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PDF
ST7920.pdf
Normal mode (450uA Typ VDD=5V) l Support 8-bit, 4-bit and serial bus MPU interface Ø Standby mode (30uA Max VDD=5V) l 64 x 16-bit display RAM (DDRAM) l VLCD (V0 to VSS: max 7V Ø Supports 16 words x 4 lines (Max) l Graphic and character mixed display mode Ø LCD display range 16 words x 2 lines l Multiple instructions
in „avr asm st7920“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EM638325_SDRAM.pdf
BankActivate command in the desired bank. The maximum time any bank can be active is specified by t RAS(max.). Therefore, the precharge function must be performed in any active bank within t RAS(max.). At the end of precharge, the precharged bank is still in the idle state and is ready to be activated again
in „SDRAM Burst lesen ohne Unterbrechung über Column, Row und Banks hinaus“ · FPGA, VHDL & Co. ·
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PDF
Spartan-3A_FPGA_Family.pdf
Single-Ended Standards (2) IOSTANDARD V CCO for Drivers V REF V IL V IH Attribute Min (V) Nom (V) Max (V) Min (V) Nom (V) Max (V) Max (V) Min (V) LVTTL 3.0 3.3 3.6 0.8 2.0 LVCMOS33 (4) 3.0 3.3 3.6 0.8 2.0 LVCMOS25 (4,5) 2.3 2.5 2.7 0.7 1.7 LVCMOS18 1.65 1.8 1.95 V REF is not used for 0.4 0.8 these I
in „Ultraschallgerät(Medizin) HMI Touch Vertikale Streifen“ · FPGA, VHDL & Co. ·
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PDF
rtl8309sb.pdf
, 86, I/O VSSA, 23, AGND VDDD, 87, DVDD TXOP[4], 24, AO VSSD, 88, DGND TXON[4], 25, AO P4_LED[3] / Max_Pause_Count, 89, I/O VDDA, 26, AVDD P4_LED[2] / Max_Pkt_Len, 90, I/O TXON[5], 27, AO P4_LED[1] / En_Agrs_Back, 91, I/O TXOP[5], 28, AO P4_LED[0] / En_48pass1, 92, I/O VSSA, 29, AGND P3_LED[3] / En_Defer
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Datei
display_t.cpp
1]) { PBuf = SIGNAL_MAX[channel-1]; SIGNAL_MAX[channel-1] = SIGNAL_MIN[channel-1]; SIGNAL_MIN[channel-1] = PBuf; } #ifdef _Debug_QM_ //printf("channel: %d SIGNAL_MAX[channel-1] %d, SIGNAL_MIN[channel-1] %d, ixs %d, ixss %d
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil4)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMC4671-LA_datasheet.pdf
offsets of the phase current measurement signal path. For the TMC4671, the maximum ADC_RAW value ADC_RAW_MAX = (2 ▯1) and the minimum ADC raw value is ADC_RAW_MIN = 0. ADC_GAIN = ( I_SENSE_MAX ▯ R_SENSE ) ▯ SENSE_AMPLIFIER_GAIN (2) ▯ ( ADC_RAW_MAX=ADC_U_MAX ) For the FOC, the ADC_RAW is scaled by the ADC scaler
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PDF
s1d13700.pdf
7-2 Generic Bus Direct/Indirect Interface with WAIT# Timing 3.3 Volt 5.0 Volt Symbol Parameter Min Max Min Max Units t1 CS# setup time 5 ⎯ 5 ⎯ ns t2 AB[15:0] setup time 5 ⎯ 5 ⎯ ns t3 WR#, RD# falling edge to WAIT# driven low 2 15 2 15 ns t4 DB[7:0] setup time to WR# rising edge (write cycle) Note 2 ⎯
in „LPC2140 an S1D13700 Display driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
7-2 Generic Bus Direct/Indirect Interface with WAIT# Timing 3.3 Volt 5.0 Volt Symbol Parameter Min Max Min Max Units t1 CS# setup time 5 ⎯ 5 ⎯ ns t2 AB[15:0] setup time 5 ⎯ 5 ⎯ ns t3 WR#, RD# falling edge to WAIT# driven low 2 15 2 15 ns t4 DB[7:0] setup time to WR# rising edge (write cycle) Note 2 ⎯
in „[V] 8 LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700.pdf
7-2 Generic Bus Direct/Indirect Interface with WAIT# Timing 3.3 Volt 5.0 Volt Symbol Parameter Min Max Min Max Units t1 CS# setup time 5 ⎯ 5 ⎯ ns t2 AB[15:0] setup time 5 ⎯ 5 ⎯ ns t3 WR#, RD# falling edge to WAIT# driven low 2 15 2 15 ns t4 DB[7:0] setup time to WR# rising edge (write cycle) Note 2 ⎯
in „Erste GLCD (Touch) -Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13700.pdf
7-2 Generic Bus Direct/Indirect Interface with WAIT# Timing 3.3 Volt 5.0 Volt Symbol Parameter Min Max Min Max Units t1 CS# setup time 5 ⎯ 5 ⎯ ns t2 AB[15:0] setup time 5 ⎯ 5 ⎯ ns t3 WR#, RD# falling edge to WAIT# driven low 2 15 2 15 ns t4 DB[7:0] setup time to WR# rising edge (write cycle) Note 2 ⎯
in „[v] LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
s1d13700_320-240_display.pdf
7-2 Generic Bus Direct/Indirect Interface with WAIT# Timing 3.3 Volt 5.0 Volt Symbol Parameter Min Max Min Max Units t1 CS# setup time 5 ⎯ 5 ⎯ ns t2 AB[15:0] setup time 5 ⎯ 5 ⎯ ns t3 WR#, RD# falling edge to WAIT# driven low 2 15 2 15 ns t4 DB[7:0] setup time to WR# rising edge (write cycle) Note 2 ⎯
in „Anstuerung eines Grafik LCDs. Fragen zu Display und Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
systemhandbuch_isr.pdf
Verdichterlaufzeit Minimum 2842 nicht verfügbar Verdichtersillstandszeit Min 2843 nicht verfügbar Ausschalttemp. max 2844 nicht verfügbar Reduktion Ausschaltemp Max 2845 nicht verfügbar Heissgastemp Max 2846 nicht verfügbar ND-Verzögerung beim Start 2852 nicht verfügbar 38 System-Handbuch ISR-Plus Version 01.09 Parameter
in „Brötje ISR Plus Kommunikation / LPB“ · Haus & Smart Home ·
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PDF
1151463626.pdf
Case Dimensions Path Core Pfe(W) Number ID OD Ht ID OD Ht Length Area 50kHz W acm ) W a ccm )4 min max max (cm) (cm) 2kG(max) 50B10-5D in 0.650 0.900 0.125 0.580 0.970 0.200 6.18 0.051 0.118 1.76 0.0897 -1D mm 16.5 22.9 3.18 14.7 24.6 5.08 0.076 0.220 0.1340 -1E 0.076 0.092 0.1340 50B11-5D in 0.500 0.625
in „Stromwandler MBS ASK31.3 50/5A Nachbau?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD1963_1.1.pdf
13 1.0 1. Changed status to Advance Information 18-May-09 07-May-09 2. Update min/max rating of VDDD and VDDPLL in Table 11-1 3. Added tape and reel drawing of 128-pin LQFP package in Section 15.3 4. Revised Section 13.2 5. 5. Added 12 bits for Table 7-1 6. Removed TTL interface 7. Revised
in „TFT- Ansteuerung ET0350G0DH6 (Glyn) mit HX8238 LCD Driver und Microchip Graphic Lib“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1963_V014.pdf
13 1.0 1. Changed status to Advance Information 18-May-09 07-May-09 2. Update min/max rating of VDDD and VDDPLL in Table 11-1 3. Added tape and reel drawing of 128-pin LQFP package in Section 15.3 4. Revised Section 13.2 5. 5. Added 12 bits for Table 7-1 6. Removed TTL interface 7. Revised
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1963_Rev1.6.pdf
13 1.0 1. Changed status to Advance Information 18-May-09 07-May-09 2. Update min/max rating of VDDD and VDDPLL in Table 11-1 3. Added tape and reel drawing of 128-pin LQFP package in Section 15.3 4. Revised Section 13.2 5. 5. Added 12 bits for Table 7-1 6. Removed TTL interface 7. Revised
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Attiny24a-44a-84a.pdf
. There are two cases that give a transition without Compare Match. • OCR0A changes its value from MAX, like in Figure 11-7 on page 76. When the OCR0A value is MAX the OCn pin value is the same as the result of a down-counting Compare Match. To ensure symmetry around BOTTOM the OCn value at MAX must
in „Kann jemand über meine Inialisierung drüberfliegen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F3x0_RM_v1.0.pdf
3:2 OSPD1[1:0] Pin 1 output max speed bits These bits are set and cleared by software. Refer to OSPD0[1:0] description 1:0 OSPD0[1:0] Pin 0 output max speed bits These bits are set and cleared by software. x0: Output max speed 2M (reset value) 01: Output max speed 10M 11: Output max speed 50M 7.4.4. Port pull-up/down register (GPIOx_PUD, x=A..D,F) Address offset: 0x0C Reset value: 0x2400 0000 for port A; 0x0000 0000 for others. This register can be accessed
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F3x0_RM_v1.0.pdf
3:2 OSPD1[1:0] Pin 1 output max speed bits These bits are set and cleared by software. Refer to OSPD0[1:0] description 1:0 OSPD0[1:0] Pin 0 output max speed bits These bits are set and cleared by software. x0: Output max speed 2M (reset value) 01: Output max speed 10M 11: Output max speed 50M 7.4.4. Port pull-up/down register (GPIOx_PUD, x=A..D,F) Address offset: 0x0C Reset value: 0x2400 0000 for port A; 0x0000 0000 for others. This register can be accessed
in „"NUCLEO"-Borads von GigaDevice“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DD19FCD3d01.pdf
BOTTOM. There are two cases that give a transition without Compare Match. OCR0A changes its value from MAX, like in Figure 11-7 on page 66. When the OCR0A value is MAX the OCn pin value is the same as the result of a down-counting Compare Match. To ensure symmetry around BOTTOM the OCn value at MAX must
in „HV-Prog für ATtiny13“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc2535.pdf
. There are two cases that give a transition without Compare Match. • OCR0A changes its value from MAX, like in Figure 11-7 on page 66. When the OCR0A value is MAX the OCn pin value is the same as the result of a down-counting Compare Match. To ensure symmetry around BOTTOM the OCn value at MAX must
in „RGB PWM mit Attiny13“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc2535.pdf
. There are two cases that give a transition without Compare Match. • OCR0A changes its value from MAX, like in Figure 11-7 on page 66. When the OCR0A value is MAX the OCn pin value is the same as the result of a down-counting Compare Match. To ensure symmetry around BOTTOM the OCn value at MAX must
in „ATtiny13 mit 20MHz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ili9328.pdf
4.5V ~ 6.0V VGH 10V ~ 20V 6 Liquid Crystal Drive VGL -5V ~ -15V Voltages VCL -2.0V ~ -3.0V VGH - VGL Max. 32V Vci - VCL Max. 6.0V DDVDH Vci1 x2 VGH Vci1 x4, x5, x6 7 Internal Step-up Circuits VGL Vci1 x-3, x-4, x-5 VCL Vci1 x-1 The information contained herein is the exclusive property of ILI Technology
in „VW-Werbebeilage mit Display (vidipri)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ILI9328DS_V0.1.pdf
4.5V ~ 6.0V VGH 10V ~ 20V 6 Liquid Crystal Drive VGL -5V ~ -15V Voltages VCL -2.0V ~ -3.0V VGH - VGL Max. 32V Vci - VCL Max. 6.0V DDVDH Vci1 x2 VGH Vci1 x4, x5, x6 7 Internal Step-up Circuits VGL Vci1 x-3, x-4, x-5 VCL Vci1 x-1 The information contained herein is the exclusive property of ILI Technology
in „[V]erkaufe TFT 2.8" und TFT 2.4" mit adapter PCB“ · Markt ·
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PDF
FR_Family_MB91F109.pdf
12.00 15.00 (.472) (.591) REF NOM Details of "A" part 0.15(.006) INDEX 100 26 0.15(.006) 0.15(.006)MAX LEAD No. 1 25 "B" 0.40(.016)MAX "A" 0.50(.0197)TYP 0.18 –0.03 0.127 –0.02 +.003 0.08(.003) M +.002 Details of "B" part .007 –.001 .005 –.001 0.10±0.10 (.004±.004) (STAND OFF) 0.10(.004) 0.50±0.20(.020
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Acer_Aspire_5742G_Compal_LA-5893P_Rev0.1_Schematic.pdf
0 0 0 P 0 VGA@ PR161 0_0603_5% C _ @ 2 @ 2 @ 2 DH_VCORE 1 2 DH_VCORE-1 Rsen=Iocp(min)*1.2*Rds(on)(max)/ISEN(min)=6.49K ohm 2 P 5 2 G _ 2 G _ 2 G _ VGA@ PR124 0_0603_5% VGA@ PC101 @ 8 V 0 V 0 V 0 1 2 1 2 ISEN(min)=19uA , Rds(on)=5.6m ohm(max) ,4.5m ohm(typ) D A _ 1 1 1 BST_VCORE D V 1 0.1U_0603_25V7K
in „Laptop Akkus ausbauen und mit Netzteil betreiben“ · PC Hard- und Software ·
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PDF
Infineon_TLE9263QX.pdf
Voltage Regulator 2 V CC2, max -0.3 – 28 V VCC2= 40V for P_4.1.4 Load Dump, max. 400 ms; Voltage Regulator 3 V CC3REF,max-0.3 – 28 V VCC3REF= 40V for P_4.1.5 (VCC3REF) Load Dump, max. 400 ms; Voltage Regulator 3 (VCC3B)V -0.3 – V V V = 40V for P_4.1.25 CC3B,max S CC3B + 10 Load Dump, max. 400 ms; Voltage Regulator 3 V CC3SH,max VS – VS V – P_4.1.26 (VCC3SH) - 0.30 + 0.30 Wake Inputs WK1..3 V -0.3 – 40 V – P_4.1.6 WK, max Fail Pin FO1 V FO1, max -0.3 – 40 V
in „SBC für CAN/LIN bei einem 24V Bordnetz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
JUMO-184031-20220908-IODD1.1.xml
Datatype> <Name textId="TN_V_Batch_Volume"></Name> </Variable> <Variable accessRights="rw" id="V_Batch_MaxBatchTime" index="381" defaultValue="0"> <Datatype xsi:type="UIntegerT" bitLength="32"> <ValueRange upperValue="9999" lowerValue="0"/> </Datatype> <Name textId="TN_V_Batch_MaxBatchTime"></Name> </Variable
in „IO-link master (light)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kicad_8450_dcm_liste_neu_v3.pdf
V Gain, SOIC-8/uMAX-8 MAX4080T 76V, High-Side, Current-Sense Amplifiers with Voltage Output, Unidirectional, 20V/V Gain, SOIC-8/uMAX-8 MAX4081F 76V, High-Side, Current-Sense Amplifiers with Voltage Output, Bidirectional, 5V/V Gain, SOIC-8/uMAX-8 MAX4081S 76V, High-Side, Current-Sense Amplifiers with Voltage Outpute, Bidirectional, 60V/V Gain, SOIC-8/uMAX-8 MAX4081T 76V, High-Side, Current-Sense Amplifiers with Voltage Output, Bidirectional
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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PDF
isl94203.pdf
and SCL Rise Time R From VILmax) to V IH (min) 300 ns SDA and SCL Fall Time F From VIH (min) to IL(max) 300 ns SDA and SCL Bus Pull-up Resistor- Off R OUT Maximum is determined by t aRd t F 1 kΩ Chip For C = 400pF, max is 2kΩ ~ 2.5kΩ B For B = 40pF, max is 15kΩ ~ 20kΩ Input Leakage (SCL, SDA) LI -10
in „Registerwerte verändern von Intersil ISL94203“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M30201F6SP.pdf
Parameter Unit Min. Max. c(TX) TXiINOUT input cycle time 400 ns t(TXH) ns TXiINOUT input HIGH pulse width 200 w(TXL) TXiINOUT input LOW pulse width 200 ns Table 1.55. Serial I/O Standard Symbol Parameter Min. Max. Unit tc(
in „Biete Mitsubishi / Renesas M30201F6SP aus der M16C60 Serie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Si4330.pdf
Rev 0.2 Si4330 Table 3. Receiver AC Electrical Characteristics Parameter Symbol Conditions Min Typ Max Units RX Frequency FSYNTH-LB Low Band 240 — 480 MHz Range FSYNTH-HB High Band 480 — 960 MHz RX Sensitivity PRX_2 (BER < 0.1%) — –118 — dBm (2 kbps, GFSK, BT = 0.5, 2 f = 5 kHz) PRX_40 (BER < 0.1%)
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PDF
ATmega1284P_128KByte.pdf
(CTC) mode, and two types of Pulse Width Modulation (PWM) modes (see ”Modes of Operation” on page 127). Table 15-8. Waveform Generation mode bit description Timer/Counter mode of Update of TOV F(1)(2) Mode WGM2 WGM1 WGM0 operation TOP OCRx at set on 0 0 0 0 Normal 0xFF Immediate MAX 1 0 0 1 PWM, Phase 0xFF TOP BOTTOM Correct 2 0 1 0 CTC OCRA Immediate MAX 3 0 1 1 Fast PWM 0xFF BOTTOM MAX 4 1 0 0 Reserved – – – PWM, Phase 5 1 0 1 OCRA TOP BOTTOM Correct 6 1 1 0 Reserved – – – 7 1 1 1 Fast PWM OCRA BOTTOM TOP Notes: 1. MAX = 0xFF 2. BOTTOM = 0x00 2020
in „ATmega1284P versus ohne P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xone92.pdf
DC PHONO GN = PHONO + L R RED = LINE MID1 RESONANCE RESONANCE VCF2 TAP TEMPO MIDI CLOCK RIAA MID2 MAX RES MAX RES VCA DC VCF1 FREQ - CC12 RIAA +10dB GAIN VCF to VCF to VCF2 FREQ - CC13 LINE DISABLE DISABLE LO 1 2 XFADER XFADER L R OFF FILTER SELECT HPF HPF AUX1 BPF BPF PRE MIDI OUTPUT CONFIGURE LPF
in „Fehlersuche in DJ-Mixer (Allen & Heath Xone:92)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Diskreter_Leistungverst_rker_mit_OPVs__-_AN47.pdf
to maintain circuit output. Fast Time-to-Height (Pulsewidth-to-Voltage) HORIZ = 50ns/DIV LTAN47 • TA127onverter Figure 127. Hold Step with Properly Adjusted Compensation ThecircuitofFigure132allowsveryshortpulsewidths(in 3pF this case 250ns full-scale) to be determined to a typical accuracy of 1%. Digital
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAK-C167CR-LM_HA.pdf
≥2.5 V during power down mode. 109, 126, 136, 144 V 18,45, – Digital Ground. SS 55,71, 83,94, 110, 127, 139, 143 Note: The following behavioural differences must be observed when the bidirectional reset is active: Bit BDRSTEN in register SYSCON cannot be changed after EINIT and is cleared automatically
in „Problem mit Infinion C167CR mit AM29F200B-70SE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Magazin_Bauteile.pdf
Farnell 280-0119 0,076 1,90 25 Aluminium Elektrolyt Kondensator 47µF 63V Teapo Farnell 280-0120 0,127 3,18 2 4 4 1 20 Aluminium Elektrolyt Kondensator 100µF 16V Teapo Farnell 280-0121 0,083 1,65 1 14 Aluminium Elektrolyt Kondensator 100µF 63V Teapo Farnell 280-0122 0,209 2,93 2 8 Aluminium Elektrolyt
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PDF
at98c51ed2.pdf
Units T Min 2 T - x T - x 15 ns LHLL TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T Max 4 T - x 2 T - x 35 ns LLIV TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T Max 3 T - x 1.5 T - x 45 ns PLIV TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5
in „Kleine 8051 Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Units T Min 2 T - x T - x 15 ns LHLL TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T Max 4 T - x 2 T - x 35 ns LLIV TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T Max 3 T - x 1.5 T - x 45 ns PLIV TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5
in „8051: Oszillatorfrequenz und Maschinenzyklus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
TLHLL Min 2 T - x T - x 15 ns TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T LLIV Max 4 T - x 2 T - x 35 ns TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T PLIV Max 3 T - x 1.5 T - x 45 ns TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5 T
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Units T Min 2 T - x T - x 15 ns LHLL TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T Max 4 T - x 2 T - x 35 ns LLIV TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T Max 3 T - x 1.5 T - x 45 ns PLIV TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5
in „EEPROM schreiben/lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
TLHLL Min 2 T - x T - x 15 ns TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T LLIV Max 4 T - x 2 T - x 35 ns TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T PLIV Max 3 T - x 1.5 T - x 45 ns TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5 T
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
TLHLL Min 2 T - x T - x 15 ns TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T LLIV Max 4 T - x 2 T - x 35 ns TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T PLIV Max 3 T - x 1.5 T - x 45 ns TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5 T
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
TLHLL Min 2 T - x T - x 15 ns TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T LLIV Max 4 T - x 2 T - x 35 ns TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T PLIV Max 3 T - x 1.5 T - x 45 ns TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5 T
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
TLHLL Min 2 T - x T - x 15 ns TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T LLIV Max 4 T - x 2 T - x 35 ns TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T PLIV Max 3 T - x 1.5 T - x 45 ns TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5 T
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
TLHLL Min 2 T - x T - x 15 ns TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T LLIV Max 4 T - x 2 T - x 35 ns TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T PLIV Max 3 T - x 1.5 T - x 45 ns TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5 T
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51rd2.pdf
Units T Min 2 T - x T - x 15 ns LHLL TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T Max 4 T - x 2 T - x 35 ns LLIV TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T Max 3 T - x 1.5 T - x 45 ns PLIV TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5
in „Alternative Funktion von Pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Units T Min 2 T - x T - x 15 ns LHLL TAVLL Min T - x 0.5 T - x 20 ns TLLAX Min T - x 0.5 T - x 20 ns T Max 4 T - x 2 T - x 35 ns LLIV TLLPL Min T - x 0.5 T - x 15 ns TPLPH Min 3 T - x 1.5 T - x 25 ns T Max 3 T - x 1.5 T - x 45 ns PLIV TPXIX Min x x 0 ns TPXIZ Max T - x 0.5 T - x 15 ns TAVIV Max 5 T - x 2.5
in „Frequenz für µC AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st6215c.pdf
MECHANICAL DATA Figure 74. 28-Pin Plastic Dual In-Line Package, 600-mil Width mm inches Dim. Min Typ Max Min Typ Max E A 6.35 0.250 A2 A A1 0.38 0.015 A1 L A2 3.18 4.95 0.125 0.195 C E1 B 0.36 0.56 0.014 0.022 D1 eB B1 B e B1 0.76 1.78 0.030 0.070 D C 0.20 0.38 0.008 0.015 D 35.05 39.75 1.380 1.565 D1
in „ST6 Familie von ST“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bootload.lst
SecondBootStart 85 # define BOOTSTART SecondBootStart 86 # endif 87 ;---------------------------- max possible buffer size ----------------- 88 89 .equ BufferSize,((SRAM_SIZE / 2) - PAGESIZE) 90 .macro testpage 91 .if BootStart % BufferSize 92 .set BufferSize, BufferSize - PAGESIZE 93 .if BootStart
in „Peter Danneggers Bootloader (fastboot) für AVR-GCC-Toolchain“ · Projekte & Code ·