-
PDF
AN040_Sqrt.pdf
0000 (0xC0) this squared is less than 0xCF48, start next cycle with a new bit new bit 3 1110 0000 (0xE0) this squared is less than 0xCF48, start next cycle with a new bit new bit 4 1111 0000 (0xF0) this is greater than 0xCF48, shift bit right shifted bit 5 1110 1000 (0xE8) this is greater than 0xCF48, shift bit right shifted bit 6 1110 0100 (0xE4) this squared is less than 0xCF48, start next cycle with a new bit new bit 7 1110 0110 (0xE6) this squared is less than 0xCF48, start next cycle with a new bit new bit 8 1110 0111 (0xE7) this is greater
in „Netzspannung auf LCD mit PIC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN040_Sqrt.pdf
0000 (0xC0) this squared is less than 0xCF48, start next cycle with a new bit new bit 3 1110 0000 (0xE0) this squared is less than 0xCF48, start next cycle with a new bit new bit 4 1111 0000 (0xF0) this is greater than 0xCF48, shift bit right shifted bit 5 1110 1000 (0xE8) this is greater than 0xCF48, shift bit right shifted bit 6 1110 0100 (0xE4) this squared is less than 0xCF48, start next cycle with a new bit new bit 7 1110 0110 (0xE6) this squared is less than 0xCF48, start next cycle with a new bit new bit 8 1110 0111 (0xE7) this is greater
in „Schneller sqrt()-Ersatz ohne FPU“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Peavey_Semiconductors_Cross_Ref_2009.pdf
IN-HOUSE IN-HOUSE REPLACEMENT ORDER NUMBER NUMBER NUMBER NUMBER NOTES TK-11745 TO-92 70411745 4.5V REGULATOR TLO-72 4558, 3678, 5532, 70400072 BI-FET DUAL JG 4560 TLO-74 TLO-84, XR-4741, 70400074 QUAD BI-FET PKG MC-33179 BA-682 70400682 L.E.D. DRIVER UA-741 REPLACES TL-071, 70400741 SINGLE BI-POLAR
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Peavey_Semiconductors_CrossRef_2010.pdf
IN-HOUSE IN-HOUSE REPLACEMENT ORDER NUMBER NUMBER NUMBER NUMBER NOTES TK-11745 TO-92 70411745 4.5V REGULATOR TLO-72 4558, 3678, 5532, 70400072 BI-FET DUAL JG 4560 TLO-74 TLO-84, XR-4741, 70400074 QUAD BI-FET PKG MC-33179 BA-682 70400682 L.E.D. DRIVER UA-741 REPLACES TL-071, 70400741 SINGLE BI-POLAR
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
SC16C550-05.pdf
Product data Rev. 05 Ñ 19 June 2003 43 of 52 Philips Semiconductors SC16C550 UART with 16-byte FIFO and IrDA encoder/decoder 11. Package outline PLCC44: plastic leaded chip carrier; 44 leads SOT187-2 e e D E y X A 39 29 Z bp 28 E 40 b1 w M 44 1 E HE pin 1 index A A e A4 1
in „Probleme beim Senden SC16c550“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
lcd.asm
LCD_E_PORT, LCD_E ;Enable high nop ;wait 4 cycles nop nop nop cbi LCD_E_PORT, LCD_E ;Enable low ret ;Send command to clear display lcd_clear: push iobuf push iotmp rcall lcd_wbf ;wait until LCD in ready ldi
in „Hilfe! LCD-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Lattice_Timing_Closure.pdf
OUT std_logic; do2 : OUT std_logic; do3 : OUT std_logic); END COMPONENT; attribute syn_tpd1 of rcf16x4z : component is "ado,ad1,ad2,ad3 -> do0,do1,do2,do3 = 1.1"; attribute syn_tsu1 of rcf16x4z : component is "ado,ad1,ad2,ad3 -> ck = 0.5"; attribute syn_tsu2 of rcf16x4z : component is "wre -> ck = 0.5"; If you use Verilog: module SPR16X4A (DI0, DI1, DI2, DI3, AD0, AD1, AD2, AD3, WRE, CK,DO0, DO1, DO2, DO3) /* synthesis black_box syn_tpd1="AD0,AD1,AD2,AD3- >DO0,DO1,DO1,DO3 =1.4" syn_tsu1="AD0,AD1,AD2,AD3->CK = 0.5" syn_tsu2="WRE->CK
in „IO constraints für asynchrone Inputs in Lattice Diamond“ · FPGA, VHDL & Co. ·
-
PDF
ANP002c_EN_The_Protection_of_USB_20_Applications.pdf
ESD Conf. Lines float 824 011 SOT23-5L 1 2 / 1 5 V 2,0 pF 12 A 20 kV 13 V No 824 002 74 SC70-6L 2 4 / 1 5 V No 824 015 SOT23-6L 2 4 / 1 5 V 2,0 pF 12 A 20 kV 13 V No 824 001 SOT23-6L 2 4 / 1 5 V 1,0 pF 5 A 15 kV 14 V No 824 014 SOT23-6L 3 4 / 1 5 V 0,5 pF 4 A 16 kV 12 V Yes 824 014 44 MSOP-10L Yes
in „ATMEGA32U4 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ETXDesignGuide120.pdf
Asia Europe North/South America Kontron Asia Kontron Embedded Modules Kontron America 5F-1, 341, Sec 4 Brunnwiesenstr. 16 3178 Laurelview Court Chung Hsiao E. Road 94469 Deggendorf – Germany Fremont, CA 94538-6535 Taipei, Taiwan Tel: +886 2 2751 7192 Tel: +49 (0) 991-37024-0 Tel: +1 (510)-732-6900 Fax
in „Entwicklung eines ETX Basisbords“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CS4272.pdf
0.00748 0.0096 0.012 0.19 0.245 0.30 2,3 D 0.378 BSC 0.382 BSC 0.386 BSC 9.60 BSC 9.70 BSC 9.80 BSC 1 E 0.248 0.2519 0.256 6.30 6.40 6.50 E1 0.169 0.1732 0.177 4.30 4.40 4.50 1 e -- 0.026 BSC -- -- 0.65 BSC -- L 0.020 0.024 0.029 0.50 0.60 0.75 ∝ 0° 4° 8° 0° 4° 8° JEDEC #: MO-153 Controlling Dimension
in „was ist "ATAPI channel mixing" Warum kein Ausgangssignal?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CA3162.pdf
+5V CD4056B OF LCD 2 3 5 7 8 6 x 10kΩ 0.27µF ZERO +5V MSD 0.047 50kΩ 8 14 12 4 µF 3 NSD G4 1 16 LSD 0.047µF 0.047 6 9 5 3 µF 16 2 4 TO NSD CA3162E 22 CD4056B OF LCD “HOLD” 15 21 2 1 3 20 VIN+ 11 2 5 7 8 VIN 1013 7 4 x 100kΩ GAIN +5V 10kΩ G5 16 1 +5V 6 4 TO LSD G7 G9 2 CD4056B OF
-
PDF
2016_AUPS.pdf
and authen- the information and their notification to the subscribers, which are detailed in Section 4; however, the system may tication functionalities, thus generating no noticeable security issues. include also other kinds of policy, beyond the MQTT scope (e.g., regarding the data processing). The
in „Wissenschaftiches Vorgehen/Methoden bei These-Antithese-Synthese“ · Ausbildung, Studium & Beruf ·
-
Datei
mlib-gen-3.diff
avrxmega2) -AM_CONDITIONAL(HAS_avrxmega2, test "x$HAS_avrxmega2" = "xyes") - -CHECK_AVR_DEVICE(atxmega8e5) -AM_CONDITIONAL(HAS_atxmega8e5, test "x$HAS_atxmega8e5" = "xyes") - -CHECK_AVR_DEVICE(atxmega16a4) -AM_CONDITIONAL(HAS_atxmega16a4, test "x$HAS_atxmega16a4" = "xyes") - -CHECK_AVR_DEVICE(atxmega16a4u
in „Fork: avr-libc version 3, für xtiny“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
es51966.pdf
> 4 T t9 520 T t5 (16 ~ 1024) T Note: 1. At START: After time A, ES51966 enter into AZ phase. And at the same time, STATUS is changed from output pin to input pin with a 3uA pull low current provided by
in „Multimeter UT71A - defekte Kapazitätsmessung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
SH1106_V2.3.pdf
Mode Set: (D9H) E A0 R/ W D7 D6 D5 D4 D3 D2 D1 D0 RD WR 0 1 0 1 1 0 1 1 0 0 1 n Dis-charge/Pre-charge Period Data Set: (00H - FFH) A0 E R/ W D7 D6 D5 D4 D3 D2 D1 D0 RD WR 0 1 0 A7 A6 A5 A 4 A3 A2 A1 A 0 Pre-charge Period
-
PDF
SH1106.pdf
Mode Set: (D9H) E A0 R/ W D7 D6 D5 D4 D3 D2 D1 D0 RD WR 0 1 0 1 1 0 1 1 0 0 1 n Dis-charge/Pre-charge Period Data Set: (00H - FFH) A0 E R/ W D7 D6 D5 D4 D3 D2 D1 D0 RD WR 0 1 0 A7 A6 A5 A 4 A3 A2 A1 A 0 Pre-charge Period
in „SH1106 Init-Sequenz“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
74AHC_AHCT1G32.pdf
outline TSSOP5: plastic thin shrink small outline package; 5 leads; body width 1.25 mm SOT353-1 D E A X c y H v M A E Z 5 4 A2 A (A3) A1 1 3 Lp e w M L bp detail X e1 0 1.5 3 mm scale DIMENSIONS (mm are the original dimensions) A (1) (1) (1) UNIT max. A 1 A2 A3 bp c D E e e1 H E L Lp v w y Z 0.1 1.0
in „Pegelwandlung 5V => 3,3V: Überschwinger mit 74LVC1G17“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Viper12a.pdf
specifications, grade definitions and product status are available at: www.st.com. ECOPACK is an ST trademark. 16/21 Doc ID 11977 Rev 2 VIPER12A-E Package mechanical data Table 10. DIP8 mechanical data Databook (mm) Ref. Min. Nom. Max. A 5.33 A1 0.38 A2 2.92 3.30 4.95 b 0.36 0.46 0.56 b2 1.14 1.52 1.78 c 0.20 0.25 0.36 D 9.02 9.27 10.16 E 7.62 7.87 8.26 E1 6.10 6.35 7.11 e 2.54 eA 7.62 eB 10.92 L 2.92 3.30 3.81 Package Weight Gr. 470 Figure 16. Package dimensions Doc ID 11977 Rev 2 17/21 Package mechanical data VIPER12A-E Table 11.
in „Reparatur Netzteil elektrischer Kamin“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
on-semiconductor-rfp70n06-mosfet.pdf
6 8 8 MOSMOD M = 0.99 LSOURCE MOS2 16 21 8 8 MOSMOD M = 0.01 S1A S2A 12 15 RBREAK 13 14 17 18 RBREAK 17 18 RBKMOD 1 8 13 RDRAIN 50 16 RDSMOD 4.66e-3 S1B S2B RVTO RLDRAIN 2 5 10 CA 13 CB 19 RGATE 9 20 1.21 14 IT RLGATE 1 9 31 + + VBAT EGS
in „DC Wandler wiederbeleben“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
001016774-da-01-en-IC_8BIT_SHFT_REG_SN74HC595N_PDIP_16_TID.pdf
16.4 6.5 10.3 2.1 8.0 16.0 Q1 SN74HC595DRG4 SOIC D 16 2500 330.0 16.4 6.5 10.3 2.1 8.0 16.0 Q1 SN74HC595DWR SOIC DW 16 2000 330.0 16.4 10.75 10.7 2.7 12.0 16.0 Q1 SN74HC595DWRG4 SOIC DW 16 2000 330.0 16.4
in „Schieberegister SN54HC595 mit Atmel atmega 88 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
0.4.25_SD_Setup_V2.diff
document.querySelectorAll('input[name^=\"inv\"][name$=\"Addr\"]').forEach(elm =>{elm.addEventListener(\"keyup\", (e) =>{serial = elm.value.substring(0,4);iv = elm.name.substring(3,4);max = 0;for(i=0;i<4;i++) {toggle(\"inv\"+iv+\"ModPwr\"+i, true);toggle(\"inv\"+iv+\"ModName\"+i, true);}toggle(\"lbl\"+iv+\"ModPwr\"
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
version_1p3_assembler.asm
: JNB DIRF,PG31 ;EXIT IF IN RUN MODE MOV DPTR,#E16X ;PROGRAMMING ERROR ERRLK: LJMP ERROR ;PROCESS THE ERROR ; ; PG7: MOV R4,A ;SAVE THE BYTE IN R4 for error detect mov dph,r2 ;load data pointer with eeprom address mov dpl,r0 movx @dptr,a ;write the
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
-
PDF
lm35.pdf
Constant 120 120 ) ) %100 %100 ( ( U U L 80 L 80 T0-46 V V L L A 60 A 60 F F T0-92 F 40 F 40 O O T T E 20 E 20 C C E E P 0 P 0 ±20 ±20 0 2 4 6 8 0 2 4 6 8 TIME (MINUTES) TIME (SEC) C004 C003 Figure 3. Thermal Response In Still Air Figure 4. Thermal Response In Stirred Oil Bath 4.4 160 4.2 TYPICAL 140 4.0 OUT= 2.0 mA A ) (120 (3.8 T E E A3.6 R100 L R O3.4 C 80 V TYPICAL T L3.2 I = 1.0 mA N P OUT C 60 U3.0 S S I 40 2.8 TYPICAL U IOUT= 0 ▯A or 50 ▯A Q 20 2.6 2.4 0 ±75 ±25 25 75 125 175 ±75 ±25 25 75 125
in „Signalkonverter Ladegerät“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
lm35.pdf
Constant 120 120 ) ) %100 %100 ( ( U U L 80 L 80 T0-46 V V L L A 60 A 60 F F T0-92 F 40 F 40 O O T T E 20 E 20 C C E E P 0 P 0 ±20 ±20 0 2 4 6 8 0 2 4 6 8 TIME (MINUTES) TIME (SEC) C004 C003 Figure 3. Thermal Response In Still Air Figure 4. Thermal Response In Stirred Oil Bath 4.4 160 4.2 TYPICAL 140 4.0 OUT= 2.0 mA A ) (120 (3.8 T E E A3.6 R100 L R O3.4 C 80 V TYPICAL T L3.2 I = 1.0 mA N P OUT C 60 U3.0 S S I 40 2.8 TYPICAL U IOUT= 0 ▯A or 50 ▯A Q 20 2.6 2.4 0 ±75 ±25 25 75 125 175 ±75 ±25 25 75 125
in „Linearisierung NTC und Anpasssung“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
sbfa002.pdf
0 0 l , 1 2 F R1 1 A C b 8 d n i F M e R . D 1 r l 1 F 4 k k R 5 a 5 1 P 2 A w R o L e h 0 y 5 e h 2 3 C s e RQ 9 v 5 I A z 7 4 3 µ l P k C 0 P R 3 0 - 1 r h V . A 6 1 E R G I F 10 ) n t c s u p i P u L O g u t A a i i 6 e F d 1 k n . 3 4 4 ,P P 4 A A C R A U f o 5 4 n c a a r d M k i e 4 2 p f 1 1 a t g e 1 i o F m p 0 s a 0 3 e r , A o g C p i 4 1 h v 1 1 t m s : d u b F 7 a i d R . c b t 1 e s e 7 q ra c f - ( p e o t 0 0 o p i , 1 2
in „Rechteck Sinus“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
2xNMOS_IRF7103.pdf
25°C, D= 1mA RDS(ON) Static Drain-to-Source On-Resistance––– 0.11 0.13 VGS = 10V, D = 3.0A S ––– 0.16 0.20 VGS = 4.5V,DI = 1.5A S VGS(th) Gate Threshold Voltage 1.0 ––– 3.0 V VDS = VGS, D = 250µA gfs Forward Transconductance ––– 3.8 ––– S VDS = 15V, D = 3.0A S I Drain-to-Source Leakage Current ––– ––
in „Spannungspeaks / Ripple durch Schaltregler. Abhilfe?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MBM29LV800.pdf
) Marking side A1 A2 A3 A4 A5 A6 B1 B2 B3 B4 B5 B6 C1 C2 C3 C4 C5 C6 D1 D2 D3 D4 D5 D6 E1 E2 E3 E4 E5 E6 F1 F2 F3 F4 F5 F6 G1 G2 G3 G4 G5 G6 H1 H2 H3 H4 H5 H6 BGA-48P-M02 BGA-48P-M12 A1 A 3 A2 A 7 A3 RY/BY A4 WE A5 A 9 A6 A 13 B1 A 4 B2 A 17 B3 N.C. B4 RESET B5 A 8 B6 A 12 C1 A 2 C2 A 6 C3 A 18 C4 N.C. C5 A 10 C6 A 14 D1 A 1 D2 A 5 D3 N.C. D4 N.C. D5 A 11 D6 A 15 E1 A 0 E2 DQ 0 E3 DQ 2 E4 DQ 5 E5 DQ 7 E6 A 16 F1 CE F2 DQ 8 F3 DQ
in „650Stk. Flashbausteine 29LV800 1Mx8 / 512k x16, 3,3V“ · Markt ·
-
PDF
182853-da-01-en-IRLR_8103V.pdf
Drain-to-SourceVoltage Gate-to-SourceVoltage 1000 10000 OPERATION IN THIS AREA LIMITED ) BY R ( DS(on) t e100 1)00 r TJ= 150 C ( C t n e 10us a u D 10 100 e i r r 100us v TJ= 25 C D e , , I 1ms D 1 10 I 10ms C = 25 C J = 150 C V GS = 0 V Single Pulse 0.1 1 0.0 0.4 0.8 1.2 1.6 2.0 2.4 1 10 100 VSD ,Source-to-Drain
in „Drehzahlmesser für Drehbank“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AM335x_Sitara_Prozessor.pdf
Description SIGNAL NAME [1] DESCRIPTION [2] TYPE ZCE BALL [4] ZCZ BALL [4] [3] eCAP1_in_PWM1_out Enhanced Capture 1 input or Auxiliary PWM1 I/O B16, B19, F17 C15, C16, E16 output eCAP/eCAP2 Signals Description TYPE SIGNAL NAME [1] DESCRIPTION [2] [3] ZCE BALL
in „BeagleboneBlack: Sensor über I2C“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2207251030_Mixic-MX1616H_C5119044-1.pdf
Model Encapsulation Operating temperature MX1616H SOP16 -20ÿ ~ 85ÿ Typical application diagram 2V-8.6V 4 13 VDD1 OUTB1 8 VDD2 100uF- C3 1.8V-5V 1 M1 470uF VCC1 0.1uF 5 VCC2 C1 4.7uF 16 OUTA1 C2 INB1 3 INB1 INA1 2 INA1 9 OUTB2 INB2 7 INB2 6 INA2 INA2 C4 M2
in „MX1616H Dual H-Bridge Motor Driver“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Datenblatt_irgbc20f.pdf
) CE Fig. 2- Typical Output Characteristics Fig. 3- Typical Transfer Characteristics C-53 IRGBC20F 16 4.0 V GE = 15V ) VGE = 15V ) ( 80µs PULSE WIDTH I = 18A ( e C t g 3.5 e t r 12 o u V C r 3.0 o t c i e E o 8 - 2.5 I = 9.0A C - C C o D c e 2.0 u l I = 4.5A m 4 C C x , a E1.5 M C V 0 1.0 25 50 75 100
in „LTspice XVII: IGBT einfügen“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
version_1p3_assembler.asm
DOING IT ; ACALL PG9 ;RESET PROG ; SJMP PG3 ;FINISH THE LOOP ; ;PG5: INC R5 ;BUMP THE COUNTER ; MOV A,R4 ;GET THE BYTE ; CJNE R5,#25,PG2 ;SEE IF TRIED 25 TIMES ; ;PG6: SETB PROMV ;TURN OFF PROM VOLTAGE ; MOV PSW,#0 ;INSURE RB0 ; JNB DIRF,PG31 ;EXIT IF IN RUN MODE ; MOV DPTR,#E16X ;PROGRAMMING ERROR ; ;ERRLK
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tca9548a.pdf
DPU6 l C 6 l SD2 8 T 17 SD6 n V DPU2 h SC2 9 16 SC5 o C l a SD3 10 15 SD5 V DPU5 e S C T SC3 11 14 SC4 a n 5 3 GND 12 13 SD4 e a V DPU3 T h GND o e V DPU4 a l e S h T n e 4 Figure 20. Layout Schematic 26 Submit Documentation Feedback Copyright © 2012
in „Sensor Array ansprechen mit I2C - Unterschiede zu Mega2560 und Seeed RP2040“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
pm2534ocr.pdf
eee ee eee eee h e 3-15 3.4 DERLEAL SGGETOR: c c c a s u w e w e w e s s e n ceeeemeeeee cece BELG 3.4.1 Software deScription ciccescoccseeceseseecsevecesns 3715 3.4.2 RAM/ROM e e ee ee 3-16 3 . 4 . 3 I C b u s e e e e
in „Pjilips PM2519“ · Markt ·
-
PDF
tca9548a.pdf
DPU6 l C 6 l SD2 8 T 17 SD6 n V DPU2 h SC2 9 16 SC5 o C l a SD3 10 15 SD5 V DPU5 e S C T SC3 11 14 SC4 a n 5 3 GND 12 13 SD4 e a V DPU3 T h GND o e V DPU4 a l e S h T n e 4 Figure 20. Layout Schematic 26 Submit Documentation Feedback Copyright © 2012
in „Unterschied TCA9548A und PCA9548A“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
APPCHP7.pdf
.................................339.......... 4.1.4 TV and Monitor Damper Diodes ................................................345............. TV Deflection Circuit Examples 349 4.2.1 Application Information for the 16 kHz Black Line Picture Tubes
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
APPCHP7.pdf
.................................339.......... 4.1.4 TV and Monitor Damper Diodes ................................................345............. TV Deflection Circuit Examples 349 4.2.1 Application Information for the 16 kHz Black Line Picture Tubes
in „Lineares Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ICL7660.pdf
( oC) OSC. FREQUENCY f OSC (Hz) FIGURE3. OUTPUT SOURCERESISTANCEAS A FUNCTION FIGURE 4. POWER CONVERSION EFFICIENCY AS A OF TEMPERATURE FUNCTION OF OSC. FREQUENCY 10K ) 20 z z ( k 18 C ( S S fO f 16 Y 1K Y N C E E 14 Q U E E F R 12 R F O 100 O 10 A T L L I I 8 S V+ = 5V C O T = 25 C O
in „Ladungspumpe“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Ca3162.pdf
RANGE ( C) PACKAGE NO. Reading More Negative than -99mV When Used CA3162E 0 to 70 16 Ld PDIP E16.3 With CA3161E Pinout CA3162 (PDIP) TOP VIEW 1 3 BCD 2 1 16 2 BCD OUTPUTS 0 2 OUTPUTS 2 2 15 2 NSD 3 14 V+ DIGIT SELECT MSD 4 13 GAIN ADJ OUTPUTS INTEGRATING LSD 5 12 CAP HOLD/
-
Datei
IS52Basic.a51
DOING IT ; ACALL PG9 ;RESET PROG ; SJMP PG3 ;FINISH THE LOOP ; ;PG5: INC R5 ;BUMP THE COUNTER ; MOV A,R4 ;GET THE BYTE ; CJNE R5,#25,PG2 ;SEE IF TRIED 25 TIMES ; ;PG6: SETB PROMV ;TURN OFF PROM VOLTAGE ; MOV PSW,#0 ;INSURE RB0 ; JNB DIRF,PG31 ;EXIT IF IN RUN MODE ; MOV DPTR,#E16X ;PROGRAMMING ERROR ; ;ERRLK
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
-
Datei
IS52Basic.a51
DOING IT ; ACALL PG9 ;RESET PROG ; SJMP PG3 ;FINISH THE LOOP ; ;PG5: INC R5 ;BUMP THE COUNTER ; MOV A,R4 ;GET THE BYTE ; CJNE R5,#25,PG2 ;SEE IF TRIED 25 TIMES ; ;PG6: SETB PROMV ;TURN OFF PROM VOLTAGE ; MOV PSW,#0 ;INSURE RB0 ; JNB DIRF,PG31 ;EXIT IF IN RUN MODE ; MOV DPTR,#E16X ;PROGRAMMING ERROR ; ;ERRLK
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
-
Datei
IS52Basic.a51
DOING IT ; ACALL PG9 ;RESET PROG ; SJMP PG3 ;FINISH THE LOOP ; ;PG5: INC R5 ;BUMP THE COUNTER ; MOV A,R4 ;GET THE BYTE ; CJNE R5,#25,PG2 ;SEE IF TRIED 25 TIMES ; ;PG6: SETB PROMV ;TURN OFF PROM VOLTAGE ; MOV PSW,#0 ;INSURE RB0 ; JNB DIRF,PG31 ;EXIT IF IN RUN MODE ; MOV DPTR,#E16X ;PROGRAMMING ERROR ; ;ERRLK
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ICL7660.pdf
FIGURE3. OUTPUT SOURCERESISTANCE AS A FUNCTION FIGURE 4. POWER CONVERSION EFFICIENCY AS A OF TEMPERATURE FUNCTION OF OSC. FREQUENCY 10K 20 ) ) z H ( ( 18 S C fO O Y f 16 C 1K C E N 14 U U Q Q R E 12 F F R 100 R T T 10 L A I L 8 C C O V+ = 5V S V+ = +5V TA
in „+5V zu -5V wie?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
7660CPA.pdf
FIGURE3. OUTPUT SOURCERESISTANCE AS A FUNCTION FIGURE 4. POWER CONVERSION EFFICIENCY AS A OF TEMPERATURE FUNCTION OF OSC. FREQUENCY 10K 20 ) ) z H ( ( 18 S C fO O Y f 16 C 1K C E N 14 U U Q Q R E 12 F F R 100 R T T 10 L A I L 8 C C O V+ = 5V S V+ = +5V TA
in „OPV mit +4,5/-4,5V von einer 9V Batterie betreiben“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ICL7660.pdf
FIGURE3. OUTPUT SOURCERESISTANCE AS A FUNCTION FIGURE 4. POWER CONVERSION EFFICIENCY AS A OF TEMPERATURE FUNCTION OF OSC. FREQUENCY 10K 20 ) ) z H ( ( 18 S C fO O Y f 16 C 1K C E N 14 U U Q Q R E 12 F F R 100 R T T 10 L A I L 8 C C O V+ = 5V S V+ = +5V TA
in „Spannungsabfall durch drei Tl074 :-S“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
DC-DC.pdf
E-I CORE E-E CORE POT CORE FIGURE 44. FLUX PATHS IN E-I, E-E AND POT CORES The air gap can emit flux noise because there is a high flux density in the vicinity of the gap, as the flux passing through the
in „Step UpDown“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
564746-da-01-en-MOSFET_N_KA_800V_STP4N80K5_TO_220AB_STM.pdf
Table 9. TO-220FP mechanical data mm Dim. Min. Typ. Max. A 4.4 4.6 B 2.5 2.7 D 2.5 2.75 E 0.45 0.7 F 0.75 1 F1 1.15 1.70 F2 1.15 1.70 G 4.95 5.2 G1 2.4 2.7 H 10 10.4 L2 16 L3 28.6 30.6 L4 9.8 10.6 L5 2.9 3.6 L6 15.9 16.4 L7 9 9.3 Dia 3 3.2 DocID025105 Rev 3 15
in „Anodenspannungsstabilisierung für Röhrenverstärker mit IRF840 als Längsregler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AN_MMCA050419.pdf
DATA4 0 00000000 [CRC16] 1 No data pattern sent DATA5 0 00000000 [CRC16] 1 No data pattern sent DATA6 0 00000000 [CRC16] 1 No data pattern sent DATA7 0 00000000 [CRC16] 1 No data pattern sent Table 2 Data
in „MMC SD library FAT16 FAT32 read write“ · Projekte & Code ·
-
Datei
compile_Tasmota_stable_in_docker_container_versuch3.txt
Compiling .pio/build/tasmota/lib0f3/ESP8266SdFat/FatLib/istream.cpp.o Archiving .pio/build/tasmota/lib4e3/libESP8266HTTPClient.a Indexing .pio/build/tasmota/lib4e3/libESP8266HTTPClient.a Archiving .pio/build/tasmota/lib5b0/libLittleFS.a Indexing .pio/build/tasmota/lib5b0/libLittleFS.a Compiling .pio/build
in „Dlock 11827 und Tasmota - compilieren für FW-Update“ · Haus & Smart Home ·
-
Datei
Flowcod_Umsetzung.c.c
0x08); //Berechnung //Berechnung: // A = E4 FCV_A = FCV_E4; break; } case 9: { //Aufruf Komponenten-Makro //Aufruf Komponenten-Makro: ana1=LeseAlsByte() FCV_ANA1 = FCD_ADC0_ReadAsByte(); //Berechnung //Berechnung: // A = ana1 / 16 FCV_A = FCV_ANA1
in „Ttiny 461a isp schaltung“ · Mikrocontroller und Digitale Elektronik ·