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PS9530_KM_G_071030.pdf
SMD C306 TLC272 SEG17 25 89 SEG15 1 P5.2 49 R SMD SMD SEG18 26 88 SEG16 9 P5.3 IC308 6 330n Sample and Hold 27 SEG17 9 50 INH Folie SEG19 28 87 SEG18 V P6.0 51 K4 10 IC310 SEG20 29 86 SEG19 L P6.1 52 K5 9 A AGND
in „ELV Netzteil "PS 9530" 0-30V/0-10A - Erfahrungen“ · Mikrocontroller und Digitale Elektronik ·
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c06172053.pdf
spare part number 924326-001. (13) Solid-statedrive: For use on all computer models: 1-TB, 2280 M.2, PCIe3×4, SS, NVMe with TLC 908359-003 512-GB, 2280 PCIe, SS, NVMe L01301-002 256-GB, 2280 M.2, PCIe3×4, SS, NVMe with TLC 847109-018 128-GB, 2280 M.2, SATA3, PCIe, SS, NVMe with TLC (for use only in
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Akku_Tester.pdf
R13 UBATT 4k7 0 1 7 R C17 4 MBR1060 100n D3 2 2 GND GND 1 1 I I T T 1 2 10k Q Q 1k IC5A 3 PWM Akku 3 3 IC4A 3 1 R11 2 + 4 1 3 1 1 lR22 2 C1 R 0 R 0 2 C16 + t TLC272P 1 - C14 TLC272P a 100n SPANNUNG 22u T W 470n GND 5 GND Akku 7 8 GND 2 + R 1 R10
in „Projet um die Kapazität von Akkus zu messen“ · Mikrocontroller und Digitale Elektronik ·
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Akku_Tester.pdf
R13 UBATT 4k7 0 1 7 R C17 4 MBR1060 100n D3 2 2 GND GND 1 1 I I T T 1 2 10k Q Q 1k IC5A 3 PWM Akku 3 3 IC4A 3 1 R11 2 + 4 1 3 1 1 lR22 2 C1 R 0 R 0 2 C16 + t TLC272P 1 - C14 TLC272P a 100n SPANNUNG 22u T W 470n GND 5 GND Akku 7 8 GND 2 + R 1 R10
in „Projet um die Kapazität von Akkus zu messen“ · Mikrocontroller und Digitale Elektronik ·
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TLC59116.pdf
Register Descriptions Table 2 describes the registers in the TLC59116. Table 2. Register Descriptions REGISTER NUMBER NAME ACCESS (1) DESCRIPTION (HEX) 00 MODE1 R/W Mode 1 01 MODE2 R/W Mode 2 02 PWM0 R/W Brightness control LED0 03
in „Verstehe TWI überhaupt nicht“ · Mikrocontroller und Digitale Elektronik ·
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Place_Route_Trace_Report.pdf
wb_tlc/intf/un1_wb_adr_o_4_cry_16 FCITOF1_DE --- 0.220 R23C40A.FCI to R23C40A.F1 wb_tlc/intf/SLICE_370 ROUTE 1 0.793 R23C40A.F1 to R27C40B.C1 wb_tlc/intf/un1_wb_adr_o_4_cry_17_0_S1 CTOF_DEL --- 0.164 R27C40B.C1 to R27C40B.F1 wb_tlc/intf/SLICE_4284 ROUTE 1 0.000 R27C40B.F1 to R27C40B.DI1 wb_tlc/intf/wb_adr_o_32[19] (to clk_125_c) -------- 7.506 (32.2% logic, 67.8% route), 17 logic levels. Clock Skew Details: Source
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Hantek_Tekway_DSO_v1.03.pdf
POF SET2-CH22 21 22nF - rev1.0.3 R02_2022 Test Point GND GND PIR020PIR020202 RX2_1 = RX2_2 = RX2_3 = RX2_4 RA02_1 = RA02_2 806k -5F1C2 -5A +5F2C2 +5A +5F1C2 +5A L02_20 L02_30 L02_40 Ha200MHz - 280R 0.1% H200MHz
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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LS4000_Routing_Report.pdf
i_can_registers/SLICE_1691: Name Fanout Delay (ns) Site Resource ROUTE 999 1.567 *FF_TX_H_CLK_0 to *L_R53C70.CLKI clk_125_c CLKI2OP_DE --- 0.000 *L_R53C70.CLKI to *_R53C70.CLKOP pll_can/PLLInst_0 ROUTE 404 1.314 *_R53C70.CLKOP to R46C21B.CLK can_clk_c -------- 2.881 (0.0% logic, 100.0% route), 1 logic
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LS4000_Routing_Report.pdf
i_can_registers/SLICE_1691: Name Fanout Delay (ns) Site Resource ROUTE 999 1.567 *FF_TX_H_CLK_0 to *L_R53C70.CLKI clk_125_c CLKI2OP_DE --- 0.000 *L_R53C70.CLKI to *_R53C70.CLKOP pll_can/PLLInst_0 ROUTE 404 1.314 *_R53C70.CLKOP to R46C21B.CLK can_clk_c -------- 2.881 (0.0% logic, 100.0% route), 1 logic
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EW32F10FLW.pdf
100 ns FLM hold time thold 100 ns tw tw tw tf tr 0.8VDD 0.8VDD 0.2VDD CL2 tDSU tDHD 0.8VDD D3~D0 0.2VDD 0.2VDD tLSU tLC 0.8VDD 0.8VDD 0.2VDD CL1 tr tw tf tsetup thold 0.8VDD 0.8VDD 0.2VDD FLM 02101300-01-02 VERSION PAGE E M E R G I N G D I S P L A Y MODEL NO . TECHNOLOGIES
in „Controller EW32F10 (Emerging Display) GLCD (320x240)“ · Mikrocontroller und Digitale Elektronik ·
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EW32F10FLW.pdf
100 ns FLM hold time thold 100 ns tw tw tw tf tr 0.8VDD 0.8VDD 0.2VDD CL2 tDSU tDHD 0.8VDD D3~D0 0.2VDD 0.2VDD tLSU tLC 0.8VDD 0.8VDD 0.2VDD CL1 tr tw tf tsetup thold 0.8VDD 0.8VDD 0.2VDD FLM 02101300-01-02 VERSION PAGE E M E R G I N G D I S P L A Y MODEL NO . TECHNOLOGIES
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dmf50081.pdf
3.3 Response Rise Note 2 TON - - 100 200 ms Time Decay Note 3 TOFF - - 360 540 ms Note 1 : Contrast ratio is definded as follows. CR = L ON / OFF L ON : Luminance of the ON segments L OFF: Luminance of the OFF segments Note
in „LCD Driving Voltage“ · Offtopic ·
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PDF
dmf50081n.pdf
3.3 Response Rise Note 2 TON - - 100 200 ms Time Decay Note 3 TOFF - - 360 540 ms Note 1 : Contrast ratio is definded as follows. CR = L ON / OFF L ON : Luminance of the ON segments L OFF: Luminance of the OFF segments Note
in „Controllerless LCD“ · Mikrocontroller und Digitale Elektronik ·
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schematic-T962.pdf
TC1(+) 2 2 1IN+ A K-type TC1(-) 3 5 1IN- 7 R18 A TC2(+) 4 6 2IN+ 2OUT TC2 (SHT 1) RED (+) TC2(-) C4 C5 C22 2IN- 1k C23 C24 BLUE (-) 4 GND TLC27L2CD GND GND GND GND RW4 GND GND 50k R34 5.0V 3 1 DS18B20 47k 2 3.3V
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Schaltplan.pdf
URXD 5 RX P1 P* G A 19 5 71D 7-Segment 1 - D 1 10k R5 GND RA3 6 72A 7-Segment 2 -A ESP1 ESP PIC R6 Pololu S7V8F3 10k RA4 7 LED2 LED2 R7 100 ESP_INFO 10k GND GND RA5/SS1 9 72B 7-Segment 2 - B Flash GND GND ICSPDAT 28 RA7 10 72C 7-Segment 2 - C E-RST ICSPCLK 27 RB7/ICSPDAT RA6 RB6
in „PICKIT3 - Target Halted nach Zuschaltung von Schaltregler“ · Mikrocontroller und Digitale Elektronik ·
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Espier_III.pdf
V V V V V K IO_L32P_1 101 SDRAM_DQ3 N IO_L2N_3 30 VB1 MT48LC16M16A2TG-75 RP10 N IO_L32N_1 100 SDRAM_DQ0 A IO_L36P_3 29 VB0 108 49 2 4 5 6 1 4 5 DSEN4 8 1 DS_EN4 A IO_L33P_1 99 SDRAM_DQ1 B IO_L36N_3 27 VSYNC 113 GND GND 54 DSEN2 7 2 DS_EN2 B IO_L33N_1 98 LED3 IO_L37P_3 26 HSYNC 13 GND GND 68 DSEN3 6 3 DS_EN3 IO_L34P_1 97 LED4 IO_L37N_3 24 PS2_CLK 130 GND GND 77 DSEN1 5 4 DS_EN1 IO_L34N_1 95 LED1 IO_L41P_GCLK27_3 23 PS2_DAT 136
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schaltplan.pdf
1 2 3 VDD3V3 470 VDDLED VDD3V3 470 R23 R20 U4 R22 R21 CD74HC4050M96 D D D L R 0 E E 1 16 T 7 1 3 7 1 0 L 4 L 2 VCC N.C 15 I 4 R - 4 R - X D E X 3 1Y 6Y 14 _ 3 5 A T L L R 4 1A 6A 13 E GPIO2 LED 5 K A 5 2Y
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AD_Frontend8.pdf
6 5 4 3 2 1 U24 ADC-SYSCLK:8,3886Mhz(max) 4.194Mhz(norm) 2 1 ADC-BCLK(max):ADC-SYSCLK/2 PC1 PP CMPIN 3 REF_OUT TLC271 LRCK: ADC-SYSCLK/256 INH 5 R56 - 2 13 6 6 FS: ADC-SYSCLK/2048 PC2 C1A 7 U15 3 VREF1 C1B 9 C45
in „ADC Vref auf Ground“ · Mikrocontroller und Digitale Elektronik ·
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TSL26xR.pdf
4 MAXIMUM OUTPUT VOLTAGE SUPPLY CURRENT vs vs OUTPUT VOLTAGE SUPPLY VOLTAGE 5 1.6 R L 10 kΩ VDD = 5 V T = 25°C RL= 10 k V A T = 25°C − A g 4 A 1.4 t m o − t n u e u 3 u 1.2 O C m l u p i 2 u 1 a − M − D M ID O 1 0.8 V 0 0.6 2.5 3 3.5 4 4.5 5 5.5 0 1 2 3 4 VDD − Supply Voltage − V VO −
in „Suche Ersatz für TSL260R-LF Lichtsensor“ · Mikrocontroller und Digitale Elektronik ·
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gbdso_uk.pdf
29 D7 MAX828 100µH C21 100µH 30 RESET EUK ZR25D01 OE CS 31 IC8 = TLC27L2CD 100n 16 16 25 16 23 AUDIO _IN C22 C23 C25 C26 C27 C28 C29 C30 C31 RD A15 32 GND 4 IC5 IC6 10µ 8 100n 8 100n 10µ 6Vµ 100n 10µ 10µ 100n 6V 6V 6V 6V 5V 990082 - 12 Figure 2. Circuit diagram of the
in „Bameboy-LCD mit avr“ · Mikrocontroller und Digitale Elektronik ·
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gbdso_uk.pdf
29 D7 MAX828 100µH C21 100µH 30 RESET EUK ZR25D01 OE CS 31 IC8 = TLC27L2CD 100n 16 16 25 16 23 AUDIO _IN C22 C23 C25 C26 C27 C28 C29 C30 C31 RD A15 32 GND 4 IC5 IC6 10µ 8 100n 8 100n 10µ 6Vµ 100n 10µ 10µ 100n 6V 6V 6V 6V 5V 990082 - 12 Figure 2. Circuit diagram of the
in „Alternative zu teurem Oszilloskop“ · Analoge Elektronik und Schaltungstechnik ·
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ixTDM-Bauteile-v1.1.pdf
120 1 CSD 10‐080120 100 1 0,01 0,01 optional RS485 Buchsenleiste 10pol gewinkelt 1 CSD 014‐B110W 10 2,7 0,27 0,27 für Erweiterungen R 0603 0 2 CSD 10‐060000 100 1 0,01 0,02 wenn kein RS485 R 0603 100 1 CSD 10‐060100 100 1 0,01 0,01 R 0603 1M 2 CSD 10‐06M001 100 1 0,01 0,02 Audio In R 0603 1k 1 CSD 10
in „Sammelbestellung? Mini-Platine: 3 Kanal Power-PWM mit ATMega+IR+RS485“ · Mikrocontroller und Digitale Elektronik ·
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LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Differenzverstärker als Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „messen der Netzspannung am Mega32“ · Analoge Elektronik und Schaltungstechnik ·
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LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Wechselstrom messen“ · Mikrocontroller und Digitale Elektronik ·
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LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Transkonduktanz Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Audio-Signal-Erkennung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Suche OVP Schaltung für ideale Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Gleichrichteschaltung mittels op“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Leistungsaufnahme 220V erkennen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Strommessung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Synchrongleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „Betrag bilden mit OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LMC6482.pdf
TLC272 and TLC277. Y High Voltage Gain (L e 500 kX) 130 dB - Maximum dynamic signal range is assured in low voltage Y Specified for 2 kX and 600X loads R and single supply systems by the LMC6482’s rail-to-rail
in „LED-VU-Meter von ELV - komme beim Nachbar nicht weiter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rn_propellerclock_1.11.pdf
Dmatrix As Byte Dim It As Byte Dim Zz As Byte Dim Text As String * 100 Dim Temptext As String * 100 'TLC einschalten (Sleep out) I2cstart 'start condition I2cwbyte Tlc1 I2cwbyte 0 'Register I2cwbyte 0 I2cstop I2cstart 'start condition I2cwbyte Tlc2 I2cwbyte 0 'Register I2cwbyte 0 I2cstop I2cstart 'start condition I2cwbyte Tlc1 I2cwbyte Ledout0 'Register I2cwbyte &B01010101 I2cstart 'start condition I2cwbyte Tlc2 Seite 14 von 28 Tipps und Tricks zum Aufbau einer PropellerClock mit vorgefertigter Platine von www.robotikhardware.de
in „Programm für Propellerclock“ · Mikrocontroller und Digitale Elektronik ·
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schematic.pdf
21 +2.5V R8 4.7k SDRAM_CKE 37 D D D D D D D 2 B IO, DIFFIO_L2p, (FLASH_nCE,nCSO) 10 FLASH_CLK U1L 93 nCE SDRAM_CLK 38 CKE V V V D D D D 6 8 9 1 IO, DIFFIO_L4p, (DQS0L/CQ1L,DPCLK0) 11 FLASH_CS 4 79 VCCIO6 97 CLK V V V V 4 3 2 1 IO, DIFFIO_L4n 13 EPCS_DATA 19 GND GND 82 81 MSEL2 96 SDRAM_CS_n 19 40 d d d d a IO, (DATA0) 22 GND GND 95 +1.2V VCCIO5 MSEL1 94 SDRAM_WE_n 16 CS NC EP4CE10E22C8 27 GND GND 118 62 MSEL0 SDRAM_CAS_n
in „Sequentielle Anweisung: Takt wird nicht richtig verarbeitet“ · FPGA, VHDL & Co. ·
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PDF
Cyclone4_schematic_v200.pdf
21 +2.5V R8 4.7k SDRAM_CKE 37 D D D D D D D 2 B IO, DIFFIO_L2p, (FLASH_nCE,nCSO) 10 FLASH_CLK U1L 93 nCE SDRAM_CLK 38 CKE V V V D D D D 6 8 9 1 IO, DIFFIO_L4p, (DQS0L/CQ1L,DPCLK0) 11 FLASH_CS 4 79 VCCIO6 97 CLK V V V V 4 3 2 1 IO, DIFFIO_L4n 13 EPCS_DATA 19 GND GND 82 81 MSEL2 96 SDRAM_CS_n 19 40 d d d d a IO, (DATA0) 22 GND GND 95 +1.2V VCCIO5 MSEL1 94 SDRAM_WE_n 16 CS NC EP4CE10E22C8 27 GND GND 118 62 MSEL0 SDRAM_CAS_n
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schematic_v200.pdf
21 +2.5V R8 4.7k SDRAM_CKE 37 D D D D D D D 2 B IO, DIFFIO_L2p, (FLASH_nCE,nCSO) 10 FLASH_CLK U1L 93 nCE SDRAM_CLK 38 CKE V V V D D D D 6 8 9 1 IO, DIFFIO_L4p, (DQS0L/CQ1L,DPCLK0) 11 FLASH_CS 4 79 VCCIO6 97 CLK V V V V 4 3 2 1 IO, DIFFIO_L4n 13 EPCS_DATA 19 GND GND 82 81 MSEL2 96 SDRAM_CS_n 19 40 d d d d a IO, (DATA0) 22 GND GND 95 +1.2V VCCIO5 MSEL1 94 SDRAM_WE_n 16 CS NC EP4CE10E22C8 27 GND GND 118 62 MSEL0 SDRAM_CAS_n
in „Board EP4CE6E22C8N Altera mit Quartus2 13 ansprechen“ · FPGA, VHDL & Co. ·
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AT91SAM7A3-EK.pdf
LM4120AIM5-3.0 C 1 2 3 4 5 1 C13 100NF 61 VDD3V3 10V VREF C14 100NF 88 VDD3V3 3V3 C18 100NF ADC1_AD7/SCK2/TIOB8/PB29 96 PB29 2 95 PB28 S33 S7 1 ADC1_AD6/CTS2/TIOA8/PB28 94 PB27 VUSB 16 GND ADC1_AD5/RTS2/TIOB7/PB27 93 PB26
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xone92.pdf
:31:15 21-Sep-2004 DRG No: C4268 ISSUE: 3 SHEET: 1 OF 1 A B C D E F G H +VA R11 R12 C5 C1 6K8 6K8 R27 C13 MIC_- 15P +15V +VA CN2 R13 MIX_L 1 2 MIX_R R21 CN1 10R PF RAD 8 8 8 8 8 1 2 10/50 Q1 1K2 Q2 100/25 U1C U2C U3C U4C U5C AUX_1_L 3 3 4 4 AUX_1_R C3 R10 22K AUX_2_L 5 5 6 6 AUX_2_R P 2 1 2 3 4 V V V
in „Fehlersuche in DJ-Mixer (Allen & Heath Xone:92)“ · Analoge Elektronik und Schaltungstechnik ·
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4_5stelliges_Digital-Multimeter_DMM_7001.pdf
r +SV '"'"' --.! .„ K10 iöoK S1b„~ 1 B.zeictw..... zeiatan Netuynchronintion Hold CD4060 u.:i„1"' 2xlED, 024 ,, --- r: .„ Hold rot, 027 ..... 'W4007 R80 I 035 •.u . .„ " '"" 030 HOt... +SV• 021 uA 031 •• l,571'1ttz 026 .v m 029 V . 'j,,, 032 kV 024 - 032 s LED,rot,l- ...„ '" ELV-Serie 7000: 4,5-stelliges
in „DVM ELV 49377“ · Mikrocontroller und Digitale Elektronik ·
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MSM5299AGS-K.pdf
E2B0020-27-Y2 This version: Nov. 1997 ¡ Semiconductor Previous version: Mar. 1996 Semiconductor MSM5299A 80-DOT LCD SEGMENT DRIVER GENERAL DESCRIPTION The MSM5299A is a dot matrix LCD segment driver LSI
in „ansteuerung von grafikdisplay UG-32F01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msm5299a.pdf
E2B0020-27-Y2 This version: Nov. 1997 ¡ Semiconductor Previous version: Mar. 1996 Semiconductor MSM5299A 80-DOT LCD SEGMENT DRIVER GENERAL DESCRIPTION The MSM5299A is a dot matrix LCD segment driver LSI
in „Optrex DMF50191N“ · Mikrocontroller und Digitale Elektronik ·
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Artikel_EN.pdf
/AN1 RC5 R21 +5V 2 RA0/AN0 TX/RC6 25 1 R26 OSC2 OSC1 0 12 14 13 31 T1 1 X1 C17 100n 1 BC557 3 2 C3 20MHz C4 P3 P4 P2 4 8 C x +5V 22p 27p S1 1k 200Ω 1M 2 R 4 TR 6 R18 R19 R17 IC5 14 C14 8 Ω 2 7 3 5 IC3 7 2 8 DIS OUT 1 TLC555
in „ESR Kondensatortester; nur welchen der beiden!“ · Mikrocontroller und Digitale Elektronik ·
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HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
BZV55c2V4 2215. 22.25.27 52551. 2 of 7 1 o 2422K1 24E25163 ıııb24277 2 2 1 ._sv i 12V. H H - . e L-Svı _ C êâšyyimberr 122x/152>< v4 2 I 5 I C I D I 5 I F I 5 I H I 1 I J I K I L I M I N I n d e u n e n v o
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ELV_Leitungssucher_LS100.pdf
2 Bild 2: Schaltbild des Ein empfindlichen Empfän- S1 7 C11 C12 C13 R 7 R k gers LS-E 100 4 IC1 2 C 3 dient dabei zur gleich- ST1 TLC271 100n 100n 100u C4 4 ker ker 16V spannungsmäßigenEntkopp- 9V 4 7
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Hantek_Tekway_Voltcraft_DSO_hw1007.pdf
PIR0192 23 GND R01_323 RX1_303 POREF OUT AD 288 (ch1) 150R R01_99 PIR01PIR0103001 +5F2C1 2 2k PIRX10PIRX10302 PIR01_304 PIR019k PICR01_27 see table see table 249R 33R2 16P 15P 14P 13P 12P 12P 12P 99 PIRX1PIRX10102 PIR0134 PIR01271 9 U01_202 LMH6552 RA01_10 Q3 R01_29 AD8370 L O T C T C
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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sp14q002-a1.pdf
A B CONTRAST WIDTH LENGTH MAXIMUM MINIMUM IRREGULARITY D(mm) L(mm) NUMBER SIZE (LINE) ACCEPTABLE L (FILAMENTOUS) W<=0.25 L<=1.2 2 20mm Ο - C W<=0.2 L<=1.5 3 20mm D W<=0.15 L<=2.0 3 20mm W<=0.1 L<=3.0 4 20mm TOTAL 6 RUBBING SCRATCH TO BE JUDGED BY HITACHI STANDARD
in „Grafikfähiger LCD Controller für 320x240 LCD mit 4 Graustufen“ · Projekte & Code ·
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PDF
sp14q002-a1.pdf
A B CONTRAST WIDTH LENGTH MAXIMUM MINIMUM IRREGULARITY D(mm) L(mm) NUMBER SIZE (LINE) ACCEPTABLE L (FILAMENTOUS) W<=0.25 L<=1.2 2 20mm Ο - C W<=0.2 L<=1.5 3 20mm D W<=0.15 L<=2.0 3 20mm W<=0.1 L<=3.0 4 20mm TOTAL 6 RUBBING SCRATCH TO BE JUDGED BY HITACHI STANDARD
in „SP14Q002-A1 aus eBay - Erfahrungsaustausch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HEIZUNG_UNGARN.PDF
(TOSC2) PIU102 6 LCD6 P0 P6 P1 PU PI3 ATMEGA32/TQFP44 Y1 PY11 PY0 LCD[7..0] LCD[7..0] P1 3.6864MHz P2 RELAIS CC O 1 C2 GSM[ .. ] GSM[3..0] 27pF P1 P2 27pF Title Heizungssteuerung Ungarn - MICROCONTROLLER-RTC