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217369.pdf
#4 flat headink .250 countersink 82° to w not furnished with assembly 1.655 Dia. screw or rivet. .218 (6,35) .226 (5,74) dia. Chassis insulator (42,04) 2 holes Dia. min. 4 places 0 (2 holes) 2 - .187 1.062 5 (Max.) (26,97) 2 (Chassis) .166 .521 .521 0 No. 4 flat head Eyelet - (4,22) (10,92) (13,23)
in „Kühlkörper TO3 Befestigungslöcher zu groß?“ · Mechanik, Gehäuse, Werkzeug ·
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TDA1591.pdf
MPX-demodulator outputs • Internal voltage stabilization. QUICK REFERENCE DATA SYMBOL PARAMETER MIN. TYP. MAX. UNIT VP supply voltage (pin 5) 7.5 10 12 V I supply current − 12 − mA P Vo(rms) audio output signal (RMS value) − 900 − mV THD total harmonic distortion − 0.1 0.3 % S/N signal-to-noise ratio − 76 −
in „TDA 7313 input AM / FM“ · Analoge Elektronik und Schaltungstechnik ·
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fla-203.pdf
Display on FLA remote control and monitor P200 f (Hz) v (km/h) settings U ss (V) f (Hz) Required min max Required min max 4 200 200 195 205 7.2 7.0 7.4 8 400 400 393 407 14.4 14.1 14.7 16 1600 1600 1581 1619 57.6 56.9 58.3 32 6400 6400 6333 6467 230.4 227.9 232.8 Adapter cable connection P200 input U-R-F
in „Kommunikation mit Leistungsprüfstand BOSCH FLA203“ · PC Hard- und Software ·
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C462925.pdf
2) Lead Temperature Soldering T °C SLD Reflow (SMD styles only), Leaded, 60−150 s above 183, 30 s max at peak − 240 Reflow (SMD styles only), Lead Free, 60−150 s above 217, 40 s max at peak − 265 Wave Solder (through hole styles only), 12 sec max − 310 2. Per IPC/JEDEC J−STD−020C. Table 4. THERMAL CHARACTERISTICS
in „Verpolungsschutz“ · Analoge Elektronik und Schaltungstechnik ·
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swissbit-U500-USB3-Stick.pdf
types o 2.54mm pitch, 7.5mm long standard o 2.00mm pitch, 3.68mm long low profile • Component heights max. 1.4mm on connector side max. 1.4mm on flash side • Weight (max.) 5g Figure 2: Mechanical Dimensions for U-500 1GB-4GB drive Figure 3: Mechanical Dimensions for U-500 8GB-32GB drives All dimensions
in „[S] USB Stick für Produktdoku - weniger Speicher, mehr Zuverlässigkeit“ · Markt ·
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Datei
eventctrl_uc.ino
width] = '\0'; while (width) { buf[--width] = '0' + (value % 10); value /= 10; } return buf; } #define MAX_ARGS 10 /* ---------------------------------------------------------------------- parse_cmd zerlegt ein String in Kommando und nummerische Argumente Uebergabe: input : Zeiger auf Originalstring command
in „Schulnotenbewertung eines Arduino-Programms“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lambdacontroller_ai_claude_2.ino
int serial_counter = 0; uint16_t CJ125_Status = 0; // PID int dState = 0; int iState = 0; const int iMax = 250; const int iMin = -250; const float pGain = 120.0; const float iGain = 0.8; const float dGain = 10.0; // ----------------------------- // Lambda- und O2-Tabellen (Platzhalter) // -------------
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lambdacontroller_ai_claude.txt
int serial_counter = 0; uint16_t CJ125_Status = 0; // PID int dState = 0; int iState = 0; const int iMax = 250; const int iMin = -250; const float pGain = 120.0; const float iGain = 0.8; const float dGain = 10.0; // ----------------------------- // Lambda- und O2-Tabellen (Platzhalter) // -------------
in „Bosch CJ125 mit AVR AT90CAN64“ · Mikrocontroller und Digitale Elektronik ·
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Datei
eventcb_ctrl6.ino
width] = '\0'; while (width) { buf[--width] = '0' + (value % 10); value /= 10; } return buf; } #define MAX_ARGS 10 /* ---------------------------------------------------------------------- parse_cmd zerlegt ein String in Kommando und nummerische Argumente Uebergabe: input : Zeiger auf Originalstring command
in „Schulnotenbewertung eines Arduino-Programms“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bat_sensor_0x0d_analysis.html
var(--text); opacity: 0.5; text-align: center; margin-top: 10px; letter-spacing: 0.05em; } canvas { max-width: 100%; } </style> </head> <body> <div class="header"> <div class="title-block"> <h1>Ford LIN Bus · Batteriesensor AG9N-10C679-DE</h1> <h2>Stromfluss-Analyse · ID 0x0D</h2> <div class="subtitle
in „Reverse Engineering eines LIN Bus“ · Mikrocontroller und Digitale Elektronik ·
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T6963C.pdf
character generator ROM (code 0101) T6963C−0101 is built in as standard. ▯External display memory : 64 KB Max The addresses in display memory of the text area, graphic area and external character generator area are determined by software. ▯Read or Write operations from the CPU do not disturb the display. ▯A
in „altes Phytec MCB-51 Monitor/Basic Befehle?“ · Mikrocontroller und Digitale Elektronik ·
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Ferrite.pdf
tuning core as they does not implement core tuning. cod. SBK-50 useful space for the coil = 5,2 mm , max 10 turns , max wire Ø 0,3 mm, max inductance ~ 500 nH useful space for the coil = 5,7 mm , max 4,5 turns , cod. SBK-51 max wire Ø 0,6 mm, max inductance ~ 100 nH useful space price 0,45 € -- 0,40 €
in „Gefunden und für gut befunden.Filterliste.“ · HF, Funk und Felder ·
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DM8603EP.pdf
1:0 1Ch.[1:0] PSE,RW 00b VLAN_PM0[1:0] VLANtagpriorityvalue=00h 7.3.8 TOS Priority Map Register 1 (218h) PHY_ADR REG_ADR ABS_ADR 10h 18h 218h Bit ROM Type Default Description 15:14 1Dh.[15:14] PSE,RW 11b TOS_PM07[1:0] TOSvalue=07h 13:12 1Dh.[13:12] PSE,RW 11b TOS_PM06[1:0] TOSvalue=06h 11:10 1Dh.[11:
in „[V] DM8203 & DM8603“ · Markt ·
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HD66766R.PDF
COM142 8246 1145 297 SEG334 5168 1145 377 SEG254 2128 1145 58 RW/RD* -1597 -1168 138 VCI1 8033 -1168 218 COM144 8208 1145 298 SEG333 5130 1145 378 SEG253 2090 1145 59 E/WR*/SCL -1440 -1168 139 VCI1 8133 -1168 219 COM146 8170 1145 299 SEG332 5092 1145 379 SEG252 2052 1145 60 GNDDUM7 -1284 -1168 140 VCI1
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fritzbox_7590_log.txt
: 1000000000Hz mips_hpt_frequency 500000000Hz [ 0.000000][ T0] clocksource: gptc: mask: 0xffffffff max_cycles: 0xffffffff, max_idle_ns: 9556302233 ns [ 0.010146][ T0] Calibrating delay loop... 718.84 BogoMIPS (lpj=1437696) [ 0.046807][ T0] pid_max: default: 32768 minimum: 301 [ 0.052302][ T0] Security
in „FritzBox 7590 Boot Loop“ · Mikrocontroller und Digitale Elektronik ·
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MS-17631_2.0.pdf
▯ } I ( ▯ 2 › 2 LED Driver IC ▯ D O ▯ î C ▯ +12V_FAN LED Forward Voltage E 2 2 1 1 SDICS ▯ +15V R_Max 2.4V x 4 pcs = 9.6V L L L L SDI_CLKL ) For EMI ▯ 3 3 3 2 2 2 1 1 1 G_Max 3.3V x 4 pcs = 13.2V C227 C100p50N0402 LED1_G L L L L L L L L L Pin Definerd 6 5 4 3 2 1 O ▯ C567 C100p50N04N2 LED1_R B_Max 3.3V
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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RCDN9.pdf
6 1 R 4 R 1 2 4 OUT VDD 5 u I N 1 0 12MHz 3 . 2 / DGND 2 1 C 0 C V C402 16V/1uF D B C305 0 S 1 R Q218 R264 3 NC D VSS 2 C403 100/16V C258 0 C269 1000P 1K 5 CVTBDS138BK Q224 8 P 8 P 2 K 1 D218 RB160L60 Model Option C369 0 AGND C267 0.01 RT1N141C 2 1 2 1 R 1 R268 DGND R273 C C EMI CM C348 0.1 G Q223 RDC-N9
in „Hifi Kompaktanlage mit Bluetooth Sender ausstatten“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Schrittmotor.asm
181,182,183,184,185,186,187,188,190,191,192,193,194,195,196,197,198,199,200,201,202,203,203,204,205,206,207,208,209,210,211,212 .db 213,213,214,215,216,217,218,218,219,220,221,222,222,223,224,225,225,226,227,228,228,229,230,230,231,232,232,233,234,234,235,235 .db 236,237,237,238,238,239,239,240,241,241,242,242,243,243,243,244,244,245,245,246,246,247,247,247,248,248,248,249,249,249,250,250
in „Spielerei mit einem 2- und 5-Phasen-Schrittmotor“ · Projekte & Code ·
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53131a_53132a_bedienungsanleitung_deutsch_komprimiert.pdf
di F rontplattetplatte 1 2_ IS [> 5 1 [ π CHANNEL3BR: 10K¼tz-3GHz ⅛∙:: }J⅛ π ⅛∙κ> DemegoLvl: 5Vrm*MAX50Ω Rmote ® MEASURE LIMITS MATH ■ M CHANNEL 2 M M ~1 Freq & (en ] A (ve A] Sensitivity Sensitivity Ssro@® Ratio Dad Lower Offset POWERR IM2_@ ∣1MΩ π Measr > Se DC__® ⅞a Δ pr Ultili Local DC__® DemagoLvt
in „[V] HP/Agilent 53131a/53132a Bedienungsanleitung deutsch“ · Markt ·
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Lattice_Timing_Closure.pdf
edgemore) after the reference clock edge arrives arrives at the pin? at the pin? CLOCK_TO_OUT ALLPORTS MAX 10ns CLOCK_TO_OUT ALLPORTS MAX 10ns MIN 2ns CLKPORT “clk”; MIN 2ns CLKPORT “clk”; TRACE uses different performance grades and conditions when doing Setup time vs. Hold time analysis. Table 2 has more
in „IO constraints für asynchrone Inputs in Lattice Diamond“ · FPGA, VHDL & Co. ·
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Datei
Schrittmotor.asm
181,182,183,184,185,186,187,188,190,191,192,193,194,195,196,197,198,199,200,201,202,203,203,204,205,206,207,208,209,210,211,212 .db 213,213,214,215,216,217,218,218,219,220,221,222,222,223,224,225,225,226,227,228,228,229,230,230,231,232,232,233,234,234,235,235 .db 236,237,237,238,238,239,239,240,241,241,242,242,243,243,243,244,244,245,245,246,246,247,247,247,248,248,248,249,249,249,250,250
in „Spielerei mit einem 2- und 5-Phasen-Schrittmotor“ · Projekte & Code ·
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Datasheet_MFRC522.pdf
between pins TX1 and TX2 at 13.56 MHz. [7] DD(SVDD)depends on the load at pin MFOUT. Vmod V V i(p-p)(max) i(p-p)(min) VMID 13.56 MHz carrier 0 V 001aak012 Fig 24. Pin RX input voltage range 14.1 Timing characteristics Table 154. SPI timing characteristics Symbol Parameter Conditions Min Typ Max Unit WL
in „IRQ am RFID RC522“ · Mikrocontroller und Digitale Elektronik ·
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technical.pdf
and V ds being the intrinsic drain-source voltage. The charge and capacitances are: for V > V new max 168 V max Vnew − V max Q gs = Cgs0· 2·Vbi 1 − 1 − + (11.364) V bi 1 − VVax bi ∂Q gs C gs0 ∂Vnew = · (11.365) ∂Vgs 1 − VVax ∂V gs bi ∂Q gs C gs0 ∂Vnew = · (11.366) ∂Vgd 1 − VVax ∂V gd bi and
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asus-p701-unlocked.pdf
ACOK# 3 1 Vcls=3.413V GND K U 2 2 G1 N D1 7 2 1 1 MAX8724_REF MAX8724_LDO 5 0 2 T PR9 MAX8724_LDO PL1 PR8 /X S G PR12 7 1 S BAT_LX_20mil 3 S2 D2 6 1 2 1 2 BAT 2 PQ7 10KOhm _ 2 1 0 2N7002 GND 1 A 2 4 G2 N D2 5 2 S 6.2UH 2 25mOHM E 5 /X GND B 33Ohm 1 Irat
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S32K-RM.pdf
Than MAX_FL Bytes and Bad CRC Statistic Register (ENET_RMON_R_JAB)....... 2053 57.5.71 Reserved Statistic Register (ENET_RMON_R_RESVD_0).......................................................................
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pm2534ocr.pdf
the counter is full (therefore the counter is also presettable for the DOWN-phase to get a defined max. DOWN-timing in case of a fault). When the DOWN-phase is ready, the contents of the counter is transferred to the output shiftregister and the AZ-phase is started. The timing of the AZ~phase is done
in „Pjilips PM2519“ · Markt ·
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PDF
PMT_handbook_v4E.pdf
measure anode luminous sensitivity) VOLTAGE 0 V ON LIGHT LEVEL OFF 5 6 7 8 9 (minutes) 1 µA ANODE I max. OUTPUT Ii I min. OR Ii I max. I min. 5 6 7 8 9 (minutes) WARM-UP PERIOD (5 minutes or more) THBV4_0440EA Figure 4-40: Light hysteresis In light hysteresis test, the photomultiplier tube is operated
in „Suche nach geeignetem OpAmp als Impedanzwandler“ · Analoge Elektronik und Schaltungstechnik ·
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siplace-s27hm.pdf
electrical components . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 218 6.16.1 Conversion board of the conveyor side (00359424-01). . . . . . . . . . . . . . . . . . . . . 218 6.16.2 Conversion board of the conveyor system (00359425-01) . . . . . . . . . . . . . . . . .
in „Siplace 80 Potentialverteiler“ · Mikrocontroller und Digitale Elektronik ·
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pm2521ocr.pdf
routine examines the Rdown and Rup bits in the range control status register. Ifthe range > range max. then the instrument must range up. Ifthe range < range min. then the instrument must range down. Italso ensures that in the TRIGGER LEVEL function only manual ranging isallowed. 1.4.1.4. M e a s u
in „Pjilips PM2519“ · Markt ·
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grundig32zollLedTV.pdf
: C0 C743 C733 C734 TP89 470nF VCC3V3_FE 3.3uH C724 VCC3V3_FET 10K*4 35VF 35VF 25V IC703 C723 xxmA max LNBH29EQTR 22uF 100NF 14 13 D702 VUP VOUT 220nF C735 6 50V PMEG4010EH PMEG4010EH 16 LX D703 VCC3V3 EPAD 17 L711 NC 15 R709 SATELLITETUNER L712 6.8uH NC 11 NC 3A 60R 1 12 NC C740 +12V VCC 3 R710 R711 VCC3V3_FES C725 C726 C737 C736 DSQIN/EXTM L709 150mA max 100nF 100nF 10NF 0R 15.4K VCC3V3_FE TP88 VCC3V3_FES 10uF35V R715 8 9 220nF50V 6 SCL BYP 10 4.7K L714 7 u 7 n R706 7 SDA C727 NC C 1 C 1 12 I2CM_SDA 5 ADDR N D C742 I2CM_SCL 8 ISEL P G N SAT1 10UF 7
in „Reparaturbericht LED-TV Grundig 32 VLE 5620 BN Ton gut, aber kein Bild“ · Analoge Elektronik und Schaltungstechnik ·