Radeon 8500 AIW BC (AGP), ATI Radeon 7500 QW (AGP/PCI), ATI Radeon 7500 QX (AGP/PCI), ATI Radeon 9000/PRO If (AGP/PCI), ATI Radeon 9000 Ig (AGP/PCI), ATI FireGL Mobility 9000 (M9) Ld (AGP), ATI Radeon Mobility 9000 (M9) Lf (AGP), ATI Radeon Mobility 9000 (M9) Lg (AGP), ATI Radeon 9100 IGP (A5) 5834,
{ CANCON = CANCON & 0xF0 | TXB2Interrupt; if(CANPutMessage()) //if there wasn't any more messages to send TXB2IE = 0; //disable interrupts for TXB2 and leave TXB2IF else //still on so PutCAN() can reenable the interrupt and instantly vector to
//Do not modify the TX pointer until the message has been successfully copied so the CANISR don't //send a message that isn't ready if(TXWPtr >= TXBUF-1) //check if transmit write pointer will overflow { TempPtr = 0; //and post clear write pointer } else
≤ T A 125 Co - - 150 - - - Ω IOUT = 20mA, -40 C ≤ T A 85 Co - - - - - 120 Ω V += 2V, OUT = 3mA, LV to GND - - 300 - - 300 Ω 0 C ≤ T ≤ 70 C A V+ = 2V, OUT = 3mA, LV to GND, - - 400 - - - Ω -55 C ≤ T ≤ 125
STATIC RAM P D PG3 PG2 PG1 CHIP PG0 SELECTS CPU CORE RxD PD0 SCI TxD PD1 D ADDRESS BUS DATA BUS R T 5 4 3 2 0 MISO D O PD2 R R R R R R R R R R R R R R R R 7 6 5 4 3 2 1 0 MOSI P PD3 D D D D D D D D D D D D D D D D T T T T T T T T SCK PD4 A A A A A A A A A A A A A A A A D D D D D D D D SPI SS PD5 PORT
@Robin T >Wozu ist es gut die Induktivität einal >Paralell und einmal Seriell zum Schwingkreis zu schalten große Induktivitäten lassen sich besser parallel messen, kleine dagegen besser seriell
selber ;-) Ich versuche die Güte der Spule zu verbessern: Was haltet ihr von einem Amidon Ringkern T68-26 mit 40-60 Windungen 0,3er Cu?
A-side” of H-Bridge Is shown for simplicity. Arrows zero. Equation 2 shows the relationship between tOFF PWM show bootstrap charging path. and the duty cycle. FIGURE 7. BOOTSTRAP CAPACITOR CHARGING PATH tOFF = (1 – DC)/PWM (EQ. 2) The bootstrap charging and discharging paths should be As soon as the
MOSFET. 6 HIP4081A Timing Diagrams X = A OR B, A AND B HALVES OF BRIDGE CONTROLLER ARE INDEPENDENT T LPHL THPHL U/V = DIS = 0 XLI XHI XLO XHO T T T T HPLH LPLH R F (10% - 90%) (10% - 90%) FIGURE 1. INDEPENDENT MODE U/V = DIS = 0 XLI XHI = HI OR NOT CONNECTED XLO XHO (10% - 90%) (10% - 90%) FIGURE 2.
mehrere 'registerlose' die sensationelle Geschwindigkeit hatten: von der alten Riege: Inmos T200, T400, T800 & T9000 Serie (zb T414, T805): hatten 4kByte RAM die direkt in der CPU lagen und eine 3-stufigen 32 bit Hardware Stack für Arithmetik, aber KEINE Register! Irgendwie könnte man uu
l P in s E x a m p le 2 F U N C T IO N S IZ E C O N T R O L P IN S F lip -F lo p , D -ty p e 1 6 -B it R e s e t (S y n c h r o n o u s ) C lo c k E n a b le F D 1 6 R E X 7 7 6 4 P r e c e d e n c e o f C o n tr o l P in s Naming Conventions
Symbol Parameter Min. Typ.(6) Max. Unit Cl CS to INC setup 100 ns lD INC HIGH to U/D change 100 ns t U/D to INC setup 2.9 µs DI lL INC LOW period 1 µs lH INC HIGH period 1 µs t INC inactive to CS inactive 1 µs lC CPH CS deselect time (STORE) 20 ms CPH CS deselect time (NO STORE) 100 ns t INC to V change
können. Wenn der Bemessungssatz steigt und es nochmal einen Prozenzpunkt hochgeht, käme ich auf über 9000,-. Das wäre echt ein Grund, auch abzuhauen! Naja, in der zweiten Meldung heisst es, dass Telekom in den kommenden Jahren über 30.000 Menschen entlassen will. Dann sind ja genug Fachkräfte da, um
kann man ja die Zelt abbauen und weiter gen Osten ziehen. Genug Firmen machen das ja schon vor ;-/ T.M.
Rt. Hand Decimal SC23-12EWA SA23-11GWA SA23-12GWA Common Anode, Rt. Hand Decimal GREEN (GaP) 3600 9000 SC23-11GWA Common Cathode, Rt. Hand Decimal SC23-12GWA SA23-11YWA SA23-12YWA Common Anode, Rt. Hand Decimal YELLOW (GaAsP/GaP) 3600 9000 SC23-11YWA Common Cathode, Rt. Hand Decimal SC23-12YWA SA23-11SRWA
trademarks of their respective owners. 1.8 Standards Kontron Embedded Modules is certified to ISO 9000 standards. ETX Design Guide 5 User Information 1.9 Warranty This Kontron Embedded Modules product is warranted against defects in material and workmanship for the warranty period from the date of shipment
demonstrate bit timings for achieving maxi- t = 2(t +t +t ) = 750 ns PROP BUS CMP DRV mum oscillator tolerance or maximum bit rate. Since the propagation segment is used to compensate for propagation delays and must be set to the minimum 1TQ, the
package can offer is: suffice). A 22Ω series resistor will limit peaking to 2.5dB with P D max = (T J max - T Aax)/θ JA even a 220pF load. where T J max is the maximum die junction temperature, 150°C for reliability, less to retain optimum electrical performance. TA, max is the ambient temperature,
Generator output SEG Off FIGURE 4: TIMING DIAGRAM 1/f CLOCK 1 31 32 START Data in SEG 32 SEG 2 SEG 1 tDS tDH Data out PD Load PW 1.0 OPERATION: enabled or visible, i.e. the output at Segment Output is 180° out-of-phase with the Backplane output 1.1 Data In and Cloc k (Figure 3). The shift register shifts
RIREF = RIMIN = 80kΩ, VBAT = 3.7V, Unless Otherwise Noted (Continued) 50 1.10 45 ) A A 1.05 ( 40 ( T T E 35 N 1.00 R R R 30 R C C T 25 T 0.95 N 20 N C C S 15 S 0.90 I I Q 10 Q T T 0.85 U 5 U N N I 0 I 0.80 3.0 3.5 4.0 4.5 5.0 5.5 6.0 6.5 4.2 4.5 4.8 5.1 5.4 5.7 6.0 6.3 6.6 INPUT VOLTAGE (V) INPUT VOLTAGE
(Read) AVCH RLCH 2.4 V 2.4 V CLK tAVLL tLLAX RHLH 2.4 V ALE 2.4 V 2.4 V LHLL 0.8 V tAVRL tRLRH 2.4 V RD 0.8 V tLLRL tRHAX 2.4 V 2.4 V A23 to A16 0.8 V 0.8 V tRLDV tAVDV tRHDX 2.4 V 2.4 V 0.8 VCC 0.8 V CC AD15 to AD00 Address Read data
Board Design. Italic type Internal timing parameters and variables are shown in italic type. Examples: t PIA, n + 1. Variable names are enclosed in angle brackets (< >) and shown in italic type. Example: <file name>, <project name>.pof file. Initial Capital Letters Keyboard keys and menu names are shown
V powersupplyforMAX7000S in-systemprogrammingandmust be connected to a 5.0-V power supply for MAX 9000 in-system programming. ByteBlasterMV Header & Plug Connections The25-pinmaleheaderconnectstoaparallelportwithastandardparallel 13 cable. Table 1 identifies the pins and the download modes. T Table 1
exactly replicate any company’s specific approach, for obvious and numerous reasons (e.g., it can’t be done; and it shouldn’t be done for confidentiality purposes). So in that sense, even at the most detailed level, there were some limitations on precision. However, every effort was made to make the
X N X X I I A I D S S S S S S S S R D T T T T D X X D S BG N N N N N N V T T G R R V N N N N N N V T T G R R V N N N N N N V T T G R R TP29 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 1 2 3 4 5 6 7 8 9 1 1 1
0.5 pF 3 C ‘-M’ White Package 0.2 N Y Note 1 * 5300 Vac(rms) for 1 minute equates to approximately 9000 Vac (pk) for 1 second 7 ** Typical values At T = 25°C 2 , Transfer Characteristics (T = 25°C Unless otherwise specified.) C A N Y DC Characteristics Test Conditions Symbol Device Min Typ Max Units 7
eine erhebliche x(t) t tph t Bild 5.9: Ein um die Phasenlaufzeit ve¨zogertes si¨usformiges Signal y(t) = xph − t ) ¨ 5.1 Eigenschaften von Ubertragungssystemen 119 Verzerrung der Augenblickswerte des Signals x(t), dennoch
3.75 cm x 3.75 cm Core Spannung 1.5 V In-Order Queue Depth 12 Speicher Timings: CAS Latency (CL) 2.5T RAS To CAS Delay (tRCD) 3T RAS Precharge (tRP) 3T RAS Active Time (tRAS) 7T Fehlerkorrektur: ECC Nicht unterstützt ChipKill ECC Nicht unterstützt RAID Nicht unterstützt ECC Scrubbing Nicht unterstützt
A A V 1 2 V ‘ C D V ‘ C V V C CV V C C V g V f V c o o o o T T T T G G - D - V g V V V V V E E E E R R 1 1 1 2 V T T T T V V C C C C Figure 1: HD66773 Block Diagram Description 3 HD66773 Rev. 1.0-1 / October 2002 No.786 T No.743 E P 9 1 3 5 T 3 5 7 7 8 8 8 No.1
A A V 1 2 V ‘ C D V ‘ C V V C CV V C C V g V f V c o o o o T T T T G G - D - V g V V V V V E E E E R R 1 1 1 2 V T T T T V V C C C C Figure 1: HD66773 Block Diagram Description 3 HD66773 Rev. 1.0-1 / October 2002 No.786 T No.743 E P 9 1 3 5 T 3 5 7 7 8 8 8 No.1
pins to Vcc or GND. 87 HD66766 Rev. 1.0 / 30 November 2001 80-system Bus Operation VIH VIH RS VIL VIL tAS tAH VIH CS* VIL Note 1) çPWLW, PWLR çWHW, PWHR WR* VIH VIH VIL VIL RD* tWRr tWRf tCYCW, tCYCR çç tDSW ç tHWR ç DB0 VIH VIH to DB15 VIL Wrire data VIL tDDR ç tDHRçç DB0 VOH1 Read data VOH1 to DB15 VOL1
bit is used to indicate a Release Interrupt. e rv d leD a s [Process Overlapped Command] e apa m l v t t pC C R S D S era Ov d d a a rie m t t m t t D C S D C S D AT DRV Bit Optional Optional Interrupt Interrupt INTRQ BSY DRQ Figure 1 - Example ATAPI Overlap Command Sequence Page 24 working draft ATAPI
the military needs for targeting. <br> Nominal value of Earth's field = 0.5 Oe = 0.5 Gauss = 39.79 A-T/m = 5E-5 t = 50 ut = 50,000 nt. <br> <b><a href="E_Mag.html">Experiment Relating to the Vertical Component of the Earth's Field</a></b> - <p><a href="http://www.ngdc.noaa.gov/IAGA/">The International
written. bitwillhavenoeffectontheexecutionofthewritecycle. FIGURE 6-1: BYTE WRITE BUS ACTIVITY S MASTER T CONTROL ADDRESS ADDRESS S A BYTE HIGH BYTE LOW BYTE T R DATA O T P SDA LINE S 1 0 1 0 A A A0 X X X 2 1 0 P A A A A C C C C BUS ACTIVITY K K K K X = don’t care bit FIGURE 6-2: PAGE WRITE S T S BUS ACTIVITY
bit is used to indicate a Release Interrupt. e rv d leD a s [Process Overlapped Command] e apa m l v t t pC C R S D S era Ov d d a a rie m t t m t t D C S D C S D AT DRV Bit Optional Optional Interrupt Interrupt INTRQ BSY DRQ Figure 1 - Example ATAPI Overlap Command Sequence Page 24 working draft ATAPI
XXXC61C I P o 9 9 9 9 9 9 9 f o . X6C61CI P * † h 9 9 9 9 9 9 9 9 c c X5C61CI P m 9 9 9 9 9 9 9 w . w t t d 00041CI P 9 9 9 9 9 9 a t s i b e s i v XXXC21C I P e v d 9 9 9 9 9 9 . a c n f l o M t I . s a r l e n D K g I n t u t v r m n n n t o i o s o y e e r r m l e e m t t t t a i s i i r n l b m i i
//------------------------------------------------------------------------------ // Function P R O T O T Y P E S //------------------------------------------------------------------------------ void startbild(void); void fahren(void); void einstellen(void); void statistik(void); void change_val(void
• Medical electronics Consumer • Loudspeakers • Satellite video receivers D E V I C E S F O R A U T O M O T I V E A P P L I C AT I O N S These product lines are qualified to operate in Automotive environments and Figure 1 Figure 2 Figure 3 are compliant with QS-9000 AEC and A A AGR400-1100 Ø 0.81 (
Rptc 18.2 26 33.8 k A1 5720 7150 8580 ppm/K Thermal Coefficient PTC) 25°C-100°C A2 11.57 ppm/K2 R(T)=R(298K).[1+A1.(T-298K)+A2.(T-298) ] 2 Note: when measuring resistances with an ohm meter, please take care that the internal protection diodes, as indicated in the diagram below, are always reverse
DEVICE-TO-HOST COMMUNICATION (DATA BIT READ ON FALLING EDGE OF CLOCK) Clock Data Y R A A A A A A A A I P A T T T T T T T T R O S D D D D D D D D P S FIGURE 3: HOST-TO-DEVICE COMMUNICATION (DATA BIT READ ON FALLING EDGE OF CLOCK) Clock Data T 0 1 2 3 4 5 6 7 T P A T T T T T T T T R O K S D D D D D D D D P S
T CONTROL S MASTER A BYTE DATA n T R O T P SDA LINE S P A N BUS ACTIVITY C O K A C K FIGURE 4-4: RANDOM READ S S T T CONTROL WORD A CONTROL S A WORD R DATA n T R BYTE ADDRESS (1) ADDRESS (0) T BYTE O T
CVDX 200 - 100 - ns Clock to Data Propagation Delay CVDV - 200 - 100 ns Chip Disable to Output High Z t - 200 - 100 ns EXQZ Output Rise Time t - 200 - 100 ns r Output Fall Time t - 200 - 100 ns f Clock to Data Out Archive CVQX - 200 - 100 ns Clock Recovery Time tREC 200 - 200 - ns 4 CDP68HC68P1 Waveforms MISO HI Z C07 C06 COMPARE FLAG D7 D6 D0 HI Z tr,ft MOSI X C07 C06 C05 C04 C00 D7 D6 D0 X tDVCV tDVCV tCVDX tCVDX CE tWL WH tREC tCVEX SCK EVCV FIGURE 3. PORT-PIN DATA CHANGES MOSI X C07 C06 C05 C04 C00 X MISO HI Z C07 C06 COMPARE FLAG D7 D6 D0 HI Z tCVQX EXQZ tCVDV CE t tWL REC CVEX WH SCK
während er in Deutschland 100h Überstunden hatte, die garnicht bezahlt wurden. Die Umzugskosten von 9000,- übernimmt die schwedische Regierung weil Nordschweden dringend Ärtze braucht. Ok, sie wohnen in der Pampa, bezahlen für alles mehr, weil die MwsT 25% beträgt. Die Frage, die sich mir stellt ist
16550 implementiert und ein paar andere Verbesserungen. Die neue Datei: http://home.arcor.de/h-a-l-9000/test/dosbox_serial10_fifo.zip Man kann auch ein log anfertigen lassen, das nützlich für die Fehlersuche sein könnte: serial1 directserial realport:comx dbgall Die Datei erscheint dann im Unterverzeichnis
Dosbox habe näheres dazu habe ich hier beschrieben http://www.progforum.com/showthread.php?t=9616 Da ich den Fehler schon weitestgehend analysiert habe würde ich mich über Hilfe bei dessen Behebung freuen. Inzwischen gibt es Dosbox-0.74 aber sowohl diese als auch die Serialmod2 Versionen
einer Präzisionspositioniereinheit Motor Incrementalgeber 28DT2R 12 222E Motor 24 V 6750 Upm Max 9000 Upm Leerlaufstrom 110mA Max Dauerstrom 1.4A (27W) Gegen EMK 3.4 V / 1000 Upm Induktivit t 0.75 mH Anschlusswiderstand 6.2 Ohm Drehmoment Konstante 33 mNm/A Rotortr gheit 20e-7 kgm2 Mech Zeitkonstante