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flashModi.txt
Telegent Flash Updater Sep 4 2006 22:24:20 [usbmsc.c:GetBotMaxBlockSize] Using MaxBlockSize 0x10000 (default 0x2000) USBMSC: Compiled Sep 4 2006 22:23:15 USBMSC: Modified, using block size = 0x10000 LcdInit ERROR: LCD not busy Storage devices: \USBDisk Key = mode
in „Pollin - Receiver-Mainboard mit Twin DVB-[T,C] Tuner, NXP PNX8950EH“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN036-MX25L6445E-12845E-1.0.pdf
2-1 DC Characteristic differences MX25L12805D MX25L12845E MX25L6405D MX25L6445E Vcc Standby 20uA (max) 100uA (max) 20uA (max) 10uA (max) (ISB1) Deep Power- x 40uA (max) x 30uA (max) Done (ISB2) 10mA @ 33MHz (max) 10mA @ 33MHz (max) 10mA @ 33MHz (max) 15mA @ 33MHz (max) Icc (Read) 25mA @ 50MHz (max) 15mA @ 66MHz (max) 20mA @ 66MHz (max) 15mA @ 66MHz (max) 19mA @ 104MHz (max) 25mA @ 86MHz (max) 19mA @ 104MHz (max) Icc (Write) 20mA (max) 20mA (max) 20mA (max) 20mA (max) 2-2 Read Performance TM MX25L12845/6445E fast
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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M27C256B_10f1.pdf
to 70⋅C, –40 to 85⋅C, –40 to 105⋅C or –40 to125⋅C; V = 5V 〉 5% or 5V 〉 10%;V = V ) A CC PP CC M27C256B Symbol Alt Parameter Test Condition (3) Unit -45 -60 -70 -80 Min Max Min Max Min Max Min Max Address Valid to AVQV ACC Output Valid E = VIL G = VIL 45 60 70 80 ns Chip Enable Low to ELQV tCE G = VIL
in „M27C256B zu verkaufen“ · Markt ·
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61C256AH.pdf
change. Integrated Silicon Solution, Inc. — www.issi.com — 1-800-379-4774 3 SR020-1P 07/17/02 ® IS61C256AH ISSI (1,2) CAPACITANCE Symbol Parameter Conditions Max. Unit CIN InputCapacitance V IN= 0V 8 pF COUT OutputCapacitance VOUT = 0V 10 pF Notes: 1. Tested initially and after any design or process changes
in „Write cycle SRAM“ · Mikrocontroller und Digitale Elektronik ·
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at27c256.pdf
Voltage I = -400 A 2.4 V OH1 OH V OH2 Output High Voltage CMOS IOH= -100 A; V CC = 4.5V 4.2 V 4 AT29C256 AT29C256 AC Read Characteristics AT29C256-70 AT29C256-90 AT29C256-12 AT29C256-15 Symbol Parameter Min Max Min Max Min Max Min Max Units tACC Address to Output Delay 70 90 120 150 ns tCE(1) CE to Output
in „AT27C256 Was kann man damit Anstellen???“ · Mikrocontroller und Digitale Elektronik ·
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24LC256_32k_I2C-EEPROM.pdf
24AA256/24LC256/24FC256 2 ™ 256K I C CMOS Serial EEPROM Device Selection Table Description Part VCC Max. Clock Temp. The Microchip Technology Inc. 24AA256/24LC256/ Number Range Frequency Ranges 24FC256 (24XX256
in „immer noch EEprom“ · Mikrocontroller und Digitale Elektronik ·
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Datei
wait.c
){ if((rpm>=max_rpm*12/10)&&(rpm<max_rpm*14/10)){ PORTC |= 0x10; PORTC &= ~(0x60); } else if((rpm>=max_rpm*11/10)&&(rpm<max_rpm*12/10)){ PORTC |= 0x30; PORTC &= ~(0x80); } else if((rpm>=max_rpm)&&(rpm<max_rpm*11/10
in „unvorhersehbare effekte beim eeprom beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MachXO2FamilyDataSheet.pdf
and Switching Characteristics MachXO2 Family Data Sheet –6 –5 –4 Parameter Description Device Min. Max. Min. Max. Min. Max. Units MachXO2-256HC-HE 1.42 — 1.59 — 1.96 — ns MachXO2-640HC-HE 1.41 — 1.58 — 1.96 — ns Clock to Data Setup – PIO MachXO2-1200HC-HE 1.63 — 1.79 — 2.17 — ns tSU_DEL Input Register
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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EEPROM.pdf
24AA256/24LC256/24FC256 2 ™ 256K I C CMOS Serial EEPROM Device Selection Table Description: Part VCC Max. Clock Temp. The Microchip Technology Inc. 24AA256/24LC256/ Number Range Frequency Ranges 24FC256 (24XX256
in „EEPROM auslesen (24xx256) mit Pic16f819, an PC über RS232“ · Mikrocontroller und Digitale Elektronik ·
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GM76C256CLLFW.pdf
Product Voltage Speed Operation Standby Current(uA) Temperature No. (V) (ns) Current(mA) L LL (°C) GM76C256C 5.0 55/70/85 10 40 20 0~70(Normal) GM76C256C E 5.0 55/70/85 10 60 30 -25~85(Extended ) Note 1. Current value is max. PIN CONNECTION A14 1 28 Vcc A14 1 28 Vcc AA7 2 27 A13 A12 2 27 /WE /OE A10 A6 4
in „[S] mind. 64kx8 70ns static SRAM 5V/3V(Battery Backup) in SODIP“ · Markt ·
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RC28F256J3C-125.pdf
2.7 V–3.6 V otherwise noted) Notes Speed Bin -110 -115 -120 -125 -150 # Sym Parameter Density Min Max Min Max Min Max Min Max Min Max 32 Mbit 110 1,2 Read/Write 64 Mbit 115 120 1,2 R1 AVAV Cycle Time 128 Mbit 120 150 1,2 256 Mbit 125 1,2 32 Mbit 110 1,2 64 Mbit 115 120 1,2 R2 AVQV Address to Output
in „Passender Ersatz für Intel RC28F256J3C-125“ · Mikrocontroller und Digitale Elektronik ·
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AD1836_prc.pdf
256 × S 512 × S 768 × S t ABCLK Delay Low max ns From MCLK Rising ABL 256× S 512 × S 768 × S t LRCLK Delay max ns From ABCLK Falling ALS tABDD ASDATA Delay max ns From ABCLK Falling tALRDD ASDATA Delay max ns From ALRCLK Changing (Left-Justified) TDM PACKED AUX, MASTER MODE tABH ABCLK Delay High max ns From MCLK Rising 256 × f S 512 × S 768 × S tABL ABCLK Delay Low max ns From MCLK Rising 256 × f S 512
in „Audio Codec mit Filter“ · Analoge Elektronik und Schaltungstechnik ·
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AD1836_prc.pdf
256 × S 512 × S 768 × S t ABCLK Delay Low max ns From MCLK Rising ABL 256× S 512 × S 768 × S t LRCLK Delay max ns From ABCLK Falling ALS tABDD ASDATA Delay max ns From ABCLK Falling tALRDD ASDATA Delay max ns From ALRCLK Changing (Left-Justified) TDM PACKED AUX, MASTER MODE tABH ABCLK Delay High max ns From MCLK Rising 256 × f S 512 × S 768 × S tABL ABCLK Delay Low max ns From MCLK Rising 256 × f S 512
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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EL320256-F6_and_FD6.pdf
the display. Planar does not recommend operation of the display outside these specifications. EL320.256-F6 and –FD6 Operations Manual (020-0352-00A) 7 Timing Characteristics Figure 3. Timing Characteristics. Table 4. Timing Characteristics. Description Min Max Unit Note T1 Vertical Front Porch 100 µs
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Intel_RC28fxxxj3_StrataFlash.pdf
VCCQ = 2.7 V–3.6 V(3) otherwise noted) Notes -110 -115 -120 -125 -150 # Sym Parameter Density Min Max Min Max Min Max Min Max Min Max 32 Mbit 110 1,2 Read/Write 64 Mbit 115 120 1,2 R1 AVAV Cycle Time 128 Mbit 120 150 1,2 256 Mbit 125 1,2 32 Mbit 110 1,2 64 Mbit 115 120 1,2 R2 t Address to AVQV Output
in „Geschwindigkeit Flash Memory“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tree.c
stdlib.h> #include <string.h> #include <stdbool.h> #include "tree.h" struct tree_entry; struct tree_N256; typedef struct tree_N256 { struct tree_N256* (*next)[256]; size_t match; } tree_N256; enum tree_error { TREE_ERR_OK, TREE_ERR_ALLOC_FAILED }; struct tree { tree_N256 tree; tree_entry* entry_list; size_t
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kicad_8450_dcm_liste_neu_v3.pdf
, 256B SRAM, 256B EEPROM, Debug Wire ATTINY461-20MU QFN/MLF32, 4k Flash, 256B SRAM, 256B EEPROM ATTINY461-20PU PDIP20, 4k Flash, 256B SRAM, 256B EEPROM ATTINY461-20SU PDIP20, 4k Flash, 256B SRAM, 256B EEPROM ATTINY461A-MU QFN/MLF32, 4k Flash, 256B SRAM, 256B EEPROM ATTINY461A-PU PDIP20, 4k Flash, 256B SRAM, 256B EEPROM ATTINY461A-SU SO20, 4k Flash, 256B SRAM, 256B EEPROM ATTINY461A-XU TSSOP20, 4k Flash, 256B SRAM, 256B EEPROM ATTINY48-AU TQFP32
in „KiCAD Eeschema, Bibliotheksdokumentation *.dcm als PDF-Datei“ · Platinen ·
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Datei
extflash.c
strData); } while(strData->uiSatus&0x0001); /*if(!uiPageOffset)*/ uiOffset=(unsigned int)(uliAdressDummy%256L); //else uiOffset=0; if(uiPageOffset==uiPageAnzahl) { uiOffsetMax=(unsigned int)((strData->uliReadAdress+strData->uliReadQuantity-1L)%256L); } else uiOffsetMax=255; SPI_MasterSSactivate(strSPI->Port
in „xmega mit spi flash at25df321“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Spartan7_USB3_A_test.py
accel_z = ((data[7]*256+data[6])-2048+156)/1000 LTC2372_7 = data[25]*256+data[24] LTC2372_6 = data[23]*256+data[22] LTC2372_5 = data[21]*256+data[20] LTC2372_4 = data[19]*256+data[18] LTC2372_3 = data[17]*256+data[16] LTC2372
in „Python Plot in TKinter aktualisieren“ · Softwareentwicklung ·
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s-gu256x128d-3xxxhard_e02.pdf
Serial I/F ▯ I/O port supply Voltage Parameter Symbol Min. Typ. Max. Unit Note I/O port Port 0, Port 1 ViIN -0.3 - Vcc+0.3 VDC - 4 - GU256X128D-3xxx Series Hardware Specification ▯ ▯ 3.2 Electrical ratings Power Supply Voltage ▯ Parameter Symbol Min. Typ. Max. Unit
in „[V] Verkaufe VFD Grafik Display mit RS232 Interface von Noritake“ · Markt ·
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TNY256.pdf
of the transformer for the maximum line under-voltage function is disabled. powerrequired. IftheTNY256isappropriatelychosenforthe VEN VEN CLOCK CLOCK D MAX DMAX IDRAIN IDRAIN VDRAIN VDRAIN PI-2373-120998 PI-2377-120998 Figure 6. TNY256 Operation at Heavy Load. Figure 7. TNY256 Operation at Light Load
in „Brauche Dringend Hilfe bei Bauteilbestimmung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tbf5030_c3a_3.c
= rs_dummy / 256; send_data[9] = rs_dummy % 256; } else { rs_dummy = (unsigned int)nmass3; // À¯·® LW2 if(af_flag > 1) { send_data[8] = rs_dummy / 256; send_data[9] = rs_dummy % 256; } else { send_data[8] = rs_dummy
in „Fehler beim Compilieren“ · Mikrocontroller und Digitale Elektronik ·
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INTERFACE_20.pdf
115k/500k/10M MAX3081/MAX3084/MAX3087 4,75 bis 5,25 Voll – Ja Nein 256 115k/500k/10M MAX3082/MAX3085/MAX3088 4,75 bis 5,25 Halb 0,001 Ja Nein 256 115k/500k/10M MAX3089 4,75 bis 5,25 Wählbar 0,001 Ja Nein 256 Wählbar MAX3362 3,135 bis 3,465 Halb 1 Nein Ja 256 20M MAX3460/MAX3461 4,75 bis 5,25 Voll 1 Ja Ja/Nein 128 20M MAX3462 4,75 bis 5,25 Voll – Ja Nein 128 20M MAX3463/MAX3464 4,75 bis 5,25 Halb 1 Ja Ja/Nein 128 20M
in „galvanische Trennung RS232“ · Mikrocontroller und Digitale Elektronik ·
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71v416.pdf
03 NOTE: 1. H = VIH, L =I, X = Don't care. 6.32 IDT71V416S, IDT71V416L, 3.3V CMOS Static RAM 4 Meg (256K x 16-Bit) Commercial and Industrial Temperature Ranges DC Electrical Characteristics (VDD = Min. to Max., Commercial and Industrial Temperature Ranges) IDT71V416 Symbol Parameter Test Conditions Min
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sab6456.pdf
measurements taken after thermal equilibrium is established PARAMETER CONDITIONS SYMBOL MIN. TYP. MAX. UNIT Output voltage HIGH V − − V V OH CC Output voltage LOW VOL − − V CC− 0.8 V Supply current CC − 21 28 mA Mode-control (MC) Input voltage LOW (divide-by-256) V 0 − 0,2 V IL Input current LOW −IL
in „FM-Tuner mit AVR ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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INK1003_IC_From_GREELED.pdf
which means output current is nearly independent with output voltage. Power Dissipation of INK1003 The MAX power dissipation of INK1003 is determined by: PD(max)=(Tj-Ta)/Rth(j-a),when all 3 channel is on PD(act)≤PD(MAX), the formula translation between output current and duty is :order to guarantee: IOUT = (Rj−Ta − CC ×VCC/V DS/Duty/3 d When ambient temperature rises, the MAX power dissipation falls. c L t Load Voltage (V LED) r o n i The design value of V DSis 0.4~5V. Ensuring PD(lCTe>PD(MAX), the V DScould be higher.. VDSV LED-VF allowed. A voltage divider can be used
in „[V] LED-Strips: 48 LEDs mit LPD8806 und 60 LEDs WS2812“ · Markt ·
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FM24C256_20data_20sheet.pdf
voltage is above VIH. This impedance is characterized and not tested. 11 August 2000 9/12 Ramtron FM24C256 AC Parameters TA = -40° C to + 85° C, VDD = 4.5V to 5.5V, CL = 100 pF unless otherwise specified Symbol Parameter Min Max Min Max Min Max Units Notes SCL SCL Clock Frequency 0 100 0 400 0 1000 kHz t
in „FRAM von RAMTRON“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tree.c
stdlib.h> #include <string.h> #include <stdbool.h> #include "tree.h" struct tree_entry; struct tree_N256; typedef struct tree_N256 { struct tree_N256* (*next)[256]; size_t match; } tree_N256; enum tree_error { TREE_ERR_OK, TREE_ERR_ALLOC_FAILED }; struct tree { tree_N256 tree; tree_entry* entry_list; size_t
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Datei
lspci_.txt
64bit- Address: fee0f00c Data: 4161 Capabilities: [a0] Express (v2) Root Port (Slot+), MSI 00 DevCap: MaxPayload 256 bytes, PhantFunc 0, Latency L0s <64ns, L1 <1us ExtTag- RBE+ FLReset- DevCtl: Report errors: Correctable- Non-Fatal- Fatal- Unsupported- RlxdOrd- ExtTag- PhantFunc- AuxPwr- NoSnoop- MaxPayload
in „WIN-Admin braucht hilfe bei LINUX“ · PC Hard- und Software ·
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Datei
tree.c
stdlib.h> #include <string.h> #include <stdbool.h> #include "tree.h" struct tree_entry; struct tree_N256; typedef struct tree_N256 { struct tree_N256* (*next)[256]; size_t match; } tree_N256; enum tree_error { TREE_ERR_OK, TREE_ERR_ALLOC_FAILED }; struct tree { tree_N256 tree; tree_entry* entry_list; size_t
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A3S56D3040ETP_I_ver_v.2.0_Zentel.pdf
SELF REFRESH CURRENT: CKE < 0.2V 6 6 6 I Revision 2.0 Page 18/ 38 Mar., 2009 A3S56D30ETP A3S56D40ETP 256M Double Data Rate Synchronous DRAM AC TIMING REQUIREMENTS (Ta= -40 ~ 85 C, Tj=-40 ~ 95 C, unless otherwise noted) -5E -5 -6 Symbol AC Characteristics Parameter Unit Notes Min. Max Min. Max Min. Max
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
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IDT71256SA15PZ.pdf
: 1. IL(min.) = –1.5V for pulse width less than 10ns, once per cycle. 2 IDT71256SA CMOS Static RAM 256K (32K x 8-Bit) Commercial and Industrial Temperature Ranges DC Electrical Characteristics (V CC = 5.0V ± 10%) IDT71256SA Symbol Parameter Test Conditions Min. Max. Unit |I| Input Leakage Current V CC
in „SRAM kompatibel zu IDT71256 SA15PZ“ · Mikrocontroller und Digitale Elektronik ·
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LCMXO640C-3TN144C.pdf
Semiconductor MachXO Family Data Sheet Supply Current (Sleep Mode) 1, 2 Symbol Parameter Device Typ.3 Max. Units LCMXO256C 12 25 µA I Core Power Supply LCMXO640C 12 25 µA CC LCMXO1200C 12 25 µA LCMXO2280C 12 25 µA LCMXO256C 1 15 µA LCMXO256C-4W 4 450 900 µA LCMXO640C 1 25 µA ICCAUX Auxiliary Power Supply
in „Erfahrung mit Siglent SDG 10xx Arbitrary Generatoren?“ · Markt ·
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Speicher.pdf
(P) - x16 device: (8K + 256 spare) Words : 48-Pin TSOP1 (12 x 20 x 1.2 mm) - HY27(U/S)S(08/16)561A-T (Lead) PAGE READ / PROGRAM - HY27(U/S)S(08/16)561A-TP (Lead Free) - Random access: 3.3V: 12us (max.) 1.8V: 15us (max.) - HY27
in „SD Karte selber bauen!“ · Mikrocontroller und Digitale Elektronik ·
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W25Q256JW_SPI_RevJ_03102021_Plus.pdf
and max range but should not exceed ±10% of the programming (erase/write) voltage. Publication Release Date: March 10, 2021 - 78 - - Revision J W25Q256JW 9.3 Power-up Power-down Timing and Requirements SPEC
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24fc256.pdf
24AA256/24LC256/24FC256 2 256-Kbit I C Serial EEPROM Device Selection Table Part Number VCC Range Maximum Clock Temperature Available Packages Frequency Ranges 24AA256 1.7V-5.5V 400 kHz (1) I, E CS, MF, MS,
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
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PDF
vitrohm-crf-wirewound-safety-resistor-datasheet.pdf
4,0 0,80 R CRF253-4 / -8 | CRF250 14,5 4,5 0,65 4 CRF300 CRF254-4 / -8 12,6 6,0 0,80 2 0 CRF400 CRF256-4 / -8 17,0 6,0 0,80 - CRF257-4 / -8 . CRF500 18,0 8,5 0,80 0 *R <10R D max.+1 . N F 1 1 CRFSeriesDatasheet Type CRF110 CRF200 CRF250 CRF300 CRF400 CRF500 Standard CRF251-4 CRF252-4 CRF253-4 CRF254-
in „Neff Steuerplatine Leiterbahnen abgerissen.“ · Platinen ·
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TE28F128J3D75.pdf
120 CMOS Inputs, V = V Max; Vccq = CC CC VccqMax μA Device is disabled (see Table 15, “Chip 256 Mbit 100 240 Enable Truth Table” on page 32), RP# = V CCQ ± 0.2 V ICCS VCC Standby Current 1,2,3 32, 64, 128 Mbit 0.71 2 TTL Inputs, CC = VCC Max, mA Vccq = VccqMax 256 Mbit 1.42 4 Device is disabled (see Table 15, “Chip Enable Truth Table” on page 32), RP# =IH ICCD VCC Power-Down Current 50 120 μA RP# = GND ± 0.2 V, IOUT (STS) = 0 mA CMOS Inputs
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Datei
device.c
DF_NO_ESPM|DF_NO_MOVW|DF_NO_BREAK|DF_NO_EICALL|DF_NO_EIJMP}, // ATtiny43U { "ATtiny44", 2048, 0x60, 256, 256, DF_NO_MUL|DF_NO_JMP|DF_NO_ELPM|DF_NO_ESPM|DF_NO_EICALL|DF_NO_EIJMP}, { "ATtiny44A", 2048, 0x60, 256, 256, DF_NO_MUL|DF_NO_JMP|DF_NO_ELPM|DF_NO_ESPM|DF_NO_EICALL|DF_NO_EIJMP}, { "ATtiny45", 2048
in „AVR-ChipBasic2 - BASIC-Computer mit ATMega 644“ · Projekte & Code ·
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Datei
device.c
DF_NO_ESPM|DF_NO_MOVW|DF_NO_BREAK|DF_NO_EICALL|DF_NO_EIJMP}, // ATtiny43U { "ATtiny44", 2048, 0x60, 256, 256, DF_NO_MUL|DF_NO_JMP|DF_NO_ELPM|DF_NO_ESPM|DF_NO_EICALL|DF_NO_EIJMP}, { "ATtiny44A", 2048, 0x60, 256, 256, DF_NO_MUL|DF_NO_JMP|DF_NO_ELPM|DF_NO_ESPM|DF_NO_EICALL|DF_NO_EIJMP}, { "ATtiny45", 2048
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SK9822.pdf
Dongshan Country, Qishi Town, Dongguan City. Dongguan Tel: (769)82632725 Dongguan Fax: (769)82632735 (2) 256 level gray level: Data Duty Cycle MSB……..LSB 0000 0000 0/256 0000 0001 1/256 0000 0010 2/256 - - - - - - - - - - 1111 1101 253/256 1111 1110 254/256 1111 1111 255/256 (3) PWM input / output signal relationship
in „Reverse Voltage Protection“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
timer.c
trifft exakt die Frequenz" #else #warning "Timer1 liegt mit der Frequenz daneben!" #endif // prescaler :256 #elif (F_CPU / (T1_FREQUENCE * 256UL)) < T1_MAX_COUNTER #define TIMER1_FREQUENCE (1.0 * F_CPU / (T1_FREQUENCE * 256)) #define T1_PRESCALE 256U #define T1_PRESCALE_VALUE T1_PRESCALE_256 #warning Timer1 mit Prescaler 256 eingestellt #if ((1000000 * F_CPU / 256 / (F_CPU / 256 / T1_FREQUENCE)) == (1000000 * T1_FREQUENCE)) #warning "Timer1 trifft exakt die Frequenz" #else #warning "Timer1 liegt mit der Frequenz daneben
in „Bits im Timer-Register durch Präprozessor / Compiler ausrechnen“ · Mikrocontroller und Digitale Elektronik ·
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CS5343-44_F5.pdf
SERIAL AUDIO INTERFACE Logic “0” = GND = 0 V; Logic “1” = VA, CL= 20 pF. Parameter Symbol Min Typ Max Unit Master Mode MCLK Period (Double-Speed, 384x Mode) tclkw 24 - 30 ns (Double-Speed, 192x Mode) 48 - 60 ns (Double-Speed, 256x Mode) 36 - 45 ns (Double-Speed, 128x Mode) 72 - 90 ns (Single-Speed,
in „Genesys 2 (Xilinx Kintex 7): Audio-Codec Implementierung und Filteranbindung“ · FPGA, VHDL & Co. ·
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Datei
servo2.c
< MIN_DEGREE) degree = MIN_DEGREE; if (degree > MAX_DEGREE) degree = MAX_DEGREE; if (servo > MAX_SERVOS - 1) servo = MAX_SERVOS - 1; // // Maximale position (MAX_SERVOPOS) / maximaler Winkel * gewünschter Winkel + 1 // Ergebnis absolute Postion > 0 <
in „Servo dreht nur 90Grad“ · Mikrocontroller und Digitale Elektronik ·
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LSIsforLCDs.PDF
ratio Display voltage Data input Clockfrequency Supply voltage Package function Segment Common (V) MAX. (MHz) MAX. (V) 4 LH15H1 288 66 1/10, 1/18, 1/26, 1/34, + 13.2 1.8 to 3.3 SOF 256 1/42, 1/50, 1/58, 1/66 8/16-bit (at 3 V) colors parallel/serial LH15A1 384 82 1/17, 1/32, 1/47, +15 For color 1/62,
in „LEXIBOOK LCD-Konsole mit 120 Spiele“ · Mikrocontroller und Digitale Elektronik ·
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Datei
output.txt
Size #Pages MinW MaxW ReadBack ----------- ---- ----- ----- ---- ------ ------ ---- ------ ----- ----- --------- application 0 0 0 0 no 131072 256 0 0 0 0x00 0x00 Block Poll Page Polled Memory Type Mode Delay Size Indx
in „xmega mit JTAG ICE MKII unter Linux: RSP_ILLEGAL_EMULATOR_MODE“ · Mikrocontroller und Digitale Elektronik ·
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AN0177V3-MGRT_MX25L12836E_45E_35E_to_35F.pdf
blocks (#192-255) 32 blocks (#224-255) 0 1 1 1 128 blocks (#128-255) 64 blocks (#192-255) 1 0 0 0 256 blocks (all) 128 blocks (#128-255) 1 0 0 1 256 blocks (all) 256 blocks (all) 1 0 1 0 256 blocks (all) 256 blocks (all) 1 0 1 1 256 blocks (all) 256 blocks (all) 1 1 0 0 256 blocks (all) 256 blocks (
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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AK5388AEQ.pdf
Hold time BICK “ “ (Note 15) tBSH 5 ns MS1494-E-03 2014/02 - 11 - [AK5388A] Parameter Symbol min typ max Unit Audio Interface Timing (Master mode) Normal mode (TDM1=“L”, TDM0=“L”) BICK Frequency fBCK 64fs Hz BICK Duty dBCK 50 % BICK “” to LRCK tMBLR 20 20 ns BICK “” to SDTO1/2 tBSD 20 20 ns TDM256
in „Audio-ADC - Taktfrequenzen I2S“ · Mikrocontroller und Digitale Elektronik ·
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MAX6966-MAX6967.pdf
R/W MSB ADDRESS LSB MSB DATA LSB CS3 CS2 µC CS1 CS1 MAX6966 CS2 MAX6966 CS3 MAX6966 MOSI DIN MAX6967 DIN MAX6967 DIN MAX6967 SCLK SCLK SCLK SCLK Figure 8. MAX6966/MAX6967 Multiple CS Connection ____________________________________________________________
in „MAX6966 Ausgänge Verstärken“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX6966-MAX6967.pdf
R/W MSB ADDRESS LSB MSB DATA LSB CS3 CS2 µC CS1 CS1 MAX6966 CS2 MAX6966 CS3 MAX6966 MOSI DIN MAX6967 DIN MAX6967 DIN MAX6967 SCLK SCLK SCLK SCLK Figure 8. MAX6966/MAX6967 Multiple CS Connection ____________________________________________________________
in „4 Ch LED Treiber für RGBW gesucht“ · Mikrocontroller und Digitale Elektronik ·