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Energizer_AAA_AA_AlkaliMangan_ohne.pdf
:56 1,09 959 31:58:11 1,09 959 31:58:26 1,09 959 31:58:42 1,09 959 31:58:57 1,09 959 31:59:12 1,09 960 31:59:27 1,09 960 31:59:43 1,09 960 31:59:58 1,09 960 32:00:13 1,09 960 32:00:28 1,09 960 32:00:44 1,09 960 32:00:59 1,09 960 32:01:14 1,09 961 32:01:29 1,09 961 32:01:45 1,09 961 32:02:00 1,09 961
in „Varta Super Heavy Duty ver**ung“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
tlc5916.pdf
voltage range –0.5 20 V clk Clock frequency 25 MHz OUT Output current 120 mA GND GND terminal current 960 mA TA Operating free-air temperature range –40 125 °C TJ Operating junction temperature range –40 150 °C Tstg Storage temperature range –55 150 °C ESD Electrostatic discharge capabi(HBMESD) 100 pF,
in „Current Sink in Current Source transformieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS2761.pdf
Time tLOW1 1 15 ms Read Data Valid RDV 15 ms Reset Time High tRSTH 480 ms Reset Time Low tRSTL 480 960 ms Presence Detect High PDH 15 60 ms Presence Detect Low PDL 60 240 ms SWAP Timing Pulse Width SWL 0.2 120 ms SWAP Timing Pulse Falling SWOFF 0 1 ms 12 Edge to DC Release SWAP Timing Pulse Rising Edge
in „Akkustand mit AVR feststellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
recommended.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage - V
in „Kurz vorm Verzweifeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage - V
in „DC DC Wandler Pins“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage - V
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PDF
TPS6211.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage - V
in „QFN Gehäuse.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS6211.pdf
VOLTAGE INPUT VOLTAGE 1000 50 V = 12 V O 45 990 IO= 100 mA o 85 C z 980 40 H - 970 o m y 25 C - 35 n n e 960 e 30 o q -40 C u 85 C 25 C r 950 C F n 25 g e h 940 s 20 t i i 930 u -40 C S Q 15 920 10 910 5 900 0 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 VI- Input Voltage - V
in „Trennung von analoger und digitaler Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet_bq2023.pdf
release time (See Figure (REL) 4) See Note 8 30 µs (RSTL) Reset time low (See Figure 5) t(RSTL) + (R)< 960 µs, See Note 8 480 µs (RSTH) Reset time high (See Figure 5) See Note 8 300 µs t Presence pulse delay (See Figure 5See Note 8 15 60 µs (PDH) (PDL) Presence pulse delay (See Figure 5See Note 8 60 240
in „Mit MSP430 einen IC( bq2023) programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ee24xx.lst
r12 956 0406 BF90 pop r11 957 0408 AF90 pop r10 958 040a 0895 ret 959 /* epilogue end (size=11) */ 960 /* function ee24xx_write_bytes size 188 (167) */ 985 .Lscope3: 986 .text 988 Letext: 989 /* File "ee24xx.c": code 540 = 0x021c ( 518), prologues 10, epilogues 12 */ DEFINED SYMBOLS *ABS*:00000000 ee24xx.c
in „I2C EEPROM Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC5916.pdf
voltage range –0.5 20 V clk Clock frequency 25 MHz OUT Output current 120 mA GND GND terminal current 960 mA TA Operating free-air temperature range –40 125 °C TJ Operating junction temperature range –40 150 °C Tstg Storage temperature range –55 150 °C ESD Electrostatic discharge capabi(HBMESD) 100 pF,
in „Gesucht: LED-Treiber 8 LED (100mA-200ma)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Code.txt
0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, 0x8410, 0x0000, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, // 0x03C0 (960) pixels 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, 0x07FF, // 0x03D0 (976) pixels 0x07FF, 0x0000, 0xFF4F, 0xFF4F, 0xFF4F,
in „HEX-Code in Bild“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Knop_Bitmap.c
0x2945, 0x2945, 0x2945, 0x39C7, 0x7BCF, 0x8430, 0x6B6D, 0x528A, 0x4A49, 0x4A49, 0x4228, // 0x03C0 (960) 0x4228, 0x4228, 0x4228, 0x4A49, 0x4A49, 0x52AA, 0x6B6D, 0x8410, 0x7BCF, 0x39C7, 0x2945, 0x2945, 0x2945, 0x528A, 0x52AA, 0x2945, // 0x03D0 (976) 0x2945, 0x2945, 0x2945, 0x2945, 0x2945, 0x2945, 0x2945
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DS18S20_1_.pdf
C IN/OUT 25 pF Note 12: See the timing diagrams in Figure 2. Note 13: Under parasite power, if t > 960µs, a power-on reset may occur. RSTL www.maximintegrated.com Maxim Integrated 3 DS18S20 High-Precision 1-Wire Digital Thermometer 1-Wire WRITE ZERO TIME SLOT tSLOT tREC START OF NEXT CYCLE t LOW0 1-Wire
in „433Mhz RF Wireless Transmitter + Receiver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R3112x_SERIES_Ricoh.pdf
1.764 1.800 1.836 0.054 0.090 0.126 R3112x191A/C 1.862 1.900 1.938 0.057 0.095 0.133 R3112x201A/C 1.960 2.000 2.040 0.060 0.100 0.140 R3112x211A/C 2.058 2.100 2.142 0.063 0.105 0.147 R3112x221A/C 2.156 2.200 2.244 0.066 0.110 0.154 R3112x231A/C 2.254 2.300 2.346 0.069 0.115 0.161 1.0 3.0 0.5 2.5 R3112x241A
in „IC von Tiefentladungsschutz identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADT7420.pdf
1001 0000 0x190 +105°C 0 0110 1001 0000 0x690 +125°C 0 0111 1101 0000 0x7D0 +150°C 0 1001 0110 0000 0x960 Rev. 0 | Page 12 of 24 Data Sheet ADT7420 REGISTERS The ADT7420 contains 14 registers: ADDRESS POINTERREGISTER • Nine temperature registers This register is always the first register written to during
in „STM32F4 mit I2C-Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
10134fd.pdf
–55°C ≤ A ≤ 100°C 120 450 150 480 200 750 µV V CM= 0.1V,AT = 125°C V CM= 0V, A = 125°C 250 900 300 960 400 1500 µV Input Offset Voltage Drif(Note 3) l 0.4 2.0 0.4 2.0 0.5 2.5 µV/°C IOS Input Offset Current l 0.3 2.5 0.3 2.8 0.4 5.0 nA V = 5V, 0V; V = 1.4V l 0.6 6.0 0.7 7.0 0.9 10.0 nA S O IB Input Bias
in „LT1013 Unterschied D und P Package“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Clock_LTC1064.pdf
33 16 957 261 131 65 33 131 65 33 16 958 261 130 65 33 130 65 33 16 959 261 130 65 33 130 65 33 16 960 260 130 65 33 130 65 33 16 961 260 130 65 33 130 65 33 16 962 260 130 65 32 130 65 32 16 963 260 130 65 32 130 65 32 16 964 259 130 65 32 130 65 32 16 965 259 130 65 32 130 65 32 16 966 259 129 65 32
in „Digital verstellbarer Analoger Filter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DS18B20.pdf
25 pF IN/OUT Note 12: See the timing diagrams in Figure 2. Note 13: Under parasite power, ifRSTL > 960µs, a power-on reset can occur. DS18B20 TYPICAL ERROR CURVE 0.5 0.4 C ( 0.3 +3s ERROR O 0.2 R 0.1 R T 0 M -0.1 M -0.2 -3s ERROR E T -0.3 MEAN ERROR -0.4 -0.5 0 10 20 30 40 50 60 70 TEMPERATURE (°C) Figure
in „DS18B20 Sensor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
240709_CommuteFieldCoi_VCC8V.txt
862 876 167 798 861 900 237 797 860 916 211 784 860 924 183 789 855 948 107 790 854 940 193 790 850 960 242 786 848 1008 207 779 849 1000 155 784 847 1040 114 784 846 1040 175 788 843 1048 244 783 844 1060 209 778 846 1076 155 783 844 1120 117 784 842 1104 178 787 840 1100 229 783 841 1132 193 777 845
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Datei
data.txt
108,806,866,896 248,807,864,916 195,810,864,932 189,796,863,956 152,798,862,956 107,800,859,956 234,800,857,960 209,806,858,984 180,792,859,972 168,795,858,972 107,797,856,984 228,798,851,1004 211,801,850,1020 176,786,846,1036 168,782,824,1028 114,780,810,1032 230,778,783,1068 209,777,762,1056 192,763,764,1064
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PDF
OTM3225A.pdf
’h15 6’h35 6’h16 VREG1OUT x 0.795 6’h36 VREG1OUT x 0.955 6’h17 VREG1OUT x 0.800 6’h37 VREG1OUT x 0.960 6’h18 VREG1OUT x 0.805 6’h38 VREG1OUT x 0.965 6’h19 VREG1OUT x 0.810 6’h39 VREG1OUT x 0.970 6’h1A VREG1OUT x 0.815 6’h3A VREG1OUT x 0.975 6’h1B VREG1OUT x 0.820 6’h3B VREG1OUT x 0.980 6’h1C VREG1OUT
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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PDF
D865GBF_D865GLC_TechProdSpec.pdf
Contains AGP window, 0FFFFFH 1 MB GFX aperture, Upper BIOS PCI, and ICH area (64 KB) ranges) 0F0000H 960 KB 0EFFFFH Lower BIOS Top of installed area Video Frame DRAM (64 KB; Buffer 0E0000H 16 KB x 4) 896 KB Top of usable 0DFFFFH Add-in Card DRAM (memory BIOS and visible to the Buffer area operating (128
in „VS: Intel D865GBF, Pentium 4 (3GHz/1M/800) SL7PM, Matrox G45“ · Markt ·
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Datei
iaqlog_12.txt
16 939 2017-05-02 18:21:17 947 2017-05-02 18:21:18 961 2017-05-02 18:21:19 961 2017-05-02 18:21:20 960 2017-05-02 18:21:21 958 2017-05-02 18:21:22 959 2017-05-02 18:21:24 956 2017-05-02 18:21:25 962 2017-05-02 18:21:26 966 2017-05-02 18:21:27 960 2017-05-02 18:21:28 956 2017-05-02 18:21:29 965 2017-05
in „Gibt es eine eifache Möglichkeit, den Sauerstoffgehalt der Luft zu messen?“ · Offtopic ·
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PDF
ihv.pdf
. Atomare Typen und grundlegende Operationen (<stdatomic.h>) . . . . . . . . . . . . . . . . . . . 960 22.4.2. Synchronisation mit Mutex . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .960. 22.4.3. Condition Variables (cnd_t) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .960. . 22.4.4. Thread-lokaler Speicher (thread_local). . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 960 22.5. Alternativen zu <threads.h> . . . . . . . . . . . . .
in „Mein neues C-Buch braucht ehrliche Kritik“ · Softwareentwicklung ·
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PDF
lt32a1.pdf
R957 +24V 10 C916 10K 1/8W 1% 11 R917 NC Q921 IC952 PS_ON 12 56K OHM 1/8W KTD1691P AZ431AZ-AE1 13 R960 +5V R939 1K OHM 1/8W +-5% 1 10K OHM 1/8W + BD901 + R958 Wire Harness KBJ608G R918 10K OHM 1/4W +-5% C937 4 1 R959 9K 1 1/8W 1% 10uF/50V NC 2 3 R919 R923 IC951 C917 C919 NC 13K OHM 1% 1/8W 0.047uF C918
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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PDF
spec-8139d_130_.pdf
This field allows the user to adjust the interframe gap time below the standard: 9.6 us for 10Mbps, 960 ns for 100Mbps. The time can be programmed from 9.6 us to 8.4 us (10Mbps) and 960ns to 840ns (100Mbps). Note that any value other than (1, 1) will violate the IEEE 802.3 standard. The formula for the
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PDF
O-Ring_Uebersicht_0304.pdf
6-735 5,60 0,75 2-004 1,78 1,78 5-148 3,91 0,97 6-1385 5,60 1,80 6-714 1,80 1,00 6-019 4,00 1,10 6-960 5,61 1,68 6-418 1,85 1,50 6-035 4,00 1,50 5-582 5,70 1,90 6-797 2,00 1,00 6-104 4,00 2,00 6-548 5,70 3,20 2-103 2,06 2,62 6-420 4,00 2,20 6-748 5,70 1,05 6-306 2,20 1,60 6-428 4,00 2,50 6-861 5,80 0,75
in „Langlebiges Schmiermittel für O-Ringe in Sanitär-Armaturen“ · Haus & Smart Home ·
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Datei
fehler.txt
0.543%) 930: 64, 133 -> 932 2 (-0.215%) 940: 64, 131 -> 946 6 (-0.638%) 950: 64, 130 -> 954 4 (-0.421%) 960: 64, 129 -> 961 1 (-0.104%) 970: 64, 127 -> 976 6 (-0.619%) 980: 64, 126 -> 984 4 (-0.408%) 990: 64, 125 -> 992 2 (-0.202%) 1000: 64, 124 -> 1000 0 (0.000%) 1010: 64, 122 -> 1016 6 (-0.594%) 1020: 64
in „Timer flexibel konfigurieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS2438A.pdf
Wire device on each ROM Search operation. The time required to derive the part’s unique ROM code is: 960 µs + (8 + 3 x 64) 61 µs = 13.16 ms The bus master is therefore capable of identifying 75 different 1-Wire devices per second. MEMORY COMMAND FUNCTIONS The following command protocols are summarized
in „DS2438 auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Adj_Charge_Pump_Linear_Technology_LT1761ES5-SD__1663783_.pdf
2.732 2.8 2.868 V 3.8V < VIN 20V, 1mA < ILOAD < 100mA ● 2.706 2.8 2.884 V LT1761-3 V = 3.5V, I = 1mA 2.960 3 3.040 V IN LOAD 4V < VIN 20V, 1mA < I LOAD< 50mA ● 2.930 3 3.070 V 4V < VIN< 20V, 1mA < ILOAD< 100mA ● 2.900 3 3.090 V LT1761-3.3 V = 3.8V, I = 1mA 3.250 3.3 3.350 V IN LOAD 4.3V < VIN< 20V, 1mA <
in „Adjustable Charge Pump: LT1761ES5-SD - Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3404.pdf
Following the calculations from the Input Capacitor section, 4 3 Δv IN(MAX)will be 48V x 2% P-P = 960 mV. The minimum re- PO= I F V =O0.5 x 35.2 = 17.6W M quired capacitance is: / 0 Conduction loss, P , in the internal MOSFET: 4 C = (0.5 x 3.3 x 10 ) / 0.96 = 1.7 µF C 3 IN(MIN) M 2 2 L PC= (I F x R
in „Extreme Störungen LM3404“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistortester097k.pdf
N-E-MOS,D, 4153mV 922pF 894pF 933pF IRFU9024 P-E-MOS,D, 3525mV P-E-MOS,D, 3525mV P-E-MOS,D, 3534mV 960pF 926pF 965pF ZVP2106A P-E-MOS,D, 3217mV P-E-MOS,D, 3220mV P-E-MOS,D, 3217mV 115pF 114pF 113pF ZVNL120A N-E-MOS,D, 1560mV N-E-MOS,D, 1535mV N-E-MOS,D, 1535mV 140pF 138pF 138pF Tabelle 4.4: Me▯ergebnisse
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PDF
EPJ9_web.pdf
x 7 cm) und funktioniert. Unser schnellster Testrech- Platzierung der Bautei- ner war ein Core i7 960 mit 3,6 GHz, der le (J1-J3 oben, J4-J6 un- jedoch beim Routen nur um den Faktor 1,3 schneller war als ein deutlich langsa- ten) über den Haufen merer Core i3. Als ungefähre Zeit zum geworfen haben.
in „Embedded Projects Journal: 9. Ausgabe erschienen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1014CN_DN.pdf
MIN TYP MAX MIN TYP MAX MIN TYP MAX 25°C 90 450 90 280 250 950 RS= 50Ω Input Full range 400 1500 400 960 800 2000 VIO offset voltage µV RS= 50Ω, 125°C 200 750 200 480 560 1200 VIC= 0.1 V 25°C 0.2 2 0.2 1.3 0.2 2 I Input IO offset current Full range 10 7 10 nA Input 25°C −15 −50 −15 −35 −15 −50 IB bias
in „Unterschied beim LT1014 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIM300_HD_V1.06.pdf
transmit frequency Table 24: SIM300 receive/transmit frequency Frequency Receive Transmit E-GSM900 925 ~ 960MHz 880 ~ 915MHz DCS1800 1805 ~ 1880MHz 1710 ~ 1785MHz PCS1900 1930 ~ 1990MHz 1850 ~ 1910MHz 4.5 Antenna gain Table 25: Antenna gain Item parameter GSM DCS Gain(dBi) 0.5 1 Pattern Omnidirectional antenna
in „GSM sim300 mit SAM7-EX256 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NTCLE100E-SERIES_ENG_TDS.pdf
90 1.658 - 2.31 5.38 2.416 - 2.35 5.51 3.339 - 2.44 5.65 95 1.479 - 2.25 5.72 2.151 - 2.30 5.85 2.960 - 2.38 6.00 100 1.323 - 2.20 6.05 1.920 - 2.24 6.19 2.632 - 2.32 6.34 105 1.187 - 2.14 6.36 1.719 - 2.19 6.53 2.347 - 2.27 6.68 110 1.068 - 2.09 6.67 1.543 - 2.13 6.85 2.098 - 2.22 7.00 115 0.9635 -
in „Gaggenau Backofen NTC-Luftfühler defekt“ · Haus & Smart Home ·
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PDF
NTCLE100E-SERIES_ENG_TDS.pdf
90 1.658 - 2.31 5.38 2.416 - 2.35 5.51 3.339 - 2.44 5.65 95 1.479 - 2.25 5.72 2.151 - 2.30 5.85 2.960 - 2.38 6.00 100 1.323 - 2.20 6.05 1.920 - 2.24 6.19 2.632 - 2.32 6.34 105 1.187 - 2.14 6.36 1.719 - 2.19 6.53 2.347 - 2.27 6.68 110 1.068 - 2.09 6.67 1.543 - 2.13 6.85 2.098 - 2.22 7.00 115 0.9635 -
in „Defekt bei Sentiotec Sauna/Infrarotkabinen-Steuerung“ · Haus & Smart Home ·
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PDF
2091702_H_-_BK150FUE-1_Control_Box_Manual__1PH_EU_SMART_START_NXT_Non_UL.pdf
or SystemStack overflowed. • Possible software error due to recursive invocations (e.g. profile). F.960 Wrong parameter checksum • New EPROM version with different parameters. • Controller not yet initialized. F.961 Checksum from calibration • New EPROM version with different EEPROM structure. values
in „Steuerung Schnellauftor BK 150 FUE-H F519 Antrieb“ · Haus & Smart Home ·
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PDF
ADE7758.pdf
measure SAG EVENT RESET LOW WHEN VOLTAGE CHANNEL frequency,thevalueoftheperiodregisterisapproximately960dat SAG INTERRUPT FLAG EXCEEDS SAGLVL[7:0] (BIT 3 TO BIT 5 OF 60Hzand800dat50Hz.Thisisequivalentto0.0625Hz/LSB. STATUS REGISTER) LINE VOLTAGE SAG DETECTION - READ RSTATUS 4 REGISTER 0 The ADE7758 can
in „Energy Meter mit ADE7769 - AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8833_1.pdf
handbook, full paSewidth TB P SCE RES SCLK SDIN DC b7 b6 b5 b4 b3 b2 DC b7 b6 b5 b4 b3 b2 b1 b0 MGU960 Fig.44 Serial bus protocol, Write mode, interrupted by reset (RES); (PS[2:0] = XX0). handbook, full pagewidth S TB P SCE RES SCLK SDIN DC b7 b6 b5 b4 b3 b2 DC b7 b6 b5 b4 b3 b2 b1 b0 MGU961 Fig.45 Serial
in „Versorgung einer LCD Anzeige und MC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rfm63dw.PDF
settings should be programmed into the RF63: Target channel 863- 902- 915- 950- (MHz) 870 915 928 960 Freq_band 10 00 01 10 Table 10: MCParam_Freq_bandSetting 3.2.5.2. Trimming the VCO Tank by Hardware and Software To ensure that the frequency band of operation may be accurately addressed by the R,
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VHF-COMM.1984.3.pdf
Television (SSTV) is, basically speaking, not onterent from facsimile (FAX) transmissions with a speed of 960 lines per Recommendation of a Suitable SSTV minute. However,one advantage of FAX·trans· Standard missions is not used: namely that is is not II would be advisable for88TV to have a Ire necessary for
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PDF
VHF-COMM.1984.3.pdf
Television (SSTV) is, basically speaking, not onterent from facsimile (FAX) transmissions with a speed of 960 lines per Recommendation of a Suitable SSTV minute. However,one advantage of FAX·trans· Standard missions is not used: namely that is is not II would be advisable for88TV to have a Ire necessary for
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Datei
aa.txt
0.050433843674653644 Temp : 959 GradC Utemp: 41.32166249587566 mVdelta :0.05045690666245406 Temp : 960 GradC Utemp: 41.372142489599995 mVdelta :0.050479993724337646 Temp : 961 GradC Utemp: 41.42264559446035 mVdelta :0.05050310486035414 Temp : 962 GradC Utemp: 41.4731718345308 mVdelta :0.05052624007045381
in „Präzisions Temperaturmessung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test-eeprom.txt
V:247 READ: A: 956 - V:247 READ: A: 957 - V:247 READ: A: 958 - V:247 READ: A: 959 - V:247 READ: A: 960 - V:248 READ: A: 961 - V:248 READ: A: 962 - V:248 READ: A: 963 - V:248 READ: A: 964 - V:248 READ: A: 965 - V:248 READ: A: 966 - V:248 READ: A: 967 - V:248 READ: A: 968 - V:249 READ: A: 969 - V:249 READ
in „I2C Eeprom 24C16 - Speicherproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
CRC16 957 cpi temp0,DATA1PID ;ci je DATA1 pole 958 brne CRC16End ;ak nie tak skonci 95ComputeDATACRC: 960 ser temp0 ;inicializacia zvysku LSB na 0xff 961 ser temp1 ;inicializacia zvysku MSB na 0xff 96CRC16Loop: 963 ld temp2,Y+ ;nahraj spravu do temp2 a zvys pointer do buffera 964 ldi temp3,8 ;pocitadlo
in „IGORPLUG-USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
CRC16 957 cpi temp0,DATA1PID ;ci je DATA1 pole 958 brne CRC16End ;ak nie tak skonci 95ComputeDATACRC: 960 ser temp0 ;inicializacia zvysku LSB na 0xff 961 ser temp1 ;inicializacia zvysku MSB na 0xff 96CRC16Loop: 963 ld temp2,Y+ ;nahraj spravu do temp2 a zvys pointer do buffera 964 ldi temp3,8 ;pocitadlo
in „90s2343 als usb ir empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
CRC16 957 cpi temp0,DATA1PID ;ci je DATA1 pole 958 brne CRC16End ;ak nie tak skonci 95ComputeDATACRC: 960 ser temp0 ;inicializacia zvysku LSB na 0xff 961 ser temp1 ;inicializacia zvysku MSB na 0xff 96CRC16Loop: 963 ld temp2,Y+ ;nahraj spravu do temp2 a zvys pointer do buffera 964 ldi temp3,8 ;pocitadlo
in „Per USB mit ATMega32 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IgorPlug-USB__AVR__firmware.pdf
CRC16 957 cpi temp0,DATA1PID ;ci je DATA1 pole 958 brne CRC16End ;ak nie tak skonci 95ComputeDATACRC: 960 ser temp0 ;inicializacia zvysku LSB na 0xff 961 ser temp1 ;inicializacia zvysku MSB na 0xff 96CRC16Loop: 963 ld temp2,Y+ ;nahraj spravu do temp2 a zvys pointer do buffera 964 ldi temp3,8 ;pocitadlo
in „Booten auf Knopfdruck mit AT90S23X3“ · Mikrocontroller und Digitale Elektronik ·