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pm2521ocr.pdf
?®D 6 e l&f -ew o e s . o) : = 2 O p t @ O y o p r & ” O p e + S ag @® o p r : ® £~ 2S £r e =S ~~ BD erC F / S ep Y oS C A 8 | P S e r Fg = : a H a n ® H a d ® B E A L E 2 | A B H L E YS | H O H S £ o O ANH os ; x 2 2 8 = — P= © = a) st 5 oc on & 2 o — band - Lu aed i =) e E cc3so 3 : 2< =e) =° S 6
in „Pjilips PM2519“ · Markt ·
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PDF
UC1698u_Revision__1.5.pdf
SEG<261> SEG<258> t BM0 TST4 SEG<254> SEG<251> BM1 SEG<248> SEG<244> TST4 TST1 SEG<241> n TST2 SEG<238> ID0 SEG<234> SEG<231> ID1 VDDX0 SEG<228> ID1 SEG<225> e VSS SEG<221> VSS SEG<218> VSS SEG<215> VSS SEG<211> VSS SEG<208> d VSS SEG<205> VSS SEG<201> i VSS VSS SEG<198> VSS2 SEG<195> VSS2 SEG<191> f
in „Defekte Heizungsregelung RC310 Display leuchtet“ · Haus & Smart Home ·
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PDF
rudi_____RX-V4A_TSR-400.pdf
47K Ω 1/16W F チップ抵抗 XL61 ZU477300 RSNR.CRYS 24.576MHz FA-238 水晶振動子 R627-629 RD456470 R.CHP 4.7K Ω 1/16W J チップ抵抗 XL965 ZU477300 RSNR.CRYS 24.576MHz FA-238 水晶振動子 R630 RD457100 R.CHP 10K Ω 1/16W J チップ抵抗 R631 RD450000 R.CHP 0 Ω 1/16W J チップ抵抗 R632-634 RD456470 R.CHP
in „Test in der Schaltung STR3A400“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
AVR-Studio.txt
debug_pubnames 00000168 00000000 00000000 00000956 2**0 CONTENTS, READONLY, DEBUGGING 5 .debug_info 00000bd7 00000000 00000000 00000abe 2**0 CONTENTS, READONLY, DEBUGGING 6 .debug_abbrev 000002bc 00000000 00000000 00001695 2**0 CONTENTS, READONLY, DEBUGGING 7 .debug_line 00000584 00000000 00000000 00001951
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CPU12RM.pdf
is not allowed). 0000 0000 (out) FF01, (1) E4 xxxx xxxx (out), READ_BD_BYTE $FF01. Running user code (BGND STATUS instruction is allowed). 1000 0000 (out) FF01, READ_BD_BYTE $FF01. Background mode active xxxx xxxx (out), 1100 0000 (out) (waiting for single-wire serial command
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronikladen07.pdf
SX-Chip SX28AC/SS-G (SSOP28-Bauform) 4,25 EUR SX28AC/DP SX-Chip SX28AC/DP-G (DIP28-Bauform) 4,25 EUR SX48BD SX-Chip SX48BD-G (TQFP48-Bauform) 4,95 EUR Die hier aufgeführten Preise gelten bereits ab ein Stück, für gestaffelte Mengenpreise unterbreiten wir Ihnen gern ein weitergehendes Angebot! SX Proto Boards
in „MC68000 von Motorolla“ · Mikrocontroller und Digitale Elektronik ·
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HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
---5OsSV ETH 43 24922 R122K 488 994224981T21 R3291:K994294235T712VD-HN s9K1 24R 2H22 Board ı-.TT 2 238›41 == I.. › 5 m 0u›---OSV 12 EBV X/V-ON 94923 R4852II 5.L48 5 2 Oíbμıμg- C4253 P13 8HD4884H 7sK2 o55555555555¬O12v 225 542»G2m 1 MfiG_1ø III > Qm > v 122H 248232 from 0m----O-CTı&a. »12vı 5 2 18„2__
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HX8352-A.pdf
385 446 DUMMY 9189 -385 267 VCOML 2029 -385 327 CX11B 4429 -385 387 C12A 6829 -385 447 DUMMY 9223 -238 268 VCOML 2069 -385 328 CX11B 4469 -385 388 C12A 6869 -385 448 DUMMY 9101 -222 269 VCOML 2109 -385 329 CX11B 4509 -385 389 C12A 6909 -385 449 DUMMY 9223 -206 270 VCOML 2149 -385 330 CX11B 4549 -385
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PCN_DN43A_20000630.pdf
935233060512 T S 1 30-6-00 30-6-00 CP3204DB No Manufacturing Capability. Consult Marketing. CP3148BD CP3148BD 51 FAMILY OTP/EPROM - 87C508 935241160557 T S 1 30-6-00 30-6-00 No Manufacturing Capability. Consult Marketing. CP3178A CP3178A 51 FAMILY CMOS ROML. - 80C32 935260861112 T M 3 31-12-00 30-6-
in „Mosfet Identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
motor_an_und_kurbel_schneller_drehen.txt
0x5A , 0xDE , 0x00 , 0xE0 , 0x34 , 0xCE , 0x00 , 0x2C , 0xEE , 0x80 , torque: -7 -1 6 pos: 52 speed: 238 backwards: 0 lost: 0 0 0 0 error: 2C alive: 80 0x5F , 0xDF , 0x00 , 0xE0 , 0x38 , 0xCE , 0x00 , 0x2C , 0xEE , 0x80 , torque: -6 -1 6 pos: 56 speed: 238 backwards: 0 lost: 0 0 0 0 error: 2C alive: 80
in „oszi gemessen -> 31428 baud?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IR-Protokolle_Diplomarbeit.pdf
0x000000000000C89D 5 0x000000000000287D 6 0x000000000000A8FD 7 0x000000000000683D 8 0x000000000000E8BD 9 0x000000000000184D 10 0x000000000000A1F4 groesser10 0x0000000000002174 0 0x00000000000098CD program 0x0000000000005104 clear 0x0000000000000154 recall 0x00000000000081D4 time_mode 0x000000000000AAFF
in „Lernfunktion für IR Signale.“ · Mikrocontroller und Digitale Elektronik ·
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PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
0xBFC00BEF Boot Flash 0xBFC00000 0xBF900000 Reserved 0xBF8FFFFF SFRs 1 Reserved G 0xBF800000 S K Reserved 0xBD004000 0xBD003FFF (2) Program Flash 0xBD000000 0xA0001000 Reserved 0xA0000FFF RAM (2) 0xA0000000 0x1FC00C00 Device 0x1FC00BFF Reserved 0x9FC00C00 Configuration 0x9FC00BFF Device Registers 0x1FC00BF0 Configuration
in „pic32 flash und i/o speed“ · Mikrocontroller und Digitale Elektronik ·
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PIC_32M_X_220_F_032_B-50I-SP_____DIP_28_.pdf
0xBFC00BEF Boot Flash 0xBFC00000 0xBF900000 Reserved 0xBF8FFFFF SFRs 1 Reserved G 0xBF800000 S K Reserved 0xBD004000 0xBD003FFF (2) Program Flash 0xBD000000 0xA0001000 Reserved 0xA0000FFF RAM (2) 0xA0000000 0x1FC00C00 Device 0x1FC00BFF Reserved 0x9FC00C00 Configuration 0x9FC00BFF Device Registers 0x1FC00BF0 Configuration
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·
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311_Schaltungen.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 238 Labornetzteil für den PC . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 43 Lader für einzelne Lithiumzellen . . . . . . . . . . . . . .
in „[S] Sammlung von elektr. Schaltungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an19fc.pdf
reason for using switching regulators is efficiency, so it is important to be able to estimate that P BD = (IN)(VIN = (32mA)(28V) = 0.9W factor with some degree of accuracy. In may cases, the overallefficiencyisnotascriticalasthepowerlossinthe LT1070 Switch Losses individualcomponents.Forreliableoperation
in „LT1270 dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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tFXKSKyORc24h2V2.pdf
, IC(SN74LVC1G17DCKR) 417-DDJLE-1078 1 IC805, IC(74HC74D SOIC14 FB FREE) 417-DV300-184 1 IC010, IC(BD4745G-TR,SMP5) 417-HDJ2000-503 1 IC802, IC(BD12KA5FP,TO252-3) 417-IQ2UM-1004 1 IC801, IC(DSP56724,LQFP-44) 417-IQ2UM-941 1 IC814,IC815, IC(SN74LV573APW,TSSOP-20) 417-IQ2UM-942 2 IC806, IC(SN74HC4040DR
in „Risiko | Nicht?“ · Offtopic ·
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Module_SS2013_-_WS2013-14.pdf
G.A.: Photonik. Springer Verlag, Berlin 1997. Bergmann, Scha er: Lehrbuch der Experimentalphysik, Bd.3: Optik. DeGruyter 1993. Voraussetzungen: { Vorhergehende Module: { Verwendbarkeit des Moduls / Einpassung in den Musterstudienplan: Elektrotechnik, Elektronik und Informationstechnik (Master of Science
in „Spezialisierung im Studium? Oder eher generalistisch?“ · Ausbildung, Studium & Beruf ·
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PDF
TEKTRONIX_Component_Service_Manual_TDS_520B_Mod_CM_Digitizing_Oscilloscope_070-9710-03.pdf
A11J12 131–4530–00 CONN,HDR:PCB,MALE,STR,1 X 3,0.1 CTR,0.230 MLG X 00779 104344–1 0.120 TAIL,30 GOLD,BD RETENTION, A11J14 131–4530–00 CONN,HDR:PCB,MALE,STR,1 X 3,0.1 CTR,0.230 MLG X 00779 104344–1 0.120 TAIL,30 GOLD,BD RETENTION, A11J18 131–4530–00 CONN,HDR:PCB,MALE,STR,1 X 3,0.1 CTR,0.230 MLG X 00779
in „Tektronix TDS744A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PIC18f6622.pdf
ADDEN FERR OERR RX9D 0000 000x 61, 249 ECCP3AS ECCP3ASE ECCP3AS2 ECCP3AS1 ECCP3AS0 PSS3AC1 PSS3AC0 PSS3BD1 PSS3BD0 0000 0000 61, 201 ECCP3DEL P3RSEN P3DC6 P3DC5 P3DC4 P3DC3 P3DC2 P3DC1 P3DC0 0000 0000 61, 200 ECCP2AS ECCP2ASE ECCP2AS2 ECCP2AS1 ECCP2AS0 PSS2AC1 PSS2AC0 PSS2BD1 PSS2BD0 0000 0000 61, 201 ECCP2DEL
in „PIC 18F6622 Zeit um EEPROM zu schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PowerLog6s_V110_bearbeitet.asm
0x40010C00 ; DATA XREF: sub_8001A88+2 r dword_8001BCC DCD 0x800D942 ; DATA XREF: sub_8001A88+A0 r dword_8001BD0 DCD 0x20000058 ; DATA XREF: sub_8001A88+9E r dword_8001BD4 DCD 0x20000055 ; DATA XREF: sub_8001A88+A4 r dword_8001BD8 DCD 0x20000B08 ; DATA XREF: sub_8001A88:loc_8001B30 r ; =============== S U B R
in „Datenlogger Jun-si PowerLog 6S verbessern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XBEE3_UserGuide.pdf
Duration) 198 AS (Active Scan) 198 ED (Energy Detect) 199 DB command 199 Serialinterfacing commands 199 BD (UART BaudRate) 199 NB (Parity) 200 SB (StopBits) 200 AP (API Enable) 201 AO (API Options) 201 AZ (ExtendedAPI Options) 202 RO (Packetization Timeout) 203 D6 (DIO6/RTS) 203 D7 (DIO7/CTS) 203 P3 (DIO13
in „XBEE3 Home Automation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
038-05058-01-X-MLCC_REVB03_SKIT.pdf
Q11 3 4 Q16 3 4 e OUT0 = 125 MHz LVDS HDA I2C SWITCH F F U17 OUT1 = 25 MHz LVCMOS U U 3 D D Si5332BD12407-GM1 OUT2 = 48 MHz LVCMOS 1 2 1 2 OUT3 = 24 MHz LVCMOS PL_1V8 2 N 2 N OUT4 = 26 MHz LVDS D D PL_1V8 PL_3V3 Clock Generator OUT5 = 27 MHz LVDS PL_3V3 [4,7,8]CC_PS_PGOOD INPUT1 = OE_B for OUT0, OUT4
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Datei
G32trust.asm
sub_1000BCE0+7 j push eax call sub_10005480 mov esi, eax cmp word ptr [esi], 7242h jz short loc_1000BD08 mov ax, 2 pop esi retn 1Ch ; ÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄ loc_1000BD08: ; CODE XREF: sub_1000BCE0+1E j test byte ptr [esi+12h], 4 jnz short loc_1000BD20
in „Wer kann mir eine ASM File compelieren“ · Softwareentwicklung ·
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PDF
hut1_12v2.pdf
Usage Type Section 1BA AL Digital Wallet Sel 15.15 1BB Reserved 1BC AL Instant Messaging Sel 15.15 1BD AL OEM Features/ Tips/Tutorial Sel 15.15 Browser 1BE AL OEM Help Sel 15.15 1BF AL Online Community Sel 15.15 1C0 AL Entertainment Content Sel 15.15 Browser 1C1 AL Online Shopping Browser Sel 15.15 1C2
in „USB HID Descriptor Spotify-Steuerung STM32“ · Mikrocontroller und Digitale Elektronik ·
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magnetic.pdf
Φ − Ψ-formulation can be written as µ∇N k ∇ΦdΩ + µo∇N k ∇ΨdΩ Ω Φ ΩΨ (3.58) = µ∇N T dΩ + ∇N RdΩ + N bdΓ, k 0 k k Ω Φ ΩΨ ΓBΦ∪Γ BΨ where k = 1, ,I. 78 3. WEAK FORMULATION OF NONLINEAR STATIC AND EDDY CURRENT FIELD PROBLEMS 3.3.3 The magnetic vector potential, the A-formulation with implicit enforcement
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The-ESP8266-Book-September-2015.pdf
...................................................................................................238 wifi_set_ip_info...............................................................................................................238 wifi_set_macaddr............................................................................................................238 wifi_get_macaddr............................................................................................................239 wifi_set_sleep_type...................................................
in „ESP8266 Freies eBook August 2015 'Kolban'“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S29GL512N.pdf
A24–A16 (in hexadecimal) (in hexadecimal) Kwords) SA189 0 1 0 1 1 1 1 0 1 128/64 17A0000–17BFFFF 0BD0000–0BDFFFF SA190 0 1 0 1 1 1 1 1 0 128/64 17C0000–17DFFFF 0BE0000–0BEFFFF SA191 0 1 0 1 1 1 1 1 1 128/64 17E0000–17FFFFF 0BF0000–0BFFFFF SA192 0 1 1 0 0 0 0 0 0 128/64 1800000–181FFFF 0C00000–0C0FFFF
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
20120224183241077.pdf
0x3600 53 R0309h 0X0004 11 R0281h 0x0010 54 R030Ah 0X0F05 12 Delay 10us 55 R030Bh 0X0F00 13 R0102 0x01BD 56 R030Ch 0X000F 14 Delay10us 57 R030Dh 0X050F 14 R0000h 0x0000 58 R030Eh 0X0106 15 R0001h 0x0000 59 R030Fh 0X0406 16 R0002h 0x0100 60 R0400h 0X3500 17 R0003h 0xD090 61 R0401h 0X0001 18 R0008h 0x0503
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hut1_11.pdf
1.11 June 27, 2001 Universal Serial Bus HID Usage Tables 37 Usage ID Usage Name Usage Type Section BD Flare Release OSC 5.2 BE Landing Gear OOC 5.2 BF Toe Brake DV 5.2 C0 Trigger MC 5.2 C1 Weapons Arm OOC 5.2 C2 Weapons Select OSC 5.2 C3 Wing Flaps DV 5.2 C4 Accelerator DV 5.3 C5 Brake DV 5.3 C6 Clutch
in „USB HID Descriptor (V-USB)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC_18F8722_Data_Sheet.pdf
ADDEN FERR OERR RX9D 0000 000x 61, 249 ECCP3AS ECCP3ASE ECCP3AS2 ECCP3AS1 ECCP3AS0 PSS3AC1 PSS3AC0 PSS3BD1 PSS3BD0 0000 0000 61, 201 ECCP3DEL P3RSEN P3DC6 P3DC5 P3DC4 P3DC3 P3DC2 P3DC1 P3DC0 0000 0000 61, 200 ECCP2AS ECCP2ASE ECCP2AS2 ECCP2AS1 ECCP2AS0 PSS2AC1 PSS2AC0 PSS2BD1 PSS2BD0 0000 0000 61, 201 ECCP2DEL
in „PIC 18F6527 mit 32MHz Takten“ · Mikrocontroller und Digitale Elektronik ·
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User_guide_-_Driver.pdf
of PWM_INT_CNT_ZERO, PWM_INT_CNT_LOAD, PWM_INT_CNT_AU, PWM_INT_CNT_AD, PWM_INT_CNT_BU, PWM_INT_CNT_BD, PWM_TR_CNT_ZERO, PWM_TR_CNT_LOAD, PWM_TR_CNT_AU, PWM_TR_CNT_AD, PWM_TR_CNT_BU, or PWM_TR_CNT_BD. Returns: None. 16.2.2.19 PWMGenIntTrigEnable Enables interrupts and triggers for the specified PWM generator
in „PCF8574 mit LM3S8938 per I2C auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
robot-mit-cplusplus-anteilen-noheap.map.txt
setup_joystick .text.main 0x08000a58 0x17c obj\release\src\main.o 0x08000a58 main .text.every10ms 0x08000bd4 0x1dc obj\release\src\main.o 0x08000bd4 every10ms .text.ADC_setup 0x08000db0 0x60 obj\release\src\peripheral_encapsulation\setup_peripheral_adc.o 0x08000db0 ADC_setup .text.GPIO_set_to_pushpull_output
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tft.c
SLP, STB 0x0101, 0x0227, // DC1[2:0], DC0[2:0], VC[2:0] TFTLCD_DELAY, 50, // Delay 50ms 0x0102, 0x01BD, // VREG1OUT voltage TFTLCD_DELAY, 50, // Delay 50ms 0x0103, 0x2D00, // VDV[4:0] for VCOM amplitude 0x0281, 0x000E, // VCM[5:0] for VCOMH TFTLCD_DELAY, 50, // 0x0200, 0x0000, // GRAM horizontal Address
in „4DLCD-32QA mit STM32 initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
display.c
99, 105, 110, 116, 122, 128, 134, 140, 147, 153, 160, 167, 174, 182, 189, 197, 205, 213, 221, 229, 238, 246, 255 }; static DSP_COLORS current_display_colors = { MAX_COLOR_STEPS / 2, 0, 0 }; static DSP_COLORS dimmed_display_colors = { MAX_COLOR_STEPS / 2, 0, 0 }; static DSP_COLORS current_ambilight_colors
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Z80-Zilog.pdf
. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 238 RRD . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 240 BIT b, r . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .
in „DDR Schach-Computer Chess Master Diamond reparieren (Dauerton)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT89C51ED2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „Einstieg in die C-Programmerung für µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at89c51ed2.pdf
F OSC= 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 14-4.), but also for mode 0 for UART, thanks to the bit SRC located in
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at89c51ed2.pdf
F OSC= 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 14-4.), but also for mode 0 for UART, thanks to the bit SRC located in
in „SCL Takt generieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „Kleine 8051 Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „8051: Oszillatorfrequenz und Maschinenzyklus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „EEPROM schreiben/lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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at98c51rd2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „Alternative Funktion von Pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 115200 247 1.23 243 0.16 57600 238 1.23 230 0.16 38400 229 1.23 217 0.16 28800 220 1.23 204 0.16 19200 203 0.63 178 0.16 9600 149 0.31 100 0.16 4800 43 1.23 - - Table 35. Example of Computed Value When X2=0, SMOD1=0, SPD=0 Baud Rates FOSC = 16. 384 MHz FOSC= 24MHz BRL Error (%) BRL Error (%) 4800 247 1.23 243 0.16 2400 238 1.23 230 0.16 1200 220 1.23 202 3.55 600 185 0.16 152 0.16 The baud rate generator can be used for mode 1 or 3 (refer to Figure 25.), but also for mode 0 for UART, thanks to the bit SRC located in BDRCON
in „Frequenz für µC AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
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grundig_chassis_t5_19_22vle2000t_22-2010t_22-2940t_22-2942t_19hd_br_wp_cba_16-2941tc_19-2940t.pdf
DISPLAY Panel 16" / 40cm 18.5" / 47cm 18.5" / 47cm 21.6" / 55cm 21.6" / 55cm Display-Manufacturer t bd LPL056V19-LP1 SS056V19-SS1 LPL056V19-LP1 SS056V19-SS1 LPL056V22-LP1 AUO056V22-AU2LPL056V22-LP1 AUO056V22-AU2 Backlight CCFL CCFL CCFL CCFL CCFL Wide-screenformat ▯ ▯ ▯ ▯ ▯ Responsetime ca. 8ms ca. 5ms
in „Grundig Fernseher defekt“ · Analoge Elektronik und Schaltungstechnik ·