Voltage: a P: +(Positive) PackageType M=SOT-23 e P=SOT-89 Output Voltage T=TO-92(Standard) b 30=3.0V L=TO-92(Custompinconfiguration) 50=5.0V DeviceOrientation TemperatureCoefficients: R=EmbossedTape c 0=±100ppm(typical) (StandardFeed) f L=EmbossedTape Output VoltageAccuracy: (ReverseFeed) H=Paper Tape
neuen Zusammengebastelten Rechner mit diesen Mainboard: nLite Azubi http://www1.hardwareversand.de/6VzL_QQBFHQ...26&agid=659 Beiträge: 1 Jetzt habe ich in vielen Foren gelesen,das mein Board nur "ICH9" hat... habe aber kein Diskettenlaufwerk,geht das mit dieser Anleitung trotzdem ? Und welchen Controller
Minimum Input Voltage 0.7 V / 4 Operating Voltage VIN TA = +25°C 1.1 5.5 V Start-Up Voltage TA = +25°C, L = 3kΩ (Note 1) 0.9 1.1 V 7 Start-Up Voltage Tempco -2 mV/°C 6 1 Output Voltage V FB = OUT 3.17 3.30 3.43 V OUT FB = GND 4.80 5 5.20 X A Output Voltage Range 2 5.5 V MAX1674, M FB = OUT MAX1676 (CLSEL
pwm_cnt==(uint8_t)(PWM_STEPS-1)) pwm_cnt=0; else pwm_cnt++; } [/c] Das l_value (Register OCR1A) ist zwar 16 Bitig, aber das r_value wird durch den Type-Cast ((unit8_t)) auf 8 Bit reduziert. Solch ein Type-Cast wird zur Typumwandlung benutzt, um zb float nach int zu bekommen
OCRA1, als variablem Timer nutzen OCR1A += (uint16_t)T_PWM; TCCR1B = 9; // Timer l�uft mit vollem Systemtakt und CTC1 TIMSK |= (1<<OCIE1A); // Interrupt freischalten [/c] Was machst Du denn da mit dem OCR1A ? Wieso Addierst Du, mach doch nur eine Zuweisung, das wirkt
Layer Simplified Specification Version 2.00 Power on SPI Operationion CMD0 + Idle State CS Asserted (i(l))e CCMD0 from all states except (ina) Mode ("0") If card cannot operate under supplied voltage, card doesn't respond and return to 'Idle State' CCMD8 It is mandatory for the host compliant to Physical
( . COM62 RES# r . COM60 CS# i . D/C# D E (RD#) r n . R/W#(WR#) d o . | BS2 c m . D o . COM2 BS1 A l C . COM0 BS0 e R c . U f D S C e G r . D7 M I G D6 D5 SA0 D4 . SB0 D3 . SC0 D2 SA1 D1 . D0 e . SB1 r . SC1 D . n . | m . e S . V DD . SA95 VSS . SB95 SC95 . . r r g E k . n r t a n a l e L l ) a d l
AT89C51 Flash Programming Modes Mode RST PSEN ALE/PROG EA/V PP P2.6 P2.7 P3.6 P3.7 Write Code Data H L H/12V L H H H Read Code Data H L H H L L H H Write Lock Bit - 1 H L H/12V H H H H Bit - 2 H L H/12V H H L L Bit - 3 H L H/12V H L H L Chip Erase H L H/12V H L L L (1) Read Signature Byte H L H H L L L L Note: 1. Chip Erase requires a 10 ms PROG pulse. Figure 3. Programming the Flash Figure 4. Verifying the Flash +5V +5V AT89C51 AT89C51 ADDR. A0 - A7 P1 VCC ADDR. A0 - A7 P1 VCC OOOOH/OFFFH PGM OOOOH
tR, F < 5 ns (10% to 90%) Note: C = 100 pF including jig For -70, -90, -12, -15, and -20 devices: L capacitance, except for the -45 and -55 devices, where C L = 30 pF. t , t < 20 ns (10% to 90%) R F Pin Capacitance (f = 1 MHz T = 25°C) (1) Typ Max Units Conditions C 4 6 pF V = 0V IN IN C 8 12 pF V
Layer Simplified Specification Version 2.00 Power on SPI Operationion CMD0 + Idle State CS Asserted (i(l))e CCMD0 from all states except (ina) Mode ("0") If card cannot operate under supplied voltage, card doesn't respond and return to 'Idle State' CCMD8 It is mandatory for the host compliant to Physical
**************************************************** 2;* U S B S T A C K F O R T H E A V R F A M I L Y 3;* 4 5;* File Name :"USB90S2313.asm" ;* Title :USB stack + Infrared remote control to nonUSB MCU 6;* Date :5.4.2003 7;* Version :1.6 8;* Target MCU :AT90S2313-10,AT90S2323-10,AT90S2343-10 9;* AUTHOR
Abbildungsverzeichnis - Querverweis - Probleme - www.Office-L... http://www.office-loesung.de/ftopic70000_0_0_asc.php Office Telefon / Excel Hotline Office Forum Experten des Forums im Dialog Rahmenzeit: Montag bis Freitag 10:00 - 20:00 www.Office-Loesung.de Hier
Layer Simplified Specification Version 2.00 Power on SPI Operationion CMD0 + Idle State CS Asserted (i(l))e CCMD0 from all states except (ina) Mode ("0") If card cannot operate under supplied voltage, card doesn't respond and return to 'Idle State' CCMD8 It is mandatory for the host compliant to Physical
1 2 2 2 2 2 2 2 2 2 2 3 3 3 I S C S S G G 2D D C D G G A A H H 2 P M M P P / R / / P P C C 2 2 T / L A F F L L / / M M P E / / P P 1 2 D D / T/ P E E P P / R I DI P P 2 3/ E 7 / P/ T T P T D D P P P P P Figure 2-1. 64-Pin LQFP/QFN MC9S08DZ60 Series Data Sheet, Rev. 1.0 Draft B Freescale Semiconductor
vom L292 verringen, dann wird auch der Spulenstrom kleiner. Was hast du denn da für riesige Motoren, wenn da bei 5V zuviel Strom fliesst? Der L293 kann doch glaub ich 600mA pro Ausgang. Und für einen bipolaren Schrittmotor barauchst du alle vier Anschlüsse des L293, für zwei Motoren also zwei L293. MfG Falk
Layer Simplified Specification Version 2.00 Power on SPI Operationion CMD0 + Idle State CS Asserted (i(l))e CCMD0 from all states except (ina) Mode ("0") If card cannot operate under supplied voltage, card doesn't respond and return to 'Idle State' CCMD8 It is mandatory for the host compliant to Physical
R03[0] 0(Default) 1 Interlace Mode Interlace Non-interlace R03[1] 0(Default) 1 Even Field Blanking L2=L1 L2=L1-1 表單編號: 版本: 本資料為統寶光電股份有限公司之智慧財產權及機密文件,非經本公司書面授權許可,不得透露或使用本資料,亦不得複印、複製或轉變成其 它任何形式使用。 reproduced, or disclosed in whole or in part without prior written permission of Toppoly Optoelectronics
0.019 0.023 D 6 6.2 0.236 0.244 E 6.4 6.6 0.252 0.260 G 4.4 4.6 0.173 0.181 H 9.35 10.1 0.368 0.397 L2 0.8 0.031 L4 0.6 1 0.023 0.039 0068772-B 18/23 LD1117 SERIES TO-220 MECHANICAL DAT A mm. inch DIM. MIN. TYP MAX. MIN. TYP. MAX. A 4.40 4.60 0.173 0.181 C 1.23 1.32 0.048 0.051 D 2.40 2.72 0.094 0.107
H L H L Display data write L H H L H Register status read L H L H L Writes to internal register (instruction) 14 S6B1713 65 COM / 132 SEG DRIVER & CONTROLLER FOR STN LCD CS1B CS2 RS RW E DB Command Write
OEM Modules Product Datasheet PinConfiguration ZDM-A1281-B0 Pinout T U T T X X A K _ O I C R R T A L L K I O L 7 6 T T T T D C _ D E 3 2 1 0 M M C P OP A A R R C C U N S S P P OP I I I G G U U U U I I C D R O G G G S P S S 18 17 16 15 14 13 12 11 10 98 7 6 5 4 3 2 1 GPIO3 1 0 8 GPIO4 2 4RF_GND GPIO5
values of the following STATE MOT1 (1) MOT2 (1) MOT3 (1) components must still be determined: 1 Z L H • The start capacitor; this determines the frequency of the 2 H L Z start oscillator. 3 H Z L • The two capacitors in the adaptive commutation delay circuit; these are important in determining the optimum 4 Z H L 5 L H Z moment for commutation, depending on the type and loading of the motor. 6 L Z H • The timing capacitor; this provides the system with its Note timing signals. 1. H = HIGH state; T HE START CAPACITOR
C 0 8 7 6 5 0 4 I / I 0 1 4 V 0 B E B / C F P A P K 1 u N M P 1 C 5 0 P 0 . 9 1 2 P P d A . A . T L 1 V X P X P R 8 / U P R R 1 2 3 4 0 1 K K R 0 V 1 . 3 D 6 0 E R 74 L 6 2 / 8 C uF 1 1 7 D 4 4 1 9 V B D 9 7 Z B Fig 5. Detailed schematics of the vacuum cleaner circuit using the P89LPC901 microcontroller
ist das Gerät außer Betrieb zu setzen und gegen unabsichtlichen Betrieb zu sichern. Das trifft zu: l wenn das Gerät sichtbare Beschädigung aufweist, l wenn das Gerät nicht mehr funktionsfähig ist, l wenn Teile lose oder locker sind, l wenn die Verbindungskabel sichtbare Schäden aufweisen. . 4 Wie Sie
inst_Mram_mem289> of sequential type is unconnected in block <cpu>. WARNING:Xst:2677 - Node <inst_Mram_mem292> of sequential type is unconnected in block <cpu>. WARNING:Xst:2677 - Node <inst_Mram_mem290> of sequential type is unconnected in block <cpu>. WARNING:Xst:2677 - Node <inst_Mram_mem291> of sequential
tuner UV1316 FEATURES • Member of the UV1300 family small sized UHF/VHF tuners • Systems CCIR: B/G, H, L, LÕ, I and IÕ; OIRT: D/K 2 • Digitally controlled (PLL) tuning via Is • Off-air channels, S-cable channels and Hyperband MARKING • Globally standardized mechanical dimensions and global standard pinning
**************************************************** 2;* U S B S T A C K F O R T H E A V R F A M I L Y 3;* 4 5;* File Name :"USB90S2313.asm" ;* Title :USB stack + Infrared remote control to nonUSB MCU 6;* Date :5.4.2003 7;* Version :1.6 8;* Target MCU :AT90S2313-10,AT90S2323-10,AT90S2343-10 9;* AUTHOR
C B D B A A B B D E C B E F F G G G G J J G G F F F C B A C B A F E D C C F B A D E C B A E D C B L M M N N L K K K L L M M D[0..31] PD[0..27] 33 2 2 2 2 2 2 2 2 2 21 1 1 1 1 1 1 1 1 19 8 7 6 5 4 3 2 1 0 2 2 2 2 2 22 2 2 2 1 1 1 1 1 11 1 1 1 9 8 7 6 5 43 2 1 0 1 11 1 1 1 6 5 4 3 2 1 0 D0 R9 D0 D AA
für 54,62 Euro (inkl. MwSt und Versand) gekauft. Siehe http://www.ehitex.de/p_info.php?products_id=292 Habe aber gemerkt, das ich meine geplante Anwendung damit nicht realisieren kann, daher verkaufe ich es für 49,- Euro inkl. Versand. Der Stick wurde einmal ausprobiert und funktioniert. Es ist
momentan bei 1 EUR) http://cgi.ebay.de/ws/eBayISAPI.dll?ViewItem&item=270400353574&ssPageName=ADME:L:LCA:DE:1123 Gruß Christian
408) 441-0311 TEL (719) 576-3300 FAX (408) 487-2600 FAX (719) 540-1759 Europe Atmel Rousset Atmel SarL Zone Industrielle Route des Arsenaux 41 13106 Rousset Cedex Casa Postale 80 France CH-1705 Fribourg TEL (33) 4-4253-6000 Switzerland FAX (33) 4-4253-6001 TEL (41) 26-426-5555 FAX (41) 26-426-5500 Atmel
e: ldi temp1, 'e' rcall lcd_data ret uswusf... und dann sowas: rcall s rcall e rcall l rcall e rcall c rcall t [/avrasm] Auf sowas würde ich nicht stolz sein wollen ;-)
werden. Sehe gerade, hier ist eine verbesserte Version: http://www.mikrocontroller.net/attachment/292/BCD32b.asm @Moritz: Ich finde, Du hast als 12.-Klässler das wirklich prima hinbekommen. Da können sich so manche eine Scheibe abschneiden bzw. die wenigsten würden sich so etwas zutrauen. Auch
solely byCRndC .C sychronizing discussions. 1 fZERO = 2π R• C •C C 12 LT1074/LT1076 O U TY I P CA L PP IC I L AT S Tapped-Inductor Buck Converter L2 L1* 5 H VOUT † VIN VIN VSW 3 1 5V, 10A 20V - 35V D2 LT1074HV 35V D1** R1 5W 2.8k FB + C1 GND VC 4400 F (2 EA + C4 R3 D3 R2 2200 F, 390 F 1k 1N5819 2.21k
**************************************************** 2;* U S B S T A C K F O R T H E A V R F A M I L Y 3;* 4 5;* File Name :"USB90S2313.asm" ;* Title :USB stack + Infrared remote control to nonUSB MCU 6;* Date :5.4.2003 7;* Version :1.6 8;* Target MCU :AT90S2313-10,AT90S2323-10,AT90S2343-10 9;* AUTHOR
of 2 x C is reLuired on each pin of the crystal/resonator. e. g. C =30 pF therefore C = C = 60 pF L (XIN) (XOUT) Note for 1 MHz: ESR (equivalent serial resistance) should be lower then 500 . 14 The MSP430x1xx Basic Clock System SLAA081 A.2 MSP430P112 Characterization (MSP430C112 follows below) A.2.1
count return byte; } Gpr.c #include "gpr.h" void print_hexbyte(unsigned char i) { unsigned char h, l; h = i & 0xF0; // High nibble h = h>>4; h = h + '0'; if (h > '9') h = h + 7; l = (i & 0x0F)+'0'; // Low nibble if (l > '9') l = l + 7; putchar(h); putchar(l); } void delay(char d) { char i,j,k; for(i
Spans 4 Tiles Spans 2 Tiles Spans 1 Tile Logic Tile L L L L L L L L L L L L L L L L L L Spans 1 Tile Spans 2 Tiles Spans 4 Tiles L L L L L L Logic Cell L L L L L L Figure 1-5 Efficient Long-Line Resources v5.2 1-5 ProASIC PLUSFlash Family FPGAs High Speed