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PDF
irf7389.pdf
OutputCapacitance P-Ch — 380 — P-Channel V = 0V, V = -25V, ƒ = 1.0MHz C rss Reverse Transfer Capacitance N-Ch — 130 — GS DS P-Ch — 180 — Source-Drain Ratings and Characteristics Parameter Min. Typ. Max. Units Conditions N-Ch — — 2.5 IS Continuous Source Current (Body Diode) P-Ch — — -2.5 A I Pulsed Source Current
in „Mini-FET's“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRF7389_N-P-Channel_30V_5.3A_0.058Ohm.pdf
OutputCapacitance P-Ch — 380 — P-Channel V = 0V, V = -25V, ƒ = 1.0MHz C rss Reverse Transfer Capacitance N-Ch — 130 — GS DS P-Ch — 180 — Source-Drain Ratings and Characteristics Parameter Min. Typ. Max. Units Conditions N-Ch — — 2.5 IS Continuous Source Current (Body Diode) P-Ch — — -2.5 A I Pulsed Source Current
in „DC-Motor mit HIP2101“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf7389.pdf
OutputCapacitance P-Ch — 380 — P-Channel V = 0V, V = -25V, ƒ = 1.0MHz C rss Reverse Transfer Capacitance N-Ch — 130 — GS DS P-Ch — 180 — Source-Drain Ratings and Characteristics Parameter Min. Typ. Max. Units Conditions N-Ch — — 2.5 IS Continuous Source Current (Body Diode) P-Ch — — -2.5 A I Pulsed Source Current
in „H-Brücke am µC“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Athlet_V1_4_32_4.ino
define VAC_PWM_HIGH 180 // for BCH6L2560: PWM vac-motor for switch-level HIGH #define BRUSH_PWM_LOW 130 // for BCH6L2560: PWM brush for switch-level LOW #define BRUSH_PWM_MID 140 // for BCH6L2560: PWM brush for switch-level MID #define BRUSH_PWM_HIGH 180 // for BCH6L2560: PWM brush for switch-level HIGH #define BRUSH_I_MAX 2.0 // for BCH6L2560: overcurrent limit for brush motor [amperes] #define VBAT_LOW 21.0 // for BCH6L2560: Battery Voltage level for LED LOW (discharging) discharge voltage levels are lower due high
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mc14553b-d-1192980.pdf
Referenced tSS) ÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎÎ − 55_C 25_C 125_C VDD Typ Characteristic Symbol Vdc Min Max Min (Note 2) Max Min Max Unit Output Voltage “0” Level V 5.0 − 0.05 − 0 0.05 − 0.05 Vdc OL Vin= V DDor 0 10 − 0.05 − 0 0.05 − 0.05 15 − 0.05 − 0 0.05 − 0.05 “1” Level VOH 5.0 4.95 − 4.95 5.0 − 4.95
in „MC14553BCP - Alternative“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1038fa.pdf
otherwise specifications are at TA= 25°C. (Note 2) LT1038M LT1038C SYMBOL PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS V REF Reference Voltage OUT = 20mA, Tj= 25°C 1.24 1.25 1.26 1.23 1.25 1.275 V 3V (V INV OUT) 35V 1.22 1.25 1.285 1.22 1.25 1.285 V 20mA I 10A, P 75W OUT VOUT Line Regulation 3V (V
in „Linearregler 24V/7A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KMI16_1.pdf
. 1 2 3 MBK766 Fig.1 Simplified outline (SOT477B). QUICK REFERENCE DATA SYMBOL PARAMETER MIN. TYP. MAX. UNIT VCC DC supply voltage 4.5 5 16 V CC DC supply current (pin 1) 4 10 14 mA V OC saturation voltage − − 1 V CEsat dmax maximum sensing distance 2.4 2.9 − mm t operating tooth frequency 0 − 25000
in „Datenblätter Kfz-Hallsensoren wo?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TBD62003AFWG.pdf
conditions during use. Features • 7 circuits built-in DIP16-P-300-2.54A • High voltage : VOUT= 50 V (MAX) • High current : OUT= 500 mA/ch (MAX) • Input voltage(output on) : TBD62003A series 2.5 V (MIN) TBD62003AFG,TBD62004AFG TBD62004A series 7.0 V (MIN) • Input voltage(output off) : TBD62003A series 0.6 V (MAX) TBD62004A series 1.0 V (MAX) • Package : PG type DIP16-P-300-2.54A FG type SOP16-P-225-1.27 FNG type SSOP16-P-225-0.65B FWG type P-SOP16-0410-1.27-002 SOP16-P-225-1.27 TBD62003AFNG,TBD62004AFNG Pin
in „µC / I²C / Port Expander Potenziale entkoppeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max774-max776.pdf
(shutdown) 2 5 µA A V+ = 16.5V, SHDN ≥ 1.6V (shutdown) 4 M FB Trip Point 3V ≤ V+ ≤ 16.5V -10 10 mV MAX77_C ±50 FB Input Current FB MAX77_E ±70 nA MAX77_M ±90 MAX774 -4.80 -5 -5.20 Output Voltage V MAX775 -11.52 -12 -12.48 V OUT MAX776 -14.40 -15 -15.60 MAX77_C 1.4700 1.5 1.5300 Reference Voltage VREF
in „[V] kleines Konvolut ältere DIL / DIP ICs (8€)“ · Markt ·
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PDF
SG3525ANG.pdf
DIMENSION B DOES NOT INCLUDE 1 8 MOLD FLASH. 5. ROUNDED CORNERS OPTIONAL. F C L INCHES MILLIMETERS DIM MIN MAX MIN MAX S A 0.740 0.770 18.80 19.55 B 0.250 0.270 6.35 6.85 C 0.145 0.175 3.69 4.44 −T− SEATING D 0.015 0.021 0.39 0.53 PLANE F 0.040 0.70 1.02 1.77 G 0.100 BSC 2.54 BSC H K J M H 0.050 BSC 1.27 BSC G J 0.008 0.015 0.21 0.38 D 16 PL K 0.110 0.130 2.80 3.30 0.25 (0.010)M T A M L 0.295 0.305 7.50 7.74 M 0▯ 10▯ 0▯ 10▯ S 0.020 0.040 0.51 1.01 http://onsemi.com 8 SG3525A PACKAGE DIMENSIONS SOIC−16L DW SUFFIX CASE 751G−03 ISSUE C D A NOTES: 1. DIMENSIONS
in „Gegentaktwandler Überschwingen im Leerlauf“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC1489.pdf
DIMENSION B DOES NOT INCLUDE MOLD FLASH. 5. ROUNDED CORNERS OPTIONAL. INCHES MILLIMETERS A DIM MIN MAX MIN MAX A 0.715 0.770 18.16 19.56 B 0.240 0.260 6.10 6.60 F L C 0.145 0.185 3.69 4.69 D 0.015 0.021 0.38 0.53 N F 0.040 0.070 1.02 1.78 C G 0.100 BSC 2.54 BSC H 0.052 0.095 1.32 2.41 −T− J 0.008 0.015
in „USB/RS232 Konverter, einige Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s8241.PDF
Abnormal charge current detection function). (8) Low current consumption • Operation: 3.0 μA typ. 5.0 μA max. • Power-down mode: 0.1 μA max. (9) Wide operating temperature range: −40 to +85 °C (10) Small package SOT-23-5, SNT-6A (11) Lead-free products *1. Overcharge release voltage = Overcharge detection
in „Li-Ion Akku mit oder ohne eingebaute Schutzschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s8241.PDF
Abnormal charge current detection function). (8) Low current consumption • Operation: 3.0 μA typ. 5.0 μA max. • Power-down mode: 0.1 μA max. (9) Wide operating temperature range: −40 to +85 °C (10) Small package SOT-23-5, SNT-6A (11) Lead-free products *1. Overcharge release voltage = Overcharge detection
in „Li-Ion Protection in besser?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s8241.PDF
Abnormal charge current detection function). (8) Low current consumption • Operation: 3.0 μA typ. 5.0 μA max. • Power-down mode: 0.1 μA max. (9) Wide operating temperature range: −40 to +85 °C (10) Small package SOT-23-5, SNT-6A (11) Lead-free products *1. Overcharge release voltage = Overcharge detection
in „Lademodul TP4056“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HD66766R.PDF
Serial input data hold time t ns Figure 3 30 — — SIH Serial input data delay time tSOD ns Figure 3 — — 130 Serial input data hold time tSOH ns Figure 3 5 — — Table 54 (Vcc = 2.4 to 3.6 V) Item Symbol Unit Test Condition Min Typ Max Write SCYC us Figure 3 0.076 — 20 (received) Serial clock cycle time Read
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL494.pdf
(VCC= 15 V, T = 0.01 ▯F,TR = 12 k▯, unless otherwise noted.) For typical valuAs T = 25⋅C, for min/max vAlues T is the operating ambient temperature range that applies, unless otherwise noted. Characteristics Symbol Min Typ Max Unit REFERENCE SECTION Reference Voltage (I1.0 mA) V 4.75 5.0 5.25 V O ref
in „Problem mit TL494“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC662.pdf
LMC662AI LMC662C Units (Note 4) Limit Limit (Note 4) (Note 4) Input Offset Voltage 1 3 6 mV 3.3 6.3 max Input Offset Voltage 1.3 µV/˚C Average Drift Input Bias Current 0.002 pA 4 2 max Input Offset Current 0.001 pA 2 1 max Input Resistance >1 TeraΩ Common Mode 0V ≤ V ≤ 12.0V 83 70 63 dB CM Rejection Ratio
in „Alternative zum LMC6041“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
D100940D.pdf
min. typ. max. Duty Cycle D 0 0.5 Transimpedance Z PWM 4 V/A TDA 16831/G 1) ∆V FB / ∆Drain 2 TDA 16832/G 1.3 TDA 16833/G/4 2) OP Gain Bandwidth Bw 2 MHz 2) OP Phase Margin Phi m 70 Degree VFB OperatingRangemin. Level
in „Wie startet dieses SNT ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL494.pdf
15 V, C = 0.01 F, R = 12 k , unless otherwise noted.) CC T T For typical valuAs T = 25⋅C, for min/max vAlues T is the operating ambient temperature range that applies, unless otherwise noted. Characteristics Symbol Min Typ Max Unit REFERENCE SECTION Reference VoltageO(= 1.0 mA) Vref 4.75 5.0 5.25 V
in „PWM-IC gesucht: Betrieb für Mosfet (etwa 8A)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LB_LT_M673_Pb_free.pdf
Dominantwellenlänge 5) page 17 (min.) λ dom 465 517 nm Dominant wavelength (typ.) 471* 529* nm IF= 10 mA (max.) 477 541 nm Spektrale Bandbreite bei 50 % rel max (typ.) Δλ 25 33 nm Spectral bandwidth at 50 % rel max I = 10 mA F Abstrahlwinkel bei 50 %IV (Vollwinkel) (typ.) 2 ϕ 120 120 Grad Viewing angle at 50
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PDF
tca9548a.pdf
6.1 Absolute Maximum Ratings over operating free-air temperature range (unless otherwise noted) MIN MAX UNIT VCC Supply voltage –0.5 7 V VI Input voltage) –0.5 7 V I Input current –20 20 mA I Output current –25 mA O CC Supply current –100 100 mA Tstg Storage temperature –65 150 °C T Max Junction Temperature
in „Unterschied TCA9548A und PCA9548A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tca9548a.pdf
6.1 Absolute Maximum Ratings over operating free-air temperature range (unless otherwise noted) MIN MAX UNIT VCC Supply voltage –0.5 7 V VI Input voltage) –0.5 7 V I Input current –20 20 mA I Output current –25 mA O CC Supply current –100 100 mA Tstg Storage temperature –65 150 °C T Max Junction Temperature
in „Sensor Array ansprechen mit I2C - Unterschiede zu Mega2560 und Seeed RP2040“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDS220_Display.pdf
2 3Mechanical SRecification? Table1 Parameter Specification Unit Outlinedimensions 170(W)x110(H)x8 MAX(D) Notel m Effective viewing area 121(W) x 91.6(H) m — Displayformat 320(W)x240(H)fulldot Dot size 0.33(W)x0.33(H) m Dotspacing 0,03 m Character color White Note3 – – Background color Black Note2 Weight
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PDF
Sharp_LM32P07_Display.pdf
2 3Mechanical SRecification? Table1 Parameter Specification Unit Outlinedimensions 170(W)x110(H)x8 MAX(D) Notel m Effective viewing area 121(W) x 91.6(H) m — Displayformat 320(W)x240(H)fulldot Dot size 0.33(W)x0.33(H) m Dotspacing 0,03 m Character color White Note3 – – Background color Black Note2 Weight
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JXI5020.pdf
J-STD-020C ѓሙᆭ 245 C ᇀ 260 C(ҕᄇ༯ࠣі۬ )b Temperature ( ) 300 255Ċ 260 +0 -5 250 245 5 Ċ 240Ċ 217Ċ 30s max 200 Average ramp-up RĊmp-down rate= 0.7 /s 6 /s (max) 150 100s max Peak Temperature245 ~260 < 10s 100 Average ramp-up rate = 0.4 /s Average ramp-up 50 rate= 3.3 /s 25 0 0 50 100 150 200 250 300 Time
in „Chinesische IC und ihre Verwandschaft“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.lst
// * oder das aufnehmende Array voll ist while( NextChar != '\n' && StringLen < MaxLen - 1 ) { 12a: 8a 30 cpi r24, 0x0A ; 10 12c: 19 f4 brne .+6 ; 0x134 <uart_gets+0x40> *Buffer ++ = NextChar; StringLen ++; NextChar = uart_getc(); } *Buffer = '\0'; // Noch ein '\0' anhängen um einen Standard C-String daraus zu machen 12e: f6 01 movw r30, r12 130: 10 82 st Z, r1 132: 05 c0 rjmp .+10 ; 0x13e <uart_gets+0x4a> NextChar = uart_getc(); // Warte auf und empfange das nächste Zeichen // Sammle solange Zeichen, bis: // * entweder das String Ende Zeichen
in „AVR-GCC 4.7.2 Bug?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
int_fft.c
to -N_LOUD. */ void fix_loud(fixed loud[], fixed fr[], fixed fi[], int n, int scale_shift) { int i, max; max = 0; if(scale_shift > 0) max = 10; scale_shift = (scale_shift+1) * 6; for(i=0; i<n; ++i) { loud[i] = db_from_ampl(fr[i],fi[i]) + scale_shift; if(loud[i] > max) loud[i] = max; } } /* db_from_ampl
in „Optimierungswettbewerb FFT u. IFFT“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
Laborausstattung.pdf
- Funktionsbeschreibung 1 DF-1731SB3A Netzgerät --- - 2x (0 V ... 30 V / 0 A ... 3 A), Fix: 5 V / max. 3 A 2 RG-303 pro Netzgerät --- - 2x (0 V ... 32 V / 0 A ... 5 A), 8 V ... 15 V / 1 A, 3 V ...5 V / 3 A 3 RNG-1620BL Netzgerät --- - 1x (0 V ... 15 V / 0 A ... 2 A) 2 Zentro 7941 Netzgerät --- - 0 V
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Datei
Bosch_Athlet_DIY_240416.ino
define VAC_PWM_HIGH 180 // for BCH6L2560: PWM vac-motor for switch-level HIGH #define BRUSH_PWM_LOW 130 // for BCH6L2560: PWM brush for switch-level LOW #define BRUSH_PWM_MID 140 // for BCH6L2560: PWM brush for switch-level MID #define BRUSH_PWM_HIGH 180 // for BCH6L2560: PWM brush for switch-level HIGH #define BRUSH_I_MAX 2.0 // for BCH6L2560: overcurrent limit for brush motor [amperes] #define VBAT_LOW 21.0 // for BCH6L2560: Battery Voltage level for LED LOW (discharging) discharge voltage levels are lower due high
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
testtest.txt
BAUD_ERROR = ((BAUD_REAL*1000)/BAUD-1000) ; Fehler in Promille .if ((BAUD_ERROR>10) || (BAUD_ERROR<-10)) ; max. +/-10 Promille Fehler .error "Systematischer Fehler der Baudrate grösser 1 Prozent und damit zu hoch!" .endif .org 0x0000 rjmp Start .org 0x0004 rjmp Motor1 Start: ldi r16, HIGH(UBRR_VAL) out UBRRH
in „Speichern von Schrittmotoren Schritten im SRAM - Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.asm
BAUD_ERROR = ((BAUD_REAL*1000)/BAUD-1000) ; Fehler in Promille .if ((BAUD_ERROR>10) || (BAUD_ERROR<-10)) ; max. +/-10 Promille Fehler .error "Systematischer Fehler der Baudrate grösser 1 Prozent und damit zu hoch!" .endif .org 0x0000 rjmp Start .org 0x0004 rjmp Motor1 Start: ldi r16, HIGH(UBRR_VAL) out UBRRH
in „Speichern von Schrittmotoren Schritten im SRAM - Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1W_LED_SMD_3_spec.pdf
drive current up to 700mA. z Portable lights such as camping light, flashlight, bicycle headlamp, o z Max junction temperature :150C mining headlamp. z No UV light z Exterior and interior decorative lightings for shops, restaurants, z Fast lit up response (less than hotels, discos, pubs, etc 100nS) z Signage
in „Re: [Sammelbestellung] 6 Pin 3W Power RGB LED“ · Markt ·
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PDF
bhkw-1.pdf
4 13 (ADC3)PA3 38 2 2 9 XTAL1 (ADC2)PA2 39 + 1 C n (ADC1)PA1 + V 6 032 AREF (ADC0)PA0 40 K8 8 2 C 130 AVCC 1Omron D K7 7 + 31 GND (SCK)PB7 8 1Zettler D S1 O1 (MISO)PB6 7 1 2 +5V 6 K4 4 10 VCC (MOSI)PB5 6 3 4 MOSI 1 6 1 K7 1T7NS D 11 GND (SS)PB4 5 RESET 5 6 Q9 1 P DC_MOTOR_MINUS (AIN1/OC0)PB3 4 BC548
in „Schaltungsentwurf - Fehlerfrei?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bhkw-2.pdf
4 13 (ADC3)PA3 38 2 2 9 XTAL1 (ADC2)PA2 39 + 1 C n (ADC1)PA1 + V 6 032 AREF (ADC0)PA0 40 K8 8 2 C 130 AVCC 1Omron D K7 7 + 31 GND (SCK)PB7 8 1Zettler D S1 O1 (MISO)PB6 7 1 2 +5V 6 K4 4 10 VCC (MOSI)PB5 6 3 4 MOSI 1 6 1 K7 1T7NS D 11 GND (SS)PB4 5 RESET 5 6 Q9 1 P DC_MOTOR_MINUS (AIN1/OC0)PB3 4 BC548
in „Schaltungsentwurf - Fehlerfrei?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bhkw-3.pdf
4 13 (ADC3)PA3 38 2 2 9 XTAL1 (ADC2)PA2 39 + 1 C n (ADC1)PA1 + V 6 032 AREF (ADC0)PA0 40 K8 8 2 C 130 AVCC 1Omron D K7 7 + 31 GND (SCK)PB7 8 1Zettler D S1 O1 (MISO)PB6 7 1 2 +5V 6 K4 4 10 VCC (MOSI)PB5 6 3 4 1 6 1 K7 1T7NS D 11 GND (SS)PB4 5 RESET 5 6 Q9 1 P DC_MOTOR_MINUS (AIN1/OC0)PB3 4 BC548 Q8 (
in „Schaltungsentwurf - Fehlerfrei?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bhkw-4.pdf
4 13 (ADC3)PA3 38 2 4 9 XTAL1 (ADC2)PA2 39 + 2 C n (ADC1)PA1 + V 6 032 AREF (ADC0)PA0 40 K8 8 2 C 130 AVCC 1Omron D K7 7 + 31 GND (SCK)PB7 8 1T7NS D S1 O1 (MISO)PB6 7 1 2 +5V 6 K4 4 10 VCC (MOSI)PB5 6 3 4 1 6 1 K7 1T7NS D 11 GND (SS)PB4 5 RESET 5 6 Q9 1 P DC_MOTOR_MINUS (AIN1/OC0)PB3 4 BC548 Q8 (AIN0
in „Schaltungsentwurf - Fehlerfrei?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
All.txt
DOPPELDIODE.LBR SAL41B 3 VD01 DOPPELDIODE DOPPELDIODE DOPPELDIODE.LBR SAL41B 3 U$9 2.5"HDD 2.5"HDD 2.5"HDD 3 U$8 MAX3000 MAX3000 TSSOP20 3 U$7 MAX3000 MAX3000 TSSOP20 3 U$6 MAX3000 MAX3000 TSSOP20 3 U$5 MAX3000 MAX3000 TSSOP20 3 U4 XBEE XBEE XBEE XBee (TM) /XBee-PRO(TM) OEM RF Modules 3 U$4 MAX3000 MAX3000 TSSOP20
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
TPS5430.pdf
voltage, including ripple. This input ripple voltage can be approximated by Equation 2 : I 0.25 DV + OUT(MAX) ) I ESR Ǔ IN CBULK ƒsw OUT(MAX) MAX (2) Where I OUT(MAX) is the maximum load current, f SW is the switching frequency, C IN is the input capacitor value and ESR is the maximum series resistance of
in „DigiPot AD5290 und Schaltregler TPS5430 laufen nicht zusammen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Si4730-31-34-35-D60.pdf
Characteristics (VA= 2.7 to 5.5DV, V = 1.62 tA 3.6 V, T = –20 to 85 °C) Parameter Symbol Test Condition Min Typ Max Unit Reference Clock RCLK Supported Frequencies 31.130 32.768 40,000 kHz 2 RCLK Frequency Tolerance –100 — 100 ppm REFCLK_PRESCALE 1 — 4095 REFCLK 31.130 32.768 34.406 kHz Crystal Oscillator Crystal
in „LM2528-3.3 & SI4735 & Bluetooth anliegen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd66701.pdf
these pins should be minimized. V CC = 5V V CC= 3V 500 500 400 400 z z H 320 H 320 ( 300 ( 300 S S f f max. max. 200 typ. 200 typ. min. min. 100 50 (68) 100 150 100 50 (56) 100 150 R (k ) R (k ) f f 64 HD66702/HD66701 13.R COM is the resistance between the power supply pins (V CCV1, V4, V5) and each common
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DG-24064.PDF
Dot spacing (mm) 0.04 Module dimensions (Horizontal × Vertical × Thickness, mm) 180.0 × 65.0 × 16.0 max. Viewing area (Horizontal × 132.0 × 39.0 Vertical, mm) Active area (Horizontal × Vertical, mm) 127.16 × 33.88 DATA VISION 01/09/24 3 / 19 SPECIFICATIONS FOR LIQUID CRYSTAL DISPLAY MODULE MODEL NO: DG
in „pinbelegung LCD-Display (20-polig)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SERIES_76_and_78.pdf
Profile: (260°C Peak Temperature) Wav e Sold eri ng: 260°C maximum solder temperature for 5 seconds max. ** Note: 100% matte tin terminal plating does not meet MIL-S-83504 for lead content. Grayhill, Inc. • 561 Hillgrove Avenue • LaGrange, Illinois 60525-5997 • USA • Phone: 708-354-1040 • Fax: 708-354
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PDF
HX8352-A.pdf
1.0μF VGH Connect to Capacitor (Max 21V): VGH ---(+)----| |--- (-)----- VSSA 1.0μF VCL Connect to Capacitor (Max 5V): VCL ---(-)----| |--- (+)----- VSSA 1.0μF C22A,C22B Connect to Capacitor (Max 7V): C22A ---(+)----| |--- (-)-----C22B
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PDF
HM8631_HM8632_HM8634__1_.pdf
0.016 0.029 θ 0° 8° 0° 8° SO-8 A A2 Dimensions Dimensions D A1 Symbol In Millimeters In Inches Min Max Min Max b e A 1.370 1.670 0.056 0.068 A1 0.070 0.170 0.003 0.007 L A2 1.300 1.500 0.053 0.061 b 0.306 0.506 0.013 0.021 C 0.203 typ. 0.008 typ. D 4.700 5.100 0.192 0.208 E 3.820 4.020 0.156 0.164 E1
in „Identifizierung 8 pin SMD Bauteil aus BLDC Controller“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A501_LD_LB_LT_W5AM.pdf
Seite 22 (min.) λ 449 459 513 nm 3) page 22 dom Dominant wavelength (typ.) 455* 467* 528* IF= 350 mA (max.) 461 476 537 Spektrale Bandbreite bei 50 % Φrel max (typ.) Δλ 20 25 33 nm Spectral bandwidth at 50 % Φrel max IF= 350 mA Abstrahlwinkel bei 50 % ΙV (Vollwinkel) (typ.) 2 ϕ 170 170 170 Grad Viewing
in „2 x LED und Lüfterschaltung 12V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
93C86.pdf
packaging E1 D 2 n 1 E A A2 L c A1 B1 p eB B Units INCHES* MILLIMETERS Dimension Limits MIN NOM MAX MIN NOM MAX Number of Pins n 8 8 Pitch p .100 2.54 Top to Seating Plane A .140 .155 .170 3.56 3.94 4.32 Molded Package Thickness A2 .115 .130 .145 2.92 3.30 3.68 Base to Seating Plane A1 .015 0.38 Shoulder
in „asm Code für EEPROM 93C86“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sch2378.pdf
PD1 74 5-B3 P46 119 P46 PD4 77 PD4 4-C4 5-B1 128 P97 33 34 CON_AVSS 129 73 PD0 23 24 P47 120 78 PD5 130 PG4 35 36 PG5 131 5-B2 P47 PD5 4-C4 5-B2 71 PE7 25 26 PD6 79 PD6 4-C4 5-B1 132 PG6 37 J2 38 P50 133 69 PE6 27 28 PE5 68 P50 133 80 PD7 134 P51 39 40 P52 135 67 PE4 29 30 PE3 5-C3 P51 134 P50 PD7 4-C4
in „Renesas E10A-Emulator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top247.pdf
FUNCTION (M) THERMAL SHUTDOWN VBG CONTROLLED TURN-ON STOP SOFT- GATE DRIVER OV/UV START LINE D DC DC MAX SENSE MAX MAX CLOCK S Q SAW - LEADING EDGE + R BLANKING OSCILLATOR WITH JITTER PWM COMPARATOR LIGHT LOAD FREQUENCY R E REDUCTION SOURCE (S) PI-2631-061200 PI-2641-061200 Figure 2b. Functional Block
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
top247.pdf
FUNCTION (M) THERMAL SHUTDOWN VBG CONTROLLED TURN-ON STOP SOFT- GATE DRIVER OV/UV START LINE D DC DC MAX SENSE MAX MAX CLOCK S Q SAW - LEADING EDGE + R BLANKING OSCILLATOR WITH JITTER PWM COMPARATOR LIGHT LOAD FREQUENCY R E REDUCTION SOURCE (S) PI-2631-061200 PI-2641-061200 Figure 2b. Functional Block
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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LTC4054-4.2.pdf
U PACKAGE DESCRIPTIO S5 Package 5-Lead Plastic TSOT-23 (Reference LTC DWG # 05-08-1635) 0.62 0.95 MAX REF 2.90 BSC (NOTE 4) 1.22 REF 1.50 – 1.75 3.85 MAX 2.62 REF 1.4 MIN 2.80 BSC (NOTE 4) PIN ONE RECOMMENDED SOLDER PAD LAYOUT 0.95 BSC 0.30 – 0.45 TYP PER IPC CALCULATOR 5 PLCS (NOTE 3) 0.80 – 0.90 0.20 BSC 0.01 – 0.10 1.00 MAX DATUM ‘A’ 0.30 – 0.50 REF 0.09 – 0.20 1.90 BSC NOTE: (NOTE 3) S5 TSOT-23 0302 1. DIMENSIONS ARE IN MILLIMETERS 2. DRAWING NOT TO SCALE 3. DIMENSIONS ARE INCLUSIVE OF PLATING 4. DIMENSIONS ARE EXCLUSIVE
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·