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SAM-V71Q-SAM-V71N-SAM-V71J_Datasheet.pdf
Image Sensor Vertical Synchro Input – – – ISI_PCK Image Sensor Data clock Input – – – Timer Counter - TC(x=[0:11]) TC Channel x External Clock PCK6 can be used as an TCLKx Input Input – – input clock TIOAx TC Channel x I/O Line A I/O – – PCK7 can be used as an input clock for TC0 only TIOBx TC Channel x
in „Atmel SAMV71 CAN FD“ · Mikrocontroller und Digitale Elektronik ·
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6291174.pdf
409 404 6302 IC M62320FP IC801 410 420 1608 IC HD64F2238ATE13-B932 IC1861 410 337 0503 IC TC74LCX14FT IC8051 410 321 8300 IC TC74VCX16244FT 410 337 0602 IC HD74LVC14T IC1871 410 325 4605 IC TC74LCX244FT IC8061 410 321 8300 IC TC74VCX16244FT IC8071 410 321 8300 IC TC74VCX16244FT IC1881 410 311 5708 IC MC74HCT244ADT IC8081 410 407 4004 IC TC74VCX541FT 410 315 5506 IC HD74HCT244TV IC8101 409 211 7301 IC MC14053BFL 410 356 7507 IC SN74HCT244PWR IC201 410 353 1805 IC AD9884AKS-140 409 051 2900 IC TC4053BF-TP1
in „Sanyo LCD Beamer PLC- XU30 defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Optional_PCB.pdf
R19 R20 R1 1 ANT 2 10k 2 470k 470k i 2N7002 REL_R_ON T Q1 1 A 3 R2 330 REL_R U2 A 1 4 1 2 U1 R3 Q2 74HC595 A D7 1 C10 R LD3985M33R_SOT23 1N4148W 10k IRLML6402 3v3sw K1 1 5 3v3sw 6 HFD2/003-S-L2 BAT VIN VOUT REL_R 1 100nF S Vext_ON 3 INH BYP 4 3 2 3v3sw 14 C 15 D 595DIN SER C QA 9 1 8 6 6 1 C1 R4 N C2
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PSPICE_MITSCHRIFT_ALLES_SS20908.pdf
Vorlesung im SS 2008 ; Dipl.-Ing. Udo Schürmann Seite - 72 - Parameter Bezeichnung Grundeinstellung TC1 linearer Temperaturkoeffizient 0 • °C1 TC2 quadratischer Temperaturkoeffizient 0 • °C gemessene Temperatur ° C T_MEASURED (überschreibt den unter .OPTIONS gesetzten Wert für TNOM) T_ABS absolute Temperatur
in „Pspice Simulation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt.pdf
3.02 480 495 510 ±3.02 −50 −58 0.98 495 510 524 ±2.92 505 520 535 ±2.92 −40 −40 0.96 547 562 576 ±2.74 558 573 588 ±2.74 −30 −22 0.93 603 617 632 ±2.55 615 630 645 ±2.55 −20 −4 0.91 662 677 691 ±2.35 676 690 705 ±2.35 −10 14 0.88 726 740 754 ±2.14 741 755 769 ±2.14 0 32 0.85 794 807 820 ±1.91 810 823
in „KTY82/120,215“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
clear (W1TC). (WO) RTC_CNTL_MAIN_TIMER_INT_ENA_W1TC Clear the RTC timer interrupt enable bit by writing 1 to clear. (W1TC). (WO) RTC_CNTL_SWD_INT_ENA_W1TC Clear the super watchdog interrupt enable bit by writing 1 to clear (W1TC). (WO) RTC_CNTL_XTAL32K_DEAD_INT_ENA_W1TC Clear the interrupt enable bit when the XTAL32K is dead by writing 1 to clear (W1TC). (WO) RTC_CNTL_GLITCH_DET_INT_ENA_W1TC Clear the interrupt enable bit when
in „Mit dem ESP32C3 laufen lernen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
esp32-c3_technical_reference_manual_en.pdf
clear (W1TC). (WO) RTC_CNTL_MAIN_TIMER_INT_ENA_W1TC Clear the RTC timer interrupt enable bit by writing 1 to clear. (W1TC). (WO) RTC_CNTL_SWD_INT_ENA_W1TC Clear the super watchdog interrupt enable bit by writing 1 to clear (W1TC). (WO) RTC_CNTL_XTAL32K_DEAD_INT_ENA_W1TC Clear the interrupt enable bit when the XTAL32K is dead by writing 1 to clear (W1TC). (WO) RTC_CNTL_GLITCH_DET_INT_ENA_W1TC Clear the interrupt enable bit when
in „ESP32C3 > PLL“ · Mikrocontroller und Digitale Elektronik ·
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LT1498.pdf
MIN TYP MAX UNITS VOS Input Offset Voltage V CM= V+ l 175 650 μV V = V + 0.1V l 175 650 μV CM VOS TC Input Offset Voltage Drift (Note 3) l 0.5 2.5 μV/°C V CM= V+ l 1.5 4.0 μV/°C – + ΔV OS Input Offset Voltage Shift VCM= V + 0.1V to V l 170 600 μV – + Input Offset Voltage Match (Channel-to-ChanCM= V
in „KSQ für LED mit OPV“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Vishay-Intertech-VS-E5PH6006L-N3_C2984102.pdf
CONDITIONS VALUES UNITS Repetitive peak reverse voltage VRRM 600 V Average rectified forward current IF(AV) TC= 110 °C, D = 0.50 60 Non-repetitive peak surge current IFSM TC= 25 °C, p = 10 ms, sine wave 500 A Repetitive peak forward current I T = 110 °C, D = 0.50, f = 20 kHz 120 FRM C Operating junction and storage
in „Netzteil schützen / Diode / Rückstrom“ · Analoge Elektronik und Schaltungstechnik ·
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UM10398_-_LPC11xx_UserManual.pdf
the Timer 0 Counter functions. The Timer Counter can be disabled or reset through the TCR. TMR32B0TC R/W 0x008 Timer Counter (TC). The 32-bit TC is incremented every PR+1 cycles of 0 PCLK. The TC is controlled through the TCR. TMR32B0PR R/W 0x00C Prescale Register (PR). When the Prescale Counter (below
in „Cortex-M UART im Polling-Betrieb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
X S56 S57 S58 S59 S60 B1 B0 S67 S68 S69 S70 S71 S72 1 1 0 0 B1 B0 X S61 S62 S63 S64 S65 B1 B0 S73 S74 S75 S76 S77 S78 1 1 0 1 B1 B0 X S66 S67 S68 S69 S70 B1 B0 S79 S80 S81 S82 S83 S84 1 1 1 0 B1 B0 X S71 S72 S73 S74 S75 B1 B0 S85 S86 S87 S88 S89 S90 1 1 1 1 B1 B0 X S76 S77 S78 S79 S80 B1 B0 S91 S92 S93
in „RE bit beim KS0073“ · Mikrocontroller und Digitale Elektronik ·
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ks0073.pdf
X S56 S57 S58 S59 S60 B1 B0 S67 S68 S69 S70 S71 S72 1 1 0 0 B1 B0 X S61 S62 S63 S64 S65 B1 B0 S73 S74 S75 S76 S77 S78 1 1 0 1 B1 B0 X S66 S67 S68 S69 S70 B1 B0 S79 S80 S81 S82 S83 S84 1 1 1 0 B1 B0 X S71 S72 S73 S74 S75 B1 B0 S85 S86 S87 S88 S89 S90 1 1 1 1 B1 B0 X S76 S77 S78 S79 S80 B1 B0 S91 S92 S93
in „EA DIP204-4 Datenblatt verständnis“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
X S56 S57 S58 S59 S60 B1 B0 S67 S68 S69 S70 S71 S72 1 1 0 0 B1 B0 X S61 S62 S63 S64 S65 B1 B0 S73 S74 S75 S76 S77 S78 1 1 0 1 B1 B0 X S66 S67 S68 S69 S70 B1 B0 S79 S80 S81 S82 S83 S84 1 1 1 0 B1 B0 X S71 S72 S73 S74 S75 B1 B0 S85 S86 S87 S88 S89 S90 1 1 1 1 B1 B0 X S76 S77 S78 S79 S80 B1 B0 S91 S92 S93
in „LCD Display DIP204-6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
X S56 S57 S58 S59 S60 B1 B0 S67 S68 S69 S70 S71 S72 1 1 0 0 B1 B0 X S61 S62 S63 S64 S65 B1 B0 S73 S74 S75 S76 S77 S78 1 1 0 1 B1 B0 X S66 S67 S68 S69 S70 B1 B0 S79 S80 S81 S82 S83 S84 1 1 1 0 B1 B0 X S71 S72 S73 S74 S75 B1 B0 S85 S86 S87 S88 S89 S90 1 1 1 1 B1 B0 X S76 S77 S78 S79 S80 B1 B0 S91 S92 S93
in „Initialisierung von KS0073“ · Mikrocontroller und Digitale Elektronik ·
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Display_driver_ks0073.pdf
X S56 S57 S58 S59 S60 B1 B0 S67 S68 S69 S70 S71 S72 1 1 0 0 B1 B0 X S61 S62 S63 S64 S65 B1 B0 S73 S74 S75 S76 S77 S78 1 1 0 1 B1 B0 X S66 S67 S68 S69 S70 B1 B0 S79 S80 S81 S82 S83 S84 1 1 1 0 B1 B0 X S71 S72 S73 S74 S75 B1 B0 S85 S86 S87 S88 S89 S90 1 1 1 1 B1 B0 X S76 S77 S78 S79 S80 B1 B0 S91 S92 S93
in „LCD Display ansteuern mit KS0073“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ks0073.pdf
X S56 S57 S58 S59 S60 B1 B0 S67 S68 S69 S70 S71 S72 1 1 0 0 B1 B0 X S61 S62 S63 S64 S65 B1 B0 S73 S74 S75 S76 S77 S78 1 1 0 1 B1 B0 X S66 S67 S68 S69 S70 B1 B0 S79 S80 S81 S82 S83 S84 1 1 1 0 B1 B0 X S71 S72 S73 S74 S75 B1 B0 S85 S86 S87 S88 S89 S90 1 1 1 1 B1 B0 X S76 S77 S78 S79 S80 B1 B0 S91 S92 S93
in „Probleme mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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LT1161.pdf
Ctemperature sensecomparators.Thesupplypinsmustbeconnectedto coefficient, which closely matches the TC of drain sense the positive side of the drain sense resistors for proper resistors formed fromcopper PC traces. operation of the current sense. Some loads require high in-rush currents. An RC time Input
in „Erfahrungen mit LT1161“ · Mikrocontroller und Digitale Elektronik ·
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ICL_7106_-_07_-_FN3082.pdf
are poorer in this respect than ceramic. COMMON The combination of reference Temperature Coefficient (TC), internal chip dissipation, and package thermal resistance can FIGURE 4B. increase noise near full scale from 25 V to 80 P-P . Also the linearity in going from a high dissipation count such as 1000
in „Digitalmultimeter Modul mit 7107“ · Mikrocontroller und Digitale Elektronik ·
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ICL7106_7.pdf
poorer in this respect than ceramic. COMMON The combination of reference Temperature Coefficient (TC), internal chip dissipation, and package thermal resistance can FIGURE 4B. increase noise near full scale from 25 V to 80 P-P. Also the FIGURE 4. USING AN EXTERNAL REFERENCE linearity in going from a
in „ICL7107 - Funktionsweise?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
fn3082.pdf
digits blanked. Similarly, units with a TEST negative TC may cycle between over-range and a non-over- The TEST pin serves two functions. On the ICL7106 it is range count as the die alternately heats and cools. All these coupled to the internally generated
in „Magnetfeldsensor mit LED Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fn3082.pdf
digits blanked. Similarly, units with a TEST negative TC may cycle between over-range and a non-over- The TEST pin serves two functions. On the ICL7106 it is range count as the die alternately heats and cools. All these coupled to the internally generated
in „Muss ich beim ICL 7107 wirklich -5V einspeisen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
BG42 [74] MCH_LVDSA_DAT2# AY48 LVDSA_DATA#2 c DDPB_2N BB40 AV47 LVDSA_DATA#3 a DDPB_2P BA40 f DDPB_3N AW38 [74] MCH_LVDSA_DAT0 BB48 LVDSA_DATA0 r DDPB_3P BA38 [74] MCH_LVDSA_DAT1 BA50 LVDSA_DATA1 e [74] MCH_LVDSA_DAT2
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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PDF
lm7800.pdf
f = 1 kHz 8 mΩ RO Short-circuit current TJ= 25°C 2.1 A Peak output current TJ= 25°C 2.4 A Average TC of O Min, J = 0°C,OI = 5 mA −0.6 mV/°C VIN Input voltage required TJ= 25°C 7.5 V maintain line regulation (1) All characteristics are measured with a 0.22-μF capacitor from input to ground and a 0.1-
in „Netzteil für Röhrenvorstufe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2_gameboy.pdf
0 S = 0 D 127 + 1 = 128 C = 0 TC 127 + 1 = 128 -> -128 P = 1 S = 1 D 4 + 254 = 258 -> 2 C = 1 TC 4 + -2 = 2 P = 0 S = 0 D 254 + 252 = 506 -> 250 C = 1 TC -2 + -4 = -6 P = 0 S = 1 D 2 + 252 = 254 C = 0 TC 2 + -4 = -2 P = 0 S = 1 D 129 + 194 = 323 -> 67 C = 1 TC -127 + -62 = -189 -> 67 P = 1 S = 0 D 254 - 129 = 125 C = 0 TC -2 - -127 = 125 V = 0 S = 0 D 196 - 91 = 105 C = 0 TC -60 - 91 = -151 -> 105 P = 1 S = 0 D 12 - 60 = -48 -> 208 C = 1 TC 12 - 60 = -48 P
in „(Chip8 / gameboy) Emulator für AVR AVR32“ · Mikrocontroller und Digitale Elektronik ·
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MT6252.pdf
MIN0 NType TC_R/WUTE TC_MINUTE The minute initial value for the tThe range of its value is: 0-59. 0x810c_001C RTC hours time counter register RTC_TC_HOU Name 15 14 13 12 11 10 9 8 7 6 5 e4 a s TC_HOUR 1 0 Type ia
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HFBR-14XX_Optolink.pdf
RX, 125 MHz, Analog Output E SC, housed Available Options HFBR-1402 HFBR-1414 HFBR-1412TM HFBR-2412TC HFBR-2412T HFBR-2416TC HFBR-1404 HFBR-1414M HFBR-14E4 HFBR-2416 HFBR-2422 HFBR-1412 HFBR-1414T HFBR-2402 HFBR-2416M HFBR-24E6 HFBR-1412T HFBR-1424 HFBR-2406 HFBR-2412 HFBR-2416T Link Selection Guide
in „Debuggen bei EMV-Tests“ · Mikrocontroller und Digitale Elektronik ·
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UC1701.pdf
Name Bits Default Description Advanced Program Control. For UltraChip only. Do NOT use. APC0 [7] : TC, V temperature compensation coefficient (%-per- C) BIAS o 0b : TC curve definition = -0.05% /oC APC0 8 90H 1b : TC curve definition = -0.11% / C APC1 8 -- APC0 [1:0] : WA, automatic column/row Wrap Around
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PDF
d80166w.pdf
Address float afterRD, t11 CC — 42.5 — CLmax + 5 ns WR (no RW-delay) RD, WR low time t12 CC 52.5 + tC — TCLP- 10 — ns (with RW-delay) + t C RD WR low time t13 CC 77.5 + tC — TCLP+ TCLmin — ns (no RW-delay) - 10 + t C RD to valid data in t SR — 47.5 +t — T - 20 ns 14 C CLP (with RW-delay) + tC RD to valid data in t SR — 72.5 +t — T + T ns 15 C CLP CLmin (no RW-delay) - 20 + tC ALE low to valid data in t16 SR — 72.5 — TCLP+ TCLmin ns + tA + C - 20 + tC Address to valid data in t17 SR — 100 — 2TCLP- 25 ns + 2 A + C + 2 A + C Data hold afterRD t18 SR 0 — 0 — ns rising edge Semiconductor
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AIO486.PDF
Chipset 47 I/O-Operationen 105 Standard CMOS Setup 27 Time and Date 42 S Timeout Function 49 SAn Signale 74 Shadow Parameter 32, 48 SBHE# Signal 74 Signale 74 Schnittstelle AEN 74 DRAM-Steckplatz 81 BALE 75 Floppy Disk 85 CHRDY 75 Hardware 71 DACKn# 77 IDE-/AT-Bus 86 DRQn 76 Interner Kontrastregler 87 IOCHK
in „AIO486 CPU-Board“ · Offtopic ·
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PDF
AIO486.PDF
Chipset 47 I/O-Operationen 105 Standard CMOS Setup 27 Time and Date 42 S Timeout Function 49 SAn Signale 74 Shadow Parameter 32, 48 SBHE# Signal 74 Signale 74 Schnittstelle AEN 74 DRAM-Steckplatz 81 BALE 75 Floppy Disk 85 CHRDY 75 Hardware 71 DACKn# 77 IDE-/AT-Bus 86 DRQn 76 Interner Kontrastregler 87 IOCHK
in „AIO486 CPU-Board“ · Offtopic ·
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PDF
harman_kardon_avr507_sm.pdf
SAA6579T/V1 IC72 BVIMB90F482APFG IC , FLASH U-COM FUJITSU IC73 HRVRPM6938H4 SENSOR , REMOTE RPM6938-H4 IC74 HVIS3F84BB I.C , FLASH U-COM S3F84BB IC75 HVI74ACT04MTR I.C , HEX IC76 HVITC74HCU04AFN IC , INVERTER TC74HCU04AFN IC80 HVIHCF4053M013T I.C IC81 HVINJM2068MDTE1 I.C , OP AMP NJM2068MD-TE1 IC82 HVINJM2068MDTE1
in „Harman Kardon geht nicht an (hängt im Standby fest)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
myfirst.lst
Terminal_USART_Base + 0x14 68 .equ Terminal_USART_GTPR, Terminal_USART_Base + 0x18 69 70 .equ RXNE, BIT5 71 .equ TC, BIT6 72 .equ TXE, BIT7 73 74 75 76 Reset: 77 @ Initialize STM32 Clocks 78 79 @ Ideally, we would just take the defaults to begin with and 80 @ do nothing. Because it is possible that HSI is not 81 @
in „mein erstes STM32F4 .asm/ .s Program stürzt ab im gdb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KlangPlusTon_2007-01.pdf
Suavo Sw900 NEU! Magnat Quantum 501/-502/-503 M.-Short MS-Genie m./ohne LS-Ständer Kimber 4 PR/VS/TC/-8 PR/VS/TC lfd. Meter Yamaha YST-SW 012/-015/-030 Magnat Quantum 903Ai alle Farben Quadral Surround 2100 aktiv sw/silber 01805 - 252570 Oehlbach Magic Movie lfd. Meter Yamaha YST-SW 225/-325 /-515 Mor
in „Symasym hohe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RCDN9.pdf
SRAMSTB PU O O/L O/L O/L O/L O/L SRAMSTB Control for CD DSP 106 BUS3 PU I/O O/L O/L O/L O/L O/L CD DSP (TC94A92FG) Control 107 BUS2 PU I/O O/L O/L O/L O/L O/L CD DSP (TC94A92FG) Control 108 BUS1 PU I/O O/L O/L O/L O/L O/L CD DSP (TC94A92FG) Control 109 BUS0 PU I/O O/L O/L O/L O/L O/L CD DSP (TC94A92FG) Control
in „Hifi Kompaktanlage mit Bluetooth Sender ausstatten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX1448E_data.pdf
values are a+25°C.) X CLK A MIN MAX A 1 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 4 IN = 7.47MHz 61 74 4 Spurious-Free Dynamic SFDR IN = 20MHz 61 74 dBc Range 8 IN = 39.9MHz (Note 1) 73 f = 7.47MHz 74 IN Third-Harmonic Distortion HD3 IN = 20MHz 74 dBc f = 39.9MHz (Note 1) 73 IN Intermodulation Distortion 1 = 24MHz at -6.5dB FS, 2 = 26MHz at Two-Tone IMD TT -6.5dB FS (Note 2) -74 dBc Third-Order Intermodulation 1 = 24MHz at -6.5dB FS, 2 = 26MHz at IM3 -6.5dB FS (Note 2) -74 dBc Distortion IN = 7.47MHz -72 -60 Total Harmonic Distortion (first 5 harmonics) THD IN = 20MHz -70 -60
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board_schematic2.pdf
CST47uC16 2 CST47uC16 2 CST47uC16 2 CST47uC16 OUT 3 PCI_RSTJ 5 3 PCIRSTJ PCIRSTJ 2 IN GND 7 VCC3 U22 U74LVX125T LPC_CLK 1 6 FB120R0A6S03 U15B 2 LPC_CLK REF VCC R124 R5%22RS03 4 14 8 LPC_CLK_TC OE# VCC 6 PCIE_RSTJ CLKOUT LPC_CLK_TC 15 OUT PCIE_RSTJ 9,10,11 5 IN GND 7 CLK1 3 7 8 LPC_CLK_IOSMSC LPC_CLK_IOSMSC
in „USB 2.0 Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Orion_Rev_3.0__1_.pdf
6K8 270E 6K8 100nF 100K 22E 1 2 2 R152 EXT CLK GND 51 74HC04 EXT CLK TERMINATION 22E C L33 U26 C 1 2 4 VDD OUT 3 OSC_10MHZ 2 1 MMZ2012R601A 1 GND CONT 10MHZ 3.2X5MM 1 C249 1 C217 +C203 1 C216 100NF 10NF 10UF 100NF 2 2 2 2 D35 Q9 SI2301CDS-T1-GE3 10MHZ_ENABLE
in „Suche Firma die für Privat BGA FPGA reballing macht“ · Markt ·
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PDF
ssd1803a.pdf
DB5 DB4 DB3 DB2 DB1 DB0 Temperature Set Temperature Coefficient Coefficient X 1 0 0 0 1 1 1 0 1 1 0 TC2~0: Control 000: Reserved 001: Reserved 010: -0.05%/゚C (POR) Temperature 011: Reserved Coefficient X X 1 0 0 0 0 0 0 TC2 TC1 TC0 100: -0.10%/゚C Control 101: Reserved Settings 110: -0.15%/゚C 111: -0.20%
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a_2_0.pdf
DB5 DB4 DB3 DB2 DB1 DB0 Temperature Set Temperature Coefficient Coefficient X 1 0 0 0 1 1 1 0 1 1 0 TC2~0: Control 000: Reserved 001: Reserved 010: -0.05%/゚C (POR) Temperature 011: Reserved Coefficient X X 1 0 0 0 0 0 0 TC2 TC1 TC0 100: -0.10%/゚C Control 101: Reserved Settings 110: -0.15%/゚C 111: -0.20%
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM3X.pdf
SRAM 0x40084000 29 TC1 TC3 0xA0000000 +0x40 30 TC1 SRAM TC4 0x20000000 Reserved +0x80 31 SRAM0 TC1 TC5 0x20080000 0xE0000000 0x40088000 32 SRAM1 TC2 TC6 0x20100000 System 33 NFC (SRAM) +0x40 TC2 TC7 0x20180000 0xFFFFFFFF
in „ARM SAM3x Zähleingang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM3X.pdf
SRAM 0x40084000 29 TC1 TC3 0xA0000000 +0x40 30 TC1 SRAM TC4 0x20000000 Reserved +0x80 31 SRAM0 TC1 TC5 0x20080000 0xE0000000 0x40088000 32 SRAM1 TC2 TC6 0x20100000 System 33 NFC (SRAM) +0x40 TC2 TC7 0x20180000 0xFFFFFFFF
in „Arduino Due: Programmierung ohne 16U2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LGP42-10LF_EAY60869402_PLHF-L923A.pdf
171 5 1 Pcs R503 PRN 1W 0.43 ohm J RESISTOR-W/W SMART WWR 1N 0.43 ohm J PILKOR CRS 1/2W 22R ohm J TC ABCO 172 5 1 Pcs R504 RDM 22Ω J 1/2W RESISTOR-M/O SMART SFR25H 1/2W 22R ohm J PILKOR CRS 1/2W 2.2R ohm J TC ABCO 173 5 1 Pcs R512 RDM 2.2Ω J 1/2W RESISTOR-M/O SMART SFR25H 1/2W 2R2 ohm J PILKOR CR 1/
in „LG Inverter Kapazitator abgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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RTN_alter_Fernsteuer_sender2.pdf
c 7 0,01 uF K leinausführung T 3 AFZ 10, SFT 357 o .ä . c 8 5000 pF K leinausführung T 4 OC·76, OC 74, SFT 152 o .ä . c 9 Elko 30 uF/3 V T 5 OC 71, OC 75, OC 603, OC 604 o .ä . R 1 Trimmpoti 100 KOhm () Quarz 27,125 MHz oder 40,68 MHz R 2 5 ,1 KOhm 1/3 - 1/2 w ) R 3 160 Ohm 1/3 - 1/2 w ) SK je Kanal
in „Uralter Fernsteuersender von RTN. Schaltbild und Anleitung“ · HF, Funk und Felder ·
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PDF
Carel-NTC.pdf
9,90 80 1,72 1,67 1,62 -25 89,20 86,43 83,73 26 9,73 9,63 9,53 81 1,67 1,62 1,58 -24 84,85 82,26 79,74 27 9,38 9,28 9,18 82 1,62 1,58 1,53 -23 80,76 78,33 75,96 28 9,04 8,94 8,84 83 1,58 1,53 1,49 -22 76,89 74,61 72,39 29 8,72 8,62 8,52 84 1,54 1,49 1,45 -21 73,23 71,10 69,01 30 8,41 8,31 8,21 85 1,49
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Datei
usart_nrf.c
DtuId[2]), &(DtuId[2]), REQ_RF_RVERSISON, 0); CheckCnt++; USART_ClearITPendingBit(UsartNrf, USART_IT_TC); USART_ClearFlag(UsartNrf, USART_FLAG_TC); UsartNrf_SendLoop_SetBaud(false); USART_SendData(UsartNrf, Uart_SendBuffer[0]); } else { } } else { nRFHasCheck = true; return false; } } else { nRFHasCheck
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CCP_Tricks.pdf
20 8 18 6 16 4 14 2 12 22 32 42 30 40 28 38 26 36 24 34 44 54 64 52 62 50 60 48 58 46 56 66 76 86 74 84 72 82 70 80 68 78 88 98 96 94 92 90 When these numbers are placed in sequential order, they reveal a virtual sampling interval (I ) of 2 µs from 0 µs to 100 µs, although the actual sampling interval
in „Lüfter über PWM, Bauteilauswahl?!?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ULTRASCHALL_SENSOR_MURATA_MA40S4R.pdf
Transmitter type Combined use type Nominal Frequency (kHz) 40 Overall Sensitivity (dB) – Sensitivity (dB) –74 min. −85 min. −87 min. Sound Pressure (dB) 106 min. 103 min. Directivity (deg) 100 75 100×50 Capacitance (pF) 2200±20% 2800 4400 Operating Temperature Range (°C) −30 - +85 −40 - +85 Detectable Range
in „Ultraschallsensor Murata MA40S4R nieder- oder hochohmig“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Atmel-42005-8-and-16-bit-AVR-Microcontrollers-XMEGA-E_Manual.pdf
Compare Channel Pin Routing Configuration OTMX[2:0] PIN7 PIN 6 PIN 5 PIN 4 PIN 3 PIN 2 PIN 1 PIN 0 000 TC5CCB TC5CCA TC4CCD TC4CCC TC4CCB TC4CCA 001 TC5CCB TC5CCA TC5CCB TC5CCA TC4CCD TC4CCC TC4CCB TC4CCA 010 TC5CCB TC5CCA TC4CCB TC4CCA TC5CCB TC5CCA TC4CCB TC4CCA 011 TC4CCA TC4CCA TC4CCA TC4CCA TC4CCA TC4CCA TC4CCA TC4CCA 100 TC4CCB TC4CCA TC4CCA TC4CCA TC4CCA TC4CCA TC4CCA TC4CCA 101 – – – – – – – – 110 – – – – – – – – 111 – – – – – – – – 1. Configuration 000 is default configuration. The pin location is the
in „ATxmega8E5 - ADC Gain Korrektur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADC08L060.pdf
low noise charac- value is equal to the characteristic impedance of the clock teristics, like the 74LS and the 74AC(T)Q families. The worst line and the capacitor value is noise generators are logic families that draw the largest supply current transients during clock or signal edges, like the 74HC, 74F and 74AC(T) families. Since digital switching transients are composed largely of high frequency components, total ground plane copper where “L” is the line length in inches and Z os the charac- weight
in „Digitales Oszi im Selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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murata_caps.pdf
for ∆C to 7U/1X/R6/R7/C8) 50%of B1: Within W10/–30% 2 Y30T3 (for F5), 10T3 (for E4) Y25T3 (for other TC) theRated R1: Within W15/–40% 3 Reference Temperature T2 Voltage F1: Within W30/–95% 125T3 (for ∆C/R7), 105T3 (for C8) 4 85T3 (for other TC) Capacitance 5 Reference Temperature T2 9 Temperature (2) High
in „100nF SMD Entstörkondensator / Brand“ · Analoge Elektronik und Schaltungstechnik ·