-
PDF
SSD1963_V014.pdf
up to 24 bit-per- pixel. 2 FEATURES • Display feature − Built-in 1215K bytes frame buffer. Support up to 864 x 480 at 24bpp display − Support TFT 18/24-bit generic RGB interface panel − Support 8-bit serial RGB
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
schaltplan.pdf
: 2021-02-24 Drawn By: deelan 1 2 3 VDD5V C12 10uF 1 2 3 GND GND VDD3V3 C13 1 2 3 4 5 N 10uF _ P C10 100nF N E VDD5V _ GND U2 VDD3V3 P S R CH340G E R D TITLE: 0 2 3 4 5 1 16 C C C C C C C C C C C C C C C C A 2 GND
-
Datei
dw_programming_dragon.txt
avrdude: Version 6.1, compiled on Mar 13 2014 at 00:09:49 Copyright (c) 2000-2005 Brian Dean, http://www.bdmicro.com/ Copyright (c) 2007-2014 Joerg Wunsch System wide configuration file is "C:\WinAVR-20100110\bin\avrdude.conf" Using Port : usb Using
in „avrdude fuses aus debugwire schreiben“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
smartctl_mp.txt
auto+...' is implicitly enabled to detect SATA disks. Use '-d scsi+cciss,N' to disable it. To look at disks behind HP Smart Array controllers, use syntax such as: smartctl -a -d cciss,0 /dev/cciss/c0d0 (cciss driver under Linux) smartctl -a -d cciss,0 /dev/sg2 (hpsa or hpahcisr drivers under Linux) hpt
in „smartctl Ausgabe für HDs und SSDs - Seek_Error_Rate“ · PC Hard- und Software ·
-
PDF
1.5KE6V8A.PDF
bi-directional devices hRving V volts and underR the I limit is doubled. DS21503 Rev. 10 - 2 2 of 4 1.5KE6V8(C)A - 1.5KE400(C)A www.diodes.com 10,000 )p Ip Measured at ( 100 Peak Valpp I Zero Bias T F N ( R E R C 1000 U A C Half Valpp I /2 I S A L P U 50 C Measured at P ,T Stand-off Voltage A C E 100 , IP t p
in „Welches Bauteil (Diode?) ist das?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ENG_SS_114-2025_G3.pdf
information. Such information can be obtained through a local Representative, by visiting our website at www.te.com, or by calling PRODUCT INFORMATION or the TOOLING ASSISTANCE CENTER at the numbers at the bottom of page 1. 2.3. Drawings Customer Drawings for product part numbers are available from the
in „Welcher Stecker ist das (Schaltbildinterpretation)“ · Fahrzeugelektronik ·
-
Datei
netbox.txt
filesystem) readonly. Freeing unused kernel memory: 24k freed NETGEM Linux init version 1.00 768+0 records in 768+0 records out 256 inodes 768 blocks Firstdatazone=12 (12) Zonesize=1024 Maxsize=268966912 smcard: installed. ngtv: installed. 'VTX' irq=9 stvga: framebuffer at 0x0889d000, size 652k stvga: mode is 640x520x16, linelength=1280 stvga: scrolling: redraw fb0: STVGA frame buffer device Soundblaster audio driver Copyright (C) by Hannu Savolainen 1993-1996 SB 3.1 detected
in „Pollin Netbox“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CMAC_Xtal.pdf
-88) 2 n Acceleration: 49000m/s for 1 minute in the ‘Y ’ 1 plane n High Temperature Storage: 24hrs at 150°C n Rapid Change of Temperature: –55 to 125°C, 10 cycles Outline in mm (inches) n Dynamic burn-in for 168hrs at 125°C n Check all parameters & assess Environmental Specification 2 n Bump: 4000
-
PDF
DA-Converter.pdf
and specifications. Infrared (15 sec.) 220˚C 8 3 Supply Voltage (CC) 17 VDC 2 Voltage at Any Digital Input V to GND CC Operating Conditions Voltage at REF Input ±25V Temperature Range TMIN≤TA≤TMAX Storage Temperature Range −65˚C to +150˚C Part numbers with “LCN” suffix 0˚C to +70˚C Package Dissipation Part numbers with “LCWM” suffix 0˚C to +70˚C at TA=25˚C (Note 3) 500 mW DC Voltage Applied to Part numbers with “LCV” suffix 0˚C to +70˚C Part numbers with “LCJ” suffix −
in „Problem mit DA-Wandler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
msm5298a.pdf
• Supply voltage : 4.5 to 5.5V • LCD driving voltage : 8 to 28V • Applicable LCD duty : 1/64 to 1/256 • Applicable segment driver : MSM5299A (80 outputs), MSM5299C (80 outputs) • Package options: 80-pin plastic QFP (QFP80-P-1420-0.80-K) (Product name : MSM5298AGS-K) 80-pin plastic QFP (QFP80-P-1420-
in „Optrex DMF50191N“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LGT8F328P.pdf
the second instruction. When the second instruction goes into execution CLKcpu The first instruction C1F C1E The second instruction C2F C2E Article 3 Directive C3F C3E Line period, while reading the third instruction at the same time. So that during the entire execution, there is no need to spend extra
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
GD32E230xx_Datasheet_Rev1.5.pdf
ground pins — 50 mV IO Maximum current for GPIO pins — ±25 mA TA Operating temperature range -40 +85 °C Power dissipation at A = 85°C of LQFP48 — 574 Power dissipation at A = 85°C of LQFP32 — 724 Power dissipation at A = 85C of QFN32 — 939 PD mW Power dissipation at A = 85C of QFN28 — 845 Power dissipation at A = 85°C of TSSOP20 — 595 Power dissipation at A = 85°C of LGA20 — 416 TSTG Storage temperature range -65 +150 °C TJ Maximum junction temperature — 125 °C (1) Guaranteed by design, not tested in production
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN255_I2C__SMBus_REPEATERS_HUBS_AND_EXPANDERS.pdf
sunk by an I C device at I C 1 is R1 in parallel with resistors 10 times the values of R2, R3 and R4. So, if R1 = R3 = R4 = 10 kΩ, and R2 = 1 kΩ , the pull-up load at I 2C 1 is 10kΩ //10kΩ //100kΩ //100kΩ = 4.55 kΩ 2 2 The same calculation applies for I C 2 and I C 3. To calculate the current being sunk by the Lx pin of the buffer at I C 1, note that the current in R1 is being sunk directly 2 2 by the I C device at I C 1. The buffer therefore sinks the
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN255.pdf
sunk by an I C device at I C 1 is R1 in parallel with resistors 10 times the values of R2, R3 and R4. So, if R1 = R3 = R4 = 10 kΩ, and R2 = 1 kΩ , the pull-up load at I 2C 1 is 10kΩ //10kΩ //100kΩ //100kΩ = 4.55 kΩ 2 2 The same calculation applies for I C 2 and I C 3. To calculate the current being sunk by the Lx pin of the buffer at I C 1, note that the current in R1 is being sunk directly 2 2 by the I C device at I C 1. The buffer therefore sinks the
in „50 X LM75 an ATMEGA16?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HAP-CU-TechDok-20080319.pdf
Query Device 0 0 Select 9 QueryAck Device LValue HValue Select 16 Status Device LValue HValue Ext 24 Makro 0 LMakro HMakro 0 28 EEPROM 161/169 LAddr HAddr Number 29 EEPROMAck DataA DataB DataC DataD 56 ControlProt 0 StartProt 16/32 0 0 1 EndProt 0 0 0 16 StartPage 160/168 LSideAddr HSideAddr 60 RawData
-
Datei
fcntl.lst
r31 216 00b8 EE0F lsl r30 217 00ba FF1F rol r31 218 00bc EE0F lsl r30 219 00be FF1F rol r31 220 00c0 E80F add r30,r24 221 00c2 F91F adc r31,r25 222 00c4 E80F add r30,r24 223 00c6 F91F adc r31,r25 224 00c8 8091 0000 lds r24,cdev 225 00cc 9091 0000 lds r25,(cdev)+1 226 00d0 E80F add r30,r24 227 00d2
in „Compiler-Fehler?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Kap6.pdf
Δϕ1 zz’(T- T inv A 3 (T-T )inv (28) mit A1= -0,08583 A3= 1,0510. -4 26 Bild 6.22: TK-Kurvenschar von AT-Schnitt-Schwingquarzen 27 Die Inversionstemperatur, d.h. der Wendepunkt, T invliegt beim AT-Schnitt zwischen 24°C und 35°C, je nach Frequenzbereich. Bei SC-Quarzen liegt T bei ca. +95°C. inv Bild 6.22
in „4060 + Quarz wollen nicht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Kap6.pdf
Δϕ1 zz’(T- T inv A 3 (T-T )inv (28) mit A1= -0,08583 A3= 1,0510. -4 26 Bild 6.22: TK-Kurvenschar von AT-Schnitt-Schwingquarzen 27 Die Inversionstemperatur, d.h. der Wendepunkt, T invliegt beim AT-Schnitt zwischen 24°C und 35°C, je nach Frequenzbereich. Bei SC-Quarzen liegt T bei ca. +95°C. inv Bild 6.22
-
PDF
EN50067_RDS_Standard.pdf
the basic shortened cyclic code in binary notation Thus, (m x 15▯ m x 14▯ .... ▯ m) G m x 25▯ m x 24▯ ... ▯ mx10 ▯ c x9 ▯ c x8 ▯ ... 15 14 0 15 14 0 9 8 where c9 (m15 x 0) U (m14x 1) U (m 13x 1) U ... U (1 x 1) U (m0x 0) c (m x 0) U (m x 0) U (m x 1) U ... U (m x 1) U (m x 1), etc. 8 15 14 13 1 0 (
-
Datei
startup.asm
0 --> war NMI B Restart ENDP HardFault_Handler PROC EXPORT HardFault_Handler [WEAK] LDR R0, [R13, #24] ; Get previous PC LDRH R1, [R0] ; Get instruction LDR R2, =0xBEAB ; The special BKPT instruction CMP R1, R2 ; Test if the instruction at previous PC is BKPT BNE HardFault_Restart ; Not BKPT ADDS R0,
in „LPCXpresso einrichten“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Startup.lst
Definitions At line 269 in file Startup.s Uses At line 258 in file Startup.s At line 269 in file Startup.s IRQ_Addr 0000003C Symbol: IRQ_Addr Definitions At line 257 in file Startup.s Uses At line 247 in file Startup.s
in „LPC2294 Boot Loader Mode“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ST_7262.pdf
I/O C T HS x x Port B2 1) Output SCI Receive Data 23 27 14 13 19 4 PB1/RDI I/O C T HS x x Port B1 Input1) 24 28 15 14 20 5 PB0/MCO I/O C T HS x x Port B0 CPU clock output 25 29 16 15 - - PA7/AIN7 I/O C T x
in „Unteschiede I²C / SPI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
armStoneA8_Hardware_V110_eng.pdf
Memory: 256 MByte DDR2 DRAM (optional 512MB) 128 MByte NAND Flash (optional 1 GByte) CPU: Samsung S5PV210 800MHz CPU (optional 1GHz) Operating temperature: 0°C...+70°C (optional -20…+85°C) 3 Block diagram Digital
in „Handydummy (Attrappe)mit richtigem Display 10Zoll - u.a.Motorola Xoom“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
datenblatt_von_FT232BL.pdf
as a MicroChip 93LC46B or number as part of the USB descriptor. 4.0 Device Pin-Out 0 3 6 3 V A V V C V C C C 6 V C C I 25 3V3OUT C O TXD S T C D U 24 C S C N O I C D RXD E T A A X X V T 8 USBDM RTS# 23 CTS# 22 7 21 USBDP DTR# 32 25 20 DSR# 5 19 EESK 1 24 RXD RSTOUT# DCD# 4 18 EEDATA RTS# RESET# RI#
-
PDF
A200_FT232BL.pdf
as a MicroChip 93LC46B or number as part of the USB descriptor. 4.0 Device Pin-Out 0 3 6 3 V A V V C V C C C 6 V C C I 25 3V3OUT C O TXD S T C D U 24 C S C N O I C D RXD E T A A X X V T 8 USBDM RTS# 23 CTS# 22 7 21 USBDP DTR# 32 25 20 DSR# 5 19 EESK 1 24 RXD RSTOUT# DCD# 4 18 EEDATA RTS# RESET# RI#
in „Schaltplan für FT 232BL überprüfen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ds232bv16.pdf
- Serial) I.C. • EEPROM Interface equivalent capable of a 1Mb/s clock rate at VCC = Though the FT232BM will work without the optional 4.35V to 5.25V. The EEPROM is programmable- EEPROM, an external 93C46 (93C56 or
in „kleiner FET“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
BME280.c
data[0], (int16_t)data[1], (int16_t)data[2]); BME280_CalculateTemperature (RawTemp, &FineTemp, &DegC100Temp); /* ** Do the compensation computation as of Bosch documentation page 25. ** Computes the pressure in unsigned 32 bit integer in Q24.8 format (24 integer bit, 8 fractional bits). ** Example:
in „BME280 Sensor - Code für ATmega328 in C“ · Projekte & Code ·
-
PDF
PIC16F1503.pdf
X u O 4 o O C O C 2 l x N x N u C C E u N N R c U A G F DS41607A-page 244 Preliminary 2011 Microchip Technology Inc. PIC16(L)F1503 24.5 Interrupts When the accumulator overflows, the NCOx Interrupt Flag bit, NCOxIF
in „Versorgungsspannung vom PIC mit PIC messen“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
usb.c
long *)(0x40005C04)) #define USB_EP2R (*(volatile unsigned long *)(0x40005C08)) #define USB_EP3R (*(volatile unsigned long *)(0x40005C0C)) #define USB_EP4R (*(volatile unsigned long *)(0x40005C10)) #define USB_EP5R (*(volatile unsigned long *)(0x40005C14)) #define USB_EP6R (*(volatile unsigned long *)(0x40005C18)) #define USB_EP7R (*(volatile unsigned long *)(0x40005C1C)) #define USB_CNTR (*(volatile unsigned long *)(0x40005C40)) #define USB_ISTR (
in „An W.S.: Läuft deine USB Implementierung auch auf STM32F303?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
usb.c
long *)(0x40005C04)) #define USB_EP2R (*(volatile unsigned long *)(0x40005C08)) #define USB_EP3R (*(volatile unsigned long *)(0x40005C0C)) #define USB_EP4R (*(volatile unsigned long *)(0x40005C10)) #define USB_EP5R (*(volatile unsigned long *)(0x40005C14)) #define USB_EP6R (*(volatile unsigned long *)(0x40005C18)) #define USB_EP7R (*(volatile unsigned long *)(0x40005C1C)) #define USB_CNTR (*(volatile unsigned long *)(0x40005C40)) #define USB_ISTR (
in „An W.S.: Läuft deine USB Implementierung auch auf STM32F303?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LGDP4524.pdf
HSYNC External m n ra VGS VSYNC display m r s interface a t a DOTCLK Timing o g e ENABLE generator r c o c c at o u g RESET* n t e FLM TEST1 S a G n t OSC2 a d OSC1 Oscillator a i g e G1 – G220 n c r c Internal i i reference voltage n t generating circuit Logic power Liquid crystal drive level generating
in „LCD farben invertiert normal ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
f_2320312311226304479081.pdf
Internal Ra + V5 – Internal Rb Figure 8 V REG is the IC-internal fixed voltage supply, and its voltage at Ta = 25°C is as shown in Table 9. Table 9 Equipment Type Thermal Gradient Units VREG Units (1) Internal Power Supply –0.05 [%/°C ] –2.1 [V] (2) Internal Power Supply –0.2 [%/°C ] –4.9 [V] (3) External
in „Philips GLCD Modul“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
FS453-4_FS455-6_HW_V30.pdf
Interface 2 * The FS453 registers are accessed through a serial input/output bus (SIO) which is I C -compatible and SMBus-compatible. These registers can be read or written at any time the part is receiving a reference clock at XTAL_IN and not being held in reset via the RESET_L pin. 2.13 Sync Timing
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
0000-USM-01-0-01_LF_MultiTag_RW_Module_UserManual1.pdf
Bit 2 Bit 1 Bit 0 Block Block Block Block Block Block Block Block 4 – 5 6 – 7 8 – 11 12 – 15 16 – 23 24 – 31 32 – 47 48 – 63 Figure 1-11: Configuration Byte 2 1.5.1.1.7 CON3 The CON3 byte is RFU and should not be changed. CON 3 RFU Figure 1-12: Configuration Byte 3 1.6 Hitag 2 Hitag 2 tags have 256 bits
-
PDF
ZigBit_OEM_Module_Product_Datasheet.pdf
USART/SPI Micro AT86RF230 Chip included. The module can be easily mounted on a simple I2C controller Transceiver Antenna 2-layer PCB. Compared to a single-chip, a module-based JTAG solution offers considerable savings
-
PDF
Acer_Aspire_5742G_Compal_LA-5893P_Rev0.1_Schematic.pdf
RSVD_NCTF_40 AP1 DMI_HTX_PRX_N3 H23 DMI_TX#[3] PEG_RX#[10] D32 PEG_GTX_C_HRX_N5 E30 RSVD14 RSVD_NCTF_41 AT2 PEG_RX#[11] B32 PEG_GTX_C_HRX_N4 DMI_HTX_PRX_P0 D25 DMI_TX[0] PEG_RX#[12] C31 PEG_GTX_C_HRX_N3 RSVD_NCTF_42 AT3 DMI_HTX_PRX_P1 F24 DMI_TX[1] PEG_RX#[13] B28 PEG_GTX_C_HRX_N2
in „Laptop Akkus ausbauen und mit Netzteil betreiben“ · PC Hard- und Software ·
-
PDF
st6215c.pdf
and control pins) must not eVDDe. True open drain I/O pins does not hOH. V Figure 63. Typical V OL at VDD = 5V (standard) Figure 64. Typical V OL at VDD = 5V (high-sink) Vol [mV] at Vdd=5V Vol [V] at Vdd=5V 1 1000 Ta=-40±C Ta=95±C Ta=-40±C Ta=95±C 0.8 800 Ta=25±C Ta=125±C Ta=25±C Ta=125±C 0.6 600 0.4
in „ST6 Familie von ST“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Infineon-AN76496_PSoC_5LP_Solar_Microinverter_Control_Design-ApplicationNotes-v03_00-EN.pdf
P10547TR-ND 0603 ECG IC PSoC 5LP: 32-bit, 256KB flash,U501 1 PSoC 5LP Cypress CY8C5868AXI-LP035 428-3228-ND 100-pin TQFP Semiconduct or Corp. Crystal, 24.000-MHz, 20-pF SMD Y501 1 24 MHz ECS Inc. ECS-240-20-5PX-TR XC1255TR-ND In
-
Datei
crc32.c
0xD1BB67F1, 0xA6BC5767, 0x3FB506DD, 0x48B2364B, 0xD80D2BDA, 0xAF0A1B4C, 0x36034AF6, 0x41047A60, 0xDF60EFC3, 0xA867DF55, 0x316E8EEF, 0x4669BE79, 0xCB61B38C, 0xBC66831A, 0x256FD2A0, 0x5268E236, 0xCC0C7795, 0xBB0B4703, 0x220216B9, 0x5505262F, 0xC5BA3BBE, 0xB2BD0B28, 0x2BB45A92
in „Ideen um CRC-Routine zu beschleunigen? (AVR, gcc)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
lwip-1.4.0-rc2.patch
/lwip_open_src_template_app/lwip/core/ipv4/ip_addr.c 2015-08-14 09:42:24.000000000 +0200 @@ -113,8 +113,8 @@ #ifndef isprint #define in_range(c, lo, up) ((u8_t)c >= lo && (u8_t)c <= up) #define isprint(c) in_range(c, 0x20, 0x7f) -#define isdigit(c) in_range
in „ESP8266 OpenSrc LWIP implementation“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
bq25504.pdf
application report, . 7.5 Electrical Characteristics Over recommended temperature range, typical values are at T = 25°C. Unless othArwise noted, specifications apply for conditions of VIN_DC = 1.2V, VBAT = VSTOR = 3V. External components L BST = 22 µH, C HVR = 4.7 µF C STOR = 4.7 µF. PARAMETER TEST CONDITIONS
in „CJMCU-25504 Jumper setzen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MELEXIS_Sensor-IC-MLX90316KDC_EN.pdf
-20 20 mA Vout = 0 V 12 15 mA Output Short Circuit Current Ishort Vout = 5 V 12 15 mA Vout = 14 V AT 25°C) 24 45 mA Pull-down to Ground 1 10 (9) Output Load RL ∞ kΩ Pull-up to 5V 1 10 ∞ (9) kΩ Vsat_lo Pull-up loaL R ≥ 10 kΩ 3 %V DD Analog Saturation Output Level Vsat_hi Pull-down loadLR ≥ 10 kΩ 96 %
in „MLX90316 mit Atmega8 über SPI“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RCDN9.pdf
18 20 22 24 6 P R437 R471 _ RT1P141C 60 60 P C C D 1 3 5 7 9 11 13 15 17 19 21 23 25 D D203 L208 L218 R235 g g D NC 22K Q231 _ i F F i DGND RT1N141C T 60 60 18 u 0 0 IC24 9 0 u IC25 DGND DGND F 1SS355T d 3 2 3 2
in „Hifi Kompaktanlage mit Bluetooth Sender ausstatten“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
music.S
std Y+c_timer, r17 1: ;cpi r16, 0xf0 ;brne 1f sbi GPIOR0, GFLAG_SONGEND 1: ret plonk: ; play note r16 using instrument ptr r17 with channel data at Y std Y+c_vol, r1 std Y+c_iptr, r17 std Y+c_iloop, r1 std Y+c_timer, r1 std Y+c_tnote, r16 std Y+c_inote, r1 std Y+c_inote+1, r16 std Y+c_bendd, r1 std Y+c_vold, r1 ldi r17, 24 std Y+c_vrate, r17 std Y+c_vdepth, r1 ret playroutine: sbic GPIOR0, GFLAG_SONGEND rjmp
in „VGA-Demo mit Soundausgabe auf einem ATmega88“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
zxld1366.pdf
periods, may reduce device reliability. Thermal resistance TSOT23-5 DFN Junction to ambient (R ) 82°C/W 44°C/W ⍜JA Junction to board (R ΨJB ) 33°C/W - Junction to case (R ) - 14°C/W ⍜JC Electrical characteristics (test conditions: V =24V, T =25°C unless otherwise stated) (a) IN amb Symbol Parameter Conditions
-
PDF
Assemblerbefehlavr.pdf
summary. Operation: (i) Rd+1:Rd ← Rd+1:Rd + K Syntax: Operands: Program Counter: (i) ADIW Rd+1:Rd,K d ∈ {24,26,28,30}, 0 ≤ K ≤ 63 PC ← PC + 1 16-bit Opcode: 1001 0110 KKdd KKKK Status Register (SREG) and Boolean Formula: I T H S V N Z C – – – ⇔ ⇔ ⇔ ⇔ ⇔ S: N ⊕ V, For signed tests. V: Rdh7 • R15 Set if two’s
-
PDF
AVR-Instuction-Set_doc0856.pdf
summary. Operation: (i) Rd+1:Rd ← Rd+1:Rd + K Syntax: Operands: Program Counter: (i) ADIW Rd+1:Rd,K d ∈ {24,26,28,30}, 0 ≤ K ≤ 63 PC ← PC + 1 16-bit Opcode: 1001 0110 KKdd KKKK Status Register (SREG) and Boolean Formula: I T H S V N Z C – – – ⇔ ⇔ ⇔ ⇔ ⇔ S: N ⊕ V, For signed tests. V: Rdh7 • R15 Set if two’s
in „Registerdarstellung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DOC0856_INSTRUCTIONSET.PDF
summary. Operation: (i) Rd+1:Rd ← Rd+1:Rd + K Syntax: Operands: Program Counter: (i) ADIW Rd+1:Rd,K d ∈ {24,26,28,30}, 0 ≤ K ≤ 63 PC ← PC + 1 16-bit Opcode: 1001 0110 KKdd KKKK Status Register (SREG) and Boolean Formula: I T H S V N Z C – – – ⇔ ⇔ ⇔ ⇔ ⇔ S: N ⊕ V, For signed tests. V: Rdh7 • R15 Set if two’s
in „Geschwindigkeit“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AVR-Instuction-Set_doc0856.pdf
summary. Operation: (i) Rd+1:Rd ← Rd+1:Rd + K Syntax: Operands: Program Counter: (i) ADIW Rd+1:Rd,K d ∈ {24,26,28,30}, 0 ≤ K ≤ 63 PC ← PC + 1 16-bit Opcode: 1001 0110 KKdd KKKK Status Register (SREG) and Boolean Formula: I T H S V N Z C – – – ⇔ ⇔ ⇔ ⇔ ⇔ S: N ⊕ V, For signed tests. V: Rdh7 • R15 Set if two’s
in „AVR Studio Prgrammadressen merkwürdig“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
instruction-set.pdf
summary. Operation: (i) Rd+1:Rd ← Rd+1:Rd + K Syntax: Operands: Program Counter: (i) ADIW Rd+1:Rd,K d ∈ {24,26,28,30}, 0 ≤ K ≤ 63 PC ← PC + 1 16-bit Opcode: 1001 0110 KKdd KKKK Status Register (SREG) and Boolean Formula: I T H S V N Z C – – – ⇔ ⇔ ⇔ ⇔ ⇔ S: N ⊕ V, For signed tests. V: Rdh7 • R15 Set if two’s
in „LED Multiplex ansteuern“ · Mikrocontroller und Digitale Elektronik ·