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13504_TM_X19AQ00214.pdf
t9min = [((REG[0Ch] bits [2:0])+1)] lines 6. t10 min= [((REG[04h] bits [6:0])+1)*8] Ts 7. t12 = [((REG[06h] bits [4:0])+1)*8] Ts min 8. t14 min= [((REG[04h] bits [6:0])+1)*8] Ts 9. t15 = [((REG[06h] bits [4:0])+1)*8 - 2] Ts min 10. t17 min= [((REG[05h] bits [4:0]
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
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FR_Family_MB91F109.pdf
0E — 3C4 H 000FFFC4 H NMI request 15 0F FH fixed 3C0 H 000FFFC0 H External interrupt 0 16 10 ICR00 3BC H 000FFFBC H External interrupt 1 17 11 ICR01 3B8 H 000FFFB8 H External interrupt 2 18 12 ICR02 3B4 H 000FFFB4 H External interrupt 3 19 13 ICR03 3B0 H 000FFFB0 H UART0 receive complete 20 14 ICR04 3AC
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_User_Manual_EN_V1.0.pdf
BKP base address: 0x4000 6C00 4.4.1. Backup data register x (BKP_DATAx) (x= 0..41) Address offset: 0x04 to 0x28, 0x40 to 0xBC Reset value: 0x0000 This register can be accessed by half-word (16-bit) or word (32-bit) 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 DATA [15:0] rw Bits Fields Descriptions 15:0 DATA[
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STK500-Test_in_C_ASM-Translate.txt
54: 11 24 eor r1, r1 56: 1f be out 0x3f, r1 ; 63 58: cf e5 ldi r28, 0x5F ; 95 5a: d4 e0 ldi r29, 0x04 ; 4 5c: de bf out 0x3e, r29 ; 62 5e: cd bf out 0x3d, r28 ; 61 00000060 <__do_copy_data>: 60: 10 e0 ldi r17, 0x00 ; 0 62: a0 e6 ldi r26, 0x60 ; 96 64: b0 e0 ldi r27, 0x00 ; 0 66: ee e9 ldi r30, 0x9E ;
in „STK500 Testprog funzt in C funzt nicht?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
polli-bot.txt
with ECC Bootscript version 0x00130001 EMG boot Hynix, 8bit, 64MB MicroBTM, Compiled Sep 11 2008 14:04:11 Using Uart 0 Initialising NAND driver...OK Loading Bootloader... Nand Address:00004400 (Page load to VAddr:80030000) Nand Address:00004600 (Page load to VAddr:80030200) Nand Address:00004800 (Page
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MRF89XAM8A.pdf
power setting with 8 Steps of typ. 3 dB — -8.5 — dBm Minimum power setting PN Phase Noise — -112 — dBc/Hz Measured with a 600 kHz offset at the transmitter output TXSP Transmitted Spurious — — -47 dBc At any offset between 200 kHz and 600 kHz, unmodulated carrierdev= 50 kHz (2) Tx2 Second Harmonic No
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·
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Datei
devlist.txt
,P3 27LV512R . . . .0) *4220 D1,P3 28C010 . . . . .1) 4234 D1,P3 28C010E . . . . .1) 4235 D1,P3 28C04 . . . . . .1) 4236 D1 28C04E . . . . .1) 4237 D1 28C04F . . . . .1) 4238 D1 28C040 . . . . .1) 6162 D1,P3 28C16 . . . . . .1) 4240 D1,P3 28C16E . . . . .1) 4241 D1,P3 28C16F . . . . .1) 4242 D1,P3 28C17
in „PROM lesen /schreiben / Programmiergerät“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATARI_PBI_FPGA.vhd
für z.B. Freezer / Bibomon IRQ: out std_logic := '0'; -- IRQ Ausgang, um den ATARI zu bremsen (über BC847 Transistor) clk50: in std_logic; -- 50Mhz Oszillator gpio: inout std_logic_vector(13 downto 0); -- freie IOs, rechte Seite ab Layout V3 gpin: in std_logic_vector(1 downto 0); -- freie INs, rechte
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PDF
Si4430-31-32.pdf
bandwidth — 2 4 kHz RMS (500 Hz lower bound of integration) 2 Phase Noise L(M ) F = 10 kHz — –80 — dBc/Hz F = 100 kHz — –90 — dBc/Hz F = 1 MHz — –115 — dBc/Hz F = 10 MHz — –130 — dBc/Hz Notes: 1. All specification guaranteed by production test unless otherwise noted. Production test conditions and
in „Leistungsanpassung bei bipolar Transistoren?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
dude511.txt
Device code: 0x02 = (unknown) avrdude: Recv: . [03] Device code: 0x03 = (unknown) avrdude: Recv: . [04] Device code: 0x04 = (unknown) avrdude: Recv: . [05] Device code: 0x05 = (unknown) avrdude: Recv: . [06] Device code: 0x06 = (unknown) avrdude: Recv: . [07] Device code: 0x07 = (unknown) avrdude: Recv
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dude511_mit_arduino_conf.txt
Device code: 0x02 = (unknown) avrdude: Recv: . [03] Device code: 0x03 = (unknown) avrdude: Recv: . [04] Device code: 0x04 = (unknown) avrdude: Recv: . [05] Device code: 0x05 = (unknown) avrdude: Recv: . [06] Device code: 0x06 = (unknown) avrdude: Recv: . [07] Device code: 0x07 = (unknown) avrdude: Recv
in „avrdude - Probleme unter Mac OS X 10.7 (Lion)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lpc111x.h
0x028) #define U0TER REGISTER_32(UART_BASE + 0x030) #define U0RS485CTRL REGISTER_32(UART_BASE + 0x04c) #define U0RS485ADRMATCH REGISTER_32(UART_BASE + 0x050) #define U0RS485DLY REGISTER_32(UART_BASE + 0x054) // TMR16B0 #define TMR16B0IR REGISTER_32(TMR16B0_BASE + 0x000) #define TMR16B0TCR REGISTER_32
in „LPC1114FN28 und GPIO“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Graphics primitve #define BITMAPS 0x01 #define POINTS 0x02 #define LINES 0x03 #define LINE_STRIP 0x04 #define EDGE_STRIP_R 0x05 #define EDGE_STRIP_L 0x06 #define EDGE_STRIP_A 0x07 #define EDGE_STRIP_B 0x08 #define RECTS 0x09 // Graphics Engine Registers - FT81x Series Programmers Guide Section 3.1 //
in „STM32F407 DISCOVERY mit EVE3 50GTPC von MatrixOrbital“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD815_SOP.pdf
E C –0.04 1 2 3 4 5 6 7 8 9 10 11 –0.3 –0.2 A –4 E A B U 2 BACK TERMINATED LOADS (75⍀) s F0.3 VIN –5 E 0.010 0.12 e D 100⍀ V F % 0.005 PHASE 0.10 g Z–0.4 OUT –6 D – 0.000 GAIN 0.08 e L 49.9⍀ ⴞ5V E I–0.005 G = +2 0.06 – A L A RF = 1k⍀ E R0.5 499⍀ 499⍀ 100⍀ –7 A G–0.010 0.04 S O M I–0.015 GAIN NTSC 0.02 H –0.6 –8 O D–0.020 PHASE 0.00 P N –0.025 –0.02 F –0.7 –9 –0.030 –0.04 D 0.1 1 10 100 300 1 2 3 4 5 6 7 8 9 10 11 FREQUENCY – MHz Figure 28. Differential Gain and Differential
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PDF
rej09b0101_16c29hm_2_.pdf
CM17=1 CM05=1 CM16=0 CM11=0 CM16=0 CM16=1 CM16=0 CM06=1 CM16=1 CM21=1 f(ROC)/16 (1) f(ROC)/16 (5) CM04=1 CM04=0 CM04=1 CM04=0 CM04=1 CM04=0 CM04=1 CM04=0 On-chip oscillator PLL operation On-chip oscillator low power mode Middle-speed mode Middle-speed mode Middle-speed mode Middle-speed mode PLC07=1 High-speed
in „Zeitproblem bei Softwarepwm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
e1529_k8v.pdf
DDR400QualifiedVendor List (QVL) Size Vendor Model ChipBrand SS/DS Chip 256M Micron MT8VDDT3264AG-40BC4 Micron SS MT46V32M8TG-5BC 256M Micron MT8VDDT3264AG-40BC4 Micron SS MT46V32M8TG-5BC 512M Micron MT16VDDT6464AG-40BC4 Micron DS MT46V32M8TG-5BC 128M Infineon HYS64D16301GU-5-B Infineon SS HYB25D256160BT
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PDF
6ff78f.pdf
2001 RESISTOR 2K (SMD)1% 2 R54,62 3 0-16-2201 RESISTOR 2.2K (SMD)1% 2 R12,21 3 0-16-6041 RESISTOR 6.04K (SMD)1% 2 R98,101 3 0-16-7321 RESISTOR 7.32K (SMD)1% 4 R130,131,132,133 3 0-16-7501 RESISTOR 7K5 (SMD) 1 R230 3 0-16-8201 RESISTOR 8K2 (SMD)1% 5 R181,193,223,294,300 3 1-56-0100 CERAMIC 10P (SMD) 2
in „Mischpult "Alesis Multimix 8" (Knallen auf allen Ausgängen)“ · Analoge Elektronik und Schaltungstechnik ·
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lg_lh-cx245_cx246_cx247_cx640__1_.pdf
917.2917.29 15 0.00 0.00 41 1.18 1.1 10 17.27 17.27 16 2.52 2.52 42 1.4 1.3 11 17.27 17.27 17 0.00 0.00 43 1.04 1.17 12 35.31 35.31 18 2.52 2.52 44 1.42 1.33 13 0.31 0.31 190.00 0.00 45 2.04 1.88 14 0.33 0.33 20 2.092.09 46 0 0 15 35.31 35.31 21 2.06 2.06 47 0 0 16 35.31 35.31 22 0.00 0.00 48 17 35.31 35.31 23
in „Netzteil von LG LH-C360 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
rxv396.pdf
10Ω 1W CB806 Vi878200 CN.BS.PIN 4P R721 VP940400 R.MTL.OXD 100Ω 1W CB810 VP206500 HOLDER.FUS EYF-52BC (G) R724 VP940400 R.MTL.OXD 100Ω 1W CB811 VP206500 HOLDER.FUS EYF-52BC (G) R725 HV753100 R.CAR.FP 1Ω 1/4W CB812 VG879900 CN.BS.PIN 2P R726 HV753100 R.CAR.FP 1Ω 1/4W CB813 VP206500 HOLDER.FUS EYF-52BC R729 HV753100 R.CAR.FP 1Ω 1/4W CB814 VP206500 HOLDER.FUS EYF-52BC R730 VP939600 R.MTL.FLM 2.2Ω 1W CB901 VP206500 HOLDER.FUS EYF-52BC (RT) ✻ SW501 V4586200 SW.RT.ENC REB161PVB20F CB902 VP206500 HOLDER.FUS EYF-52BC (RT) SW502 VG392900 SW.TACT SKHVAA C201 VR325000 C.MYLAR
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pic33h_1_same_dac.s
0x9F10 , 0xA220 , 0xA520 , 0xA820 , 0xAB10 .word 0xAE00 , 0xB0F0 , 0xB3D0 , 0xB6B0 , 0xB980 .word 0xBC50 , 0xBF10 , 0xC1C0 , 0xC470 , 0xC710 .word 0xC9A0 , 0xCC30 , 0xCEB0 , 0xD120 , 0xD390 .word 0xD5F0 , 0xD830 , 0xDA70 , 0xDCA0 , 0xDED0 .word 0xE0E0 , 0xE2E0 , 0xE4E0 , 0xE6C0 , 0xE8A0 .word 0xEA60 ,
in „Filter mit dpic33fj“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
Gal_a.c
0xFFFF8801 #define VIAPBDIR *(char*)0xFFFF8805 #define PIACRB *(char*)0xFFFF8907 #else #define CENTPORT 0x3bc /* lpt1 */ #define DPORT *(char *)CENTPORT /* Datenport */ #define CPORT *(char *)CENTPORT+1 /* Controlport: Bit 7 = BUSY-Leitung */ #endif #define SR_STROBE 0x01 /* Bits von Centronics-port */ #define SR_CLOCK 0x02 #define SR_DATEN 0x04 #define GAL_STROBE 0x08 /* Programmierimpuls und Aulesen */ #define GAL_SDIN 0x10 #define GAL_CLOCK 0x20 #define VCC_5 0x40 /* Vcc 5 Volt einschalten */ #define GAL_SDOUT 0x80 /* zum Auslesen des GALs
in „GAL Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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fernvale-31c3.pdf
objects 0x0000_0200 bootloader signature “BRLYT”, “BBBB” 0x0000_0800 sector header 1 (“MMM.8”) 0x0000_09BC reset vector table 0x0000_0A10 start of ARM32 instructions – stage 1 bootloader? 0x0000_3400 sector header 2 (“MMM.8”) – stage 2 bootloader? 0x0000_A518 thunk table of some type 0x0000_B704 end of code
in „After ESP8266 New Chip Alarm: MT6260 < 3 USD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Rhode_Schwarz_URV3_RF-Millivoltmeter_Schematics.pdf
R88 T20 L7O¡t 10 CD /.66 0U T 10 100k 't1 c 33k BCY 59 IN S1 /I cÁ3 c c 2 100 T ,0 R82 CONT 2k 1k BC R89 T21 R13 5 1 OUT 9 't0k BCY59 lr7 I N D D j1 D 6,7, 9,12 CONT R137 R90 R91 '00k 120 330 J. ST/8U11 1 2 GL3 t3 t1 t5 Y BU12 BUlO c34 L1 BU 32 ST 1 ¡15V T1 1--- c26 GL6 GLlO ^ c18 2N 1,117 c19 220n
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PDF
Rhode_Schwarz_URV3_RF-Millivoltmeter_Schematics.pdf
R88 T20 L7O¡t 10 CD /.66 0U T 10 100k 't1 c 33k BCY 59 IN S1 /I cÁ3 c c 2 100 T ,0 R82 CONT 2k 1k BC R89 T21 R13 5 1 OUT 9 't0k BCY59 lr7 I N D D j1 D 6,7, 9,12 CONT R137 R90 R91 '00k 120 330 J. ST/8U11 1 2 GL3 t3 t1 t5 Y BU12 BUlO c34 L1 BU 32 ST 1 ¡15V T1 1--- c26 GL6 GLlO ^ c18 2N 1,117 c19 220n
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PDF
Serial_LCD-p14-24.pdf
Display custom character 1 2 0x02 Display custom character 2 3 0x03 Display custom character 3 4 0x04 Display custom character 4 5 0x05 Display custom character 5 6 0x06 Display custom character 6 7 0x07 Display custom character 7 8 0x08 Backspace/Left - The cursor is moved one position to the left.
in „Betätigung Klang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
chy100_family_datasheet.pdf
Data Lines T VOUT≥ 0.8 V 10 20 ms Short-Circuit Delay DAT(SHORT) See Figure 5 D+ High Glitch T GLITCH(BC) 1000 1250 1500 ms Filter Time DONE Output Voltage TGLITCH(V) 20 40 60 ms Glitch Filter Time CHANGE D- Pull-Down R DM(DWN) 14.25 19.53 24.5 kΩ Resistance Switch N1 R I = 200 µA 300 Ω On-Resistance DS
in „Handy mit "Falscher" Spannungshohe laden.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
fjrx85Doc.pdf
Keramikfilter 455 kHz) <Helpert (*1)> CR1 ZT465 (Keramik-Resonator 465 kHz) <Conrad 540154> D1 BAS40-04 SOT23 <Reichelt BAS40-04 SMD> D2 Kapazitätsdiode BB629 Mini-MELF <Oppermann Electronic> D3 1A-Diode 1N4001 MELF <Reichelt 1N 4001 SMD> DR1,4 Drossel 10µH 0805 <Reichelt L-0805F 10µ> DR2,3 Drossel 47µH
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Datei
Google_Uebersetzer-Prescaler_12_Ghz.html
gb_l .gb_bc{max-width:244px}}@media screen and (max-width:361px){.gb_l .gb_bc{max-width:calc( calc(100vw - 12px *2) - 12px - 32px - 33px *2)}}@media screen and (min-width:361px){.gb_Xb>.gb_bc.gb_cc{max-width:224px}}@media screen and (max-width:361px){.gb_Xb>.gb_bc.gb_cc{max-width:calc( calc( calc(100vw - 12px *2) - 12px - 32px - 33px *2) - 20px )}}.gb_ac .gb_bc{margin-top:2px}.gb_dc{color:#5d6369;display:block;float:right;font:italic 400 12px/14px Roboto,RobotoDraft
in „Vorverstärker und Vorteiler für Frequenzzähler“ · HF, Funk und Felder ·
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PDF
AN1543-D.PDF
AN1543/D Q1 C2 100 nF D4 GATE DRIVE NETWORK 400 V 1N4148 R1 C5 INPUT 330 kΩ RECTIFIER D3 Q3 R2 LINE BC557 D2 Cp C3 FILTER C6 100 nF Lp 400 V Q2 C4 D6 1N4148 LINE 220 V C1 FLUORESCENT TUBE 22 nF D5 Q4 BC557 R3 D1 R4 DIAC 32 V 10 Ω Figure 39. Typical MOSFET Application This circuit works fine, but the four
in „Reparatur EVG für T5 Röhre“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
33120-90017.pdf
Protection: Short-circuit protected 15 Vpk overdrive < 1 minute Harmonic Distortion DC to 20 kHz: -70 dBc 20 kHz to 100 kHz: -60 dBc 100 kHz to 1 MHz: -45 dBc 1 MHz to 15 MHz: -35 dBc (1) Add 1/10th of output amplitude and offset specification per C for operation outside of C to 28 C range TotalHarmonicDistortion (1-year specification). DC to 20 kHz: < 0.04% (2) 100 mVpp – 20 Vpp amplitude into open-circuit load. Spurious (non-harmonic) Output (DC to 1 MHz): < -65 dBc (3) Offset 2 X peak-to-peak amplitude. Output (> 1 MHz): < -65 dBc + 6 dB/octave (4) For
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Si4330.pdf
bandwidth — 2 4 kHz RMS (500 Hz lower bound of integration) Phase Noise2 L(M ) F = 10 kHz — –80 — dBc/Hz F = 100 kHz — –90 — dBc/Hz F = 1 MHz — –115 — dBc/Hz F = 10 MHz — –130 — dBc/Hz Notes: 1. All specification guaranteed by production test unless otherwise noted. 2. Guaranteed by qualification.
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Datei
G32trust.asm
align 10h push esi mov eax, [esp+8] or eax, eax jnz short loc_1000BC31 mov ax, 2 pop esi retn 14h ; ÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄ loc_1000BC31: ; CODE XREF: .text:1000BC27 j push eax call sub_10005480 mov esi, eax cmp word ptr [esi], 7242h jz short loc_1000BC48 mov ax, 2 pop esi retn 14h ; ÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄ loc_1000BC48: ; CODE XREF: .text:1000BC3E j test byte ptr [esi+12h], 4 jnz short loc_1000BC60
in „Wer kann mir eine ASM File compelieren“ · Softwareentwicklung ·
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PDF
AD9834.pdf
Specifications Signal-to-Noise Ratio 55 60 dB fMCLK= 75 MHz, OUT= fMCLK4096 Total Harmonic Distortion −66 −56 dBc fMCLK= 75 MHz, OUT= fMCLK4096 Spurious-Free Dynamic Range (SFDR) Wideband (0 to Nyquist) −60 −56 dBc fMCLK= 75 MHz, OUT= fMCLK75 Narrow Band (±200 kHz) B Grade −78 −67 dBc fMCLK= 50 MHz, OUT= fMCLK50 C Grade −74 −65 dBc fMCLK= 75 MHz, OUT= fMCLK75 Clock Feedthrough −50 dBc Wake-UpTime 1 ms COMPARATOR InputVoltage Range 1 V p-p AC-coupled internally Input Capacitance 10 pF Input High-Pass Cutoff Frequency 4 MHz Input
in „AD8934 - DDS SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Baustelle.txt
next reads value for register or mode ; Author = Werner Braun ; Target = ATmega8 ; Date = 2012-02-04 ; ; PC6 = RESET ; PC4 = SDA TWI ; PC5 = SCL TWI ; PB1 = D/A Data out 8 ; PD0..7 = D/A Data out 0..7 ; ; .include "m8def.inc" ; ; Mode Codes .equ TriangleMode = 0x18;(11000 Bit 4 > table) .equ RectangularMode = 0x11;(10001 Bit 4 SineTable) .equ SineMode = 0x10;(10000 Bit 4 > table) .equ SawtoothMode = 0x04;(00100 Bit 4 no table) .equ NoiseMode = 0x02;(00010 Bit 4 no table) .equ OffMode = 0x00 ; ; ; TWI Slave Receiver Codes .equ TW_SR_SLA_ACK = 0x60;(SLA+W received and ACK returned) .equ TW_SR_ARB_LOST_SLA_ACK
in „DDS normal ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
co.asm
0x0D .equ CHAR_LF, 0x0A ; SOFT SPI CORE REGISTERS .equ REG_SPI_RXDATA, 0x00 .equ REG_SPI_TXDATA, 0x04 .equ REG_SPI_STATUS, 0x08 .equ REG_SPI_CONTROL,0x0C .equ REG_SPI_SSEL, 0x10 ; EXTERNAL SPI FLASH REGISTERS .equ SPI_INSTR_RDID, 0x9F .equ SPI_INSTR_WREN, 0x06 .equ SPI_INSTR_WRDI, 0x04 .equ SPI_INSTR_RDSR
in „Lattice MachXO Control Developer KIT Menue asm File“ · FPGA, VHDL & Co. ·
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Datei
rfm70.cpp
const unsigned char Bank1_Reg14[] = { 0x41, 0x20, 0x08, 0x04, 0x81, 0x20, 0xCF, 0xF7, 0xFE, 0xFF, 0xFF }; // initialize bank1 like in the example code. // don't ask why, just do it void rfm70::init_bank1( void ){ unsigned char i, j; unsigned char WriteArr[ 12
in „RFM70 Arduino Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC1604A_series_VER01.pdf
Bolymin, Inc. ¡»¡»¡» LCD MODULE SPECIFICATION MODELNO. BC1604Aseries FOR MESSRS: ________________________________________________ ON DATE OF: ________________________________________________ APPROVED BY: ________________________________________________ Bolymin
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A4964JPDemoR0.pdf
31P 10A19A2191RO 2 12P52RC ASC1AA 2J 28P 3R51C2L 10MP1 22P82RC GRBVOC 2O 8CC 1 2C 9CC GIC 2 1X 4OC2 04MA P ACC1AA 1GV 4 3X 30MP 1PCO GERVOC 2 1S 10A GIDO10IP 20A 6OC GODWOC1OA 1 20A 7OC 6 5X 1CC1 2CP ALOC1AA 2PCC 1PA 1EA BBOC 8 7X 10PP 5O20A 15P 1BA nTSRMO10RP 20A 8OC 7O XROC1RP 1 20A 9OC 0X 9X 1CP 20A
in „Allegro A4964 Demoboard - ein Phantom?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A4964JPDemoR0.pdf
31P 10A19A2191RO 2 12P52RC ASC1AA 2J 28P 3R51C2L 10MP1 22P82RC GRBVOC 2O 8CC 1 2C 9CC GIC 2 1X 4OC2 04MA P ACC1AA 1GV 4 3X 30MP 1PCO GERVOC 2 1S 10A GIDO10IP 20A 6OC GODWOC1OA 1 20A 7OC 6 5X 1CC1 2CP ALOC1AA 2PCC 1PA 1EA BBOC 8 7X 10PP 5O20A 15P 1BA nTSRMO10RP 20A 8OC 7O XROC1RP 1 20A 9OC 0X 9X 1CP 20A
in „Allegro A4964 Demoboard - ein Phantom?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADNS2051.pdf
has occurred since the last time it was read. If so, then the user should read registers 0x03 and 0x04 to get the accumulated motion. It also tells if the motion buffers have overflowed and whether or not an LED fault occurred since the last reading. The current resolution is also shown. 29 Field Name
in „Maussensor ADNS 2051 Bild auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6953.pdf
19-2312; Rev 3; 3/04 2-Wire Interfaced, 2.7V to 5.5V, 4-Digit 5 ✕ 7 Matrix LED Display Driver M General Description Features 2 A The MAX6953 is a compact cathode-row display driver ♦ 400kbps 2-Wire Interface Compatible with
in „Master-Clock (Takt) an 64 ICs verteilen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX6953.pdf
19-2312; Rev 3; 3/04 2-Wire Interfaced, 2.7V to 5.5V, 4-Digit 5 ✕ 7 Matrix LED Display Driver M General Description Features 2 A The MAX6953 is a compact cathode-row display driver ♦ 400kbps 2-Wire Interface Compatible with
in „LED Matrix (MAX6953) über I²C bus ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
d80166w.pdf
Hardware Traps: Non-Maskable Interrupt NMI NMITRAP 0008 H 02H II Stack Overflow STKOF STOTRAP 0010 H 04H II Stack Underflow STKUF STUTRAP 0018 H 06H II Class B Hardware Traps: Undefined Opcode UNDOPC BTRAP 0028H 0AH I Protected Instruction PRTFLT BTRAP 0028 0A I H H Fault Illegal Word Operand ILLOPA BTRAP
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datasheet.pdf
• PCS1900 Reference Sensitivity (Q2426)= -102 dBm Static & TUHigh • Selectivity @ 200 kHz : > +9 dBc • Selectivity @ 400 kHz : > +41 dBc • Linear dynamic range : 63 dB • Co-channel rejection : >= 9 dBc And for Transmitter : • Maximum output power (EGSM & GSM850): 33 dBm +/- 2 dB at ambient temperature
in „[Hinweis] Kostenlose Datenverbindung fürs Handy“ · Markt ·
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PDF
TestArmTurtorialDeu.pdf
) 8000102: 490e ldr r1, [pc, # 56]; (800013c <Reset_Handler + 0x50>) 8000104: f04f 0200 mov.w r2, # 0 8000108: e001 b.n 800010e <Reset_Handler + 0x22> 800010a: f840 2b04 str.w r2, [r0], # 4 800010e: 4288 cmp r0, r1 8000110: d3fb bcc.n 800010a <Reset_Handler + 0x1e> 8000112: f000 f847
in „ARM-Assembler-Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cnc.c
curx = cury = curz = 0.0; Step('0'); Coords(); } void CkPort(int p) { port = p; outportb(port+2, 0x04); if ((inportb(port+1) & 0x08) == 0) {port = 0; return;} outportb(port+2, 0x00); if ((inportb(port+1) & 0x08) != 0) port = 0; } int Calibrate(void) { DataOut(OFF); /* enable and clear outputs */ xpos
in „Motoransteuerung HPGL vom PC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Gal_a.c
0xFFFF8801 #define VIAPBDIR *(char*)0xFFFF8805 #define PIACRB *(char*)0xFFFF8907 #else #define CENTPORT 0x3bc /* lpt1 */ #define DPORT *(char *)CENTPORT /* Datenport */ #define CPORT *(char *)CENTPORT+1 /* Controlport: Bit 7 = BUSY-Leitung */ #endif #define SR_STROBE 0x01 /* Bits von Centronics-port */ #define SR_CLOCK 0x02 #define SR_DATEN 0x04 #define GAL_STROBE 0x08 /* Programmierimpuls und Aulesen, via Latch */ #define GAL_SDIN 0x10 #define GAL_CLOCK 0x20 #define VCC_5 0x40 /* Vcc 5 Volt einschalten */ #define GAL_SDOUT 0x80 /* LPT_Pin#(
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PDF
datenblatt_0000012_1.pdf
Rayson Bluetooth Module Class1 BC04-ext Module BTM-222 Features Outline ■ Bluetooth Ver. 2.0+EDR certification ■ Transmit Power up to +18dBm(class1) ■ Low current consumption: Hold, Sniff, Park, Deep sleep mode ■ 3.0V to 3.6V operation
in „BTM222 USB-Anschlüsse“ · Mikrocontroller und Digitale Elektronik ·
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Datei
configs.h
(0xB000) ** WPFP_WPFP45 Page 45 (0xB400) ** WPFP_WPFP46 Page 46 (0xB800) ** WPFP_WPFP47 Page 47 (0xBC00) ** WPFP_WPFP48 Page 48 (0xC000) ** WPFP_WPFP49 Page 49 (0xC400) ** WPFP_WPFP50 Page 50 (0xC800) ** WPFP_WPFP51 Page 51 (0xCC00) ** WPFP_WPFP52 Page 52 (0xD000) ** WPFP_WPFP53 Page 53 (0xD400) ** WPFP_WPFP54
in „PIC24 Uart Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTM222_DataSheet.pdf
Rayson Bluetooth Module Class1 BC04-ext Module BTM-222 Features Outline ■ Bluetooth Ver. 2.0+EDR certification ■ Transmit Power up to +18dBm(class1) ■ Low current consumption: Hold, Sniff, Park, Deep sleep mode ■ 3.0V to 3.6V operation
in „AVR & Bluetooth Wie schwer Wie teuer?“ · Mikrocontroller und Digitale Elektronik ·