Address of Descriptor2 002Ch-002Fh R/W TSAD3 Transmit Start Address of Descriptor3 0030h-0033h R/W RBSTART Receive (Rx) Buffer Start Address 0034h-0035h R ERBCR Early Receive (Rx) Byte Count Register 0036h R ERSR Early Rx Status
iff you change it then change Sign in AVRootloader.ini BootInfo: .db SIGNATURE_001, SIGNATURE_002, BootVersion, BootPages BootEnd: .if UseCrypt ; follow bytes should be keept secret and choosen randomly, 128 Bit Password, first 32 bit used as Signature BootKey: .db $14,$70,$A1,$B3,$05,$73
Oszi* beobachtet sehen die Signale des PL2303 steiler aus, haben aber bei high einen ca 1V grossen rippel drauf mit ca. 250khz das ist beim CH340 nicht da sehen die Signale aber 'schlapper' aus.... * Oszi ist nur ein HDS2062M ist also nicht so super von der Aufloesung ps. ich meine
PLCC44 33 ALE/PROG P3.2/INT0 14 32 PSEN P3.3/INT1 15 31 P2.7/A15 P3.4/T0 16 30 P2.6/A14 P3.5/T1 17 29 P2.5/A13 18 19 20 21 22 23 24 25 26 27 28 R D 2 1 S * 8 9 0 2 / / A AL S I / A/ / A/A / . . T T V N 2 2 . 3.4 . P P X X P P 2 2 2 P P P / 1 0 X E E C 2 2 D D D D / C/E / / / * / A/A / / 1 1 1 1 . 1 I C 0 0 0 0 . P P P P P N V P P P P 44 43 42 41 40 39 38 37 36 35 34 P1.5/CEX2/MISO 1 33 P0.4/AD4 P1.6/CEX3/SCK 2 32 P0.5/AD5 31 P1.7/CEX4/MOSI 3 P0.6/AD6 RST 4 30 P0.7/AD7 P3.0/RxD 29 EA 5 NIC* 6 AT89C51RD2/ED2 28 NIC* P3.1/TxD
PLCC44 33 ALE/PROG P3.2/INT0 14 32 PSEN P3.3/INT1 15 31 P2.7/A15 P3.4/T0 16 30 P2.6/A14 P3.5/T1 17 29 P2.5/A13 18 19 20 21 22 23 24 25 26 27 28 R D 2 1 S * 8 9 0 2 / / A AL S I / A/ / A/A / . . T T V N 2 2 . 3.4 . P P X X P P 2 2 2 P P P / 1 0 X E E C 2 2 D D D D / C/E / / / * / A/A / / 1 1 1 1 . 1 I C 0 0 0 0 . P P P P P N V P P P P 44 43 42 41 40 39 38 37 36 35 34 P1.5/CEX2/MISO 1 33 P0.4/AD4 P1.6/CEX3/SCK 2 32 P0.5/AD5 31 P1.7/CEX4/MOSI 3 P0.6/AD6 RST 4 30 P0.7/AD7 P3.0/RxD 29 EA 5 NIC* 6 AT89C51RD2/ED2 28 NIC* P3.1/TxD
account the clock added (except for STOP mode). Symbol Parameter Conditions Typ 1) Max 2) Unit fOSC=32 kHz, f =1 MHz 230 OSC fOSC=2 MHz V DD=5.0 V 260 fOSC=4 MHz 340 fOSC=8 MHz 480 Supply current of RC oscillator fOSC=32 kHz, fOSC=1 MHz 80 f =2 MHz V =3.3 V 110 OSC DD fOSC=4 MHz 180 fOSC=8 MHz 320 IDD(CK) fOSC=32 kHz, 900 fOSC=1 MHz 280 A fOSC=2 MHz V DD=5.0 V 240 f =4 MHz 140 OSC Supply current of resonator oscillatorOSC=8MHz 40 fOSC=32 kHz, 120 f =1 MHz 70 OSC fOSC=2 MHz V DD=3.3 V 50 fOSC=4 MHz 20 f =8 MHz
Package (U) 1.5 A PowerPAD™ SO-8 Package (H) 3 A Output Saturation Voltage, Source I = 1A +0.4 +0.6 V O O = 0.1A +0.05 +0.07 V Current Limit2), (10) 3 3.5 4.2 A Leakage Current DMOS Output Off, V O = +32V ±1 ±10 µA (3) DIGITAL CONTROL INPUT VCTR Low (output disabled) 0 +1.2 V VCTR High (output enabled
devices. A device may optionally provide the length of the standard data types encoded as UNSIGNED32 at read access to the index that refers to the data type. E.g. index 000Ch (Time of Day) contains the value 30h=48dec as the data type „Time of Day“ is encoded using a bit sequence of 48 bit. If the
MSP430 läuft mit 8MHz, WaitOnePulse() sollte ca. 200ns warten ( siehe Datenblatt http://www.intersema.ch/site/technical/files/ms5534.pdf ) Habs nach dem Beispiel hier aufgebaut: http://www.intersema.ch/site/technical/files/an502.pdf Hoffe jemand kann mir helfen, stehe aufm Schlauch ;)
asm("NOP"); } [/c] plus Bild ausm Oszi... http://zujasr40.multipic.de/ ..001 zeigt 32KHz ..002 zeigt DIN ..003 zeigt DOUT ..004 zeigt SCLK
.......... 31 RY/BY#: Ready/Busy# .................................................................32 December 13, 2005 Am29DL322D/323D/324D 3 PRODUCT SELECTOR GUIDE Part Number Am29DL322D/323D/324D Regulated Voltage Range: V = 3.0–3.6 V 70R Speed Option CC Standard Voltage Range: V CC = 2.7–3.6 V 90
v9.00 Jungo (c) 1997 - 2007 Build Date: Mar 27 2007 X86 32bit 22:31:22. Cable connection failed. Reusing A0037341 key. Reusing 24037341 key. Connecting to cable (Usb Port - USB21). Checking cable
und wenn HI sein sollte, sind viele kleine Impulse zu sehen, bei Lo oft genauso. NUR wenn ich einen 32Mhz reinstecke, habe ich saubere Ergebnisse! Ich habe schon versuchsweise dem 100 oder 80Mhz Osz. die Betriebsspannung von 5V anstatt 3.3V gegeben, da beide 5V Typen sind, gleiches Ergebnis. Der MiniLA
. The lower byte of the 32-bit frequency tuning word,Bits 0–7. CICInterpolationRate—RegisterAddress0Ch,Bits2,3,4,5, TuningWord—RegisterAddress15h,Bits0,1,2,3,4,5,6,7 6,7 The second byte of the 32-bit frequency tuning word,Bits
. The lower byte of the 32-bit frequency tuning word,Bits 0–7. CICInterpolationRate—RegisterAddress0Ch,Bits2,3,4,5, TuningWord—RegisterAddress15h,Bits0,1,2,3,4,5,6,7 6,7 The second byte of the 32-bit frequency tuning word,Bits
S L D RR A S _ T R S R S + C D E T RT S U X L O T R V V 3 + - L A DO X X E S # # K # X P V C C . 1 1 - / / / / / / DS D RDC O C / / / / / S T V O O 3A 2 2 5 A G G GG GG RCOS T T S T P L V GGG G GP OMM I R R R V V V V V G P P P P P P V I DUI R S RSV E K
(Vcc-Vee or Vcc-Vadj). Table 2.1 Temp. 0 °C 10 °C 25 °C 40 °C 50 °C Note Model DMF5001N Series 23.2V 20.3V 18.3V 1/128 Duty (Vcc-Vadj) DMF5002N Series 22.4V 19.7V 17.6V 1/112 Duty (Vcc-Vadj) DMF5003N Series 19.6V 18.4V 17.4V 1/128 Duty (Vcc-Vadj) CCT Backlight DMF5005N Series 14.8V 13.6V 12.3V 1/64 Duty (Vcc-Vee) DMF5010N Series 14.4V 13.6V 12.8V 1/64 Duty (Vcc-Vee) CCT Backlight Consult your local Optrex representative to obtain detailed specifications for each module part number. Example of power Supply Connection: +5V Vcc DMF5005N
HLCH Clock Low Hold Time after HOLD Active 40 ns t t CHHL Clock High Set-up Time before HOLD Active CH ns CHHH Clock High Set-up Time before HOLD not Active CH ns tSHQZ 2 tDIS Output Disable Time 100 ns CLQV tV Clock Low to Output Valid 60 ns t t Output Hold Time 0 ns CLQX HO 2 tQLQH tRO Output Rise Time
. 2.4 Absolute Maximum Ratings Item Maximum Ratings Unit Conditions Vcc Input Voltage -0.3 to +4.6 V VBAT Input Voltage -0.3 to +4.6 V The current into the GH-79 should be TD Output Current ±20 mA (+). TD Output Voltage -0.3 to +3.0 V Vcc=0V -0.3 to Vcc+3.0 RD Input Voltage -0.3 to +3.0 V Vcc=0V -0.3
Ein Regler 12V->3.3V verbrät dann halt knapp 1 Watt. Da ist einer im TO-220 dann zu nehmen. Für die Stromsparer gibts noch Schaltwandler mit Diode und Spule.
genau gleich alles mit 3,3v versorgen, das spart kummer sorgen!!!
quantity of electricity coulomb C A ⭈ s tension (voltage), potential difference, electromotive force volt V W/A electric field strength volt per meter V/m electric resistance ohm ⍀ V/A capacitance farad F A ⭈ s/V magnetic flux weber Wb V ⭈ s inductance henry H V ⭈ s/A 2 magnetic flux density tesla T Wb/m magnetic
Features • Single 2.5V - 3.6V or 2.7V - 3.6V Supply Serial Peripheral Interface (SPI) Compatible 20 MHz Max Clock Frequency Page Program Operation – Single Cycle Reprogram (Erase and Program) – 4096 Pages (528 Bytes/Page)
Figure 2−8.Typical Current Consumption of 41x Devices vs Operating Modes 315 300 z M 270 1 225 @ 200 V CC= 3 V A 180 / 135 V CC= 2.2 V C I 90 55 45 32 17 11 0.90.7 0.1 0.1 0 AM LPM0 LPM2 LPM3 LPM4 Operating Modes The low-power modes 0−4 are configured with the CPUOFF, OSCOFF, SCG0, and SCG1 bits in the
Figure 2−8.Typical Current Consumption of 41x Devices vs Operating Modes 315 300 z M 270 1 225 @ 200 V CC= 3 V A 180 / 135 V CC= 2.2 V C I 90 55 45 32 17 11 0.90.7 0.1 0.1 0 AM LPM0 LPM2 LPM3 LPM4 Operating Modes The low-power modes 0−4 are configured with the CPUOFF, OSCOFF, SCG0, and SCG1 bits in the
liest, steht drinnen, dass es längerfristig die Gewässer schädigen kann. http://www.tessenderlo.ch/deutsch/produkte/pdf/sicherheit/sicherheit_fecl3_37_46_d.pdf http://www.sidra.de/cache/eisen-iii-chloridsulfat-loesung-s-de-de-9320.pdf http://www.hedinger.de/bilder/6/Eisen(III)-chlorid%20_wasserfrei_v002
TPS40060 8 www.ti.com TPS40061 SLUS543E–DECEMBER 2002–REVISED JUNE 2006 W ID E-IN PU TSYN CH R O N O U SB U C KC O N TR O LLER FEATURES DESCRIPTION • Operating Input Voltage 10 V to 55 V The TPS40060 and TPS40061 are high-voltage, • Input Voltage Feed-Forward Compensation wide input (10 V to
(Vcc-Vee or Vcc-Vadj). Table 2.1 Temp. 0 °C 10 °C 25 °C 40 °C 50 °C Note Model DMF5001N Series 23.2V 20.3V 18.3V 1/128 Duty (Vcc-Vadj) DMF5002N Series 22.4V 19.7V 17.6V 1/112 Duty (Vcc-Vadj) DMF5003N Series 19.6V 18.4V 17.4V 1/128 Duty (Vcc-Vadj) CCT Backlight DMF5005N Series 14.8V 13.6V 12.3V 1/64 Duty (Vcc-Vee) DMF5010N Series 14.4V 13.6V 12.8V 1/64 Duty (Vcc-Vee) CCT Backlight Consult your local Optrex representative to obtain detailed specifications for each module part number. Example of power Supply Connection: +5V Vcc DMF5005N
80 ns (Notes 13, 14, 15) 1.71V ≤ CC ≤ 1.89V 160 2.7V ≤ V ≤. 5.5V 110 SCLK Low Time (Note 13) tCL CC ns 1.71V ≤ CC ≤ 1.89V 400 2.7V ≤ CC ≤ 5.5V 110 SCLK High Time (Note 13) tCH ns 1.71V ≤ CC ≤ 1.89V 400 SCLK Rise and Fall R F t 200
von I!I 10% (Ue = 2. 4,5V-Schaltung mit Stabilisierung, = 4,5 t0,45 V) führt daher zu einem relativen An- ir und AU wie oben: zeigefehler von f 10 %. Aa = 0,002. Die Stabilisierungsschaltvng reduziert diese Span- Frei (%) 1 10
Analog output Items Symbol Specified value Measured conditions Reted operating voltage Minimum Vdd 4.5 V DC Maximum 5.5 V DC Typical 0.17 mA Reted consumption current Iw Iout = 0 Maximum 0.3 mA Output current Maximum Iout 50 µA Minimum 0 V Output voltage Typical Vout 2.5 V Maximum Vdd Minimum 2.3 V Steady-state
1 0 9 8 D 7 6 5 4 D 3 2 1 0 V A A A A A V A A A A V A A A A I E H R C Figure 5-1 Pinout Diagram (TQFP13 - 64 pin) S1D13700F01 Hardware Functional Specification X42A-A-002-04 Issue Date: 2005/01/26 Revision 4.02 Epson Research and
Analog output Items Symbol Specified value Measured conditions Reted operating voltage Minimum Vdd 4.5 V DC Maximum 5.5 V DC Typical 0.17 mA Reted consumption current Iw Iout = 0 Maximum 0.3 mA Output current Maximum Iout 50 µA Minimum 0 V Output voltage Typical Vout 2.5 V Maximum Vdd Minimum 2.3 V Steady-state