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Hc11dat.pdf
subsystems, programming and the instruction set, refer to the M68HC11 Reference Manual (M68HC11RM/AD). 1.1 Features • MC68HC11 CPU • 512 Bytes of On-Chip Electrically Erasable Programmable ROM (EEPROM) with Block Protect (MC68HC11F1 only) • 1024 Bytes of On-Chip RAM (All Saved During Standby) • Enhanced
in „68HC11 MC68HC11 Layout gesucht PLCC68“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC68HC11F1FN.pdf
subsystems, programming and the instruction set, refer to the M68HC11 Reference Manual (M68HC11RM/AD). 1.1 Features • MC68HC11 CPU • 512 Bytes of On-Chip Electrically Erasable Programmable ROM (EEPROM) with Block Protect (MC68HC11F1 only) • 1024 Bytes of On-Chip RAM (All Saved During Standby) • Enhanced
in „MC68HC11F1FN (EEPROM) von Motorola zu verkaufen“ · Markt ·
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PDF
LDS517_Displaycontroller.pdf
262,144 1 1 0 0 1 8-bit D[5:0] 1 D[7:0] + D[7:0] 2 65,536 1 1 0 1 0 68-series 9-bit D[5:0] 1 D[8:0] + D[8:0] 2 262,144 1 1 0 1 1 16-bit D[5:0] 1 D[15:0] 1 65,536 1 1 1 0 0 18-bit D[5:0] 1 D[17:0] 1 262,144 0 - 0 0 0 Serial interface 6-bit D[1] 6 D[1] 6 x 3
in „Verkaufe OLED Displays FullColor 128*128 bzw. 96*64“ · Markt ·
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CAN_Bus_Elektor_Optimized.pdf
AN EN 2 R2 IC2 7 390Ω 3 CA OUT 6 C3 3 JP12 3x 100n 6N137 1 NC NC 4 8 100n 4 22 18 12 5 0 9 0 D7 2 AD7 1 2 3 11 3 R8 5 D6 1 MODE TP 5V D5 28 AD6 CLKOUT 7 5V 5 VREF CANL 6 0 AD5 C2 1 D4 27 AD4 TX0 13 1 TXD IC4 C9 D3 26 IC3 19 4 AD3 RX0 R4 100n U RXD PCA JP2 10µ 16V D2 25 AD2 Ω 8 b 8 82C250 7 D1 24 AD1
in „CAN mir das einer mal erklären?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STC15-English.pdf
D D / O I L D AD0/P0.0 i 1 40 P4.5/ALE A A A P M M S R AD1/L0.1 2 P 39 P2.7/A15 C _ AD3/P0.3 3 D 38 P2.6/A14 O AD4/P0.4 5 P 36 P2.4/A12/SS_2 L U AD5/P0.5 6 4 35 P2.3/A11/MOSI_2 M C AD6/P0.6 7 0 34 P2.2/A10/MISO_2 AD7
in „Testbericht Elektronische Last“ · Analoge Elektronik und Schaltungstechnik ·
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MAX44009.pdf
4096 8192 368.6 737.3 2.88 8192 16,384 737.3 1474.6 5.76 16,384 32,768 1474.6 2949.1 11.52 32,768 65,536 2949.1 5898.2 23.04 65,536 131,072 5898.2 11,796.5 46.08 131,072 262,144 11,796.5 23,593.0 92.16 262,144 524,288 23,593.0 47,185.9 184.32 524,288 1,048,576 47,185.9 94,371.8 368.64 1,048,576 2,097,152
in „Helligkeitssensor Threshold festlegen“ · Mikrocontroller und Digitale Elektronik ·
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MS-17631_2.0.pdf
X_C10u6.3X50805 A31 VSS VSS AL18 C22 VSS VSS K7 AB35 VCC VDDQ AE5 AA4 VSS VSS AL20 C26 VSS VSS K9 AD25 VCC VDDQ AH11 AA11 VSS VSS AL23 C30 VSS VSS L26 AC30 VCC VDDQ K11 C547 ▯ C523 C541 C536 AA25 VSS VSS E22 C32 VSS VSS L6 AC32 VCC VDDQ N81 X_C10u6.3X50805 C10u6.3X50805 X_C10u6.3X50805 C10u6.3X50805
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Eeprom2.txt
ld e,d .data:00001acc 2e 62 ld l,0x62 .data:00001ace 5a ld e,d .data:00001acf 3c inc a .data:00001ad0 4d ld c,l .data:00001ad1 5a ld e,d .data:00001ad2 48 ld c,b .data:00001ad3 47 ld b,a .data:00001ad4 5a ld e,d .data:00001ad5 43 ld b,e .data:00001ad6 34 inc (hl) .data:00001ad7 5a ld e,d .data:00001ad8
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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sh7020.pdf
9 8 7 6 5 4 3 2 1 0 9 8 7 6 5 4 3 2 1 0 9 8 7 6 0 9 9 9 9 9 9 9 9 9 9 8 8 8 8 8 8 8 8 8 8 7 7 7 7 AD0 1 1 75 WDTOVF AD1 2 74 NMI AD2 3 73 VCC VSS 4 72 XTAL AD3 5 71 EXTAL AD4 6 70 VSS AD5 7 69 CK AD6 8 68 PA15/IRQ3/DREQ1 AD7 9 67 PA14/IRQ2/DACK1 AD8 10 66 PA13/IRQ1/DREQ0/TCLKB AD9 11 65 PA12/IRQ0/DACK0
in „welche GPS-Maus ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
output.txt
Disassembler skipped two bytes. 212: nop 214: nop 216: nop .word 0x0044 ; Invalid opcode at 0x0218 (536). Disassembler skipped two bytes. .word 0x0045 ; Invalid opcode at 0x021a (538). Disassembler skipped two bytes. .word 0x0022 ; Invalid opcode at 0x021c (540). Disassembler skipped two bytes. 21e: nop
in „Atmega8 löst Timerinterrupt nicht aus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Eeprom_1.txt
LD (HL),L 3272 1ACB 5A LD E,D 3273 1ACC 2E 62 LD L,62H 3274 1ACE 5A LD E,D 3275 1ACF 3C INC A 3276 1AD0 4D LD C,L 3277 1AD1 5A LD E,D 3278 1AD2 48 LD C,B 3279 1AD3 47 LD B,A 3280 1AD4 5A LD E,D 3281 1AD5 43 LD B,E 3282 1AD6 34 INC (HL) 3283 1AD7 5A LD E,D 3284 1AD8 CD 02 03 CALL L0079 3285 1ADB C3 2B
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SMY202.HEX.txt
:20AD6000174827ED450200441C08021CBC4620FE6DD0072064201CF0CC1CCC44CC42C81C95 :20AD800001484502004446C6460089681442D20E65D00742B2461C151CC6461C27EC8938A7 :20ADA0001C42DA0E69D00742B2461C171CC6461C27EC090242114C897B6742D608174C654C
in „[V] Rohde und Schwarz SMY02 9kHz-2.080Gh Signal Generator“ · Markt ·
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DisAsm-MI6311.pdf
$3B4F6 EXT_03A9 EQU $3B4FA EXT_03AA EQU $3B4FE EXT_03AB EQU $3B50C ^Q^@^B[] EXT_03AC EQU $3B516 EXT_03AD EQU $3B51A ^Q^A^B~ EXT_03AE EQU $3B528 EXT_03AF EQU $3B536 EXT_03B0 EQU $3B544 EXT_03B1 EQU $3B552 ^Q^@^B[] EXT_03B2 EQU $3B55C EXT_03B3 EQU $3B560 EXT_03B4 EQU $3B56E ^Q^@^B[] EXT_03B5 EQU $3B578 EXT
in „Suche Simulator für Motorola 68k“ · Mikrocontroller und Digitale Elektronik ·
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Datei
asm.txt
HAL_RCC_GET_SYSCLK_SOURCE() == RCC_CFGR_SWS_PLL) && (__HAL_RCC_GET_PLL_OSCSOURCE() == RCC_PLLSOURCE_HSE))) 8000ad0: 4b2f ldr r3, [pc, #188] ; (8000b90 <HAL_RCC_OscConfig+0x2a8>) 8000ad2: 689b ldr r3, [r3, #8] 8000ad4: f003 030c and.w r3, r3, #12 { /* Check the parameters */ assert_param(IS_RCC_HSE(RCC_OscInitStruct
in „NUCLEO-L432KC Blinky Projekt mit 11kB Speicherverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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25AA128.pdf
1L7 8-Lead TSSOP Example: TSSOP 1st Line Marking XXXX 5LD Device std mark TYWW I328 NNN 1L7 25AA128 5AD 25AA128X 5ADX 25LC128 5LD 25LC128X 5LDX Legend: XX...X Customer-specific information Y Year code (last digit of calendar year) YY Year code (last 2 digits of calendar year) WW Week code (week of January
in „SPI EEPROM -> Kein Page read :- O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN_106f.pdf
–V OUTPUT – A2 IN1 OUT + 0V TO 1V 10k* LT1222 LTC1966 A4 – 10k* IN2 OUT RTN 1µF LT1077 EN GND – 1M 536Ω* 200Ω* 100k AN106 F09 LOW FREQUENCY/DC PATH + DC + AC AC 100pF A3 LTC1050 RMS STAGE INPUT COUPLING – *1% METAL FILM RESISTOR 1M* 1µF = WIMA MKS-2 1k* Figure 9. X1000 Preamplifier Allows 1mV Full-Scale
in „Netzspannung messen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S6D0154X_Data_Sheet_Rev1.00.pdf
0 0 0 0 0 0 0 0 (0) (0) (0) 0 0 0 0 VCIR2-0: VCI Recycling period setting R20h W 1 0 0 0 0 0 0 0 0 AD7 AD6 AD5 AD4 AD3 AD2 AD1 AD0 RAM address register (R20H)/ (0) (0) (0) (0) (0) (0) (0) (0) AD7-AD0 AD16 AD15 AD14 AD13 AD12 AD11 AD10 AD9 AD8 RAM address register (R21H)/ R21h W 1 0 0 0 0 0 0 0 (0) (0
in „Nokia N95-Display“ · Mikrocontroller und Digitale Elektronik ·
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Grundig-DVDP-7000-Service-Manual.pdf
A9 DQ6 42 SD6 ALE ALE R308 33 (ALE) 12 9 (T1/P3.5) I2C_SDA I2C_SDA SA9 8 A8 8 DQ5 40 SD5 SD0 (P0.0/AD0) 13 8 (T0/P3.4) I2C_SCK I2C_SCK +3.3V SA8 18 A7 J DQ4 38 SD4 +3.3V SD1 (P0.1/AD1) 14 7 (/INT1/P3.3) /VFD_CS /VFD_CS SA7 19 A6 8 DQ3 35 SD3 C313 SD2 (P0.2/AD2) 15 6 (/INT0/P3.2) IR_IRQ IR_IRQ SA6 20 A5 0 DQ2 33 SD2 SD3 (P0.3/AD3) 16 5 (TXD/P3.1) TXD TXD SA5 21 A4 DQ1 31 SD1 22p SD4 (P0.4/AD4) 17 4 (RXD/P3.0) RXD RXD SA4 22 A3 0 DQ0 29 SD0 R302 SD5 (P0.5/AD5) 18 3 R301 SA3 23 A2 B SD 6 (P0.6/AD6) 19 2 (XTAL1) SA2 24 A1 / NC
in „800x480-Farbdisplay mit uC verwenden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Castillo112.c
, 0xC3C2, 0xAD00, 0xA141, 0x48B5, 0x022D, 0x4488, 0x710A, 0xAD43, 0x0116, 0x23C4, 0x08B5, 0x1220, 0xD681, 0x860A, 0xE3DF, 0x2F37, 0x23C8, 0x42F3, 0x56AD, 0xFC28, 0x857E, 0xBC5A, 0x08F0, 0x1E04, 0x4306, 0x10CD, 0x5EBF
in „BMP/JPEG/GIF/PNG nach C-Code konvertieren“ · Projekte & Code ·
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PDF
TriBoardManual-TC179X-V40.pdf
P1.14 P0.12 67 68 P0.13 GPTA31 / P4.7 67 68 P1.15 3V3 69 70 3V3 TCLK0 / P1.4 69 70 RDATA0 / P1.11 AD0EMUX0 / P7.2 71 72 AD1EMUX0 / P7.6 TREADY0 / P1.5 71 72 RVALID0 / P1.10 AD0EMUX1 / P7.3 73 74 AD1EMUX1 / P7.7 TVALID0 / P1.6 73 74 RREADY0 / P1.9 REQ5 / P7.1 75 76 P0.14 TDATA0 / P1.7 75 76 RCLK0 / P1.8
in „Schaltplan vom Starter Kit TC1797“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s3esk_authentication.pdf
. In my design, the actual authentication value is only 16-bits which means that there are only 65,536 possible combinations to try. Such a Brute force attack is made much easier by having such a low number of bits and consequently your algorithm should yield larger authentication values. However, my
in „Reverse Engineering verhindern/erschweren“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
EPROM_0000_7FFF.lst
0ACB 4F LD C,A 1503 0ACC 66 LD H,(HL) 1504 0ACD 6D LD L,L 1505 0ACE 7D LD A,L 1506 0ACF 07 RLCA 1507 0AD0 7F LD A,A 1508 0AD1 6F LD L,A 1509 0AD2 E5 L0426: PUSH HL 1510 0AD3 D5 PUSH DE 1511 0AD4 C5 PUSH BC 1512 0AD5 CD 48 0C L0158: CALL L0156 1513 0AD8 47 LD B,A 1514 0AD9 20 05 JR NZ,L0157 1515 0ADB 32
in „Hilfe bei Z80 Opcodes“ · Mikrocontroller und Digitale Elektronik ·
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Datei
M51.c
0x7B4C, 0x836D, // 0x2DB0 (11696) pixels 0x838E, 0x8BF0, 0x9C52, 0xA4B4, 0xA4D4, 0xACF5, 0xACF5, 0xB536, 0xB535, 0xAD14, 0xB534, 0xAD14, 0xACF4, 0xA4D3, 0x9C72, 0x8C31, // 0x2DC0 (11712) pixels 0x83D0, 0x736E, 0x6B0D, 0x62CC, 0x5AAC, 0x528B, 0x526A, 0x526A, 0x4A29, 0x4A29, 0x4A29, 0x4A08, 0x4208, 0x4208
in „Astrosimulationen/Galaxienkollision mit Arduino“ · Projekte & Code ·
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Datei
objdump.txt
800ad18: 73646e6f .word 0x73646e6f 800ad1c: 00000a0d .word 0x00000a0d 800ad20: 6e6b6e55 .word 0x6e6b6e55 800ad24: 206e776f .word 0x206e776f 800ad28: 61726170 .word 0x61726170 800ad2c: 6574656d .word 0x6574656d 800ad30: 000a0d72 .word 0x000a0d72 800ad34: 726f7453 .word 0x726f7453 800ad38: 6e206465 .word 0x6e206465 800ad3c: 73207765 .word 0x73207765 800ad40: 69747465 .word 0x69747465 800ad44: 0a0d676e .word 0x0a0d676e
in „STM32F4 HardFault Interrupt bei stdlib Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
0513.asm
& manual == 0) then return movf H'014',w sublw H'23' btfss H'003',2 goto if_15706_by e_15712: ; 00AD movf H'017',f btfsc H'003',2 if_15706_th: ; 00AF ;; 267 : end if goto e_15700_readbutton_up if_15706_by: ; 00B0 ;; 268 : if pin_a0 == low then btfsc H'005',0 goto if_15722_by if_15722_th: ; 00B2 ;; 447
in „Jal compilieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stc32g-en.pdf
27 14 P3.1/TxD/D+ PWM4N_2/A15/P2.7 28 stc32g12k128 13 G3.0/RxD/D-/INT4 CAN_RX/T3_2/PWM5_3/RxD3/ADC8/AD0/P0.0 29 LQFP32 12 ADd/AGnd CAN_TX/T3CLKO_2/PWM6_3/TxD3/ADC9/AD1/P0.1 30 11 VcC_VRef+ LIN_RX/CAN2_RX/T4_2/ PWM7_3/RxD4/ADC10/AD2/P0.2 31 10 P c/AVcc LIN_TX/CAN2_TXT4CLKO_2/PWM8_3/TxD4/ADC11/AD3/P0.3
in „STC32 -- 8051 auf Steroide“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTSpice_XVII__Tutorial.pdf
8.942E-9 ISS 3 10 DC 195.0E-6 HLIM 90 0 VLIM 1K J1 11 2 10 JX J2 12 1 10 JX R2 6 9 100.0E3 RD1 4 11 3.536E3 RD2 4 12 3.536E3 RO1 8 5 150 RO2 7 99 150 RP 3 4 2.143E3 RSS 10 99 1.026E6 50 VB 9 0 DC 0 VC 3 53 DC 2.200 VE 54 4 DC 2.200 VLIM 7 8 DC 0 VLP 91 0 DC 25 VLN 0 92 DC 25 .MODEL DX D(IS=800.0E-18) .MODEL
in „Triac selbsterhaltend triggern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTSpice_XVII__Tutorial_korr.pdf
8.942E-9 ISS 3 10 DC 195.0E-6 HLIM 90 0 VLIM 1K J1 11 2 10 JX J2 12 1 10 JX R2 6 9 100.0E3 RD1 4 11 3.536E3 RD2 4 12 3.536E3 RO1 8 5 150 RO2 7 99 150 RP 3 4 2.143E3 RSS 10 99 1.026E6 50 VB 9 0 DC 0 VC 3 53 DC 2.200 VE 54 4 DC 2.200 VLIM 7 8 DC 0 VLP 91 0 DC 25 VLN 0 92 DC 25 .MODEL DX D(IS=800.0E-18) .MODEL
in „Simulation LT Spice“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Castillo19.c
0x5136, 0x0154, 0x592E, 0x98AA, 0x0212, 0x4136, 0xD298, 0x70A0, 0x3AC0, 0x1D60, 0x2603, 0x4BB8, 0xAD83, 0xD2B4, 0x6D0E, 0x14ED, 0x1AD8, 0xAD84, 0x16AE, 0x8856, 0x2536, 0x2A94, 0x2984, 0x14A4, 0x6C20, 0xB4E7, 0x1A96, 0x103D, 0x039E, 0x0253, 0x0109, 0x4F0A, 0xD53B, 0x7818, 0x3260, 0xC289, 0xDA16, 0xA769
in „BMP/JPEG/GIF/PNG nach C-Code konvertieren“ · Projekte & Code ·
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PDF
PIC18f6622.pdf
CCP2MX = 1, all other Program Memory modes: (1) (1) (1) (1) Compatible CCP 00xx 11xx RB3/INT3 ECCP2 AD15 AD10 AD9 AD8 Dual PWM 10xx 11xx RB3/INT3 P2A AD15 (1) AD10/P2B(1) AD9(1) AD8 (1) Quad PWM x1xx 11xx RB3/INT3 P2A AD15 (1) AD10/P2B(1) AD9/P2C(1) P2D/AD8 (1) PIC18F8527/8622/8627/8722 Devices, CCP2MX = 0, all other Program Memory modes: Compatible CCP 00xx 11xx ECCP2 RC1/T1OSI AD15 (1) AD10(1) AD9(1) AD8 (1) Dual PWM 10xx 11xx P2A RC1/T1OSI AD15 (1) AD10/P2B(1) AD9(1) AD8 (1) (1) (1) (1) (1) Quad PWM x1xx 11xx P2A RC1/T1OSI AD15 AD10/P2B AD9/P2C P2D/AD8 Legend: x = Don’t care
in „PIC 18F6622 Zeit um EEPROM zu schreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EEPROM.pdf
YYWW 0510 NNN 017 First Line Marking Codes TSSOP Package Codes MSOP Package Codes Part No. 24AA256 4AD 4A256T 24LC256 4LD 4L256T 24FC256 4FD 4F256T © 2005 Microchip Technology Inc. DS21203N-page 13 24AA256/24LC256/24FC256 8-Lead Plastic Dual In-line (P) – 300 mil (PDIP) E1 D 2 n 1 α E A2 A L c A1 β B1
in „EEPROM auslesen (24xx256) mit Pic16f819, an PC über RS232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Low_Drop_Spannungsregler_MCP_1702-5002.pdf
depending on many factors, such as copper area and ADO thickness. Refer to AN792, “A Method to Determine AD1 How Much Power a SOT-23 Can Dissipate in an Application”, (DS00792), for more information regarding this subject. Bridge Sensor TJ(RISE) = PTOTAL x RqJA FIGURE 6-2: Using the MCP1702 as a TJRISE = 218.1
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PDF
MCP1703_MIC.pdf
Thermal Conductivity Test Board for Leaded ADO Surface Mount Packages”. The standard describes the AD1 test method and board specifications for measuring the thermal resistance from junction to ambient. The actual Bridge Sensor thermal resistance for a particular application can vary depending on many
in „Was ist das für ein IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
service_nb_ipc_8170.pdf
2 J 1 0 59 38 AD6 2 1 3 8 72 VDD6 AD6 37 AD7 G 0 7 R 2 2 1 73 NC5 AD7 34 AD8 N 0 5 7 J 77 NC6 AD8 33 AD9 D 2 1 2 3 1 O 90 VDD9 AD9 32 AD10 4 5 96 VDD10 AD10 31 AD11 5 1 K 8 1 C 6 5 1 O 8 7 6 5 4 3 2 1 VDD11 AD11 AD12
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PDF
UM_10120_LPC213x_User_Manual.pdf
to any pin that is selected as an ADC input, or the ADC reading will be incorrect. If for example AD0.0 and AD0.1 are used as the ADC0 inputs and voltage on AD0.0 = 4.5 V while AD0.1 = 2.5 V, an excessive voltage on the AD0.0 can cause an incorrect reading of the AD0.1, although the AD0.1 input voltage
in „Zeichen im Interrupt empfangen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UM10120_1.pdf
to any pin that is selected as an ADC input, or the ADC reading will be incorrect. If for example AD0.0 and AD0.1 are used as the ADC0 inputs and voltage on AD0.0 = 4.5 V while AD0.1 = 2.5 V, an excessive voltage on the AD0.0 can cause an incorrect reading of the AD0.1, although the AD0.1 input voltage
in „Baudrate Abtastfrequenz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vergleichsliste.pdf
2SC1384 ECG129 2N4036 2N4037 BC303 ECG129P 2SA684 ECG130 2N3055 2N3715 2SD878 2SD492 2N3716 ECG131 AD162 AD156 ECG132 A5T3823 ECG133 2N3819 TIS74 ECG134A 1N4729A ECG135A 1N4733A EQB01-05 RD6.2F ECG136A 1N4734A RD6.8F EQB01-06 ECG137A 1N4735A ECG138A 1N4737A BZ-075 ECG139A 1N4739A BZ-090 ECG140A 1N4740A
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PIC_18F8722_Data_Sheet.pdf
CCP2MX = 1, all other Program Memory modes: (1) (1) (1) (1) Compatible CCP 00xx 11xx RB3/INT3 ECCP2 AD15 AD10 AD9 AD8 10xx 11xx RB3/INT3 P2A AD15 (1) AD10/P2B(1) AD9(1) AD8(1) Dual PWM Quad PWM x1xx 11xx RB3/INT3 P2A AD15 (1) AD10/P2B(1) AD9/P2C(1) P2D/AD8(1) PIC18F8527/8622/8627/8722 Devices, CCP2MX = 0, all other Program Memory modes: 00xx 11xx ECCP2 RC1/T1OSI AD15 (1) AD10 (1) AD9(1) AD8(1) Compatible CCP Dual PWM 10xx 11xx P2A RC1/T1OSI AD15 (1) AD10/P2B(1) AD9(1) AD8(1) Quad PWM x1xx 11xx P2A RC1/T1OSI AD15 (1) AD10/P2B(1) AD9/P2C(1) P2D/AD8(1) Legend: x =
in „PIC 18F6527 mit 32MHz Takten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NEP_2037_2045_Bestaetigung.pdf
P408 M744 Emscherbruch – Hüllen – Eiberg P410 M624 Phasenschiebertransformatoren in Ostwestfalen (Ad-hoc- Maßnahme) BUNDESNETZAGENTUR | 7 P412 Anlagen zur Bereitstellung von Blindleistung und Momentanreserve in der Regelzone der Amprion GmbH P420 M630 Punkt Reicheneck – Punkt Rommelsbach (Ad-hoc-Maßnahme
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PDF
P87LPC767BN.pdf
SYMBOL VDD VSS CMP2 TxD CIN2B RxD CIN2A T0 SCL 1 AD0 CIN1B T T INT0 SDA AD1 CIN1A R R INT1 P P AD2 CMPREF RST AD3 CMP1 T1 CLKOUT/X2 2 T O X1 P SU01350 2001 Aug 07 2 Philips Semiconductors Product data Low power, low price, low pin count (20 pin) 87LPC767
in „uC P87LPC767 ,ports als schmitt-trigger eingänge“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nightsky_arx15.pdf
T4 AD30 GND GND AL4 AU6 GND GND BG7 G51 GND GND T43 AD31 GND GND AL43 AU8 GND GND BH15 G6 GND GND T45 AD32 AL45 AV4 BH18 H1 T47 m AD33 GND GND AL47 AV45 GND GND BH2 H10 GND GND T49 AD34 GND GND AL49 AV9 GND
in „SMD TGAJ TVS Diode USB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disassebled_original_working.asm
0f 91 pop r16 1aca: 0c 94 42 05 jmp 0xa84 ; 0xa84 <attachInterrupt> 1ace: 24 30 cpi r18, 0x04 ; 4 1ad0: 11 f4 brne .+4 ; 0x1ad6 <_Z12register_pcihhPFvvEh.part.4+0x50> 1ad2: 44 e0 ldi r20, 0x04 ; 4 1ad4: f7 cf rjmp .-18 ; 0x1ac4 <_Z12register_pcihhPFvvEh.part.4+0x3e> 1ad6: c2 2f mov r28, r18 1ad8: 44
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
AVDD V (Note 1) AD05a 2.5 — 3.6 V V REFH= AV DD(Note 3) AD06 VREFL Reference Voltage Low AVSS — VREFH – 2.0 V (Note 1) AD07 VREF Absolute Reference 2.0 — AVDD V (Note 3) Voltage (REFH– VREFL) AD08 IREF Current Drain — 250 400 µA ADC operating AD08a — — 3 µA ADC off Analog Input AD12 VINH-VINL Full-Scale Input Span VREFL — VREFH V — AD13 VINL Absolute INLInput AV SS– 0.3 — AVDD /2 V — Voltage AD14 VIN Absolute Input VoltageAV SS– 0.3 — AV DD+
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
AVDD V (Note 1) AD05a 2.5 — 3.6 V V REFH= AV DD(Note 3) AD06 VREFL Reference Voltage Low AVSS — VREFH – 2.0 V (Note 1) AD07 VREF Absolute Reference 2.0 — AVDD V (Note 3) Voltage (REFH– VREFL) AD08 IREF Current Drain — 250 400 µA ADC operating AD08a — — 3 µA ADC off Analog Input AD12 VINH-VINL Full-Scale Input Span VREFL — VREFH V — AD13 VINL Absolute INLInput AV SS– 0.3 — AVDD /2 V — Voltage AD14 VIN Absolute Input VoltageAV SS– 0.3 — AV DD+
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·
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Datasheet_ILI9225DS_V022.pdf
x x x x VCIR2 VCIR1 VCIR0 x x x VCIR (0) (0) (0) _VSS(0) 20h RAM Address Set 1 W 1 x x x x x x x x AD7 AD6 AD5 AD4 AD3 AD2 AD1 AD0 (0) (0) (0) (0) (0) (0) (0) (0) 21h RAM Address Set 2 W 1 x x x x x x x x AD15 AD14 AD13 AD12 AD11 AD10 AD9 AD8 (0) (0) (0) (0) (0) (0) (0) (0) Page 48 of 113 Version: 0.22
in „STM32F103 TFT SPI ILI9225“ · Mikrocontroller und Digitale Elektronik ·
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CoolTerm_Capture__FritzAVM_1V8.CoolTermSettings__2026-06-27_08-52-21-633.txt
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in „FRITZ!Box 7490 Bootloop“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Castillo33.c
0x7ACA, // 9 R: 85 G: 91 B: 126 0x08C9, // 10 R: 77 G: 24 B: 14 0x3AB3, // 11 R: 158 G: 84 B: 63 0xAD9B, // 12 R: 218 G: 177 B: 173 0xCD71, // 13 R: 142 G: 173 B: 204 0x3AF9, // 14 R: 203 G: 93 B: 57 0x536C, // 15 R: 102 G: 109 B: 85 0x7B93, // 16 R: 153 G: 113 B: 123 0x7E5C, // 17 R: 229 G: 203 B: 121
in „BMP/JPEG/GIF/PNG nach C-Code konvertieren“ · Projekte & Code ·
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Datei
Castillo33.c
0x7ACA, // 9 R: 85 G: 91 B: 126 0x08C9, // 10 R: 77 G: 24 B: 14 0x3AB3, // 11 R: 158 G: 84 B: 63 0xAD9B, // 12 R: 218 G: 177 B: 173 0xCD71, // 13 R: 142 G: 173 B: 204 0x3AF9, // 14 R: 203 G: 93 B: 57 0x536C, // 15 R: 102 G: 109 B: 85 0x7B93, // 16 R: 153 G: 113 B: 123 0x7E5C, // 17 R: 229 G: 203 B: 121
in „Bilder umwandeln für C/C++ Code“ · Softwareentwicklung ·
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542-01945-0-Z86E04.pdf
I M I N A R Y 3 Z86E04/E08 CMOS Z8 OTP Microcontrollers Zilog GENERAL DESCRIPTION (Continued) D7–0 AD 10–0 Z8 MCU AD 10–0 Address MUX D7–0 Data MUX EPROM Address AD 10–0 Counter D7–0 Z8 Port 2 3 bits ROM PROT Low Noise Clear Clock PGM P00 P01 Mode Logic VPP EPM PGM P33 P32 P30 CE OE P31 XT1 Figure 2.
in „Pollin Ladegerät WCFD0801500IFOON : Rückwärts Ingenieur gesucht !“ · Mikrocontroller und Digitale Elektronik ·
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HX8340-B_T__DS_preliminary_v01_080313.pdf
--- (03,AC)H (03,AD)H (03,AE)H (03,AF)H (04,00)H (04,01)H (04,02)H --------- (04,AC)H (04,AD)H (04,AE)H (04,AF)H (05,00)H (05,01)H (05,02)H --------- (05,AC)H (05,AD)H (05,AE)H (05,AF)H - - - - - - - - (D6,00)H (D6,01)H
in „SAMMELBESTELLUNG: 2"2 TFT Display mit 16bit digital interface“ · Markt ·