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ad9833.pdf
Register Bits D15 D14 D13 D12 D11 D0 1 1 0 X MSB 12 PHASE0 bits LSB D15 D14 D13 D0 0 1 MSB 14 FREQ0 REG bits LSB 1 1 1 X MSB 12 PHASE1 bits LSB 1 0 MSB 14 FREQ1 REG bits LSB If the user wants to change the entire contents of
in „Aus ca. 0,3V Wechselspannung (Sinus) 15 V Wechselspannung machen“ · Analoge Elektronik und Schaltungstechnik ·
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MGA-62563__AV02-1237EN_.pdf
Freq. S11 S21 S12 S22 K-factor GHz Mag. Ang. dB Mag. Ang. Mag. Ang. Mag. Ang. 0.1 0.185 -82.272 22.91 13.982 155.827 0.042 5.4 0.129 -164.437 1.09 0.2 0.187 -90.11 22.63 13.537 153.346 0.042 5.474 0.135 -168.363 1.1 0.3 0.193 -98.147 22.31 13.054 150.578 0.042 5.636 0.141 -172.09 1.12 0.4 0.203 -106.14
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MC1377.pdf
T7 T8 R15 220 R30 + C1 R6 1.5k T24 T25 T26 T27 5.1k R6A5.1k 5pF R162 R21 T2 T3 220 R16 R17 220 T10 T13 16 1.0k 1.0k T9 R23 R24 +8.2V Z1 T19 1.5k 1.5k T20 15 R2 1.2k T18 T1 R2A R3 T22 R13 R11 R12 R14 R22 R9 22k 10k Gnd 1.0k 6.8k 22k 22k 10k 22k 270 22k R28 R29 560 560 R25 R26 PAL/NTSC 20 R80A 4.0k R77
in „Phasenverschiebung -90 bis -180° erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC1377.PDF
T7 T8 R15 220 R30 + C1 R6 1.5k T24 T25 T26 T27 5.1k R6A5.1k 5pF R162 R21 T2 T3 220 R16 R17 220 T10 T13 16 1.0k 1.0k T9 R23 R24 +8.2V Z1 T19 1.5k 1.5k T20 15 R2 1.2k T18 T1 R2A R3 T22 R13 R11 R12 R14 R22 R9 22k 10k Gnd 1.0k 6.8k 22k 22k 10k 22k 270 22k R28 R29 560 560 R25 R26 PAL/NTSC 20 R80A 4.0k R77
in „Problem beim FBAS Signal am Amiga 500“ · Analoge Elektronik und Schaltungstechnik ·
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L9473.pdf
, j depending on NTC characteristics) 15.2 15.04 15 14.88 14.8 14.73 14.6 14.49 t 14.4 o V 14.2 14 13.91 13.8 13.6 13.53 13.4 -40 -20 0 20 40 60 80 100 120 NTC Temp 4/9 L9473 Figure 6. Set-Point Voltages vs. Mounting Tab Temperature (TS-Open) 15.0 14.8 14.6 14.73 14.63 14.4 g 14.43 l14.2 o14.0 14.12 t 14.00 e13.8 S 13.78 13.6 13.4 13.2 13.0 -40 -20 0 20 40 60 80 100 120 140 160 Temp Table 6. DIAGNOSTIC (Tcase = -35°C to +150°C unless otherwise specified) Symbol Parameter Conditions Min. Typ. Max. Units V OV
in „Suche Bauteil L9473“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Form1.h
Name = S"button12"; this->button12->Size = System::Drawing::Size(32, 23); this->button12->TabIndex = 13; this->button12->Text = S"+/-"; // // button13 // this->button13->Location = System::Drawing::Point(120, 144); this->button13->Name = S"button13"; this->button13->Size = System::Drawing::Size(32, 23); this->button13->TabIndex = 14; this->button13->Text = S"."; // // button14 // this->button14->Location = System::Drawing::Point(296, 80); this->button14->Name = S"button14"; this->button14->Size = System::Drawing::
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MSV30245_Schematic_RevB.pdf
D2 P8_2 18 P81/TA4in P33/A11 56 A12 A3 7 5 6 8 D3 DB9 R15 R27 R16 R17 P8_3 17 P82/INT0 P34/A12 55 A13 A4 9 7 8 10 D4 ! DB9F 100K 100K 100K 100K P8_4 16 P83/INT1 P35/A13 54 A14 A5 11 9 10 12 D5 S2 P8_6 P84/INT2 P36/A14 11 12 9 P86/XCout P37/A15 53 A15 A6 13 13 14 14 D6 1 2 P8_7 8 P87/XCin P40/A16 52 A16
in „m16C on Chip Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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PA100D.pdf
4 3 4 C V PCF8574T GND GND STBY/OPER GND 22-27-2021-02 IC13 X1-2 7 6 VDD 16 C17 4 R ATT 13 INT P0 4 LED1_RT 22-27-2021-02 100n P1 5 LED1_GN X2-1 15 SDA P2 6 LED2_RT X2-2 14 SCL P3 7 LED2_GN C 1 P4 10 C 2 A0 P5 11 V GND GND 3 A1 P6 12 D A2 P7 150 D 8 RTC, Taster
in „Schutzbeschaltung Analog-Eingänge / Durchsicht Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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LCD_shortform__Character_.pdf
LMMF4x001x2ES 151.0x40.0x14.5 120.0x23.0 1.152x1.765 0.06x0.06 8 A BW LED LMKC3x006x2ES 122.0x33.0x9.5 99.0x13.0 0.92x1.10 0.06x0.06 16 A BW N LMMC3x006x2ES 122.0x33.0x14.5 99.0x13.0 0.92x1.10 0.06x0.06 16 A BW LED 16 x 1 LMK(N)83x018x2S 80.0x36.0x9.5 63.7x13.5 0.55x0.75 0.08x0.08 16 A BW N / EL LMM83x018x2S 80.0x36.0x14.5 63.7x13.5 0.55x0.75 0.08x0.08 16 A BW LED LMK(N)83x064x2S 80.0x36.0x9.5 64.5x13.8 0.60x0.70 0.05x0.05 16 A BW N / EL LMM83x064x2S 80.0x36.0x14.5 64.5x13.8 0.60x0.70 0.05x0.05 16 A BW LED LMK(N)C4x007x2ES 122.0x44.0x9.5
in „Grafisches LCD Display Ersatz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheetFilter.pdf
T15.0kHzmin. 70T20mV 1.5%max. 3.5%max. Equipment CDBM455CL9 T15.0kHzmin. 70T20mV 1.5%max. 3.5%max. CDB455C13A T4.0kHzmin. 350T50mV 3.0%max. Y CDBM455C13A T4.0kHzmin. 350T50mV 3.0%max. Y CDBC455CX13 T4.0kHzmin. 330T50mV 4.0%max. Y Cellular Phone, CXA1003BM Communications CDB455CL13 T15.0kHzmin. 110T30mV 1.5%
in „Superhet mit einer Loop-Antenne=Empangsspule für KW“ · HF, Funk und Felder ·
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atmel_32uc.pdf
Range Part Page Programming Time (ms) Chip Erase Time (ms) Industrial 4 4 Automotive 16 16 63 AT32UC3A 13. Mechanical Characteristics 13.1 Thermal Considerations 13.1.1 Thermal Data Table 13-1 summarizes the thermal resistance data depending on the package. Table 13-1. Thermal Resistance Data Symbol Parameter
in „V: ATMEL 32UC3A0512-U“ · Markt ·
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KWH040GM05-F02_TP.pdf
... 23 13.2. Storage Conditions.................................................................................... 23 13.3. Installing LCD Module ............................................................................... 23 13.4. Precautions For Operation ........................................................................ 24 13.5. Handling Precautions ...................................................................
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KWH040GM05-F02_TP.pdf
... 23 13.2. Storage Conditions.................................................................................... 23 13.3. Installing LCD Module ............................................................................... 23 13.4. Precautions For Operation ........................................................................ 24 13.5. Handling Precautions ...................................................................
in „SAMMELBESTELLUNG: 4" TFT Display mit 24bit digital interface“ · Markt ·
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BUK100-50GL_1.pdf
UNIT 1 Short circuit load protection T mb= 25 ˚C; L ≤ 10 H E DS(TO) Overload threshold energy V DD = 13 V; VIS 5 V - 0.2 - J td sc Response time V DD = 13 V; VIS 5 V - 0.8 - ms Over temperature protection 2 T j(TO) Threshold junction temperature V = ISV; from I ≥ D A 150 - - ˚C INPUT CHARACTERISTICS Tmb
in „12V/2,5 A Sicher schalten“ · Mikrocontroller und Digitale Elektronik ·
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TFT_Display.pdf
... 23 13.2. Storage Conditions.................................................................................... 23 13.3. Installing LCD Module ............................................................................... 23 13.4. Precautions For Operation ........................................................................ 24 13.5. Handling Precautions ...................................................................
in „Cortex M3 + TFT Controller + 24bit TFT“ · Mikrocontroller und Digitale Elektronik ·
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SSD1306-Revision_1.1__Charge_Pump__1_.pdf
Row3 RAM11 COM4 Row4 RAM4 Row12 RAM12 Row4 RAM12 Row4 RAM4 Row12 RAM12 Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8
in „5V an den Datenleitungen?“ · Mikrocontroller und Digitale Elektronik ·
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SSD1306.pdf
Row3 RAM11 COM4 Row4 RAM4 Row12 RAM12 Row4 RAM12 Row4 RAM4 Row12 RAM12 Row4 RAM12 COM5 Row5 RAM5 Row13 RAM13 Row5 RAM13 Row5 RAM5 Row13 RAM13 Row5 RAM13 COM6 Row6 RAM6 Row14 RAM14 Row6 RAM14 Row6 RAM6 Row14 RAM14 Row6 RAM14 COM7 Row7 RAM7 Row15 RAM15 Row7 RAM15 Row7 RAM7 Row15 RAM15 Row7 RAM15 COM8 Row8
in „OLED Grafik Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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manual_20digilab_201kx208.pdf
190 out A7 ADR8 193 out A8 ADR9 197 out A9 ADR10 198 out A10 ADR11 195 out A11 ADR12 192 out A12 ADR13 187 out A13 ADR14 199 out A14 ADR15 200 out A15 ADR16 203 out A16 ADR17 205 out A17 ADR18 202 out A18 ADR19 175 out D0 D0 160 bidir D1 D1 157 bidir D2 D2 158 bidir D3 D3 159 bidir D4 D4 161 bidir D5
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Datei
main.c
(10); // Neue Zeile sendc(13);} IntFlag = 8; } if (IntFlag == 3){ if (bit_is_set (PIND,3)){ sends(" INT3 "); sendc(10); // Neue Zeile sendc(13);} IntFlag = 8; } if (IntFlag == 4){ if (bit_is_set (PINE,4)){ sends(" INT4 "); sendc
in „external Interrupts bei AT90CAN128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADSP-2181_Datenblatt.pdf
TAMB = +25°C 8 pF 6, 7, 12, 13 C O Output Pin Capacitance @ VIN = 2.5 V, IN= 1.0 MHz, TAMB = +25°C 8 pF NOTES 1Bidirectional pins: D0–D23, RFS0, RFS1, SCLK0, SCLK1, TFS0, TFS1, A1–A13, PF0–PF7. 2Input only pins: RESET, BR, DR0, DR1
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LC75710NE.pdf
. Display digit 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 Right shift DCRAM address (hexadecimal) 10 0F 0E 0D 0C 0B 0A 09 08 07 06 05 04 03 02 01 Display digit 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 Left shift DCRAM address (hexadecimal
in „Help on communications protocol with Sanyo LC75710NE“ · Projekte & Code ·
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Propeller_Layout_20070717.pdf
: : : ::L:L:L:L:L: : 1 26 15 1 3 4 0 47 14 1 G 1 C 1 C 1 2 R 4 2 2 2122232 4 5 6 171811 1 1 2 1 48 13 4 2 4 R191 1 2 1 27 14 C 09 1 2 3 4 5 6 71 1 1 2 N3 2 1 7 2:L X 1 1 2 1 2 2 1 C C R CRC R 2 1 C 1 9 1 1 1 1 1 1 1 C6 R190 2 1 3 23 24L 234L 324 2 Brdcst 28 13 C R C 1 1 R 1 2 1 VR193 1 2 3 4 7 27 3 7
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TDA7560.pdf
OS offset voltage G v Voltage Gain 25 26 27 dB dGv Channel Gain Unbalance 〉1 dB Po Output Power VS= 13.2V; THD = 10% 23 25 W VS= 13.2V; THD = 1% 16 19 W V = 14.4V; THD = 10% 28 30 W S VS= 14.4V; THD = 1% 20 23 W VS = 13.2V; THD = 10%, 2 42 45 W VS= 13.2V; THD = 1%, 2 32 34 W V = 14.4V; THD = 10%, 2 50 55 W S VS= 14.4V; THD = 1%, 2 40 43 W P o EIAJ EIAJ Output Power (*) VS= 13.7V; RL= 4 41 45 W VS= 13.7V; RL= 2 77 W P o max. Max. Output Power (*) VS= 14.4V; RL= 4 50 W VS= 14.4V; RL= 2 80 W THD Distortion P = 4W 0.006 0.05 % o Po= 15W; R L 2 0.015 0.07 % eNo Output Noise ”A
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TDA7560.pdf
OS offset voltage G v Voltage Gain 25 26 27 dB dGv Channel Gain Unbalance 〉1 dB Po Output Power VS= 13.2V; THD = 10% 23 25 W VS= 13.2V; THD = 1% 16 19 W V = 14.4V; THD = 10% 28 30 W S VS= 14.4V; THD = 1% 20 23 W VS = 13.2V; THD = 10%, 2 42 45 W VS= 13.2V; THD = 1%, 2 32 34 W V = 14.4V; THD = 10%, 2 50 55 W S VS= 14.4V; THD = 1%, 2 40 43 W P o EIAJ EIAJ Output Power (*) VS= 13.7V; RL= 4 41 45 W VS= 13.7V; RL= 2 77 W P o max. Max. Output Power (*) VS= 14.4V; RL= 4 50 W VS= 14.4V; RL= 2 80 W THD Distortion P = 4W 0.006 0.05 % o Po= 15W; R L 2 0.015 0.07 % eNo Output Noise ”A
in „TDA7560 Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PL2303_Windows_User_Manual_v1.6.0.pdf
10) in Device Manager for these EOL chip versions under Windows 8. Prolific Technology Inc. - 1 of 13 - May 3, 2012 All information herein is subject to change without prior notice. Prolific Technology Inc. does not make any warranties regarding the accuracy and completeness of this document and shall
in „Verbindung zwischen Laptop und Stk500“ · Mikrocontroller und Digitale Elektronik ·
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OZW67_en__ProductRelease_V3.pdf
OZW672… are on stock in central warehouse in Nurnberg, Germany . Replacement The production of OZS164.13 is stopped and will be fully replaced by OZW672.01. A firmware update from OZS164.13 to OZW672.01 is not possible. Ordering of OZS164.13 is still possible until the stock is sold out. The OZS164.23 with
in „Brötje ISR Plus Kommunikation / LPB“ · Haus & Smart Home ·
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Class-D_PWM_Amplifier_V2_0.pdf
H-Off4 þÿWE-HIDA_22µH þÿWE-HIDA_22µH 14 H-Off C14 R28 OPA1656 0 . 5 BAT42W-VND 3 13 1 4 4 1 13 3 100R 2 . C 10R H-In Out Out H-In þÿ1µF V_Ref C n 470R 2 V 4 1 L-In Boot16 . 16 Boot L-In1 C R32 G 2 C18 . 1 C19 2 C 3 SD/OD 0R R35 F 6 680nF n C 680nF F 7 R36 0R SD/OD 3 2 8 2 L-On11 0 C
in „Class D Amp. Schaltplan überprüfen“ · Analoge Elektronik und Schaltungstechnik ·
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voltcraft_lsp1403_Maplin_N27GG_Manson_SSP-7080_Extech_382260_psu-adjustable-voltage-0-36-v-dc-0-5-a-80-w_sch.pdf
TL431 L 100UF/50V C11 104 FGND C33 V 0 R45 D7 4 222/500V RS+ R18 D13 L9 15R/1W TS ECC 3UH OUT+ 12R C32 FR107 C46 C14 V20200C L10 V GC1 C R38 NTC2 222/1KV R40 0 R43 C42 100UH C38 / C44 103 2 C 10K 10K C13 22nF R21 / 680R/3W 0.1uF/250V V F 1 CON2 47UF/25V 68K/2W 102/100022R
in „Voltcraft LSP-1403 Netztgerät zerschossen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1849588.pdf
Ports 1 & 2 are non-removable, NON_REM[1:0] = ‘11’, Ports 1, 2 & 3 are non-removable. SMSC USB2517i 13 Revision 2.8 (03-27-13) DATASHEET Industrial Temperature Rated USB 2.0 Hi-Speed 7-Port Hub Controller Datasheet Table 5.1 USB2517i Pin Descriptions (continued) BUFFER SYMBOL 64 QFN TYPE DESCRIPTION SCL
in „[V] 2St. 7fach USB2.0 Hub Baustein Microchip/SMCS USB2517-JZX QFN64 (5€)“ · Markt ·
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PDF
1849588.pdf
Ports 1 & 2 are non-removable, NON_REM[1:0] = ‘11’, Ports 1, 2 & 3 are non-removable. SMSC USB2517i 13 Revision 2.8 (03-27-13) DATASHEET Industrial Temperature Rated USB 2.0 Hi-Speed 7-Port Hub Controller Datasheet Table 5.1 USB2517i Pin Descriptions (continued) BUFFER SYMBOL 64 QFN TYPE DESCRIPTION SCL
in „[V] 2St. 7fach USB Hub Baustein Microchip/SMCS USB2517-JZX QFN64“ · Markt ·
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Datei
MeteoCrypt_v2.c
wird in 8-10 Zyklen mit ADD oder/und SUB berechnet, Checksumme oder so if((CNT2 &1) == 0) { R12 = R13; R13 = R14; R1D = R1E; R1E = R1C; } R15 >>= 1; if(R1B &1) R15 |= 0x80; R1B >>= 1; R15 >>= 1; if(R1B &1) R15 |= 0x80; R1B >>= 1; CNT2--; } while(CNT2); R12 = R13 = R14 = 0x00; set bits in R12-R15; // Bitabhängigkeiten müssen noch geklärt werden R12 ^= R08; // original Bits 0-19 R13 ^= R09; R14 ^= R0A; R08 = R0B; // original Bits 20-39 R09 = R0C; R0A = R0D; R0B = R12; R0C = R13; R0D = R14; }
in „Meteotime Crypt“ · Mikrocontroller und Digitale Elektronik ·
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fed.pdf
SF-T8-90S-01-PF 1 200 150 SF-T8S 0.6 17.5 10.5 25±3 (8) 6.5 SF-T8-70D-02-PF 1 300 150 SF-T8D 0.6 18 13 25±3 (11) 8.5 SF-T5-17-02-PF 2 10 30 SF-T5 0.55 13.5 8 25±3 (6) 3 SF-T5-25-01-PF 2 32 42 SF-T5 0.55 13 7 25±3 (6) 3 SF-T8-40S-PF 2 46 70 SF-T8S 0.6 17 9.5 25±3 (8) 5.5 SF-T8-50S-PF 2 72 85 SF-T8S 0.6
in „Welche Induktivität bei Schaltreglern“ · Analoge Elektronik und Schaltungstechnik ·
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DDS-Funktionsgenerator.pdf
AGND AGND 5 C12 X1 PB5(SCK) 19 1 2 + + SV1 100nF 13RS EXT-RESET SPI 12R/W 100k D 150k R2 AGND 11E AGND P8 P7 N D U1 10DB0 R12 DQ GND A +15V R7 13k3 7V LT1227 9 DB1 P9 COUT CLK P6 C11 6 R3 SIN/TRI 8 DB2 DGND P10 P5 2 5 7 DB3 C2 LO RST 100nF D1 47R 6 DB4 P11 HO W1 P4 W1 8 4G 5 DB5 2,2µF P12 P3 5 7 0 4 DB6 V1/2 WO L1 R 2 R 7 3 DB7 P13 SOUT H1 P2 5 C8 2 +5V V 4 & P14 VCC VB P1 - 1 AGND 1 5 6 +5V0nF 100nF AGND 100nF + C13 DS1867 5 6 7 SV2 R4 C16 - R 2 15 13k 74132N 14S4.1 W1 150k 7 V U2 V1/1 V1/3 AGND 13E 3 LT1227 1 & 9 & R16 AGND AGND
in „DDS-Singalgenerator mit ATmega88 und DDS AD5932“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
DDS-Funktionsgenerator.pdf
AGND AGND 5 C12 X1 PB5(SCK) 19 1 2 + + SV1 100nF 13RS EXT-RESET SPI 12R/W 100k D 150k R2 AGND 11E AGND P8 P7 N D U1 10DB0 R12 DQ GND A +15V R7 13k3 7V LT1227 9 DB1 P9 COUT CLK P6 C11 6 R3 SIN/TRI 8 DB2 DGND P10 P5 2 5 7 DB3 C2 LO RST 100nF D1 47R 6 DB4 P11 HO W1 P4 W1 8 4G 5 DB5 2,2µF P12 P3 5 7 0 4 DB6 V1/2 WO L1 R 2 R 7 3 DB7 P13 SOUT H1 P2 5 C8 2 +5V V 4 & P14 VCC VB P1 - 1 AGND 1 5 6 +5V0nF 100nF AGND 100nF + C13 DS1867 5 6 7 SV2 R4 C16 - R 2 15 13k 74132N 14S4.1 W1 150k 7 V U2 V1/1 V1/3 AGND 13E 3 LT1227 1 & 9 & R16 AGND AGND
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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M350_PART2.pdf
P2.15/S28 PIU820A15 B5 E15 PIU820B5 P1.1/S4/D1/DOUT P2.14/S27 PIU820E15 PIU820A6 P1.2/S5/D2/DIN P2.13/S26 PIU820D14 B6 B14 PIU820B6 P1.3/S6/D3 P2.12/S25 PIU820B14 PIU820A7 P1.4/S7/D4 P2.11/S24 PIU820B13 PIU820B7 PIU820A13 A8 P1.5/S8/D5 P2.10/S23 A14 PIU820A8 P1.6/S9/D6 P2.9/S22 PIU820A14 PIU820B8 PIU820B15
in „Wer hat schon mal mit diesem Bauteil gearbeitet?“ · Mikrocontroller und Digitale Elektronik ·
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Rolladensteuerung_sheet.pdf
1 1 R R R R R R R R R JP7 1 2 3 4 5 6 7 8 9 1 2 3 4 5 6 JP9 7 8 JP8 1 2 9 10 1 2 3 4 11 12 3 4 5 6 13 14 5 6 7 8 15 16 7 8 9 10 17 18 9 10 X5-1 11 12 19 20 11 12 13 14 21 22 13 14 X5-2 15 16 23 24 15 16 17 18 25 26 17 18 X6-1 19 20 27 28 19 20 29 30 X6-2 31 32 33 34 X7-1 35 36 X7-2 X8-1 X8-2 C IC1 GND
in „74HC165 Eingänge schützen“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_Controller_-_USB_C_PD.pdf
3 D10_O D1115 (PCINT2/SS/OC1B)PB2 ADC6 18 4 D11_O +5V +5V D1216 (PCINT3/OC2A/MOSI)PB3 AVCC 17D13 5 D12_O (PCINT4/MISO)PB4 PB5(SCK/PCINT5) 6 D13_O U1 ATMEGA328P-MU_C783592 C4 C3 +5V 100nF 4.7u GND GND Q13 Q12 Q11 Q10 Q9 Q8 CSD13202Q2 CSD13202Q2 CSD13202Q2 CSD13202Q2 CSD13202Q2 CSD13202Q2 8 8 8 8
in „USB C PD -> 12V Steuerung 6 Kanal“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Diagramm des Stefan-Boltzmann-Gesetzes
Stefan-Boltzmann-Gesetz 7 6 5 y = 3,19E-13x - 2,47E-01 4 3 2 1 0 -1 P [W] 0,0E+00 2,0E+12 4,0E+12 6,0E+12 8,0E+12 1,0E+13 1,2E+13 1,4E+13 1,6E+13 1,8E+13 2,0E+13 T⁴ - T⁴ᵣ [K⁴]
in „Physikprojekte“ · Offtopic · · Diagramme
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Datei
disassebled_minimal_change_crash.asm
r30, r22 13c4: dc 01 movw r26, r24 13c6: 9c 01 movw r18, r24 13c8: 20 5f subi r18, 0xF0 ; 240 13ca: 3f 4f sbci r19, 0xFF ; 255 13cc: 61 91 ld r22, Z+ 13ce: 6d 93 st X+, r22 13d0: a2 17 cp r26, r18 13d2: b3 07 cpc
in „Bizarrer Firmware crash - ATmega4808. Wie Debuggen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
addon.pdf
HDR16 2 U1 4 3 47 R11 17 Y2 A2 3 CH2 47 R2 3 K1 4 6 5 47 R10 16 Y3 A3 4 CH3 47 R3 5 6 CH4 8 7 47 R13 15 Y4 A4 5 47 R4 7 8 10 9 47 R12 14 6 CH5 47 R5 9 10 Y5 A5 12 11 47 R14 13 7 CH6 47 R6 11 12 VCC0 Y6 A6 VCC0 14 13 47 R15 12 8 CH7 47 R7 13 14 Y7 A7 16 15 47 R16 11 9 CH8 47 R8 15 16 Y8 A8 20 1 VCC0
in „[S] Leute die einen Logic Analyzer (MiniLA) bauen wollen“ · Markt ·
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PDF
HAP-Beschriftungsvorlage-CU.pdf
GND 26 9 GND 26 27 27 27 27 10 10 10 10 28 28 28 28 11 29 11 29 11 29 11 29 12 12 12 12 30 30 30 30 13 13 13 13 U 31 U 31 U 31 U 31 14 I 14 I 14 I 14 I D 32 D 32 D 32 D 32 15 : 33 15 : 33 15 : 33 15 : 16 16 16 16 33 34 34 34 34 17 17 17 17 35 35 35 35 B B B B e e e e z z z z 1 24 V i GND 18 1 24 V i GND
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Datei
dactest_tb.vhd
of dactest_tb is signal tb_clock50mhz_in : std_logic := '0'; signal tb_inputA : std_logic_vector (13 downto 0); signal tb_inputB : std_logic_vector (13 downto 0); signal tb_outputA : std_logic_vector (13 downto 0); signal tb_outputB : std_logic_vector (13 downto 0); signal tb_adcA_out_enable : std_logic
in „Bekomme DAC mit dem DE2-115 nicht zum laufen“ · FPGA, VHDL & Co. ·
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lpc2468_evb.PDF
D11 1 D12 D12 27 DB11 LED-K2 19 PIX302 2 4 120ID10P0.19 / DSR1 / MCICLK / SDA1 P3.12 / D12 PID701 D13 D13 28PID4DB12 LED-K3 PI20019 PIX303 PID602 PID604 PID10P0.20 / DTR1 / MCICMD / SCL1 P3.13 / D13 PID107 PID4DB13 LED-K4 PID4020 PID60P3ID605 11PID10P0.21 / RI1 / MCIPWR / RD1 P3.14 / D14 PID1021 D14
in „Kann sich jemand mein Schema anschauen?“ · Mikrocontroller und Digitale Elektronik ·
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SCT2024V01_03.pdf
17 OUT14 OUT1 3 CQNG 16 OUT14 OUT1 3 AQNG 16 OUT13 OUT2 4 TP(GND) 15 OUT13 OUT2 4 TP(GND) 15 OUT12 OUT3 5 14 OUT12 OUT3 5 14 OUT11 OUT4 6 C 13 OUT11 OUT4 6 D 13 OUT10 7 8 9 0 1 2 7 8 9 0 1 2 O O O O O O O O O G O O U U U U U U U U U N U U T T T T T T
in „riesige LED-Matrix“ · Mikrocontroller und Digitale Elektronik ·
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168ball_nand_lpdram_j4xx_omap.pdf
A2 A3 P R I/O5 I/O4 A4 A5 R T I/O7 I/O6 A6 A7 T U Vcc Vss A8 A9 U V WE# RE# A10 A11 V W ALE NC A12 A13 W Y CE1# CE0# NC Vdd Y Vcc Vss Vss AA Vdd AA AB DNU DNU I/O8 I/O10 Vss I/O12 I/O14Vss LOCK WP# NC R/B# Vss Vss NC NC NC NC NC Vss BA0 DNU DNU AB AC DNU DNU I/O9 I/O11 Vcc I/O13 I/O15Vcc NC NC NC CLE
in „TI OMAP Flash und RAM“ · Mikrocontroller und Digitale Elektronik ·
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SCT2024V01_03.pdf
17 OUT14 OUT1 3 CQNG 16 OUT14 OUT1 3 AQNG 16 OUT13 OUT2 4 TP(GND) 15 OUT13 OUT2 4 TP(GND) 15 OUT12 OUT3 5 14 OUT12 OUT3 5 14 OUT11 OUT4 6 C 13 OUT11 OUT4 6 D 13 OUT10 7 8 9 0 1 2 7 8 9 0 1 2 O O O O O O O O O G O O U U U U U U U U U N U U T T T T T T
in „16Segmentanzeige mit MAX7219 o.ä. steuern?“ · Mikrocontroller und Digitale Elektronik ·
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SCT2024CSSG.pdf
17 OUT14 OUT1 3 CQNG 16 OUT14 OUT1 3 AQNG 16 OUT13 OUT2 4 TP(GND) 15 OUT13 OUT2 4 TP(GND) 15 OUT12 OUT3 5 14 OUT12 OUT3 5 14 OUT11 OUT4 6 C 13 OUT11 OUT4 6 D 13 OUT10 7 8 9 0 1 2 7 8 9 0 1 2 O O O O O O O O O G O O U U U U U U U U U N U U T T T T T T
in „LEDs flackern unregelmäßig bei geringer Helligkeit“ · Mikrocontroller und Digitale Elektronik ·
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Powersoft_DigiMod_1000_schematic.pdf
F 0 0 C31 % 4 0.33uF/160V±5% 13 CN9-13 13 1 C . . C CN11 w 0.1uF/50V Q4 ± 9 C67 C63 14 CN9-14 14 9 0 N 0 0 N ▯ IRFP260NPBF 0 N 15 15 C 0 R80 1 4 3 2 5 6 C 1.0uF/250V ±5% 4 7 16 CN9-16 16 330▯± 1% 1 C C 1 4 F 6 1 17 17 CN9-4 1 C C 4
in „Powersoft DigiMod 1500 Endstufe - DC Offset am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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VAR-DT6CUSTOMBOARD_SCH_V1_1_Doc_V1_2.pdf
SIMO 6 AUD_GND 7 RGMII2_RD3 12 11 RGMII2_TD3 7 AUD_GND 5,6 DMIC_CLK 14 DMIC_DATA (GPIO4[7])CSPI1_MOSI 13 14 RGMII2_RD3(GPIO6[29]) (GPIO6[23])RGMII2_TD3 13 16 DMIC_CLK (GPIO4[6])CSPI1_CLK 15 CSPI1_SCLK 6 16 GND GND 15 4 HDMI_DDCCEC 18 HDMI_DDCCEC (GPIO4[10])CSPI1_CS1 17 CAM_EN/CSPI1_CS1 6,8 6 SDMMC2_CLK
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VN920SP.pdf
ICC = 20 mA (1) 41 48 55 V Off-state; CC = 13 V; V IN= VOUT = 0 V 10 25 µA I Supply current Off-state; CC = 13 V; S V IN= VOUT = 0 V; j =25°C 10 20 µA On-state; VCC = 13 V; IN= 5 V; IOUT = 0 A; SENSE = 3.9 kΩ 5 mA IL(off1)Off-state output currentV
in „[V] Highside-Schalter“ · Markt ·