I P ( 3 7593J–AVR–03/09 Figure 1-2. Pinout ATmega32U6/AT90USB64/128-QFN ) ) ) K S O I) T MTD T T 0 1 2 3 4 5 6 7 ) ) ) C C C C C C C C 0 1 2 A DAD A DAD DAD A A A A DAD A C D E 0 1 2 3 4 5 6 7 D C 0 1 2 V N R F F F F F F
, 128 kHz) CC IDLE SUPPLY CURRENT vs. V INTERNAL RC OSCILLATOR, 128 KHz 0.03 -40 °C 0.025 25 °C 85 °C 0.02 A m (C0.015 IC 0.01 0.005 0 1.5 2 2.5 3 3.5 4 4.5 5 5.5 VCC (V) 21.4 Power-down Supply Current Figure 21-11
pin designation - MSP430F24x1 T U S V / T K I K I U K C M L D T B C M C S S / T / I O / / S/ C S S . 1.0 . S K S I O 2 2 . . 5. A DV A P P P R T T T T X X P P P T 5 5 5 64 63 62 61 60 59 58 57 56 55 54 53 52 51 50 49 DV 1 48 P5.4/MCLK CC P6.3 2 47 P5.3/UCB1CLK
to AFI[7..0] and/or BFI[7..0]. If the FWR# pin is used, it should be externally pulled up to VThis CC. is to ensure that FWR# is inactive (pulled HIGH) at power up, since, before the 8051 can configure this pin to FWR#, it defaults to ‘PA4 an input’. Document #: 38-08005 Rev. *B Page 16 of 42 CY7C64613
to AFI[7..0] and/or BFI[7..0]. If the FWR# pin is used, it should be externally pulled up to VThis CC. is to ensure that FWR# is inactive (pulled HIGH) at power up, since, before the 8051 can configure this pin to FWR#, it defaults to ‘PA4 an input’. Document #: 38-08005 Rev. *B Page 16 of 42 CY7C64613
Bit_79 bit 0x79 Bit_7A bit 0x7A Bit_7B bit 0x7B Bit_7C bit 0x7C Bit_7D bit 0x7D Bit_7E bit 0x7E Bit_7F bit 0x7F P00 bit 0x80 P01 bit 0x81 P02 bit 0x82 P03 bit 0x83 P04 bit 0x84 P05 bit 0x85 P06 bit 0x86 P07 bit 0x87 IT0 bit 0x88 IE0 bit 0x89 IT1 bit 0x8A
the I2C 2002-1A Evaluation Board Kit at www.demoboard.com DesignCon 2003 TecForum I C Bus Overview 89 Slide 89 2 Low Power version of the SMBus Specification only Comparison of I C with SMBus The SMBus specification
Power into 4Ω at V = The LM3886 is a high-performance audio power CC amplifier capable of delivering 68W of continuous ±28V average power to a 4Ω load and 38W into 8Ω with • 38W Cont. Avg. Output Power into 8Ω at V CC
memory control and system control commands: tCYC8= 2C +CC + CEA+ 75 >ACV+ 245 For all other commands: tCYC8= 4C +CC + 30 10 EPSON SED1335 Series Technical Manual SPECIFICATIONS 6.3.2. 6800 family interface timing E CYC6 t t AW6 EW R/W t AH6 A0, CS t tDS6
10V 211 230 248 ms seeFigure 9 ) X VDD e 15V 216 235 254 ms e R Xe 100 kX VDD 5V 8.83 9.60 10.37 ms C e 0.1 mF VDD e 10V 9.02 9.80 10.59 ms X VDD e 15V 9.20 10.00 10.80 ms e R Xe 100 kX VDD 5V 0.87 0.95 1.03 s C e 10.0 mF VDD e 10V 0.89 0.97 1.05 s X VDD e 15V 0.91 0.99 1.07 s e Pulse Width Match between
CK S /l CC1 A1 01 B °H ~ . - CC2 A2 CC3 A3 02 C CC4 A4 CC5 A5 MCM 03 0 74165 CC6 A6 66740 04 E 66760 LCO RSO 66770 05 F lC1 RS1 66780 LC2 RS2 06 G C lK lC3 RS3 ISL2716K) INH ~ H SIN nr b Fig. 7 - 29 • Displayed
Seite 5) mit folgenden Bauteilwerten: L = 220 uH (Drosselspule mit Ferrit-Ringkern) R_SC = 2.2 Ohm C_T = 220 pF R1 = 3.3 kOhm R2 = 51 kOhm + 10 kOhm Poti (zum Einstellen der Kontrastspannung) C_O = 22 uF / 50 V Diode: SB 160 180 Ohm von Pin 8 nach Pin 7 (wie im Datenblatt) Diese Schaltung funktioniert
10µH/33pF) nach Masse schalten. Der verleidet dem Quarz die Grundwelle. Habe ich früher bei den AT89C2051 gemacht, müsste bei ATmega aber genauso klappen.
Da hätte bei Atmel die AVR-Division mal ruhig von der 8051-Division abkupfern sollen. Z.B. der AT89C51CC03 hat gepuffertes SPI und obendrein 4 Prioritätslevel, um andere Interrupts sofort unterbrechen zu können: "When a transmission is in progress a new data can be queued and sent as soon as transmission
C AA18 PB49B 4 C W16 PB50A 4 T W16 PB50A 4 T U15 PB50B 4 C U15 PB50B 4 C V16 PB51A 4 T V16 PB51A 4 T U16 PB51B 4 C U16 PB51B 4 C Y17 PB52A 4 T Y17 PB52A 4 T V17 PB52B 4 C V17 PB52B 4 C AB20 PB53A 4 T AB20
C AA18 PB49B 4 C W16 PB50A 4 T W16 PB50A 4 T U15 PB50B 4 C U15 PB50B 4 C V16 PB51A 4 T V16 PB51A 4 T U16 PB51B 4 C U16 PB51B 4 C Y17 PB52A 4 T Y17 PB52A 4 T V17 PB52B 4 C V17 PB52B 4 C AB20 PB53A 4 T AB20
LEVEL +OVv Ov +Ov . A p46(1ni pec] is PT100 PROBE. PBUS [ovo La iso eze .{220 ee ls aon CTIEF LTR P9 89 2 4 R702 B73 C508 - ONS28 fox id6 8 —_¥% O RY YOS v S _trcr4'P _aor g == 4saW BF6 ae ae b : +V v0. 10 a c A 0 ? |o 01 RB.R.cS] 2 na Yoe e (aATOo “ : ae Ofs are 6, RBt wBraz lenRow “R CX 03op [§mois}
ns http://onsemi.com 73 SN74LS122 SN74LS123 V VRC V VCC VRC VCC CC CC R Rext ext 0.1 F Cext 0.1 F Cext C R / V Cext Rext VCC ext ext CC CLR Cext Cext Q Pout B2 Q Pout CLR LS122 1/2 LS123 B1 B A2 Q Q Pin A GND Pin A1 GND 51 51 Figure 1. Figure 2. P in Pout t W RETRIGGER
ABSOLUTE MAXIMUM RATINGS Values Parameter Symbol Units Notes Min Max Power Input Voltage VCC 0.0 3.6 Vdc at 25 ± 5°C Storage Temperature H ST -40 105 °C 1 Surface Of Panel Tp -40 95 °C 1,2 Operating Temperature Ambient Ta -40 90 °C 1,2,3 Notes : 1. Maximum wet-bulb temperature is 58℃. Condensation of dew
Elapsed time: 0.33 seconds C:\AVR>FBOOT.EXE /PLED.hex COM 1 at 115200 Baud: / Aborted C:\AVR>FBOOT.EXE /PLED.hex COM 1 at 115200 Baud: - Aborted C:\AVR>FBOOT.EXE /PLED.hex COM 1 at 115200 Baud: | [/avrasm] Bei allen
): [pre]:1000000014C02EC02DC02CC05BC02AC029C028C07F :1000100027C026C025C05FC088C022C021C020C024 :100020001FC01EC01DC01CC01BC011241FBECFE5B9 :10003000D2E0DEBFCDBF10E0A0E6B0E0E0E3F2E04A[/pre] Erst ab der 4ten Zeile sind
werden soll] V00{S90 05 R04 L00FF . P >06} [Ausführung in Adresse 0x00 starten] >00 Antwort: 02 01 FE 89 09 03 FF 89 0E 01 FF 8A ... Hinweis: Während das USB-I2C-Interface ein Makro ausführt, reagiert es auf keine neuen Befehle vom PC. Einzige Ausnahme ist der Befehl zum Beenden einer Makroausführung („
subject to change without notice. 2.5 Ordering codes MSM486SE2 with 2 MB DRAM, without VGA/LCD -25°C to 70°C BurnIn proofed, at 66MHz MSM486SE8 with 8 MB DRAM, without VGA/LCD -25°C to 70°C BurnIn proofed, at 66MHz MSM486SEV4 with 4 MB DRAM, with VGA/LCD -25°C to 70°C BurnIn proofed, at 66MHz MSM486SEV16
Accuracy The ADCOPT bit (CFGAR0[0]) in Configuration Register –3dB –40dB TME SPEC TME SPEC FILTER FILTER AT 3.3V, AT 3.3V, GroupAandthemodeselectionbitsMD[1:0]intheconver - MODE BW BW 25°C –40°C, 125°C sioncommandtogetherprovideeightmodesofoperation 27kHz 27kHz 84kHz ±6mV ±6mV for the ADC which correspond
characteristic Overload characteristic R2AA08075F(750W) 10000 R2AABR2AAB8075F(750W) R2AAB8100H(1kW) At the maximum 10000 10000 velocit y At stoppage 1000 1000 1000 ) c S )c c ( 100 e( e e S 00 ( 100 i (時 T When rotating e e i i 10 T T 10 10 At stoppage 1 1 1 0 1 2 3 4 5 6 0 1 2 3 4 0 1 2 3 4 Output current
input and output capability, which is a necessity at 1.8 V. • Excellent specified drift performance: Key Features 30 ppm/ºC (max) from 0ºC to 70ºC • Low supply voltage: 1.8 to 3.6 V 50 ppm/ºC (max) from –40ºC to 85ºC • Very low supply current: 20 µA (per
Signal 1 V CC 2 NC 3 IR IN 4 GND 5 IR OUT 84 PCM-9574 User's Manual C.6 Floppy drive connector (CN9) Table C-7: Floppy drive connector (CN9) Pin Signal Pin Signal 1 GND 2 DENSITY SELECT* 34 33 32 31 3 GND 4 N/C 5
1.6 1.7 1.8 1.9 2.0 VOH - High-Level Output Voltage - V V CC = 2.0 V Measured at Px.y Figure 5-4. Typical High-Level Output Current vs High-Level Output Voltage 0 -5 A m t e-10 u C u-15 t u l v-20 L h i -25 T = 85 °C l A c p-30 T - TA = 25 °C I -35 TA = -40 °C
Splash und Kernel liegen in mtd2, AES verschluesselt, AES Key dazu (MediaMall Variante des STB): 03 BF 2A E2 E4 6B 63 9B B8 C0 39 71 69 D4 B1 5C 51 D3 39 B9 1D 9C CE 88 BB 46 8F 43 6E CF 8E 4B Splash und Kernel sind nicht nur verschluesselt sondern auch signiert. Gespeicherte Daten in
Splash und Kernel liegen in mtd2, AES verschluesselt, AES Key dazu (MediaMall Variante des STB): 03 BF 2A E2 E4 6B 63 9B B8 C0 39 71 69 D4 B1 5C 51 D3 39 B9 1D 9C CE 88 BB 46 8F 43 6E CF 8E 4B > Dafür müsste man aber die dumps von Horst entschlüsseln. Key hat er ja > gepostet, nun müsste man
;GET BEGINNING ADDRESS ; G1: CALL B_C JZ G3 ;EXIT WITH A ZERO IN A IF AT END INC DPTR ;POINT AT THE LINE NUMBER JB ENDBIT,G2 ;SEE IF WE WANT TO FIND THE END ACALL DCMPX ;SEE IF (DPTR) = R3:R1 ACALL DECDP ;POINT AT LINE COUNT MOVX A,@DPTR
;GET BEGINNING ADDRESS ; G1: CALL B_C JZ G3 ;EXIT WITH A ZERO IN A IF AT END INC DPTR ;POINT AT THE LINE NUMBER JB ENDBIT,G2 ;SEE IF WE WANT TO FIND THE END ACALL DCMPX ;SEE IF (DPTR) = R3:R1 ACALL DECDP ;POINT AT LINE COUNT MOVX A,@DPTR
, 128 kHz) CC IDLE SUPPLY CURRENT vs. V INTERNAL RC OSCILLATOR, 128 KHz 0.03 -40 °C 0.025 25 °C 85 °C 0.02 A m (C0.015 IC 0.01 0.005 0 1.5 2 2.5 3 3.5 4 4.5 5 5.5 VCC (V) 21.4 Power-down Supply Current Figure 21-11
(5V Version) (cont.) Conditions: CC= AV CC = 5.0V ±10%, SS = 0V, Ta = –20 to 75˚C (regular specifications) Ta = –40 to 85˚C (wide-range specifications) Measurement Item Symbol min typ max Unit conditions Input capacitance RES C in – –