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MXB7846.pdf
Products 1 For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at 1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com. 2.375V to 5.25V, 4-Wire Touch-Screen Controller with Internal Reference and Temperature Sensor 6 ABSOLUTE MAXIMUM RATINGS V DD, VBAT, DIN, CS, DCLK
in „OLED Sammelbestellung“ · Markt ·
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PDF
Keysight_E5061B_VNA.pdf
bias Description Specification DC voltage bias Output Port Port 1, LF Out Range 0 to ± 40 V (100 mA max) Resolution 1 mV ± (0 V to 10 V) 4 mV ± (10 V to 40 V) Accuracy 1 ± {0.1% + 4 mV} (at Open Port) 23 ± 5 °C Output Impedance 50 Ω nominal DC bias monitor at IFBW = AUTO (= < 100 Hz) Voltage accuracy
in „Genauigkeit eines Netzwerkanalysators“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LG4573A_DS_V1.1.5__1_.pdf
capacitor to each capacitor connection pin. Set the following voltages within the limits: DDVDH = max 6V, VCL = min -3V, VGH = max 18V, VGL = min -18V. 3. BT[2:0]=3’h4 mode is not recommended in auto power generation mode. If this mode is needed, manual power setting should be used. VBS[2:0] – Sets
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Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „SPI, ISP, USI, TWI, I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
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Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I²c mit Bascom und ATmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „Reset auf I2C-Bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Philips_Semiconductors_-_I2C_Bus_Specification_v2.1.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „GND-Fäche sinnvoll???“ · Platinen ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „i2c und Takt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I2C Speicher HotSwap?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I²C Bus Schnittstelle extern ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_BUS_SPECIFICATION_3.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „Unterschied Defintion I²C und SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
i2c_bus_specification_3.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „IIC-Bus Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I2C abstrakt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „I2C programmieren lernen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
39340011.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „Problem mit I²C-Device“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_SPEC.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „was bedeutet acknowleges bei SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
philips_i2c.pdf
Table 7 Characteristics of the SDAH, SCLH, SDA and SCL bus lines for Hs-mode Is devices(1) C = 100 pF MAX. C = 400 pF (2) PARAMETER SYMBOL b b UNIT MIN. MAX. MIN. MAX. SCLH clock frequency SCLH 0 3.4 0 1.7 MHz Set-up time (repeated) START condition SU;STA 160 − 160 − ns Hold time (repeated) START condition
in „wie sieht ein i2c protokoll aus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
YAMAICHI_TS-Katalog-2017_01_2.pdf
Max. Grid Size 7 x 17 NP276-25626-* Max. Grid Size 16 x 16 Max. Body Size 14 x 22 Max. Body Size 21 x 21 Max. Pin Count 119 Max. Pin Count 256 BASE SOCKET 49.4 X 49.4 BASE SOCKET 49.4 X 49.4 NP276-37206-* Max. Grid Size 20 x 20 NP276-40009-* Max. Grid Size 20 x 20 Max. Body Size 27 x 27 Max. Body Size 27 x 27 Max. Pin Count 372 Max. Pin Count 400 56 SPECIFICATIONS AND DRAWINGS ARE SUBJECT TO ALTERATION WITHOUT
in „TSOP-66 Sockel zum testen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
ldi bitcount,6 ;inicializacia pocitadla bitov v bajte 430 ldi ByteCount,MAXUSBBYTES ;inicializacia max poctu prijatych bajtov v pakete 431 ldi USBBufptrY,InputShiftBufferBegin ;nastav vstupny buffer 43USBloop1_6: 433 434 in inputbuf,inputport cbr inputbuf,USBpinmask ;odmaskovat spodne 2 bity 435 breq
in „IGORPLUG-USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
ldi bitcount,6 ;inicializacia pocitadla bitov v bajte 430 ldi ByteCount,MAXUSBBYTES ;inicializacia max poctu prijatych bajtov v pakete 431 ldi USBBufptrY,InputShiftBufferBegin ;nastav vstupny buffer 43USBloop1_6: 433 434 in inputbuf,inputport cbr inputbuf,USBpinmask ;odmaskovat spodne 2 bity 435 breq
in „90s2343 als usb ir empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
ldi bitcount,6 ;inicializacia pocitadla bitov v bajte 430 ldi ByteCount,MAXUSBBYTES ;inicializacia max poctu prijatych bajtov v pakete 431 ldi USBBufptrY,InputShiftBufferBegin ;nastav vstupny buffer 43USBloop1_6: 433 434 in inputbuf,inputport cbr inputbuf,USBpinmask ;odmaskovat spodne 2 bity 435 breq
in „Per USB mit ATMega32 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IgorPlug-USB__AVR__firmware.pdf
ldi bitcount,6 ;inicializacia pocitadla bitov v bajte 430 ldi ByteCount,MAXUSBBYTES ;inicializacia max poctu prijatych bajtov v pakete 431 ldi USBBufptrY,InputShiftBufferBegin ;nastav vstupny buffer 43USBloop1_6: 433 434 in inputbuf,inputport cbr inputbuf,USBpinmask ;odmaskovat spodne 2 bity 435 breq
in „Booten auf Knopfdruck mit AT90S23X3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cyc_c5v1-1299412.pdf
Clock External I/O Timing Parameters -6 Speed Grade -7 Speed Grade -8 Speed Grade Symbol Unit Min Max Min Max Min Max tINSU 2.417 — 2.779 — 3.140 — ns t 0.000 — 0.000 — 0.000 — ns INH tOUTCO 2.000 3.724 2.000 4.282 2.000 4.843 ns tINSUPLL 1.417 — 1.629 — 1.840 — ns tINHPLL 0.000 — 0.000 — 0.000 — ns
in „BMW Nightvision (FLIR PathfindIR) "Wärmebildkamera"“ · Mikrocontroller und Digitale Elektronik ·
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APT_Communications_Protocol.pdf
35 Data Part No/Axis Serial Number Counts per Unit 36 37 38 39 40 41 42 43 44 45 46 47 Data MinPos Max Pos Max Accn 48 49 50 51 52 53 54 55 56 57 58 59 Data Max Dec Max Vel Reserved Reserved 60 61 62 63 64 65 66 67 68 69 70 71 Data Reserved Reserved Reserved Reserved 72 73 74 75 76 77 78 79 Data Reserved
in „Thorlabs Laser-Source mit über FTDI232BM ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EnMax_AAA.pdf
AAA Energizer Max (Singapore) AAA Energizer Max aus IR-FB gebr. MHD 12-2030 MHD 12-2030 Kauf 10-2020 Kauf 10-2020 17. Oktober 2021 15. Mai 2024 Entladung mit: 30 mA Entladung mit: 30 mA mAh max: 1197 mAh max: 1100 Time
in „ESP8266 mit 3 AAA Batterien Versorgen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP41HVX1.pdf
WIPER CODE (R W = R FS = R ZS = 0) FOR V+ - V- = 36V, 5K AND 10K DEVICES. Code V Code V Code V BW(MAX) BW(MAX) BW(MAX) Hex Dec R R Hex Dec R R Hex Dec R R S(MIN) S(MAX) S(MIN) S(MAX) S(MIN) S(MAX) 00h 0 0.000 0.000 20h 32 12.549 18.824 40h 64 25.098 01h 1 0.392 0.588 21h 33 12.941 19.412 41h 65 25.490
in „MCP41HVX READCMD falsch verstanden??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uploaded_files_documents_org13xx_series_datasheet_u2841.pdf
ratings only. Stresses exceeding Absolute Maximum Ratings may damage the device. Parameter Symbol Min Max Units Power Supply Voltage VCC 0 5.5 V UART Input Voltage V -0.5 7 V RX UART Output Source/Sink Current ITX -10 +10 mA SPI/GPIO Input Voltage VIO_IN 0 1.98 V SPI/GPIO Output Source/Sink Current IIO_OUT
in „Inbetriebnahme ORG-1315“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HM17CM4096.pdf
CLLW CL DFLM t DFLM FLM tDM FR OUTPUT TIMING (VDD2.4 3.3V, Ta=-30 +85 C) ITEM SYMBOL CONDITION MIN. MAX. UNIT PORT FLM delay time tDFLM C =15pF 0 500 ns FLM FR delay time FR L 0 500 ns FR OUTPUT TIMING (VDD1.7 2.4V, Ta=-30 +85 C) ITEM SYMBOL CONDITION MIN. MAX. UNIT PORT FLM delay time tDFLM C =15pF 0
in „LCD Graphik Display mit µController ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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HD66766-10.pdf
all 0 Ta = 25C, fosc = 276khz (1/176duty), 1/12 Bias CT minimum, display all 0 typ: T.B.D typ: 480 Max: T.B.D Max: 600 96 HD66766 Rev. 1.0 / 30 November 2001 Rev.0.3 page part Before After 2001.11.12 79 Clock Characteristics Min: T.B.D Min: 151 (External clock frequency) Typ: 268 Typ: 275 Max: T.B.D Max: 640 (R-C oscillation clock) Test Condition Rf Test Condition Rf = 150 Ω 200Ω Min: - Min: 220 Typ: T.B.D Typ: 275 Max: - Max: 330 84 Reset Timing Characteristics Max: 10 Max: 100 (Reset rise time) 90
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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PDF
Masterarbeit.pdf
des maximal zulässigen R TH für den HS und den LS-eGaN-FET erfolgt mit Hilfe von Formel (4.4). ϑJ,max− ϑ A 150 C − 25 C RTH,JA,x < = (4.4) PV,X PV,X,max 50 4 Dimensionierung und Auswahl der Bauteile Mit den Maximalwerten P V,1,max= 24,97W und P V,2,max= 21,33W aus Abbildung 4.2 ergibt sich für R = 5
in „False Turn On bei Synchron Buck mit eGaN FETs“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CY7C68016A.pdf
0.05 100 81 1 80 0.30±0.08 . . ± ± 0 0 2 0 2 2 0.65 12°±1° SEE DETAIL A TYP. (8X) 30 51 31 50 0.20 MAX. 1.60 MAX. R 0.08 MIN. 0 0.20 MAX. 0° MIN. 0 SEATING PLANE STAND-OFF 0.25 0.05 MIN. NOTE: 0.15 MAX. E 1.JEDECSTDREFMS-026 2.BODYLENGTHDIMENSIONDOESNOTINCLUDEMOLDPROTRUSION/ENDFLASH R 0.08 MIN. MOLDPROTRUSION
in „CY7C68013A-56pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sony_M610__MBX-176_.pdf
CSIP 18 E - 40 ENCHG# 15K_F set BATT_PRS# high level=3.24V for EC CSIN 17 T 7 0402 BATT 16 2 1 A 6 69 MAX1909_IINP_HW 1 2 MAX1909_IINP 8 IINP B P MAX1909_CCV_1 1 2 MAX1909_CCV 13 9 MAX1909_CLS B PR25 PR26 MAX1909_CCI 12 CCV D CLS PR28&PR30_Set input current limit to 106.01W X 0_J 0402 1 PC34 1 0 20K_F MAX1909
in „Blitzschaden an Sony Vaio Notebook“ · PC Hard- und Software ·
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Datei
TopAS21.vhd
<= S3; WHEN X"40"|X"41"|X"42"|X"44"|X"48"|X"50" => -- dann Ref.Befehl empfangen MaxMldgbyte := 4;-- 0 te byte Speichern BCode =00 + 3 Byte NCSatz(0) <= BCODE;-- erste Byte i:= 1;-- Bcode bereits empfangen recstate <= S4; WHEN X"10" => -- MaxAx Meldung :daten Bcode + 4 byte MaxMldgbyte
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PDF
UM10204-user-manual.pdf
applicable. n S a Symbol Parameter Conditions Standard-mode Fast-mode Fast-mode Plus Unit e l m Min Max Min Max Min Max c [1] o V IL LOW-level input voltage −0.5 0.3V DD −0.5 0.3V DD −0.5 0.3V DD V n [1] [2] [2] [1] [2] d V IH HIGH-level input voltage 0.7V DD 0.7V DD 0.7V DD V u c V hys hysteresis of
in „PCA9507, Slaves auf beiden Seiten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C-bus_specification_2014.pdf
applicable. n S a Symbol Parameter Conditions Standard-mode Fast-mode Fast-mode Plus Unit e l m Min Max Min Max Min Max c [1] o V IL LOW-level input voltage −0.5 0.3V DD −0.5 0.3V DD −0.5 0.3V DD V n [1] [2] [2] [1] [2] d V IH HIGH-level input voltage 0.7V DD 0.7V DD 0.7V DD V u c V hys hysteresis of
in „I2C Pullup bei vielen I2C Devices“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C-bus_specification_2014.pdf
applicable. n S a Symbol Parameter Conditions Standard-mode Fast-mode Fast-mode Plus Unit e l m Min Max Min Max Min Max c [1] o V IL LOW-level input voltage −0.5 0.3V DD −0.5 0.3V DD −0.5 0.3V DD V n [1] [2] [2] [1] [2] d V IH HIGH-level input voltage 0.7V DD 0.7V DD 0.7V DD V u c V hys hysteresis of
in „Doppelte Pull-Ups bei i2c?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C-bus_specification_2014.pdf
applicable. n S a Symbol Parameter Conditions Standard-mode Fast-mode Fast-mode Plus Unit e l m Min Max Min Max Min Max c [1] o V IL LOW-level input voltage −0.5 0.3V DD −0.5 0.3V DD −0.5 0.3V DD V n [1] [2] [2] [1] [2] d V IH HIGH-level input voltage 0.7V DD 0.7V DD 0.7V DD V u c V hys hysteresis of
in „MCP23017 friert ein, stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C_Ref_UM10204.pdf
applicable. n S a Symbol Parameter Conditions Standard-mode Fast-mode Fast-mode Plus Unit e l m Min Max Min Max Min Max c [1] o V IL LOW-level input voltage −0.5 0.3V DD −0.5 0.3V DD −0.5 0.3V DD V n [1] [2] [2] [1] [2] d V IH HIGH-level input voltage 0.7V DD 0.7V DD 0.7V DD V u c V hys hysteresis of
in „TWI Bus hängt sich auf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
I2C-bus_specification_2014.pdf
applicable. n S a Symbol Parameter Conditions Standard-mode Fast-mode Fast-mode Plus Unit e l m Min Max Min Max Min Max c [1] o V IL LOW-level input voltage −0.5 0.3V DD −0.5 0.3V DD −0.5 0.3V DD V n [1] [2] [2] [1] [2] d V IH HIGH-level input voltage 0.7V DD 0.7V DD 0.7V DD V u c V hys hysteresis of
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · 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
IL3829.pdf
VDD: 1.8V, regulate from VCI supply • Gate driving output voltage: ¾ 2 levels output (VGH, VGL) ¾ Max 42Vp-p ¾ VGH: 15V to 22V; ¾ VGL: -20V to -15V ¾ Voltage adjustment in steps of 500mV. • Source / VBD driving output voltage: ¾ 3 levels output (VSH, VSS, VSL) ¾ VSH: 10V to 17V ¾ VSL: -10V to -17V ¾
in „IL3829 - E-Paper Display Treiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
teilpaket_2_exemplarische_quantitative_langfristanalyse_2030.pdf
GK + SK > 0 RD+ RD+ RD− RD− Markt-KW: SKRD+ = SK RD−= SK „Worst Case“: GRD+,min= 48,25 & GK RD−,max= 217,6 GKRD−,maxGKRD+,min 217,6 −48,25 € SK > 2 = 2 = 84,7 ≈ 85MWh € PSW: SKPSW = GK RD−,max= 217,6 MWh Langfristanalyse 20301.09.2083 Strafkosten (II) Kombination von kalkulatorischen Preisen und
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Datei
ee24xx.lst
master transmitter mode 51:ee24xx.c **** */ 52:ee24xx.c **** restart: 53:ee24xx.c **** if (n++ >= MAX_ITER) 54:ee24xx.c **** return -1; 55:ee24xx.c **** begin: 129 .LM9: 130 0046 822F mov r24,r18 131 0048 2F5F subi r18,lo8(-(1)) 132 004a 883C cpi r24,lo8(-56) 133 004c 08F0 brlo .+2 134 004e 7CC0 rjmp
in „I2C EEPROM Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS2431-A1.pdf
Integrated Products 1 For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com. 1024-Bit, 1-Wire EEPROM for Automotive Applications ABSOLUTE MAXIMUM RATINGS 1 A I/O Voltage to GND ..........................................Junction
in „Hardware Erkennung leicht gemacht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MS-17631_2.0.pdf
▯ } I ( ▯ 2 › 2 LED Driver IC ▯ D O ▯ î C ▯ +12V_FAN LED Forward Voltage E 2 2 1 1 SDICS ▯ +15V R_Max 2.4V x 4 pcs = 9.6V L L L L SDI_CLKL ) For EMI ▯ 3 3 3 2 2 2 1 1 1 G_Max 3.3V x 4 pcs = 13.2V C227 C100p50N0402 LED1_G L L L L L L L L L Pin Definerd 6 5 4 3 2 1 O ▯ C567 C100p50N04N2 LED1_R B_Max 3.3V
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ferroxcube_Data_Handbook.pdf
, Test Tb, method 1B: 350 °C, 3.5 s Solderability “IEC 60068-2-20”, Part 2, Test Ta, method 1 16.6 max. 19.1 max. handbook, full pagewidth 3.81 22.7 10 11 7.4 6.1 22.7 max. 15.24 ±0.1 ±0.1 ±0.1 ±0.1 15.24 max. 3.81 CBW264 9.25 9.2 min. min. 10 11 7.4 6.1 15.3 17.5 ±0.1 ±0.1 ±0.1 ±0.1 max. max. 3.8 5.95
in „Maximale Magnetflussdichte im Ferritkern Temperaturangabe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SSD2119.pdf
circuit) • Output Voltages o Gate Driver: VGH-GND = 9V ~ 18V VGL-GND = -6 ~ -15V VGH-VGL = 30Vp-p max. o Source Driver: V0 – V63 = 0 – 6V max. o VCOM drive: VCOMH = 3.0V ~ 5.0V VCOML = -1.0V ~ -3.0V VCOMA = 6V max. • System Interface o 8/ 9/ 16/ 18-bit 6800-series / 8080-series Parallel Interface o
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·