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MAX3095-MAX3096.pdf
) A PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS X VCC = 5V ±5%, A = TMINto MAX 65 98 3 T = +85°C 78 86 94 0 A VCC = 5.25V T A +25°C 71 79 87 9 Input-to-Output Propagation PLH PHL T = -40°C 65 73 81 ns 5 Delay | ID= 3V, A Figure 2 T A +85°C 82 90 98 M V = 4.75V T = +25°C 74 82 90 CC A A T A -40°C 68
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
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AV02-1132EN_DS_HEDS-9x40_2014-03-17__3_.pdf
OPTICAL 2.44/2.41DIA. MOUNTINGTHRU CENTERLINE ALIGNINGRECESS (0.096/0.095) 1.85(0.073) CL HOLE2PLACES 1.78±0.10* 5.46±0.10 2.44/2.41X2.79 ALIGNINGRECESS 2.16(0.085) (0.070±0.004) (0.215±0.004) (0.096/0.095X0.110) 2.44/2.41DIA. DEEP 8.64(0.340) 2.44/2.41X2.79 2.16(0.085)DEEP (0.096/0.095) REF. 17.27 (0.096
in „Incremental Encoder läuft nicht an 2 µC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
version_1p3_assembler.lst
EXIT 3572: ; 3573: ;************************************************************** 3574: ; 3575: 0E78 THREE: ; Save value for timer function 3576: ; 3577: ;************************************************************** 3578: ; 3579: 0E78 D1 8E ACALL ONE ;GET THE FIRST INTEGER 3580: 0E7A 12 16 7B CALL
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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d80166w.pdf
banks and even for code. A register bank can consist of up to 16 wordwide (R0 to R15) and/or bytewide (RL0, RH0, ”, RL7, RH7) so-called General Purpose Registers (GPRs). 512 bytes of the address space are reserved for the Special Function Register area. SFRs are wordwide registers which are used for controlling
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TPS73133.pdf
36.5kΩ Ref Servo 2.8V 44.2kΩ 33.2kΩ 27k 3.0V 46.4kΩ 30.9kΩ Bandgap Error 3.3V 52.3kΩ 30.1kΩ Amp 5.0V 78.7kΩ 24.9kΩ OUT Current NOTE: V OUT = (1 + R2)/2 × 1.204; Limit GND 8kΩ 80kΩ R1R2≅ 19kΩ for best R1 accuracy. FB R2 Figure 2. Adjustable Voltage Version 4 TPS731xx www.ti.com SBVS034F–SEPTEMBER 2003
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LT1014.pdf
— 100 117 — dB Channel Separation VO=±10V, R L 2k 123 140 — 120 137 — dB VOUT Output Voltage Swing RL= 2k ±13 ±14 — ±12.5 ±14 — V Slew Rate 0.2 0.4 — 0.2 0.4 — V/ s IS Supply Current Per Amplifier — 0.35 0.50 — 0.35 0.55 mA Note 1:This parameter is guaranteed by design and is not tested. Typical parameters
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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Bachelor_EDM_Freyermuth_Oliver_2010-pdf.pdf
"%x" , &addr) ; 65 imageask = allocImage(&addr , D32) ; 66 i f (!vme. rl (imageask , addr , &val ) ) { 67 fifostat = val ; 68 //cout << fifostat ; 69 } 70 vme. releaseImage (imageask) ; 71 72 // Wenn ja , dann lesen wir einen Datensatz : 73 i f ( fifostat == 1) { 74 sscanf ( "0x55550020 " , "%x" , &addr) ; 75 imagedat = allocImage(&addr , D32) ; 76 i f (!vme. rl (imagedat , addr , &val ) ) { 77 // Erster Wert liegt in den 16 MSB: 78 tval = val >> 16; 79 // Coarse Timer beginnt beim dritten Bit von unten : 80 rawdata [ hitcount ] = tval ; 81 // Sonderfall für
in „Laser-FPGA-Entfernungsmesser-Bastelarbeit - Blödsinn?“ · FPGA, VHDL & Co. ·
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Eeprom_2.asm
dec b add hl,hl adc a,a jp p,l07b5 bit 7,l jr z,l07cc ld de,0100h add hl,de adc a,00h jr nc,l07cc rl a rl h inc b l07cc: bit 7,c jr z,l07d2 set 7,b l07d2: ld (iy+00h),h ld (iy+01h),a ld (iy+02h),b ret l07dc: ld a,3eh call l2bf2 pop bc pop bc pop bc pop bc ret l07e6: ld a,3fh jp l2bf2 l07eb: call l0911
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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BBK-29LEM-5093T2C_MSD308C-1.pdf
C QP2 BCK-25211WH SS510 DP3 DP4 3 1 2 3 4 DP5 N AGND TXFPCN14 RP4 RL207 RL207 CP9 AGND AGND LF1 RL207 CP10 6 FB 12V 10 DP2 2M 2M 10uF/'50V DP8 SS510 WD11725 NC/470pF200V 11 AC INPUT CY2 NC AGND AGND PGND 470pF/400VAC-X1Y1 3 O HV GND O 3 8 RP14 CP13 +5V_STANDBY HVV 5V
in „Datenblatt zu MSH9010-lf gesucht“ · Mikrocontroller und Digitale Elektronik ·
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catalog.pdf
Desc]: OP Amp Single GP R-R I/O ±3.25V/6.5V 8-Pin SOIC N MPN: TLV1701AIDRLT [ID]: 000534 [Price]: 0.78 USD [QTY]: 5 [Category]: Amplifiers - Op Amps, Buffer, Instrumentation [Desc]: Single high voltage, low power comparator 5-SOT-5X3 -40 to 125 MPN: TLV1701AIDBVT [ID]: 000544 [Price]: 0.67 USD [QTY]:
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catalog.pdf
Desc]: OP Amp Single GP R-R I/O ±3.25V/6.5V 8-Pin SOIC N MPN: TLV1701AIDRLT [ID]: 000534 [Price]: 0.78 USD [QTY]: 5 [Category]: Amplifiers - Op Amps, Buffer, Instrumentation [Desc]: Single high voltage, low power comparator 5-SOT-5X3 -40 to 125 MPN: TLV1701AIDBVT [ID]: 000544 [Price]: 0.67 USD [QTY]:
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behringer_eurolive_b112d_sm.pdf
OP1-B 2 R62 C71 3 + IC5-C EUTEC OPTO 3n3 C26 100n 8 4 C47 100n AGND 3 50KB 1 R55 AGND VCC 4580 VSS C78 5k6 AGND VR1-A AGND R59 R3 IC8-C 7k68 470 100n 100n C40 8 VCC 4580 VSS 4 C77 C66 C61 47p MIC1OUT R77 33n 2n2 C148 IC9-C 22k R102 R2 2 220p C59 100n 8 4 C41 100n +15V 2k2 3 + 2 VCC 4580 VSS R65 R69 3
in „Behringer B112D Funktionsweise Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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hoymiles-scan.txt
8114E6DE 1 00 2888817201 00DC 1B 2 95 74919272 74919272 010001013C00590119013B0059011A000091D87D 1 rl␀l��|␀�$�|␂␌␌␌�␌$�␄#|��␃�␛�r�b�␄c��nn�$oo��#␌b␜p��lrlrlp�n�␐␃␄␄�␄l␌��␌␌␄#␄o�|␃�␌��␄␄#��nn�␃l��$ ␃�␛␛nn␄�␎l␎␂nr���o␄␄r{�`␂p�o�␐␂␄␌{�ܜ�␜��␃␌b␌n�|␂␄��␌b��No�␂␄�l`␂�␛␛oo␄�␎$␏␃nr���o␄␄{␛l`␂␎r��o␌␌{␛l ␃�␂␄␌
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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sony_ht-ct260h.pdf
OUT2B 46 4 VDD3.3 NC 45 AMP_SDA AMP_SDA R703 33 5 GND GND 44 AMP_SCL R702 33 6 NC VDD 43 AMP_SCL 7 SDI_78 OUT3A 42 VD3.3V 8 SDI_56 IC_84P_STA309A OUT3B 41 I2S_RL_DOUT R707 33 9 SDI_34 OUT4A 40 ALRCLK R706 33 10 SDI_12 OUT4B 39 + ABCLK R705 33 11 LRCK1 OUT5A 38 C718 12 BICK1 OUT5B 37 0.1uF/25V/X7R C701 13
in „(V) 2 Platinen aus einer Sony Soundbar und Nixie Röhren“ · Markt ·
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STC89C51RC-en.pdf
port 1 is 11001010B (0CAH). MOV R0, #30H ;R0< = 30H MOV A, @R0 ;A< = 40H MOV R1,A ;R1 < = 40H MOV B, @Rl ;B < = 10H MOV @Rl, Pl ;RAM (40H) < = 0CAH MOV P2, P1 ;P2 #0CAH leaves the value 30H in register 0,40H in both theAccumulator and register 1,10H in register B, and 0CAH(11001010B) both in RAM location
in „stc89c52rc programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Panasonic_JD_700_800_Series_Service_Manual_1_.pdf
NAME & DESCRIPTION REMARKS DBl, 2 KBPC802 Diode bridge - DB3 S2VB Diode bridge 2A lOOV ICI ·EHDSC312Rl Reguration IC IC2 EHDSC324Rl Reguration IC IC3 EHDSC305Rl Reguration IC IC4 IM7912CT Reguration IC QII,21,31 2SC2334 Transister Q12,22,32 2SA777 Transister DIl,21,31 S6K20 Diode D41 lOEl Diode Lll,21,31
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Transistortester.h
MEM_TEXT = "RH-"; const unsigned char RH1H[] MEM_TEXT = "RH+"; const unsigned char RLRL[] MEM_TEXT = "+RL- 12 13 23"; const unsigned char RHRH[] MEM_TEXT = "+RH- 12 13 23"; const unsigned char RHRL[] MEM_TEXT = "RH/RL"; #endif const unsigned char R0_str[] MEM2_TEXT = "R0="; const unsigned char RIHI[] MEM_TEXT
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NORMA_D5155_Instruction_Manual.pdf
rtt o oa s ı ıı t ı t oıl*oı ov .rııııı ff w ıı İıı ı a orıa İ::::: ı ııı.E O U üa ı ı ı ı Itı I u rl 5 4 2 Rear 10 11 12 13 14 18 o o o @ @ o c a @ @ @ 0 ıı @ @ @ 89 1516 17 19 7 Front: I Mains switth poles of the instrument from the nains. Disconnects both 2 Range selection, scale factor and averaging
in „Power Analyzer "Norma D5155" - Bedienungsanleitung oder Bedienhinweise“ · Mikrocontroller und Digitale Elektronik ·
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melodie.txt
-39 ;für 10ms Interrupt bei 12 MHz 0150 00C0 75 88 50 MOV TCON,#50H ;Beide Timer starten 0151 00C3 78 22 MOV R0,#dauer 0152 00C5 warte1: 0153 00C5 B6 00 FD CJNE @R0,#00,warte1 ;Reg. 32 wird in der 2.Interruptrout. verändert. 0154 00C8 0155 00C8 C2 7F CLR ton 0156 00CA C2 8C CLR TR0 ;Timer 0 und damit
in „PIC 18F2550 Töne erzeugen“ · Mikrocontroller und Digitale Elektronik ·
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BTA12_BTB12_T12.pdf
Hz t = 20 ms 120 A current (full cycle, Tj initial = 25°C) F = 60 Hz t = 16.7 ms 126 ² ² tp = 10 ms 78 ² It I t Value for fusing As dI/dt Critical rate of rise of on-state curreF = 120 Hz Tj = 125°C 50 A/µs IG = 2 xGT , tr ≤ 100 ns V /V Non repetitive surge peak off-state tp = 10 ms Tj = 25°C V DRM /VRRM
in „Thyristortetrode für Wechselspannung geeignet ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTA12_BTB12_T12.pdf
Hz t = 20 ms 120 A current (full cycle, Tj initial = 25°C) F = 60 Hz t = 16.7 ms 126 ² ² tp = 10 ms 78 ² It I t Value for fusing As dI/dt Critical rate of rise of on-state curreF = 120 Hz Tj = 125°C 50 A/µs IG = 2 xGT , tr ≤ 100 ns V /V Non repetitive surge peak off-state tp = 10 ms Tj = 25°C V DRM /VRRM
in „Thyristortetrode für Wechselspannung geeignet ?“ · Analoge Elektronik und Schaltungstechnik ·
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lalus.pdf
(Bild 62). Die GS ESt I6d 39oki-i Verstärkung des internen OpAmps DTMF- wird mit dem Vorwiderstand Rl und Eingang 1 tlnp MT sm 1 5 zum eingestellt. Die angegebenen ,,krum- Flipflop men“ Werte entstammen dem Daten- uref 8870 ~4 -4 D blatt des Herstellers; es ist ohne weite- 4 13 res möglich, dafür ,,normale
in „Schaltung an a/b - Port (Telefonanlage) anbinden“ · Mikrocontroller und Digitale Elektronik ·
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flash.pdf
102 PA10 PB10 69 PB10 PC10 111 PC10 PD10 PD10 PE10 PE10 PF10 LCD_E PG10 PG10 ? 5 ? 5 101 140 99 PD9 78 PD9 PE9 60 PE9 PF9 21 LCD_RS PG9 124 USB_RX R Q50 RQ51 PA9 PA9 PB9 I2C_SDA PC9 PC9 77 59 20 93 A PA8 100 PA8 PB8 139 PB8 PC8 98 PC8 PD8 PD8 PE8 PE8 PF8 LCD_RW PG8 PG8 A 43 137 97 PD7 123 PD7 PE7 58 PE7
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ttester.pdf
17mA J175 P-JFET 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V Idss=7-60mA Idss=26mA 2N5460 P-JFET 0.78mA Vgs=0.54V 0.77mA Vgs=0.54V 0.78mA Vgs=0.54V Idss=1-5mA Idss=2.6mA BSS139 N-D-MOS 1.7mA Vgs=1.2V D, 1.7mA Vgs=1.2V D, 1.7mA Vgs=1.2V BSS169 N-D-MOS 2.6mA Vgs=1.8V D, 2.6mA Vgs=1.8V D, 2.6mA Vgs=1.8V
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apple_macbook_pro_a1286_mlb_d1_051-9216_13.3_retina_a1425_820-3462_sch.pdf
APN: 353S2888 & 353S2958 1 2 NO_TEST=TRUE 1 2 MAX98300 SPKRCONN_L_OUT_N 78 51 IN AUD_LO2_L_P 78 AUD_SPKRAMP_LIN_N WLP OUT 7 55 78 GAIN = +3 DB 0402 NO_TEST=TRUE A3 B1 CKPLUS_WAIVE=ndifpr_badterm MIN_LINE_WIDTH=0.40 MM D D 1ST ORDER FC (L&R) = NOM 569 HZ CRITICAL 10% 78 SPKRAMP_LIN_P
in „Macbook Schaltpläne“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schema-electrique-1395717-renkforce-rf2000-imprimante-3d-appareil-pret-a-lemploi-banc-dimpression-chauffant.pdf
8 1 D 33k 5 RT/CLK O GND 9 R3 5 5 - V3 P 36.5k V2 8 8 SCS_1 PL0 35 PL0 (ICP4) C C C C C (AD0) PA0 78 PA0 D_LED T PC0 T ZLLS350 0 0 DIR_DRV3 PL1 36 C C C C C 77 PA1 D_D6 B T 0 0 PL2 37 PL1 (ICP5) V V V V A (AD1) PA1 76 PA2 C C22 R4 1 1 SCS_2 PL3 38 PL2 (T5) (AD2) PA2 75 PA3 ENA_DRV4 3 C19 R96 R6 15n
in „Spannungseinbruch nach Spule“ · Analoge Elektronik und Schaltungstechnik ·
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AOA_Application_Board_revA.pdf
P1.9-RMII_RXD0 P0.5 79 P0[5]/I2SRX_WS/TD2/CAP2[1] P1[10]/ENET_RXD1 89 P1.10-RMII_RXD1 P0.6-SPI_SSEL 78 P0[6]/I2SRX_SDA/SSEL1/MAT2[0] P1[14]/ENET_RX_ER 88 P1.14-RMII_RXER P0.8-SPI_MISO 77 P0[7]/I2STX_CLK/SCK1/MAT2[1] P1[15]/ENET_REF_CLK 87 P1.16-RMII_MCD P0.9-SPI_MOSI 76 P0[8]/I2STX_WS/MISO1/MAT2[2] P1
in „Probleme mit LPC11C24“ · Mikrocontroller und Digitale Elektronik ·
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CD00003634_HSS.pdf
voltage slope Vov (V) dVout/dt(off) (V/ms) 60 800 55 750 Vcc=13V 50 700 Rl=6.5Ohm 45 650 40 600 35 550 30 500 25 450 20 400 -50 -25 0 25 50 75 100 125 150 175 -50 -25 0 25 50 75 100 125 150 175 Tc (°C) Tc (°C) 12/24 Doc ID 9934 Rev 4 VNQ500 Electrical specifications Figure
in „POWER SSO 12 Kriechstrecken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina125.pdf
Input Voltage ±40 V Input Voltage Range See Text Common-Mode Rejection V = –10.7V to +10.2V CM G = 4 78 84 72 dB G = 10 86 94 80 dB G = 100 100 114 90 dB G = 500 100 114 90 dB BIAS CURRENT VCM = 0V 10 25 50 nA vs Temperature ±60 pA/°C Offset Current ±0.5 ±2.5 ±5 nA vs Temperature ±0.5 pA/°C NOISE, RTI
in „Kraftsensor PSD-S1 in Verbindung mit INA125“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina125.pdf
Input Voltage ±40 V Input Voltage Range See Text Common-Mode Rejection V = –10.7V to +10.2V CM G = 4 78 84 72 dB G = 10 86 94 80 dB G = 100 100 114 90 dB G = 500 100 114 90 dB BIAS CURRENT VCM = 0V 10 25 50 nA vs Temperature ±60 pA/°C Offset Current ±0.5 ±2.5 ±5 nA vs Temperature ±0.5 pA/°C NOISE, RTI
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VHF-COMM.1984.2--b.pdf
of the _ _ _ _ _ _ _ _ _ _ _ _ _ _ __ _ _ _ _ -2 Y l-lf'.COt.lUV....lCAT2184 2. · '1 1---~"-' r t="'rl - '[>- r., THE INDIVIDUAL MODULES OF THE , 1 11_ _ 1 UNIT J The basiC verSiOl1 of the AF-milliVOllmew • Figur.e3.W,th theellcepllOfofthebprobenarld FI<).Pnnc:ipi01t.... 'proton memeier.all modulesare
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PDF
VHF-COMM.1984.2.pdf
of the _ _ _ _ _ _ _ _ _ _ _ _ _ _ __ _ _ _ _ -2 Y l-lf'.COt.lUV....lCAT2184 2. · '1 1---~"-' r t="'rl - '[>- r., THE INDIVIDUAL MODULES OF THE , 1 11_ _ 1 UNIT J The basiC verSiOl1 of the AF-milliVOllmew • Figur.e3.W,th theellcepllOfofthebprobenarld FI<).Pnnc:ipi01t.... 'proton memeier.all modulesare
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abc.pdf
10 8 10 8 80 2 81 2 82 83 8 decw decw Ide Idei r, Irr Ir,Irr 10 2 10 2 12 11 18 11 90 1 91 1 92 93 rl rl Ide Idei 9 Irr,r Irr,lr 6 2 6 2 12 11 18 11 A0 2 Al 2 A2 1 A 3 1 A4 1 A 5 1 A6 1 A7 1 incw incw cp cp cp cp cp cp A 2 4 7 10 8 10 2 10 6 8 4 10 7 10 10 8 BO B1 B2 2 B3 2 64 2 B5 2 B6 2 B7 2 B clr
in „DDR-µC, maskenprogrammiert, "fremd verwendbar ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT89C51ED2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Einstieg in die C-Programmerung für µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Kleine 8051 Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „8051: Oszillatorfrequenz und Maschinenzyklus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „EEPROM schreiben/lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51rd2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Alternative Funktion von Pins“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
edge trigger). Must be 0 for clock out mode. Timer 2 Capture/Reload bit If RCLK = 1 or TCLK = 1, CP/RL2# is ignored and timer is forced to auto-reload 0 CP/RL2# on Timer 2 overflow. Cleared to auto-reload on Timer 2 overflows or negative transitions on T2EX pin if EXEN2=1. Set to capture on negative transitions
in „Frequenz für µC AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Aim_TTi_QL_Series_II_Service_Manual_48511-1740.pdf
49,122 23105-2100 RES SM0805 1K00F W1 R38, 56, 78-81, 95,106,107,114 23105-2470 RES SM0805 4K70F W1 R28,91 23105-3100 RES SM0805 10K0F W1 R29,31,32,43,52,53,72,73,118,123,124,128 23105-3200 RES SM0805 20K0F W1 R67, 68,102,105 23105-3205 RES SM0805 20K5F
in „wegen Aim TTi Netzteil Qualität“ · Analoge Elektronik und Schaltungstechnik ·
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TL431.pdf
develops a current whose amplitude is determined by the difference between G + G RM GM GoR L the 1.78 V internal reference voltage source and the input (2.138)(1.0 M)(1.25 m)(230) + 615 + 56 dB transistor emitter voltage. A portion of Gm flows through compensation capacitance, CP2. The voltage across
in „Linenarregeler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sevs_rech_CPUZ.txt
Graphics CPU ************* Package Socket FM2 (904) CPUID F.3.1 Extended CPUID 15.13 Core Stepping RL-A1 Technology 32 nm TDP Limit 65.3 Watts Core Speed 3892.1 MHz Multiplier x Bus Speed 39.0 x 99.8 MHz Stock frequency 3500 MHz Instructions sets MMX (+), SSE, SSE2, SSE3, SSSE3, SSE4.1, SSE4.2, SSE4A
in „Rechner bei Video-Aufnahmen zu lahm“ · PC Hard- und Software ·
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PDF
AP_7__ff.Befugnisse_priv._HS.Alberding.pdf
ergangenen Verordnung klar erkennen lassen. 30Huber, DVBl. 1952, 456 (459 – 460); Ossenbühl, VVDStRL 1971, 137 (175); OVG Münster, JZ 1979, 677 (678); OLG Karlsruhe, VBlBW 1982, 218; VGH München, BayVBl. 1989, 596 (597); Stober in Wolff/Bachof/Stober, § 90 Rn. 35; Becker, DVBl. 2002, 92 (96) 31Steiner
in „Meinungen und Erfahrungen zur Wilhelm Büchner HS“ · Ausbildung, Studium & Beruf ·
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PDF
tlv320aic12k.pdf
, OUTP3) (1) (2) SNR Signal-to-noise ratio VI= 0 dB 78 89 89 dB VI= -9 dB 71 81 81 Total harmonic VI= 0 dB 78 82 82 THD distortion dB VI= -9 dB 73 80 80 V = 0 dB 75 80 80 THD+N Signal-to-total harmonic I dB distortion + noise VI= -9 dB 69 78 78 (1) (3) DAC
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·