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grundig_chassis_t5_19_22vle2000t_22-2010t_22-2940t_22-2942t_19hd_br_wp_cba_16-2941tc_19-2940t.pdf
[ [ [ [ [ K _ [ [ [ [ [ [ _ _ D _ C E [ [ [ [ [ [ [ [ _ S _ S [ [ [ [ [ [ [ [ [ [ [ B C A D D D D Q Q D Q S Q Q Q M M Q D Q Q D D D D A A D A A D A B B _ W D A A A A A A A _ V _ _ A _ _ A _ B B _ W A _ _ _ _ _ A A _ C B V D D D D Q Q D Q Q Q Q Q Q Q Q D Q Q D D D D B HDMI-CECR407 NC E3 A A A A A A
in „Grundig Fernseher defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Panasonic_JD_700_800_Series_Service_Manual_1_.pdf
1/4W R8 ERC25TJ472 Solid 4.7kQ 1/4W R9 ERC25TJ472 Solid 4.7kQ 1/4W RIO ERC25TJ472 Solid 4.7kQ 1/4W RII ERC25TJ472 Solid 4.7kQ 1/4W I Rl2 ERC25TJ221 Solid 220Q 1/4W Rl3 ERC25TJ221 Solid 220Q 1/4W R14 ERC25TJ331
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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2128wichtig.pdf
Advanced 0.35 Micron ( A0 C7 ( E2CMOS Technology o A1 C6 SP t t • HIGH DENSITY PROGRAMMABLE LOGIC t A2 D Q N C5 t — 6000 PLD Gates u u — 128 I/O Pins, Eight Dedicated Inputs O A3 D Q G C4 O — 128 Registers P A4 Logic IGLB C3 P — High Speed Global Interconnect l Array D SQ l — Wide Input Gating for Fast Counters
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ttester.pdf
PeakTech Transistor- Type Kapazität LCR 2170 M2650-B 3315 Tester Papier 4700pF 6.75-10.36nF 8.00nF 25.40nF 10.71nF Q=2.5-32 Vloss=11 % Papier 6800pF 9.40-11.40nF 10.41nF 23.30nF 11.65nF Q=5-25 Vloss=5.0 % unbekannt 4700pF 5.85-6.33nF 6.12nF 6.90nF 6225pF Q=16-87 Vloss=1.7 % Folie 7870pF 7.86-7.87nF 7.95nF
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TD024THEB2.pdf
100K 1 FMGPIO3 CARD_DAT1 8 DAT0 D 2 CARD_DAT0 7 DAT0 100K R94 DAT1 D N P A CARD_DAT1 8 DAT1 D D R55 Q4 +C57 C58 1.8_EN 4.7K D7 C G W P D N P A GPIO6 9014 100U C59 C60 1 2 R28 1 2 C G W P 10K 224 104 104 R18 47K 1N4148 0 2 AMP R57 R38 1 1 1 1 1 1 10K VCC 100K CARD_DET 100K D8 DCIN 2 1N4148 GPIO18 CARD_DET
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Datei
History.txt
------------------------------------------------------------------ VSCC Table: AT26DF321: 0x1F4700 W25Q64BV: 0xEF4017 SST25VF064: 0xBF254B MX25L6405: 0xC22017 W25Q64FW: 0XEF6017 W25Q64FV: 0XEF4017 MX25U6435F: 0XC22537 ----------------------------------------------------------------------------- SPI
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CAN.txt
GOSUB C_WR GOTO EMFANGEN END #INITIALE REG=&H00 : D=&H01 : GOSUB C_WR REG=&H00 : D=&H01 : GOSUB C_WR #W_R REG=&H00 : GOSUB C_RD : Q=D AND 1 : IF Q<>1 THEN GOTO W_R PRINT "RESET OK" 'Übertragung auf 500 REG=&H1F : D=&H43 : GOSUB C_WR REG=&H04 : D=&H00 : GOSUB C_WR REG=&H05 : D=&HFF : GOSUB C_WR REG=&H06
in „CAN-BUS“ · Projekte & Code ·
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Datei
CAN.txt
GOSUB C_WR GOTO EMFANGEN END #INITIALE REG=&H00 : D=&H01 : GOSUB C_WR REG=&H00 : D=&H01 : GOSUB C_WR #W_R REG=&H00 : GOSUB C_RD : Q=D AND 1 : IF Q<>1 THEN GOTO W_R PRINT "RESET OK" 'Übertragung auf 500 REG=&H1F : D=&H43 : GOSUB C_WR REG=&H04 : D=&H00 : GOSUB C_WR REG=&H05 : D=&HFF : GOSUB C_WR REG=&H06
in „CAN-BUS“ · Haus & Smart Home ·
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W25Q64FV.PDF
300mil 64M-bit W25Q64FVSFIQ 25Q64FVFIQ W25Q64FVSFIF 25Q64FVFIF W25Q64FVDAIG 25Q64FVAIG DA 64M-bit W25Q64FVDAIQ 25Q64FVAIQ PDIP-8 300mil W25Q64FVDAIF 25Q64FVAIF (1) W25Q64FVZPIG 25Q64FVIG ZP 64M-bit W25Q64FVZPIQ 25Q64FVIQ WSON-8 6x5mm W25Q64FVZPIF 25Q64FVIF (1) ZE 64M-bit W25Q64FVZEIG 25Q64FVIG WSON-8 8x6mm W25Q64FVZEIF 25Q64FVIF TB TFBGA-24 8x6mm 64M-bit W25Q64FVTBIG 25Q64FVBIG (5x5 Ball Array) W25Q64FVTBIF 25Q64FVBIF TC TFBGA-24 8x6mm
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Display__W128128-XALG-1275535_.pdf
drawing SIZE Acceptable Q spots, Φ=( x + y ) / 2 TY white Φ≦0.10 Accept no spots, dense 2.5 contaminati 0.10<Φ≦0.20 2 on 0.20<Φ≦0.25 1 (non-displa 0.25<Φ 0 y) 3.2 Line type : (As following drawing) Length Width Acceptable Q TY --- W≦0.02 Accept no dense L≦3.0 0.02<W≦0.03 2.5 L≦2.5 0.03<W≦0.05 2 --- 0.05<W As round type 04 Polarizer bubbles If bubbles are visible, judgSize Φ Acceptable Q TY using black spot Accept no dense specifications
in „Display EA W128128-XALG Strombedarf“ · Mikrocontroller und Digitale Elektronik ·
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Datei
keylcd.asm
0 und 36523 movlw 0x04 subwf q0,W btfss STATUS,Z goto kann_nicht_4_sein ; Divisionsergebnis = 4 --> auf 3 reduzieren decf q0,f call Add32 ; f0 + xw0 .. u.s.w. Rest + 36524 kann_nicht_4_sein: movfw f0 ; d = f setzen! (f liegt zwischen
in „Noritake VFD GU140x32F7806 4-Bit Mode, Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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LT1019.pdf
Warm-up drift = [(15V)(0.6mA) + (5V)(5mA)] P (line change) = ( IN)(LOAD) = (1V)(5mA) = 5mA [(150°C/W)(25ppm/°C)] V OUT = (0.5ppm/mW)(5mW) = 2.5ppm = 127.5ppm P (load change)= ( ILOAD )(VIN V OUT) Notethat74%ofthewarm-updriftisduetoloadcurrent = (2mA)(5V) = 10mW times input/output differential. This
in „Referenz Chip LT1019 / Heizung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tlc5916.pdf
determines that the ratio I OUT,target ref 15 or 5. After power on, the default value of VG is 127/128 = 0.992, and the default value of CM is 1, so that the ratio I OUT,target ref15. Based on the default VG and CM: V R-EXT= 1.26 V × 127/128 = 1.25 V I = (1.25 V/R ) × 15 OUT,target ext Therefore, the
in „Current Sink in Current Source transformieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TLC5916.pdf
UNIT D package 1.5 Mounted on JEDEC 4-layer board (JESD 51-7), PD Power dissipation No airflow,AT = 25°CJ T = 125°C N package 1 W PW package 0.9 D package 103 Mounted on JEDEC 1-layer board (JESD 51-3), No airflow N package 148 PW package 176 θJA Thermal impedance, °C/W junction to free air D package
in „Gesucht: LED-Treiber 8 LED (100mA-200ma)“ · Mikrocontroller und Digitale Elektronik ·
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qsc_gx5_sh_ts_sch.pdf
PCNT 60.3v 2SA1837 1 PCNT 2N5064 100 1 PCNT 1 PCNT 2SA1837 1/2W 1 1/8W C25 1 Q2 1/10W 1/10W 2 1/2W 1 PCNT 1/10W 1/10W Q67 1 R183 0.22UF R51 MMST3906 3 13.85v 60v D10 C74 1/8W 3 D29 2 F4 100 10 P50V 10M P1 13.2v 3 2 1 PCNT C10 1 PCNT 2 1 Q11 BAS21 F3 22UF 1 Q40 BAS21
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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qsc_gx5_sh_ts_sch.pdf
PCNT 60.3v 2SA1837 1 PCNT 2N5064 100 1 PCNT 1 PCNT 2SA1837 1/2W 1 1/8W C25 1 Q2 1/10W 1/10W 2 1/2W 1 PCNT 1/10W 1/10W Q67 1 R183 0.22UF R51 MMST3906 3 13.85v 60v D10 C74 1/8W 3 D29 2 F4 100 10 P50V 10M P1 13.2v 3 2 1 PCNT C10 1 PCNT 2 1 Q11 BAS21 F3 22UF 1 Q40 BAS21
in „QSC GX5 negative Spannung am Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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kap0-1.pdf
Kolnsberg aus Krefeld Referent: Prof. Bedrich J. Hosticka, Ph.D. Korreferent: Prof. Dr. rer. nat. W. Mokwa Tag der mündlichen Prüfung: Mittwoch, 25. April 2001 Vorwort Die vorliegende Arbeit entstand im Rahmen meiner Tätigkeit am Fraunhofer-Institut für Mikroelektronische Schaltungen und Systeme in
in „Kontaktlos Akkus laden“ · Offtopic ·
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siemens-m20-handbuch.pdf
wiederaufgenommen wird: 12▯&$55,(5 Andernfalls: TA kehrtausdemBefehlsmodusindenDatenmoduszurück:&211(&7▯▯WH[W! +LQZHLV▯▯WH[W! nur bei Parametereinstellung X>0 Parameter ▯Q! 0 Umschalten vom Befehlsmodus und den Datenmodus Referenz Hinweis V.25ter $74 0RGXV▯I U▯GLH▯’DUVWHOOXQJ▯YRQ▯(UJHEQLVFRGHV▯HLQVWHOOHQ Schreibbefehl
in „[V] Weiterer M8, GPS, GSM Siemens M20, ATmega128“ · Markt ·
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D550_CAN_BUS_Interface.pdf
hexadecimal value. This parameter must be written: Group Menu Parameter Parameter name Unit Type Bytes R/W Range Setpoints 004 001 Voltage setpoint V FLOAT32 4 R/W From 0 to 100000 Table 14 - Parameter list line extract Document type : Q1 T xxx – Révision A du 07/12/2020Réf. NT180220 01 RDE FJ A 15/31 Electric
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ST_M25P64_data.pdf
W M25P64 HOLD HOLD 1 16 C V 2 15 D CC V DU 3 14 DU SS AI07485 DU 4 13 DU DU 5 12 DU DU 6 11 DU S 7 10 V SS Table 1. Signal Names Q 8 9 W AI07486b C Serial Clock D Serial Data Input Note: 1. DU = Don’t
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Allvision_0_91_inch_OLED_128x32_SSD1306.pdf
5 g i 2 . " e C 0 . 0.159 l l 3 . S ( 0 0.175 o F x E n 2 28 h G 1: e E e P0.175x32-0.016=5.584 t W m n T u n 2 o 3 l w N 0 s 2 x r O 1 i - P D H 2 v Q l A t y a T B D 3 ii m 0 1 p m e ± ± (2.4) 9± 0.2 e s n i r n r n P0.62x(14-1)=8.06± 0.05 t t t u o s l . W=0.32± 0.03 a 0.1± 0.03 O n R T e gn 0 30
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Allvision_0_91_inch_OLED_128x32_SSD1306.pdf
5 g i 2 . " e C 0 . 0.159 l l 3 . S ( 0 0.175 o F x E n 2 28 h G 1: e E e P0.175x32-0.016=5.584 t W m n T u n 2 o 3 l w N 0 s 2 x r O 1 i - P D H 2 v Q l A t y a T B D 3 ii m 0 1 p m e ± ± (2.4) 9± 0.2 e s n i r n r n P0.62x(14-1)=8.06± 0.05 t t t u o s l . W=0.32± 0.03 a 0.1± 0.03 O n R T e gn 0 30
in „Arduino Bibliothek - Methoden bzw. Funktionen en Detail erklärt - gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Sp3A-DSP-1800A-Starter-Schematic-Rev1.pdf
4 1 C1 IO_L63n_1_A23 LED5 OUT E/D IO_L64p_1_A24 H20 close as possible to IO_L64n_1_A25 G21 LED6 the FPGA 2 n/c GND 3 0.1uF Y26 OSC_HC53x_25.175mhZ IP_L16n_1 H25 IP_L44n_1 W25 IP_L16p_1 U25 IP_L24p_1 A IP_L65n_1 B25 A IP_L20p_1 W26 IP_L48p_1 H23 IP_L52p_1 G26 XC3SD1800AFG676_1 Avnet, Inc
in „Schematics von Spartan 3A-DSP 1800 Board“ · FPGA, VHDL & Co. ·
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PIC12F508_Datasheet.pdf
\<0W7\WD LD 20YK6,K)KSW,N0;QW7WSN\7K&NKSD ±D 3K8\,&KH,&030W,<0:E0<H0,HN0K,S'(<\08H'<0)'W&Q0H70O7HN7(&KH,&D0RH'<0)'W&Q0H70O7HN7(&KH,&0&QW''0,HN0\%S\\<0FDEP0880O\70&K<\D VD 3K8\,&KH,K,60W,<0NH'\7W,SK,60O\70GYR
in „Funktion Reifendruckanlerngerät EL-50448; OEC-T5; Welches Bauelement ist das?“ · Fahrzeugelektronik ·
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PDF
PIC12F508.pdf
\<0W7\WD LD 20YK6,K)KSW,N0;QW7WSN\7K&NKSD ±D 3K8\,&KH,&030W,<0:E0<H0,HN0K,S'(<\08H'<0)'W&Q0H70O7HN7(&KH,&D0RH'<0)'W&Q0H70O7HN7(&KH,&0&QW''0,HN0\%S\\<0FDEP0880O\70&K<\D VD 3K8\,&KH,K,60W,<0NH'\7W,SK,60O\70GYR
in „Funktion Reifendruckanlerngerät EL-50448; OEC-T5; Welches Bauelement ist das?“ · Fahrzeugelektronik ·
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DE200610__1_.pdf
A Q X M I G O S W 100 - 220 - 470 gestaffelt. M O L J C D B W X T V S I H P Y F N G E R Q U K A Was ist zu tun, damit die In dieser Rubrik veröffentlichen wir G V R B N Q M E S A X J K L F U W H O I D T
in „ekg schaltung aus heft 10/2006“ · Analoge Elektronik und Schaltungstechnik ·
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PL560-XX.pdf
IDD Fout = 622.08, LVDS 55* 60* mA Operating Voltage V 2.97 3.63 V DD Output Clock Duty Cycle @ 1.25V (LVDS) 45 50 55 % Short Circuit Current mA ±50 Output Differential Voltage VOD 247 355 454 mV VDD Magnitude Change ▯VOD -50 50 mV Output High Voltage VOH 1.4 1.6 V RL = 100 W (see figure) Output Low Voltage VOL 0.9 1.1 V Offset Voltage VOS 1.125 1.2 1.375 V Offset Magnitude Change ▯VOS 0 3 25 mV VoutV oDDGND Power-off Leakage OXD VDD = 0V ±1 ±10 µA Output Short Circuit Current OSD -5.7 -8 mA Differential Clock Rise Time tr RL= 100 W CL = 0.2 0.5 0.7 ns 10 pF (see Differential Clock Fall Time
in „Suche Analog Frequency Multiplier IC“ · Mikrocontroller und Digitale Elektronik ·
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MSP-EXP430G2_LaunchPad_de.pdf
4 X str GND 5 u P1.2 6 P m SL127L6TH en 17 43 ts 19 0 In 20 21 SCL G co 22 SDA SLA rp 23 2 U318 or 25 U2: SN75240PW von SBW-Verbindungen entfernt E at 26 D- ed 27 m Juli 28 MSP-EXP430G2 EMULATOR 1/2 2010 30 ul 31 at - 32 Über or arbei Sc he (1 tet 1.4 vo April m 2013 n ati Feed w 2), back w sc R zur
in „gutes Übersetzungsprogramm für Datenblätter gesucht“ · Offtopic ·
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edip128-6e.pdf
Issue 04.2022 EA eDIP128-6 Intelligent HMI 128x64 , RS-232, SPI, I2C Dimension: 71.4x54.4x13.6mm EAeDIP128B-6LWTP EAeDIP128W-6LWTP TECHNICAL DATA * LCD-GRAPHICDISPLAYWITHARANGEOFGRAPHICFUNCTIONS * 3DIFFERENTINTERFACESONBOARD
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PG12864LRS-DNN-H.pdf
Module with LED Backlight Maximum Ratings Item Symbol Conditions Min. Max. Unit Forward Current IF Ta =25¢J - 250 mA Reverse Voltage VR Ta =25¢J - 8 V Power Dissipation PO Ta =25¢J - 1.1 W Operating Temperature T OP - -20 70 ¢J Storage Temperature T ST - -40 80 ¢J Solder Temp. for 3 Second - - - 260 ¢J Electrical
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EPSON_GLCD.pdf
20 I/O8 A0 13 59 A7 18 h 5 6 5-- 7 8 19 I/O7 I/O1 14 1 A6 OSC1 1 6 3 4 6-- 5 6 18 I/O6 I/O2 15 2 A5 Q 1 1 2 7-19,5V 3 4 17 I/O5 I/O3 16 3 A4 17 8-SCL 1 2 I/O4 GND 4 A3 OSC2 9-SCL 5 A2 R D E 0 1 2 3 E L I L 10-YD +5V 6 A1 W R C D D D D C S P F D D S C3 C4 11-D0 LP62124D 128KX8 A0 U U U X X X X X X L W
in „G-LCD bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PIC12F1822.pdf
RMCLR) The PCON register bits are shown in Register 7-2. REGISTER 7-2: PCON: POWER CONTROL REGISTER R/W/HS-0/q R/W/HS-0/q U-0 U-0 R/W/HC-1/q R/W/HC-1/q R/W/HC-q/u R/W/HC-q/u STKOVF STKUNF — — RMCLR RI POR BOR bit 7 bit 0 Legend: HC = Bit is cleared by hardware HS = Bit is set by hardware R = Readable bit
in „PIC12F1822-PWM Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_PIC12F1822.pdf
RMCLR) The PCON register bits are shown in Register 7-2. REGISTER 7-2: PCON: POWER CONTROL REGISTER R/W/HS-0/q R/W/HS-0/q U-0 U-0 R/W/HC-1/q R/W/HC-1/q R/W/HC-q/u R/W/HC-q/u STKOVF STKUNF — — RMCLR RI POR BOR bit 7 bit 0 Legend: HC = Bit is cleared by hardware HS = Bit is set by hardware R = Readable bit
in „Interrupt-PIC12F1822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
RMCLR) The PCON register bits are shown in Register 7-2. REGISTER 7-2: PCON: POWER CONTROL REGISTER R/W/HS-0/q R/W/HS-0/q U-0 U-0 R/W/HC-1/q R/W/HC-1/q R/W/HC-q/u R/W/HC-q/u STKOVF STKUNF — — RMCLR RI POR BOR bit 7 bit 0 Legend: HC = Bit is cleared by hardware HS = Bit is set by hardware R = Readable bit
in „Auflösung PWM-Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
RMCLR) The PCON register bits are shown in Register 7-2. REGISTER 7-2: PCON: POWER CONTROL REGISTER R/W/HS-0/q R/W/HS-0/q U-0 U-0 R/W/HC-1/q R/W/HC-1/q R/W/HC-q/u R/W/HC-q/u STKOVF STKUNF — — RMCLR RI POR BOR bit 7 bit 0 Legend: HC = Bit is cleared by hardware HS = Bit is set by hardware R = Readable bit
in „8Bits und 2Bits in eine Integer-Variable“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12F1822_1823.pdf
RMCLR) The PCON register bits are shown in Register 7-2. REGISTER 7-2: PCON: POWER CONTROL REGISTER R/W/HS-0/q R/W/HS-0/q U-0 U-0 R/W/HC-1/q R/W/HC-1/q R/W/HC-q/u R/W/HC-q/u STKOVF STKUNF — — RMCLR RI POR BOR bit 7 bit 0 Legend: HC = Bit is cleared by hardware HS = Bit is set by hardware R = Readable bit
in „Timer2 auf 10bit einstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC12FLF1822PIC16FLF1823.pdf
RMCLR) The PCON register bits are shown in Register 7-2. REGISTER 7-2: PCON: POWER CONTROL REGISTER R/W/HS-0/q R/W/HS-0/q U-0 U-0 R/W/HC-1/q R/W/HC-1/q R/W/HC-q/u R/W/HC-q/u STKOVF STKUNF — — RMCLR RI POR BOR bit 7 bit 0 Legend: HC = Bit is cleared by hardware HS = Bit is set by hardware R = Readable bit
in „PIC16lf1823 General purpose I/Os mit Schmitt Trigger ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RXV667.pdf
Q1042 C6 VIDEO (1) (CB344) Q1043 G6 OPERATION (2) Q1044 F6 2 2 (CB455) W112A Q1045 F6 + - W112C RE W110 E E Q1046 E6 DASE CB BE VIDEO (1) Q1047 D6 MAIN (1) DASBL 8 (CB340) (CB157) DASBR B Q1048 C6 +12V
in „Yamaha RX-V667 Reparatur und Bezugsquellen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Vishay-TFPT.pdf
|R 25 |25 High temperature exposure (storage) AEC-Q200, 1000 h at 150 °C 0.25 % Temperature cycling AEC-Q200, 1000 cycles -55 °C / +125 °C 0.25 % 1000 h, 1 mA biased at 85 °C / 85 % RH 0.25 % Biased humidity
in „SMD Temperaturfühler an Wetterstation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Sony_SA-WD100.pdf
104-666-11 ELECT 220uF 20.00% 25V R203 1-249-417-11 CARBON 1K 5% 1/4W F C202 1-104-666-11 ELECT 220uF 20.00% 25V R204 1-247-895-00 CARBON 470K 5% 1/4W C203 1-126-964-11 ELECT 10uF 20.00% 50V R205 1-249-441-11 CARBON 100K 5% 1/4W C204 1-126-964-11 ELECT 10uF 20.00% 50V R206 1-249-417-11 CARBON 1K 5% 1/4W F C205 1-126-964-11 ELECT 10uF 20.00% 50V R207 1-249-430-11 CARBON 12K 5% 1/4W C206 1-126-964-11 ELECT 10uF 20.00% 50V R208 1-249-417-11 CARBON 1K 5% 1/4W F C207 1-128-551-11 ELECT 22uF 20.00% 25V R208
in „Trafo defekt Sony SA-WD100 aktiver Subwoofer“ · Analoge Elektronik und Schaltungstechnik ·
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pic16f88.pdf
1 : 1 001 1 : 4 1 : 2 010 1 : 8 1 : 4 011 1 : 16 1 : 8 100 1 : 32 1 : 16 101 1 : 64 1 : 32 110 1 : 128 1 : 64 111 1 : 256 1 : 128 Legend: R = Readable bit W = Writable bit U = Unimplemented bit, read as ‘0’ -n = Value at POR ‘1’ = Bit is set ‘0’ = Bit is cleared x = Bit is unknown DS30487C-page 18
in „auftrennen einer 2stelligen Dezimalzahl in asm (pic 16f88)“ · Mikrocontroller und Digitale Elektronik ·
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Datasheet_DRV8711.pdf
DRV8711 SLVSC40H –JUNE 2013–REVISED MAY 2020 www.ti.com 6.8 Typical Characteristics 17.5 240 –40 C 25°C 17.0 200 85°C 160 A16.5 A m ( ( Q120 V M I 16.0 IV 80 15.5 –40 C 25°C 40 85°C 15.0 0 8 12 16 20 24 28 32 36 40 44 48 52 8 12 16 20 24 28 32 36 40 44 48 52 VVM (V) C005 VVM (V) C006 Figure 3. Operating
in „DRV8711 Steppermotortreiber - Hohe Geschwindigkeiten“ · Analoge Elektronik und Schaltungstechnik ·
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29504_204_0300.pdf
ALMOD. SAT. C R40001 A T T A V R V A R H A G A E C R _ _ C C S S S S D U 28 A A CR40208 ALMOD. SAT. +Q +Q/1 D X X D D V A D V A D A D T N V D D I I I I I I A A SC2_OUT_L SEITE/ PAGE3-91 ENTF. BEI 20 DELETED W STL18 8,2 CR40002 21 51 52 22 17 23 45 24 29 35 25 36 26 50 1 43 4 3 7 8 9 10 11 12 13 2 220
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teXet_TF-127_Service_manual.pdf
) NAND Flash ▯ , ▯ V + W G W W Q ▯ ▯ P ▯ D P 5 & 2 W % W Q K UD ▯ JP ▯ 3R & L . ' X S ▯ L H L - 6 ' / $ W G V $ U R G & ▯ H Q F G X ▯ $ R W R & G & W G I WDQ I & 'P H W K ▯P J ▯ R& ▯ QW J 5S V , ▯ L 0 W : ' X H Q W O W U O 6
in „Photo-Rahmen als Farbdisplay“ · Mikrocontroller und Digitale Elektronik ·
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tFXKSKyORc24h2V2.pdf
USB CONTROL IC ASS'Y 704-MC7K-B194 1 30 IO-Main P.C.B Ass'y Part List REF NO. DESCRIPTION PART NO. Q'TY REMARK IC(W25Q80DVSNIGT,SOIC-8) 417-MC7K-1222 1 IC7001, CONTROL IC ASS'Y 704-MC7K-B195 1 IC(MKL15Z128VLK4,LQFP-80) 417-SR-1102 1 31 TFT Display L P.C.B Ass'y Part List REF NO. DESCRIPTION PART NO.
in „Risiko | Nicht?“ · Offtopic ·
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Sager_D87P_Service_Manual_Part3.pdf
GAD22 W3 G_AD22 HA25 H27 HA25# HD22 G16 HD22 MCHAGPREF GAD23 U3 G_AD23 HA26 K24 HA26# HD23 G18 HD23 ST0 N3 GST0 GAD24 T2 G_AD24 HA27 E32 HA27# HD24 F21 HD24 R50 ST1 N5 GST1 GAD25 T4 G_AD25 HA28 F31 HA28# HD25
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Datei
lasertreiber.circuitjs.txt
384 192 384 224 0 0 34 LD 1 1.7143528192810002e-7 0 7.153548042565408 0 0.025 d 560 0 560 80 2 LD w 384 128 384 0 0 R 384 0 384 -32 0 0 40 3.3 0 0 0.5 r 560 224 560 288 0 2.7 g 288 320 288 352 0 0 w 560 176 560 224 0 w 560 80 560 144 0 34 fwdrop\q1.1 1 1.411e-8 0 2.352711578827696 0 1 d 288 272 288 320 2 fwdrop\q1.1 r 288 96 288 0 0 680 w 288 144 336 144 0 r 448 160 512 160 0 1000 f 512 160 560 160 32 1.6 1.25 d -48 208 -48 144 2 default w -48 208 -16 208 0 w 560 -48 -48 -48 0 w -48 -48 -48 144 0 w 112 96 112
in „Probleme eine Laserdiode mittels OPVs zu regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Powertip_PE12864LRF-042-H-Q.pdf
5.3 Storage 5.4 Terms of Warranty Appendix: 1. LCM Drawing 2. Packing Specification PE12864LRF-042-H-Q (DK) Page3 SAMPLE Ver.01 SPEC Edi.003 1. SPECIFICATIONS 1.1 Features Item Standard Value Display Type 128*64 Dots LCD Type FSTN, Positive,Transflective, Extended Temperature Driver Condition LCD Module
in „POWERTIP LCD PE12864-003 Anschlussbelegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
atxmega_partlist.txt
Partlist exported from /home/michael/eagle/atxmega128_board/atxmega128_board.sch at 6/1/09 6:21 PM Part Value Device Package Description 10U CPOL-EU153CLV-0405 153CLV-0405 POLARIZED CAPACITOR, European symbol B1 RECTIFIER-DIL RECTIFIER-DIL B-DIL Rectifier
in „Besteht Interesse an einfacher Experimentierplatine fuer den Xmega128a1?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xmega_a1.pdf
ATxmega192A1-CU 192K + 8K 2 KB 16 KB 32 1.6 - 3.6V 100C1 ATxmega128A1-CU 128K + 8K 2 KB 8 KB 32 1.6 - 3.6V ATxmega64A1-CU 64K + 4K 2 KB 4 KB 32 1.6 - 3.6V ATxmega128A1-C7U 128K + 8K 2 KB 8 KB 32 1.6 - 3.6V 100C2 ATxmega64A1-C7U 64K + 4K 2 KB 4 KB 32 1.6 - 3.6V Notes
in „Welchen Wert hat der Pull-up-Widerstand dieses XMega?“ · Mikrocontroller und Digitale Elektronik ·