aus dem Daten-Speicher lesen BSF EECON1, RD ; EEPROM Leseprozess starten Banksel EEDATA MOVF EEDATA, W ; Die Daten der EEPROM Zelle nach W kopieren Banksel PORTC movwf PORTC return ;++++++++++++++++++++++++++++++++++++++++++++++++++++ Stop goto Stop ;+++++++++++++++++++++++++++++++++++++++++++++++++++
0.5 V Output Voltage V —0.5 to V +0.5 V OUT CC Storage Temperature TSTG Ñ —55 to +150 °C Power Dissipation PD Ta = 25°C 1.0 0.7 1.0 W OPERATING CONDITION Parameter Symbol Range Unit Power Supply Voltage VCC 3 to 6 V Operating Temperature TOP —40 to +85 °C RECOMMENDED OPERATING
Voltage 10 mV Current 10 mA PARD (Ripple and Noise) All Outputs: Less than 0.35 mV rms/1.5 mV p-p (20 Hz-20 DIMENSIONS MHz). 212.3 mmW x 88.1 mmH x 269.2 mmD (8.354 inW x 3.469 inH x 10.591 inD) Common Mode Current (CMI): Less than 1 µA for all outputs (20 Hz-20 MHz). WEIGHT: 3.8 kg(8.4 lbs) net, 5.1
b 1 0.22 0.30 0.33 L 4 c 0.09 -- 0.25 SEATING PLANE c 1 0.09 0.15 0.21 L1 D 9.90 10.20 10.50 DETAIL 'A' E1 5.00 5.30 5.60 e 0.65 BSC E 7.40 7.80 8.20 WITH LEAD FINISH L 0.55 0.75 0.95 b1 L1 1.25 REF. N 28 OC 0∞ 4∞ 8∞ c c1 R1 0.09 -- -- (b) 5 BASE METAL 6 SECTION A-A NOTES: 1. CONTROLLING
current configurations text> OK ERROR Parameter <n> 0 profile number Reference Note V.25ter 2.2.33AT&W Store Current Parameter To User Defined Profile AT&W Store Current Parameter To User Defined Profile Execution Response Command TAstores the current parameter setting in the user defined profile. AT&
Original Datenkabel: DCA-540 """ Pin Belegung ist wohl hier: http://pinouts.ru/CellularPhones-P-W/siemens_c25_s25_pinout.shtml Allerdings wird hier http://www.sheevaplug.de/component/kunena/25-hardware/2714-dockstar-gekillt.html#2724 vom Kabel für Siemens C55 geredet. Pin Belegung davon hier: http://pinouts.ru/CellularPhones-P-W/siemens_c55_pinout.shtml Leider ist der USB Stecker eingeschweißt. Hab gerade kein passendes Werkzeug da um es zu öffnen... Hab ich das falsche Kabel? EDIT1: Hab's gerade mal an den Rechner
current configurations text> OK ERROR Parameter <n> 0 profile number Reference Note V.25ter 2.2.33AT&W Store Current Parameter To User Defined Profile AT&W Store Current Parameter To User Defined Profile Execution Response Command TAstores the current parameter setting in the user defined profile. AT&
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OUT + 1.5A T 250 VIN 3V 10µF 10µF O 200 LT1963-2.5 T SHDN SENSE P 150 R GND D100 1963 TA01 50 0 0 0.20.4 0.6 0.81.0 1.2 1.41.6 OUTPUT CURRENT (A) 1963 TA02 1963fc 1 LT1963 Series W W W U ABSOLUTE AXI U RATI GS (Note 1) IN Pin Voltage........................................................±20V SHDN Pin
passt doch alles :-) 12 Stunden Arbeitstag * 7 Tage die Woche * 4 Wochen a 20€ - 50% Steuern = 3360€
Weil ich es noch nachtragen wollte: 3200€ als Ing. mit 10 Jahren BE sind >auch in meinem westlichen RP normal Das glaube wer will. 55 k€ p.a. war nie das Problem bei potentiellen Angeboten aus dem Westen. >Ich verstehe auch nicht, warum sich in den östlichen Bundesländern so >wenig Industrie ansiedelt
POWER D22 U BSINTERFACE U_VCC P_DVCC P_DVCC 1 2 VCCin VCCin Used forRe adn Se al / Programming 1 L20 C nnect an d Po ered via SB P_DVCC C23 C24 C25 R29 LLSD103A D 1 2 U_ CC N 0.1u 0.1u 10u 10k D G F Bead 240- 0 5 1 R20 U_V CC .3 U VCC C20 3 Vout Vin 2 U_AVCC470 U25 0.1u C22 TC5 RP33 U20 3 3 2 1 0.1u
OUT + 1.5A T 250 VIN 3V 10µF 10µF O 200 LT1963-2.5 T SHDN SENSE P 150 R GND D100 1963 TA01 50 0 0 0.20.4 0.6 0.81.0 1.2 1.41.6 OUTPUT CURRENT (A) 1963 TA02 1963fc 1 LT1963 Series W W W U ABSOLUTE AXI U RATI GS (Note 1) IN Pin Voltage........................................................±20V SHDN Pin
mW PIOmax = 20 × 8 mA × 0.4 V + 8 × 20 mA × 1.3 V = 272 mW This gives: P = 175 mW and P = 272 mW: INTmax IOmax PDmax = 175 + 272 = 447 mW Thus: P Dmax = 447 mW Using the values obtained in Table 56 Jmaxis
/W* K PACKAGE *WITH PACKAGE SOLDERED TO 0.5IN COPPER AREA 2-LEAD TO-3 METAL CAN OVERBACKSIDEGROUNDPLANEORINTERNALPOWER θJA 35°C/W PLANE. JACAN VARY FROM 20°C/W TO > 40°C/W DEPENDING ON MOUNTING TECHNIQUE
, 2. Ta=25”C l 1 Forward current Collector current Ic 50 mA *l Collector power dissipation PC 150 mW *l Total power dissipation Ptot 200 mW *3 Isolation voltage viso 5 kVrms Operating temperature Topr -30 to +lOO ‘C Storage temperature Tstg -55 to +125 “C *4 Soldering temperature Tsol 260 “C ‘1 The
Characteristics (Any Pin to Ground) PackageType θ JA θ JC DeviceWeight Temperature Range 14-Terminal LGA 150°C/W 85°C/W 20 mg Powered −40°C to +105°C Storage −40°C to +105°C ESD CAUTION Rev. 0 | Page 4 of 4 ADXL345 PIN CONFIGURATION AND FUNCTION DESCRIPTIONS ADXL345 TOP VIEW (Not to Scale) SCL/SCLK VDD I/O 1 14
Symbol Min Typ Max 2 G 3 A - - 1.00 A1 0.25 - - P C E 10.9 11.0 11.1 - X E1 - 6.40 - D 12.9 13.0 13.1 X W X e D1 - 11.2 - X e e - 0.80 - k b 0.45 0.50 0.55 z - - 0.10 February 2006 K4M51323PC-S(D)E/G/C/F Mobile-SDRAM ABSOLUTE MAXIMUM RATINGS Parameter Symbol Value Unit Voltage on any pin relative ss V VIN
LQIRUPDWLRQ IRU WKH 6 :6 1 &RQWHQW LQ WKLV GRFXPHQW LV 3UHOLPLQDU\ IRU WKH 6 : 1 CE#, OE# tRH RESET# RP Figure 11.12. Reset Timings July8,2005 S29WS-N_00_H0 69 A d v a n c e I n f o r m a t i o n / P r e l i m i n a r y (UDVH 3URJUDP 7LPLQJ Parameter JEDEC Standard Description 54MHz 66MHz 80MHz Unit W$9
IDD - 0.2 0.4 mA External clock (Note) Input High Voltage VIH1 0.7VDD - VDD f i d V Pins:(E, RS, R/W, DB0 - DB7) Input Low Voltage VIL1 -0.3 - n0.55 V Input Low Voltagee VIL2 0.-0.2 - o 0.2VDD V U Pin OSC1 Input High Current IH -1.0 C - 1.0 A Pins: (RS, R/W, DB0 - DB7) Input Low Current IL -10.0 -50
/Ground #A1 Ball Origin Indicator [Unit:mm] S K E Symbol Min Typ Max 4 S C A 1.00 1.10 1.20 A1 0.30 0.35 0.40 5 6 W E - 8.00 - 1 e E - 6.40 - 6 e 1 3 k D - 11.00 - L X F D 1 - 6.40 - X e - 0.80 - X X b 0.45 0.50 0.55 z - - 0.10 February 2004 K4S56163LF - X(Z)E/N/G/C/L/F Mobile-SDRAM ABSOLUTE
: p_gpio_it_init at 572 Driver FRAMEBUF-1.12 (REFERENCED) Driver SPI-1.20 (REFERENCED) Debug level 3 u32_spi1_MinLenghtForDMAInTX set to 300 u32_spi1_MinLenghtForDMAInRX set to 300 Driver LCD-1.20 (REFERENCED) nm -w 10015140 (0x9f3ffc1f OR 0x00000040) mm -w 10015140
R. H. schrieb: > mit TX = 17(max.19)dBm ~50(80)mW gegenüber > 14 dBm ~25mW des 55er den eindeutig stärkeren sendepegel Unterschied:3 dB Eigentich beantwortest du dich selbst ;-)
8D 8C 8B 8A 89 88 e L TCON* Timer 0 and 1 control 88H TF1 TR1 TF0 TR0 IE1 IT1 IE0 IT0 00 0000 0000 w t P TCR20* CCU control register 0 C8H PLEEN HLTRN HLTEN ALTCD ALTAB TDIR2 TMOD21 TMOD20 00 0000 0000 h C c TCR21 CCU control register 1 F9H TCOU2 - - - PLLDV.3 PLLDV.2 PLLDV.1 PLLDV.0 00 0xxx 0000 c
bei 30 kHz 4 bei 30 kHz 6 bei 30 kHz 4 bei 30 kHz 6 bei 30 kHz 2 bei 200 kHz Zweiphasen-Zähler 2 bei 20 kHz 2 bei 20 kHz 4 bei 20 kHz 3 bei 20 kHz 4 bei 20 kHz 1 bei 100 kHz Impulsausgänge (DC) 2 bei 20 kHz 2 bei 20 kHz 2 bei 20 kHz 2 bei 100 kHz 2 bei 20 kHz Analogpotentiometer 1 1 2 2 2 Echtzeituhr Steckmodul