divider at the NTC and datasheet for the NTC. 7 AT90S2333 Battery
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PDF
CMPS10.pdf
CMPS10 module with a wide range of popular controllers. The CMPS10 module requires a power supply at 3.3 - 5v and draws a nominal 25mAof current. There are three ways of getting the bearing from the module. Aserial interface, an I2C interface or a PWM output. Mode selection For data on each mode please click the mode heading. Note the CMPS10 looks at the mode selection pins at power-up only. I2C mode Serial mode PWM mode To enter the I2C mode of operation leave To enter the serial mode of operation To enter the PWM mode of operation the mode pin
in „Welcher Sensor für digitalen Kompass“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FSD156MRBN.PDF
control is employed, the peak current through c the SenseFET is limited by the inverting input of PWM h comparator (V FB*), as shown in Figure 18. Assuming d that the 90μA current source flows only through the P internal resistor (3R + R =25kΩ), the cathode voltage o of diode D2 is about 2.8V. Since
in „Samsung Clicking Netzteil BN44-00635B Relais RL801S bekommt keine Dauerspannung“ · Analoge Elektronik und Schaltungstechnik ·