ich das letzte Mal war haben auf mich einen schlechten Eindruck gemacht. Allei schon diese dämlichen 0-8-15 Fragen bei diesen Gesprächen gehen mir auf den Zwirn.
50 V = ±2.5V T S V = ±2.5V R L 1M Ω S 40 C = 47pF CL= 100pF L G = +1 ) B 30 ( I V A D G 20 V P m O 0 2 L ( D 10 T E U S VO L 0 C –10 7 3 - 0 3 0 –20 0 0 1k 10k 100k 1M 10M 100M FREQUENCY (Hz) TIME (1μs/DIV) Figure25.Closed-LoopGainvs.Frequency
Band 0 0.10 -1 0.08 -2 0.05 -3 0.03 B -4 ) ( d e e t -5 d 0.00 l l m p A -6 m A -0.03 -7 -0.05 -8 -9 -0.08 -10 0.45 0.46 0.47 0.48 0.49 0.50 0.51 0.52 0.53 0.54 0.55 -0.10 0.00 0.05 0.10 0.15 0.20 0.25 0.30
geändert, ihn übersetzt, die Größe eingetragen, noch mal übersetzt geflasht und die fuses gesetzt (e/h/l 0x04/0xDF/0xF7) (angepasstes Projekt im Anhang) allerdings kann ich nicht mit dem Bootloader verbinden. In dem Tool habe ich die Baudrate eingestellt und connect geklickt, dann am Target ein
einen Screenshot eines Dateiheaders im Hexeditor angefügt. Folgendes denke ich erkannt zu haben: 0x00 - 0x0b Identifier "AVRootloader" 0x0c 0x06 Bootloader Version 0x0d 0x07 ??? 0x0e - 0x14 App-version "0.2.0.3" 0x15 - 0x18 0x00 0x1e 0x93 0x0b = ATTiny85 Signature 0x19
IEN1.1 IPH1.1 l RIR IRCON1.2 l i n CCU6 Node 0 CCU6SR0 g IRCON3.0 ECCIP0 0053 H S IP1.4/ IEN1.4 IPH1.4 e q u e CCU6 Node 1 n CCU6SR1 c IRCON3.4 005B H ECCIP1 IP1.5/ e IEN1.5 IPH1.5 CCU6 Node 2 CCU6SR2 IRCON4.0 0063
t-) ( ! o) ;ö €:co X. -{' # ä\'/cdFvo) .ä n l .P i*Y- F Y/ -C r. r-_-1 h0 li v) f ] k ! \ . 1 / ' r { n \ .(i ü0)cdxl- l<X : cr ou E 7 b0 h n cq)= (- JJ r- t-\n O ii ( l i<ä ä'l .: .r{ G .r{ .-1 i 0) n ) OoJ f*f 9- ; h n
NE1000 and NE2000 • Built-in boot ROM 1.3.4 Mechanical and environmental • Dimension: 5.9" (L) x 4.2" (W) (145 mm x 102 mm) • Power supply voltage: +5 V (4.75 V to 5.25 V) • Max. power requirements: +5 V @ 2 A (typical) • Operating temperature: 32° F to 140° F (0° C to 60° C) • Weight: 0.65 kg
nicht) wobei sich 0x200 und 0x201 auf den Heizkreis beziehen, 0x204,0x205 auf den WW-Kreis (Specherladung) beziehen. 0x205 ist die aktuelle Speichertemperatur. zus. kommen noch folgende IDs vor: 0F9h DL 0 207h DL 2
Ich könnte mir gut vorstellen, dass Therme 1 anhand des Vorhandenseins der vom HSM gemeldeten VL Temp selber auf Kaskadengerät umschaltet (dh dann auch auf 0x23? meldet mit erstem payload byte 1). Und dass dann die einzelnen Thermen auf 0x28? (0x25? + 0x30, gleicher Offset wie 23? ggü 20?) wieder
u e n b e N g c h e C un 0 n e n 0 e e n l k a s A t T h S D t V a s V a - i c i d 0 e n / h m e n , s e d w L l E p e e c D c e D e ß h . R 3 e r 8 2 o e R e n e r o r I , n z C m h 3 t z . n i o D S 0 e d d B 4 o x i n u d e
Marking AXIAL MARKING Cathode Band Cathode Band Part Number G P 1 5 M Polarity Polarity SB 3400621X Part Number/ 0 6 2 1X Logo/Date Code Date Code/Logo DATE CODE DATE CODE 06 21 X 06 21 X DO-204AC/ Factory Designator DO-201AD/ Factory Designator DO-204AL P600/MPG06 Week Week 21th 21th Year Note: MPG06
T S TC C X X T L / / / // / / / 4 4 3 3 3 21 3 3 3 L OC C C C W B B F F F B D3 M11 D4 PD3 E16 PD2/ETX2 // C C / / 2 / 3 / 2 1/ / 0 E / R / / R 10 / K / / / / 4 0 3 P R / CD S R T / O V 3 2 RX X B 5 B A B A A AA
Band 0 0.10 -1 0.08 -2 0.05 -3 0.03 B -4 ) ( d e e t -5 d 0.00 l l m p A -6 m A -0.03 -7 -0.05 -8 -9 -0.08 -10 0.45 0.46 0.47 0.48 0.49 0.50 0.51 0.52 0.53 0.54 0.55 -0.10 0.00 0.05 0.10 0.15 0.20 0.25 0.30
VL+ MIN ≤ TA≤ MAX, R =L10k , LV to GND 1.5 - 3.5 1.5 - 3.5 V Supply Voltage Range - Hi VH+ MIN ≤ TA≤ MAX, R =L10k , LV to Open 3.0 - 10.0 3 - 12 V o Output Source Resistance ROUT IOUT = 20mA, T A 25 C -
Fig. 1 and summarized in Table 1 below. Table 1 Parameter Specifications Unit Outline dimensions 146.0(W) x 62.5(H) x 14.0 MAX.(D) mm Effective viewing area 123.0(W) x 42.5(H) mm Display format 20 characters x 4 lines - Character size 4.84(W) x 9.22(H) (5 x 8 dots) mm Character spacing 1.16(W) x 0.53(H) mm Character pitch 6.00(W) x 9.75(H) mm Dot size 0.956(W) x 1.139(H) mm Dot spacing 0.015(W) x 0.015(H) mm Dot pitch 0.971(W) x 1.154(H) mm Weight Approx. 123 grams DATA MODUL AG Landsberger Str. 322 80687 München Tel.: 089/ 56017
following figure shows a high-level block diagram of the ICS8442 programmable LVDS clock synthesizer. M[0:8] d N[0:1] o l l nP_LOAD r a P S_DATA a S_CLOCK o l S_LOAD r 0 FOUT0 e U S O L nFOUT0 VCO_SEL C ICS8442 XTAL_SEL s u T FOUT1 n U TEST_CLK l O nFOUT1 r L MR n C C TEST XTAL1 u p I XTAL2 c l C Figure
following figure shows a high-level block diagram of the ICS8442 programmable LVDS clock synthesizer. M[0:8] d N[0:1] o l l nP_LOAD r a P S_DATA a S_CLOCK o l S_LOAD r 0 FOUT0 e U S O L nFOUT0 VCO_SEL C ICS8442 XTAL_SEL s u T FOUT1 n U TEST_CLK l O nFOUT1 r L MR n C C TEST XTAL1 u p I XTAL2 c l C Figure
Fig. 1 and summarized in Table 1 below. Table 1 Parameter Specifications Unit Outline dimensions 146.0(W) x 62.5(H) x 14.0 MAX.(D) mm Effective viewing area 123.0(W) x 42.5(H) mm Display format 20 characters x 4 lines - Character size 4.84(W) x 9.22(H) (5 x 8 dots) mm Character spacing 1.16(W) x 0.53(H) mm Character pitch 6.00(W) x 9.75(H) mm Dot size 0.956(W) x 1.139(H) mm Dot spacing 0.015(W) x 0.015(H) mm Dot pitch 0.971(W) x 1.154(H) mm Weight Approx. 123 grams DATA MODUL AG Landsberger Str. 322 80687 München Tel.: 089/ 56017
50% RD DATA 0.8V 10% OUTPUT CS 1H C 10K V OH 90% L DATA OUTPUTS GND FIGURE 1A. t 1H FIGURE 1B. t 1HC L 10pF t = 20ns R V+ V+ tR 2.4V 90% 10K RD 50% 10% RD 0.8V DATA OUTPUT 0H CS C V+ L DATA OUTPUTS VOI 10% FIGURE 1C. t 0H FIGURE 1D. t 0HC L 10pF FIGURE 1. TRI-STATE CIRCUITS AND WAVEFORMS 5-7 ADC0802, ADC0803, ADC0804 Typical Performance Curves 1.8 500 V -55 C ≤ A ≤ +125 C ( G A 1.7 L 400 V D L 1.6 s O ( S Y 300 E L H
NE1000 and NE2000 • Built-in boot ROM 1.3.4 Mechanical and environmental • Dimension: 5.9" (L) x 4.2" (W) (145 mm x 102 mm) • Power supply voltage: +5 V (4.75 V to 5.25 V) • Max. power requirements: +5 V @ 2 A (typical) • Operating temperature: 32° F to 140° F (0° C to 60° C) • Weight: 0.65 kg
× 8-bit RAM PCF8583 SO8: plastic small outline package; 8 leads; body width 7.5 mm SOT176-1 D E A X c y HE v M A Z 8 5 Q A 2 A A1 (A3) pin 1 index θ Lp L 1 4 detail X e w M b p 0 5 10 mm scale DIMENSIONS (inch dimensions are derived from the original mm dimensions) UNIT A A 1 A 2 A 3 b p c D(1) E(1) e H E L L p Q v w y (1) θ max. Z mm 2.65 0.3 2.45 0.25 0.49 0.32 7.65 7.6 1.27 10.65 1.45 1.1 1.1 0.25 0.25 0.1 2.0 0.1 2.25 0.36 0.23 7.45 7.4 10.00 0.45 1.0 1.8 8o 0o inches 0.10 0.012 0.096 0.01 0.019 0.013
reset will affect all connected timers. Figure 1. Prescaler PCKx 10-bit T/C Prescaler ) ( ( 4 2 4 2 5 0 0 / / / / / / T x0-1) K K K K K K PC PC P PC PC P CSx0 CSx1 CSx2 (0-1) only available on Timer 0 anCKx (2) only available on Timer 2 x [0..2] Clocking by System Clock In this case, the system clock is
care Truth Table CLK LE OE SDI OUT0 …OUT7 …OUT15 SDO H L D n Dn….. Dn - ….D n - 15 D n-15 L L D n+1 No Change D n-14 H L D n+2 Dn + ….D n -….D n - 13 D n-13 X L D D n+3 Dn + ….D n - ….D n - 13 n-13 X H Dn+3 Off D n-13 - 4 - August 2003
to change without notice 3863-2.4 2/12/99 T2/C0/D0 SH 1 X9C102/103/104/503 PIN DESCRIPTIONS PIN CONFIGURATION R H/VHand R /L L The high (V /H )Hand low (V /R L tLrminals of the DIP/SOIC X9C102/103/104/503 are equivalent to the fixed terminals of a
Figure 2 shows the PWM output signal. Figure 2. Generation of a Constant Voltage Level V V H V AV VL t x y 2 AVR314 1982B–AVR–05/02 AVR314 While equation 3 shows how to calculate the voltage level: xV + yV V AV = -----------------(3)---- x + y A sine wave can be generated if the average voltage generated
channels on or off, µA 3 VIN = 0V or 5V TA= TMAX -5 5 X VL = 5.25V, TA= +25°C -1 0.0001 1 A Logic Supply Current L all channels on or off, µA VIN = 0V or 5V TA= TMAX -5 5 M VL = 5.25V, TA= +25°C -1 -0.0001 1 Ground Current IGND all
1 0 S R S 7 D G E E R , , o X X S S D A 0 R D 1 SEIKO EPSON CORPORATION PIN CONFIGURATION L L S E /0 1 2 3 4 5 6 7 4 5 6C7 IF SC C0 1 2 QFP5-60pin X S S WR N N R N V V V V V V V V V V QFP6-60pin V V V V
subaddress is performed. Table 1IC-bus; subaddress/data DATA FUNCTION SUBADDRESS D7 D6 D5 D4 D3 D2 D1 D0 volume left 0 0 0 0 0 0 0 X X VL5 VL4 VL3 VL2 VL1 VL0 volume right0 0 0 0 0 0 0 X X VR5 VR4 VR3 VR2 VR1 VR0 bass 0 0 0 0 0 0 1 X X X X BA3 BA2 BA1 BA0 treble 0 0 0 0 0 0 1 X X X X TR3 TR2 TR1 TR0 fader 0 0 0 0 0 1 0 X X MFN FCH FA3 FA2 FA1 FA0 switch 0 0 0 0 0 1 0 GMU X X X X SCC SCB SCA Function of the bits: VL0 to VL5 volume control left VR0 to VR5 volume control right BA0 to BA3 bass control TR0 to
with the switch output to AN44-17 Application Note 44 Continuous (I OUT = 3A) Discontinuous (I OUT = 0.16A) V (ALSO DIODE VOLTAGE) D 5V/DIV 0 –0.5V IP= 3.4A SWITCH CURRENT SW 1A/DIV IP≈ 0.5A 0 ≈ 13V VL 5V/DIVOR VOLTAGE 0 P = 3.4A ≈5.5V L INDUCTOR CURRENT AVG= OUT = 3A 1A/DIV 0 P = 3.4A DIODE CURRENT D
× 8-bit RAM PCF8583 SO8: plastic small outline package; 8 leads; body width 7.5 mm SOT176-1 D E A X c y HE v M A Z 8 5 Q A 2 A A1 (A3) pin 1 index θ Lp L 1 4 detail X e w M b p 0 5 10 mm scale DIMENSIONS (inch dimensions are derived from the original mm dimensions) UNIT A A 1 A 2 A 3 b p c D(1) E(1) e H E L L p Q v w y (1) θ max. Z mm 2.65 0.3 2.45 0.25 0.49 0.32 7.65 7.6 1.27 10.65 1.45 1.1 1.1 0.25 0.25 0.1 2.0 0.1 2.25 0.36 0.23 7.45 7.4 10.00 0.45 1.0 1.8 8o 0o inches 0.10 0.012 0.096 0.01 0.019 0.013
ON SELECTED DOT (B1) (NORMAL) φ2 BRIGHTNESS ON NON-SELECTED DOT (B2) y(θ=180°) φ1 (B1) B1 (Di="H") X X’ S φ=10° E T (B2) y’(θ=0°) H (Di="L") VIEWING DIRECTION B2 B OPERATING VOLTAGE NOTE 2. DEFINITION OF VIEWING ANGLE φ1 AND φ2. φ K φ1<10°<φ2 φ=0° 2.0 SENSOR φ1 φ2 BACKLIGHT VIEWING ANGLEO K φS LCD NOTE
BRIGHTNESS ON SELECTED DOT (B1) (NORMAL) φ1 BRIGHTNESS ON NON-SELECTED DOT (B2) y(θ=180°) (B1) (Di="H") SB1 X X’ S φ=10° N (B2) T y’(θ=0°) G (Di="L") VIEWING DIRECTION R2 B OPERATING VOLTAGE NOTE 2. DEFINITION OF VIEWING ANGLE φ1 AND φ2. φ K φ1<10°<φ2 φ=0° 2.0 SENSOR φ1 φ2 CONTRAST RATIO K VS BACKLIGHT VIEWING
level requirements. CMOS Logic Levels The minimum V IHrequirement for a CMOS-compatible input is 0.7 x V CC to register a logic 1, where V is the supply voltage of the input device. For a CMOS device oper- CC ating with a CC of 4.5V to 5.5V, this gives aIH requirement of 3.15V to 3.85V. The V IL requirement of a CMOS-compatible input is 0.2 x V CC to register a logic 0. This gives a Rev. 3297A–DFLSH–08/02 VILrequirement of 0.9V to 1.1V. 1 System To fully review the implications of operating a 3-volt DataFlash device in a 5-volt system
V 0.3 V l Out1 L external circuitry like npn opeIOUT1 L= 30 A collector stage Output voltage (OUT2, high) V l 100 V; V Out2 H V DD –0.5 V DD–0.3 V external circuitry like pnp opeI = 30 A OUT2 H collector
verschiedenen Display's durcheinander werfen. Die Init-Sequence die du gerade gepostet hast, ist nicht vom L2F50.. sondern vom Sharp Display. Wenn du dir die L2F0 Init-Sequence ansiehst, da steht dann: static const uint8_t disctl[9] PROGMEM = {0x4C, 0x01, 0x53, 0x00, 0x02, 0xB4, 0xB0, 0x02, 0x00};
der Molex Stecker ist sehr gut. Das Telit-Modul ist 44 x 44 x 7mm groß und hat acht Lötpins zum Einlöten in die Platine. Von der Größe her ist das GR47 ja eher groß. Siemens und Telit haben hier die Nase vorn. Das neue von Motorola ist auch sehr klein.
Spezial-elektronik) hat was von OpenAT erzählt. Ich finde nichts darüber. Hat jemand einen Link? VlG AxelR.