-
PDF
Display_Controller.pdf
Level Set : OFF In Level1, 3, 5, 7, 9, 11, 13, 15, the Gray Level palette register (GA5, GA4, GA3, GA2, GA1, GA0) = (1,1,1,1,1) FRC, PWM mode: 4FRC, 45PWM While RESETB is “L” or reset instruction is executed, no instruction except read status can be accepted. Reset status appears at DB4. After DB4 becomes
in „LCD Controler mit Spannungsregulier-Eingängen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
top247.pdf
measured at 50 °C ambient. 2. Maximum practical addition, all critical parameters (i.e. current limit, frequency, in an open frame design at 50 °C ambient. See PWM gain) have tighter temperature and absolute tolerance
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
top247.pdf
measured at 50 °C ambient. 2. Maximum practical addition, all critical parameters (i.e. current limit, frequency, in an open frame design at 50 °C ambient. See PWM gain) have tighter temperature and absolute tolerance
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
DC_Motor_control.txt
**************************************** ; DC Motor Cotrol : MCS-51 ; WWW.Guidecircuit.com ; MCU : AT89C1051 ;******************************************************* COM1 BIT P3.7 COM2 BIT P1.0 SDA BIT P3.4 SCL BIT P3.3 LED_PWM BIT P3.5 SW_PWM_DOWN BIT P3.1 SW_PWM_UP BIT P3.0 SW_LR BIT P3.4 PWM EQU 09
in „Brauche Hilfe für MCS-51 compiler 2051“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
DC_Motor_control.txt
**************************************** ; DC Motor Cotrol : MCS-51 ; WWW.Guidecircuit.com ; MCU : AT89C1051 ;******************************************************* COM1 BIT P3.7 COM2 BIT P1.0 SDA BIT P3.4 SCL BIT P3.3 LED_PWM BIT P3.5 SW_PWM_DOWN BIT P3.1 SW_PWM_UP BIT P3.0 SW_LR BIT P3.4 PWM EQU 09
in „hilfe at89c2051“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PIC16F18344.pdf
: updated at any time. This double buffering is essential for glitch-free PWM operation. New values take effect EQUATION 18-1: PWM PERIOD when TMR2 = PR2. Note that PWMDC is left-justified. PWM Period = PR2 +
in „EEPROM Verständnisproblem beim PIC 16F18344“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
3703fc.pdf
4 100 90 3.0 COMP = 1.5V 80 ) 2.5 ) 3 COMP = 1.5V ) m m µ 70 T T T 60 E 2.0 E E R V = 0V R 2 R 50 U 1.5 FB U U C C VFB= 0V C 40 V V V 1.0 1 30 20 0.5 10 0 0 0 6 8 10 12 14 16 –50 –25 0 25 50 75 100 125 150 6
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
Copter_Code.txt
bugs in case of yaw reverse at tricopter // Default Set 3 for GAIN_MULTIPLIER // // _KR_v1.3 DualCopter was added. // Fixed bugs at ReadGainPots // // _KR_v1.2 SingleCopter was added. // // _KR_v1.1 Audible arming sound (Mike's source
in „RC Empfänger PWM Signal Mosfet Motorregler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
atmel-8393-mcu_wireless-atmega256rfr2-atmega128rfr2-atmega64rfr2_datasheet.pdf
PWM mode. For inverted PWM the output will have the opposite logic values. At the very start of period 2 in Figure 17-7 OCnx has a transition from high to low even though there is no Compare Match. The
in „AVR-Verlustleistung maximieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LT1930.pdf
2.6 MHz 0.85 1.6 1.6 2.9 MHz MaximumDuty Cycle 84 90 75 90 % Switch Current Limit (Note 3) 1 1.2 2 1 1.2 2.5 A Switch VCESAT SW = 1A 400 600 400 600 mV Switch Leakage Current VSW = 5V 0.01 1 0.01 1 A SHDN
in „Step up UND down DCDC für uC Versorgung - Empfehlung?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SDS011_laser_PM2.5_sensor_specification-V1.3.pdf
to serve for manufacturers and developers. Product specifications 1.Product size L*W*H=71*70*23mm 2.Interface specification No Name Comment 1 NC Not Connect 2 1μm PM2.5: 0-999μg/m³;PWM Output 3 5V 5V Input 4 2.5μm PM10: 0-999 μg/m³;PWM Output 5 GND Ground 4 Nova Fitness Co., Ltd. SDS011 sensor 6 R
-
PDF
HM17CM4096.pdf
C -, C +, C -, C +, C -, C +, C - terminals. 2 3 3 4 4 5 5 6 6 At 3-times boosting is designed, connect boosting capacitor CA betwe1n C + and C -1, C + an1 C - 2 2 and open C +3C -,3C +,4C -,4C +,5C -,5C +,6C - 6 terminals. At 4-times boosting is
in „LCD Graphik Display mit µController ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LM3401.pdf
more predictable LED color and performance as compared to analog dimming. Figure 7 shows a typical PWM dimming waveform. When DIM is high (above 2V typically) the LM3401 operates normally and the LED string will be driven at the set current. When pulled low, DIM will disable HG and switching will stop
in „LM3401 LED-Treiber“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LM-3401.pdf
more predictable LED color and performance as compared to analog dimming. Figure 7 shows a typical PWM dimming waveform. When DIM is high (above 2V typically) the LM3401 operates normally and the LED string will be driven at the set current. When pulled low, DIM will disable HG and switching will stop
-
Datei
avr910.asm
devices. ;* Used data polling to short write process. ;* Added LED support to indicate R/W process. ;* V2.2 00.03.10 (pkastnes) Added support for multiple new devices. ;* V2.1 98.10.26 (mlund) New date marking. ;* Removed support for AT90S1200C. ;* Added support for AT90S4433A. ;* V2.0 98.01.06 (mlund) ATmega103
-
Datei
avr910.asm
devices. ;* Used data polling to short write process. ;* Added LED support to indicate R/W process. ;* V2.2 00.03.10 (pkastnes) Added support for multiple new devices. ;* V2.1 98.10.26 (mlund) New date marking. ;* Removed support for AT90S1200C. ;* Added support for AT90S4433A. ;* V2.0 98.01.06 (mlund) ATmega103
-
PDF
stc12c5a60s2-english.pdf
LQFP/ LQFP48 C PLCC STCM2LE5A60PWM series Selection Table LQFP/ STC12LE5A08PWM 3.6~2.1 8K 1280 4 1 2 2 N Y 53K Y Y 7 PDIP PLCC LQFP48 C LQFP/ STC12LE5A16PWM 3.T~2.1 16K 1280 4 1 2 2 N Y 45K Y Y 7 PDIP PLCC LQFP48 S LQFP/ STC12LE5A32PWM
in „STC12C5A60S2 (a.k.a 80C51) programieren mit mySmartUSB light“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
STC12C5A60S2-english.pdf
LQFP/ LQFP48 C PLCC STCM2LE5A60PWM series Selection Table LQFP/ STC12LE5A08PWM 3.6~2.1 8K 1280 4 1 2 2 N Y 53K Y Y 7 PDIP PLCC LQFP48 C LQFP/ STC12LE5A16PWM 3.T~2.1 16K 1280 4 1 2 2 N Y 45K Y Y 7 PDIP PLCC LQFP48 S LQFP/ STC12LE5A32PWM
in „STC 8051 EEPROM zugriff“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Mardenschreck.asm
;*************************************************************************** ; AT15 Stairs light based on Nlite2 ; night light switch using LDR to sense light ; and Marderschreck pwm frequency sweep ultrasonic output 20-40kHz ; ; night light switch reading LDR on ADC3, fixed on-time
in „Marderschreck Softwareproblem“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Mardenschreck.asm
;*************************************************************************** ; AT15 Stairs light based on Nlite2 ; night light switch using LDR to sense light ; and Marderschreck pwm frequency sweep ultrasonic output 20-40kHz ; ; night light switch reading LDR on ADC3, fixed on-time
in „Marderschreck Softwareproblem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SSD1963_Rev1.6.pdf
4 PWM 3 PWM 2 PWM 1 PWM 0 xx Parameter 3 1 0 0 0 0 C3 0 0 C0 xx Parameter 4 1 D7 D 6 D 5 D4 D 3 D 2 D1 D0 xx Parameter 5 1 E7 E 6 E5 E4 E3 E 2 E1 E0 xx Parameter 6 1 0 0 0 0 F3 F 2 F1 F0 xx Description Set
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SSD1963_V014.pdf
4 PWM 3 PWM 2 PWM 1 PWM 0 xx Parameter 3 1 0 0 0 0 C 0 0 C xx 3 0 Parameter 4 1 D7 D6 D 5 D 4 D3 D2 D1 D 0 xx Parameter 5 1 E7 E6 E 5 E 4 E3 E2 E1 E0 xx Parameter 6 1 0 0 0 0 F3 F2 F1 F0 xx Description Set
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
SUN-M101T2-03_VerA.pdf
when VDD is off. (2) All electrical characteristics for LVDS signal are defined and shall be measured at the interface connector of LCD. Note2: All values are at VDD=3.3V, Ta=25 degree C. Figure5-1 Voltage Definitions 9
in „LVDS - Keine Ahnung bei Verbindung Board und Display“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Schaltregler.pdf
0.2% LOAD REGULATION 1.5% 1.0% 1.0% 0.5% 0.5% 0.5% 0.5% 0.5% 0.5% 0.5% SETUP, RISE TIME 800ms, 50ms/230VAC 2500ms, 50ms/115VAC at full load HOLD UP TIME (Typ.) 16ms/230VAC 16ms/115VAC at full load VOLTAGE
in „Schaltnetzteil auswahl der größe und des Materials der Induktivitäten und Trafokerne“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
NCP51530-D-1324764-1.pdf
otherwise noted, Typical values are at T = 25°C.) J Parameters Test Conditions Symbol Min Typ Max Unit SUPPLY SECTION V quiescent current V =V =0 I 0.15 0.25 mA CC LIN HIN CCQ V operating current f = 500 kHz, C = 0 I 2 2.5 mA CC LOAD CCO
in „Hilfe bei Halbbrückenschaltung benötigt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CH572DS1_en.PDF
. PWM4 output polarity control: 3 RB_PWM4_POLAR RW 1: Default at high level, active low; 0 0: Default at low level, active high. PWM3 output polarity control: 2 RB_PWM3_POLAR RW 1: Default at high level, active low; 0 0: Default at low level, active high. PWM2 output polarity control: 1 RB_PWM2_POLAR RW 1: Default at high level, active low; 0 0: Default at low level, active high. PWM1 output polarity control: 0 RB_PWM1_POLAR RW
in „Eagle 7.5 Bibliothek - bitte um Prüfung und Hinweise“ · Platinen ·
-
PDF
SPV-300-spec.pdf
RIPPLE & NOISE (max.)Note.2150mVp-p 150mVp-p 240mVp-p OUTPUT VOLTAGEADJ. RANGE 10.8~13.2V 20 ~ 26.4V 41 ~ 52.8V VOLTAGE TOLERANCE Note.3 1.0% 1.0% 1.0% LINE REGULATION 0.3% 0.2% 0.2% LOAD REGULATION 0.5% 0.5% 0.5% SETUP, RISE TIME 800ms, 50ms/230VAC 2500ms, 50ms/115VAC at full load HOLD
in „Mean Well Spannungsmanipulation“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DM0465RE.pdf
S BV DSS Drain Source Breakdown Voltage 650 V D V str Max. Voltage at Vstart pin 650 V M 0 FSDM0465RE TC=25°C 9.6 6 IDM Drain Current Pulsed FSDM0565RE TC=25°C 11 ADC 5 R FSDM07652RE TC =25°C 15 , T =25°C 2.2 F FSDM0465RE C S TC=100°C 1.4 D T =25°C 2.8 M ID Continuous
in „Wie von 400 V Gleichspannung auf 5 V für den AVR kommen?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
UM_10120_LPC213x_User_Manual.pdf
possible. Using PWM 2, PWM4, and PWM6 for double edge PWM outputs provides the most pairings. 15.2.1 Rules for single edge controlled PWM outputs 1. All single edge controlled PWM outputs go high at the beginning of a
in „Zeichen im Interrupt empfangen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
UM10120_1.pdf
possible. Using PWM 2, PWM4, and PWM6 for double edge PWM outputs provides the most pairings. 15.2.1 Rules for single edge controlled PWM outputs 1. All single edge controlled PWM outputs go high at the beginning of a
in „Baudrate Abtastfrequenz“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
vnh2sp30.pdf
current through µC I/Os, series resistor is: VIOs – VCC R = ------------------------------ Rmax 9/26 VNH2SP30-E Figure 6. Definition Of The Delay Times Measurement VINA, t VINB t PWM t ILOAD t tDEL DEL t Figure 7. Definition Of The Low Side Switching Times PWM t V OUTA, B 90% 80% tf 20% 10% r t 10/26 VNH2SP30-E Figure 8. Definition Of The High Side Switching Times V INA, tD(on) D(off) t VOUTA 90% 10% t Figure 9. Definition Of Dynamic Cross Conduction Current During A Pwm Operation INA=1, IN B0 PWM t IMOTOR t V OUTB t CC I RM t t rr 11/26 VNH2SP30-E Figure 10. Waveforms in full bridge operation
in „25A Regler per PWM“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
pic16f88.pdf
90, 95 14h SSPCON WCOL SSPOV SSPEN CKP SSPM3 SSPM2 SSPM1 SSPM0 0000 0000 89, 95 15h CCPR1L Capture/Compare/PWM Register 1 (LSB) xxxx xxxx 83, 85 16h CCPR1H Capture/Compare/PWM Register 1 (MSB) xxxx xxxx
in „auftrennen einer 2stelligen Dezimalzahl in asm (pic 16f88)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
H83003H.PDF
below PA6DDR — 0 1 1 NDER6 — — 0 1 Pin function TIOCA output PA PA TP 2 input output output TIOCA2 input* Note: * TIOCA input when IOA2 = 1. 2 ITU channel 2 settings PWM2 0 1 IOA2 0 1 — IOA1 0 0 1 — — IOA0 0 1 — — — PA5/TP5/TIOCB1 ITU channel 1 settings (bit PWM1 in TMDR
in „H8/300 Frage (genauer H8/3003)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LB1847.pdf
where high- precision control and low vibrations are required. Features • PWM current control (fixed OFF time) • Load current digital selector (1-2, W1-2, 2W1-2, 4W1-2 phase exciter drive possible) • Selectable current decay pattern (SLOW DECAY, FAST DECAY, MIX DECAY) • Simultaneous
in „Spannung steig an Vcc an, wenn Vbb über 7V geht“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
XBEE3_UserGuide.pdf
configuration (Micro pin 7/SMT pin 7/TH pin 6). Parameter range 0 - 5 Parameter Description 0 Disabled 1 RSSI PWM output 2 PWM0 output. M0 (PWM0 Duty Cycle) controls the value. 3 Digitalinput 4 Digitaloutput, low 5 Digitaloutput, high Default 1 Digi XBee®3Zigbee®RF Module 218 AT commands I/Osettingscommands P1
in „XBEE3 Home Automation“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
PWM_8AVR.ASS
/* Beispielprogramm fuer PWM-Ausgabe bei AVR-Controllern (hier AT90S8515). Das PWM-Intervall betraegt 256 * 32æs -> 8,192ms. In diesem Intervall werden moeglichst viele nicht zusammenhaengende Einzelimpulse erzeugt, sodass bei
in „Software PWM 8-fach“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
rt8016_richtek_FT8.pdf
® RT8016 1.5MHz, 1A, High Efficiency PWM Step-Down DC/DC Converter General Description Features The RT8016 is a high-efficiency Pulse-Width-Modulated +2.5V to +5.5V Input Range Adjustable Output From 0.6V to V (PWM)step-downDC-DCconverter.Capableofdelivering
-
PDF
EDS-5177B.pdf
- m o d e T e c h n o lo g y Sync. Rectifier Step Up Converter Features General Description Up to 90% Efficiency at Iout=2A VOUT= 5V from The G5177B is a compact, high-efficiency, synchro- 3.3V Input nous step-up converter with power Mosfets embedded Low 70μA Quiescent Current and with output turn off
-
PDF
Linear_Current_Sense_AN105.pdf
several potentially hazardous fault 200Ω scenarios go undetected, such as a simple short to 3V ground at a motor terminal. Another complication is the R 0.2Ω + noise introduced by the PWM activity. While the PWM Q1 noise may be filtered for purposes of the servo law, in- LT1637 2N3904 – VOUT formation useful
in „'High Side' Strom Messen - Geht das so ?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AN105.pdf
several potentially hazardous fault 200Ω scenarios go undetected, such as a simple short to 3V ground at a motor terminal. Another complication is the R 0.2Ω + noise introduced by the PWM activity. While the PWM Q1 noise may be filtered for purposes of the servo law, in- LT1637 2N3904 – VOUT formation useful
in „High-Side Strommessung AVR (Shunt)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
h-bridge-driver_hip4081a.pdf
13 BIAS ALI 6 DELAY SUPPLY CBF ALS 14 HDEL 8 LDEL 9 VSS 4 FN3659 Rev.9.00 Page 2 of 18 Feb12, 2020 HIP4081A Typical Application (PWM Mode Switching) 80V 1 BHB BHO 20 12V 2 BHI BHS 19 A LOAD DIS 3 DIS 8BLO 18 4 4 V SS IBLS 17 PWM BLI / INPUT 5 8V DD 16 6 ALI 4V CC 15 12V I 7 AHI HALS
in „Motorsteuerung AVR Atmega per ISP flashen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BTS4140N.pdf
at PWM-Mode with 150Ω-matching network bb 1 0 0 9 0 V b b P W M 8 0 7 0 6 0 5 0 Ω / µ 1 5 0 8 -H d 4 0 3 0 2 0 1 5 0Ω / 1 3 -N 1 0 0 -1 0 -2 0 0 ,1 1 1 0 1 0 0 1 0 0 0 f / M H z Test circuit: 5µH 150Ω-Network
in „+12V mit +3.3V schalten P-MOSFET?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AiMS2000.pdf
VDD3.3V B 20 P1.30/VBUS/AD0.4 P0.22/RTS1/CAN_TX1 9 8 8 K 5 54 VDD3.3V M P1.31/SCK1/AD0.5 P0.23/AD0.0/I2SRX_CLK/CAP3.0 GP1 O , R 28 VDD3.3V W 1 3 5 75 P2.0/PWM1.1/TXD1/TRACECLK P0.24/AD0.1/I2SRX_WS/CAP3.1 8 GP2 A GPIO3 - 3 P 74 P2.1/PWM1.2/RXD1 P0.25/AD0.2/I2SRX_SDA/TXD3 7 TX3 . 1 2 100nF K 8 73 P2.2/PWM1.3
in „Schaltplan Prüfung/Kritik LPC1769 + IMU + Bluetooth“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR_ATmega_328PB.pdf
PWM output generated should be inverted or not (inverted or non-inverted PWM). For non-PWM modes the COM2x[1:0] bits control whether the output should be set, cleared, or toggled at a compare match (See
in „ATmega328PB: UART(MC) empfängt falsche Daten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Data_sheet_XBee_XBee-Pro_Series_2.pdf
XBee®/XBee-PRO® ZB RF Modules ZigBee RF Modules by Digi International Models: XBEE2, XBEEPRO2, PRO S2B Hardware: S2 and S2B Firmware Versions: - 20xx - Coordinator - AT/Transparent Operation - 21xx - Coordinator - API Operation - 22xx - Router - AT/Transparent Operation - 23xx - Router
-
PDF
viper50a-e-974425.pdf
µA I Output High Current V =2.5V; V =12V 600 µA COMPHI COMP DD Capability Table 6. PWM Comparator Section Symbol Parameter Test Conditions‘ Min Typ Max Unit HID ∆V COMP / ∆DPEAK V COMP = 1 to 3 V 1.4 2 2.6 V/A V COMPoff V COMP Offset
in „Schaltnetzteil - Viper50A-E 45W“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CN3795.pdf
VBAT=8V 0.0 0.05 0.1 V (measure VCC-V BAT) Sleep mode Release Threshold V SLPR VCC rising, VBAT=8V 0.2 0.32 0.46 V (measure VCC-V BAT) DRV Pin V DRVHigh (VCC-V DRV VH IDRV=-10mA 60 mV V Low (VCC-V ) VL I =0mA 6.3 V DRV DRV DRV Rise Time r Cload=2nF, 10% to 90% 30 40 65 ns Fall Time f Cload=2nF, 90% to
in „5V Solarmodul zu 5V USB - Optimierung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CN3795-CONSONANCE.pdf
VBAT=8V 0.0 0.05 0.1 V (measure VCC-V BAT) Sleep mode Release Threshold V SLPR VCC rising, VBAT=8V 0.2 0.32 0.46 V (measure VCC-V BAT) DRV Pin V DRVHigh (VCC-V DRV VH IDRV=-10mA 60 mV V Low (VCC-V ) VL I =0mA 6.3 V DRV DRV DRV Rise Time r Cload=2nF, 10% to 90% 30 40 65 ns Fall Time f Cload=2nF, 90% to
in „Auseinandergenommene Geräte“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CN3795-CONSONANCE.pdf
VBAT=8V 0.0 0.05 0.1 V (measure VCC-V BAT) Sleep mode Release Threshold V SLPR VCC rising, VBAT=8V 0.2 0.32 0.46 V (measure VCC-V BAT) DRV Pin V DRVHigh (VCC-V DRV VH IDRV=-10mA 60 mV V Low (VCC-V ) VL I =0mA 6.3 V DRV DRV DRV Rise Time r Cload=2nF, 10% to 90% 30 40 65 ns Fall Time f Cload=2nF, 90% to
in „cn3795 Richtige Werte für FB und MPPT“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
l7987.pdf
3.85 4.10 4.30 V (1) V CCHYST VCC UVLO hysteresis 160 250 340 mV Switch internal supply fromCC to (1) 2.84 2.90 2.96 V V threshold V BIAS VBIASramping up from 0 V. BIAS Hysteresis (3) 80 mV SWO Switch internal supply fromCC to V BIAS VIN= VCC = 24 V, VBIAS (1) 3.35 4.05 4.90 V VCC - VBIASthreshold falling
in „L7987, wie Output regeln?“ · Analoge Elektronik und Schaltungstechnik ·