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b8_handbuch_1205.pdf
... 55 10.1.2 Daten .................................................................................................. 55 10.1.3 Hardware............................................................................................. 55 10.2 Installation.................................................................................................. 55 10.3 Schnellstart ..............................................................
in „PIC16f628 programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
grundig_chassis_t5_19_22vle2000t_22-2010t_22-2940t_22-2942t_19hd_br_wp_cba_16-2941tc_19-2940t.pdf
TRANS BC848B/ BC847B P D 2001 759551499000 DIODE STKY SB560 5A 60V DO2 ZD 2004 759540390700 Z-DIODE BZX55-C6V2 D 2001 759551499000 DIODE STKY SB560 5A 60V DO2 D 2002 759551395300 DIODE UF4007F R:12.5 D 2002 759551395300 DIODE UF4007F R:12.5 TR 2001 S 759551404300 TRAFO SMT JEWEL BCK0280904 D 2003 759551499100
in „Grundig Fernseher defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Roland_G-70_Service_Notes_.pdf
NIU 2 R3 100 3 1 RK11K113003SA MAX MIN BENDER -12V - 1 MOD R4 3 UNIT 15K + IC1A 2 2 8 R5 M5218AP D1 C55 +12V 27K C3 - CN1 100nF BZX55C 5V1 100nF 1 REF + IC1C 2 1 D M5218AP 3 D D C5 4 4 100nF D C4 33uF S4B-PH-K-S R6 R7 6K8 C7 C6 -12V -12V 33K6 - 100nF 100nF MAX MIN -12V 7 R8 BEND BENDER R9 5 102 REF 8K2 + IC1B R10 M5218AP D2 4K7 C8 100nF BZX55C 5V1 D D 1 D +12V 5VREF CN2 1 BENDER 2 PART BAL 3 4 TO RIGHT PANEL 5 6 (CN5) 7 8 MODULATION 53015-0810 D -12V REF MASTER VOLUME + VLED D 5 C13 C12 100nF R11 SENDL VR2A 100nF 0 3 RK14K1230 2 1 - 1
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Roland-G-70-Service-Manual.pdf
NIU 2 - R3 100 3 1 RK11K113003SA MAX MIN BENDER -12V 1 MOD R4 3 2 8 UNIT 15K + IC1A 2 R5 M5218AP D1 C55 CN1 +12V 27K C3 100nF - 1 100nF BZX55C 5V1 REF 2 + IC1C C5 1 D M5218AP 3 D D 100nF C4 4 4 D 33uF S4B-PH-K-S R6 R7 6K8 C7 C6 -12V -12V 33K 6 - 100nF 100nF MAX MIN -12V 7 R8 BEND BENDER R9 5 + 102 REF 8K2 IC1B R10 M5218AP D2 4K7 C8 100nF BZX55C 5V1 D D 1 D +12V 5VREF CN2 1 BENDER 2 PART BAL 3 4 TO RIGHT PANEL 5 6 (CN5) 7 8 MODULATION 53015-0810 -12V D REF MASTER VOLUME VLED D +5 C13 C12 100nF R11 SENDL VR2A 100nF 0 3 1 RK14K1230 2 - 1 C9
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JRXEWKbQXBFOb1fH.pdf
(BMDC-2) for T42/T42p v 2373-2Xx, 3Ux, 3Zx, 4Zx, 6Zx, 7Zx, 9Ux, 9Vx, 9Xx, 9Zx, AWx, AZx, BUx, BYx, BZx, CUx, CVx, CWx, CXx, CYx, FWx, FYx, GRx, GSx, GTx, GUx, GVx, GXx, GYx, GZx, HTx, HVx, HWx, HXx, HYx, KTx, KUx, KYx, KZx v 2373-Fxx, JAx, JBx, JFx, H3x, HAx, HBx, K1x, K9x, KBx, KFx, KKx, KMx, KNx, L1x
in „Lenovo T42 Ladeelektronik spielt verrückt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ml50x_schematics.pdf
Silkscreen: 1 C49 P . P . P . P . P . P . P . P . ML505/6/7 VIRTEX-5 EVALUATION PLATFORM, 1280415 BZX84C15 2 "Fan Override" R 4 R 4 R 4 R 4 R 4 R 4 R 4 R 4 1 3.3V KEYED_H-1X3 X5R 4 5 9 0 4 5 9 0 0381241 250MW 2 10V 1 1 1-22-2008_14:55 A D5 Silkscreen: 0.1UF C C C C C C C C Date: Ver: A "Fan Power" N
in „DDR2 RAM Ansteuerung mit Virtex-5 ML507“ · FPGA, VHDL & Co. ·
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index.php
manualbrowser&l=first&s=download"><img src="design/radiotechniek/img/knop-nederland.png" height="55" width="46"></a> <a href="index.php?p=manualbrowser&l=sec&s=download"><img src="design/radiotechniek/img/knop-engels.png" height="55" width="46"></a> </div> <div id="login"> <ul id="nav_admin
in „Dynacord WV10 restaurieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA8924.pdf
output pins − ±30 V ORM repetitive peak current in outpunote 1 − 11.3 A Tstg storage temperature −55 +150 °C T ambient temperature −40 +85 °C amb Tvj virtual junction temperature − 150 °C Note 1. See also Section 16.6. 10 THERMAL CHARACTERISTICS SYMBOL PARAMETER CONDITIONS VALUE UNIT Rth(j-a) thermal
in „Schaltregler 24V/15A gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
NTC.html
db3737; } .bp3-editable-text.bp3-intent-danger:hover::before{ -webkit-box-shadow:0 0 0 0 rgba(219, 55, 55, 0), 0 0 0 0 rgba(219, 55, 55, 0), inset 0 0 0 1px rgba(219, 55, 55, 0.4); box-shadow:0 0 0 0 rgba(219, 55, 55, 0), 0 0 0 0 rgba(219, 55, 55, 0), inset 0 0 0 1px rgba(219, 55, 55, 0.4); } .bp3-editable-text.bp3
in „NTC auto kalibrierung - Matheformel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ps42p3sx_ch._d58a.pdf
4 FT201 2901-001119 FILTER-EMISMD;25V,100mA,-,-,3.2x1.6x1,T 4 L300 2703-002327 INDUCTOR-SMD;3.9UH,55,3.2X2.5X2.2MM 4 FT202 2901-001119 FILTER-EMISMD;25V,100mA,-,-,3.2x1.6x1,T 4 L301 2703-002327 INDUCTOR-SMD;3.9UH,55,3.2X2.5X2.2MM 4 FT203 2901-001119 FILTER-EMISMD;25V,100mA,-,-,3.2x1.6x1,T 4 L306 2703
in „Netzteil prüfen wie stelle ich das richtig an?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
C500-System.pdf
3 Referenzintegration m+Ure L H 53, 56, 57 C 500D und C501 D f 3 Referenzintegrbtiont-Ure H L 53, 55, 58 2 Integration voUe H H 57, 52 17 I 1A ufmlu,Funktionund A pplkatinsbeis ileder Bauelemente C 500D bis C 54 ; den A n gaben i Ta belle 1.1.sch li ßen jetzt Spann un gsintegration ö fg en zU näc hst
in „IC C500 Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Linear_Current_Sense_AN105.pdf
V ) (I ) RANGE (V )S (SURVIVAL) OS BIAS High Side or Low Side 1 and 10 LT1990 900µV 2.5nA 105kHz 0.55V/µs 2.4V to 36V –250V to 250V ±250V Bi-Directional 1 to 13 LT1991 15µV 110kHz 0.12V/µs 2.7V to 36V –60V to 60V ±60V Voltage Out 1 to 7 LT1995 1000µV 2.5nA 32MHz 1000V/µs 5V to 36V 0V to 36V V + 0.3V
in „'High Side' Strom Messen - Geht das so ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN105.pdf
V ) (I ) RANGE (V )S (SURVIVAL) OS BIAS High Side or Low Side 1 and 10 LT1990 900µV 2.5nA 105kHz 0.55V/µs 2.4V to 36V –250V to 250V ±250V Bi-Directional 1 to 13 LT1991 15µV 110kHz 0.12V/µs 2.7V to 36V –60V to 60V ±60V Voltage Out 1 to 7 LT1995 1000µV 2.5nA 32MHz 1000V/µs 5V to 36V 0V to 36V V + 0.3V
in „High-Side Strommessung AVR (Shunt)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN10496-NXP.pdf
isolating transformer should be introduced to the power supply of the board for safety. VDD BT139-800 + BZX79-B3V9 LPC 900 UniversalAC Motor 1N4148 VSS R C Dropper Fig 1. Vacuum cleaner reference design board 3. System Design This section describes the design features of the universal motor control system
in „Controller an 230VAC wie realisieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
All.txt
LED3MM LED3MM LED 1 D5 L44 BAS40-04 SOT23 Silicon Schottky Diodes 1 D5 grn LEDSMT1206 1206 LED 1 D5 BZX90 BZX90 DO34Z7 Z DIODE 1 D5 BYV27 BYV27 SOD57-10 DIODE 1 D5 BAT43 * BAT43 MINIMELF 1 D5 BAT42 BAT42 DO35-10 DIODE 1 D5 BAS216 BAS216 SOD110 1 D55 BAT54C BAT54C SOT23 Doppel-Schottky Diode BAT54C 1 D5
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Powermeter.pdf
the ADC in the MCU. Assuming a 1.1V reference, the voltage divider R3-R4 should produce a stable 0.55V. The voltage divider should have a large impedance to keep the current consumption low, since high impedance increases noise. For example, assuming 3V supply voltage, a suitable set of values is 3 MΩ
in „230V Leistung erfassen mit ATmega128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
volt230.pdf
the ADC in the MCU. Assuming a 1.1V reference, the voltage divider R3-R4 should produce a stable 0.55V. The voltage divider should have a large impedance to keep the current consumption low, since high impedance increases noise. For example, assuming 3V supply voltage, a suitable set of values is 3 MΩ
in „Netzteil ohne Trafo“ · Mikrocontroller und Digitale Elektronik ·
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PDF
energymeter.pdf
the ADC in the MCU. Assuming a 1.1V reference, the voltage divider R3-R4 should produce a stable 0.55V. The voltage divider should have a large impedance to keep the current consumption low, since high impedance increases noise. For example, assuming 3V supply voltage, a suitable set of values is 3 MΩ
in „Leistungsmessung über Shunt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc2566.pdf
the ADC in the MCU. Assuming a 1.1V reference, the voltage divider R3-R4 should produce a stable 0.55V. The voltage divider should have a large impedance to keep the current consumption low, since high impedance increases noise. For example, assuming 3V supply voltage, a suitable set of values is 3 MΩ
in „Cadsoft Eagle“ · Platinen ·
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PDF
butterfly.pdf
81GES(4DP 03 21DCL 25 92 11DCL 35 DNG )91GES(3DP 82 31DCL 7FP 45 7FP)7CDA/IDT( )02GES(2DP 72 81DCL 6FP 55 6FP)6CDA/ODT( )12GES/0TNI(1DP 62 61DCL 5FP 5FP)5CDA/SMT( )22GES/PCI(0DP 51DCL 4 65 4FP)4CDA/KCT( )1CSOT(1LATX 52 4 4FP 75 3FP)3CDA( )2CSOT(2LATX 42 85 2FP)2CDA( DNG 32 95 1FP)1CDA( CCV 22 1FP 06 12 0FP
in „AVR Butterfly, was benötigt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTSpice_XVII__Tutorial.pdf
BC849. Es sieht so aus: .MODEL BC849 NPN (IS=45.000F NF=1.010 BF=516.544 VAF=74.000 IKF=0.708 + ISE=55.668F NE=2.567 NR=1.015 BR=7.745 VAR=14.000 IKR=1.000 + ISC=1.084P NC=4.063 + RB=9.000 IRB=0.100M RBM=4.500 + RE=0.350 RC=1.445 + CJE=13.050P VJE=0.690 MJE=0.375 FC=0.750 + CJC=4.100P VJC=0.750 MJC=0.420
in „Triac selbsterhaltend triggern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTSpice_XVII__Tutorial_korr.pdf
BC849. Es sieht so aus: .MODEL BC849 NPN (IS=45.000F NF=1.010 BF=516.544 VAF=74.000 IKF=0.708 + ISE=55.668F NE=2.567 NR=1.015 BR=7.745 VAR=14.000 IKR=1.000 + ISC=1.084P NC=4.063 + RB=9.000 IRB=0.100M RBM=4.500 + RE=0.350 RC=1.445 + CJE=13.050P VJE=0.690 MJE=0.375 FC=0.750 + CJC=4.100P VJC=0.750 MJC=0.420
in „Simulation LT Spice“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
EMS_Adapter.xml
Qeg1cYPTM+eex7xUmLvjiIhfCmB9Gw/tzuXFFh3u5nSy50hjdGnZmbsY8YN763/Y0PEut4nRh8pZKy6fXSS3T2yvSTPWWd96ioB55ItFnppOvUjIvf9TdhwO/bbsyrtH9TIteUdnbpuU2mjgNeNeLJY2sn17qXrJoKHuTJRWTpjsP3RPi4Kur867R5Dad0yEZGHGr58/dT9fJ8sofMxU28UNufs4DH3Yh+ed2AH4ANV2kPY1H1lbB5xh5HJ7wZjFGjHPAW7vpclQAvMV7CI61vx44RXlL32L1iF7uk4lTMtR0DiueSXVeJWZXtVaprrJN
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Datei
EMS_Adapter.xml
Qeg1cYPTM+eex7xUmLvjiIhfCmB9Gw/tzuXFFh3u5nSy50hjdGnZmbsY8YN763/Y0PEut4nRh8pZKy6fXSS3T2yvSTPWWd96ioB55ItFnppOvUjIvf9TdhwO/bbsyrtH9TIteUdnbpuU2mjgNeNeLJY2sn17qXrJoKHuTJRWTpjsP3RPi4Kur867R5Dad0yEZGHGr58/dT9fJ8sofMxU28UNufs4DH3Yh+ed2AH4ANV2kPY1H1lbB5xh5HJ7wZjFGjHPAW7vpclQAvMV7CI61vx44RXlL32L1iF7uk4lTMtR0DiueSXVeJWZXtVaprrJN
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PDF
de10-nano_a0.pdf
4p 2 Y3 HDMI_TX_DE 6.3V S0 7 R54 18.2 HPS_CLK1_25 21 DNI CLK_I2C_SDA 19 Y4 Default: 25MHz S1/SDA 8 R55 18.2 HPS_CLK2_25 CLK_I2C_SCL Y5 Default: 25MHz 18 S2/SCL Y6 12 R56 18.2 FPGA_CLK1_50 Default: 50MHz R174 4.7K 4 Vctrl VCC3P3 DNI D D D Y7 11 R57 18.2 FPGA_CLK2_50 Default: 50MHz R175 4.7K N N N DNI G
in „Low Cost Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Philips-Technical-Application-Guide-Fluorescent.pdf
voltage,see Fig.82. (1.5 mW per HF-R ballast). The length and the diameter of the control cabling must BZX55C3V9 + - be dimensioned such that the voltage drop over this cabling is less than 0.5 volt. + - The relationship between the lamp power and the LPS to N + 7 ballasts control voltage is shown in Fig
in „EVG 5m von Leuchtstofflampe entfernt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN255_I2C__SMBus_REPEATERS_HUBS_AND_EXPANDERS.pdf
0.52 V. The output voltage at even 10 mA is less than 0.6 V. - The maximum Ron for the PCA9544 is 55 Ω. Assuming 135 µA from the 20 kΩ resistor, the voltage drop across the PCA9544 should be less than 0.01 V. Even at 55 Ω Ron, which is the maximum limit, to get a 0.2 V drop across the PCA9544 would
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN255.pdf
0.52 V. The output voltage at even 10 mA is less than 0.6 V. - The maximum Ron for the PCA9544 is 55 Ω. Assuming 135 µA from the 20 kΩ resistor, the voltage drop across the PCA9544 should be less than 0.01 V. Even at 55 Ω Ron, which is the maximum limit, to get a 0.2 V drop across the PCA9544 would
in „50 X LM75 an ATMEGA16?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPS9540_KM_G_011017.pdf
30 84 SEG 20 P6.3 53 K7 +5V 12 6 SEG23 31 83 SEG 21 54 D/A-Wand el X0 14 - SEG24 32 82 SEG 22 P7.0 55 13 XO I/ A X1 15 + 7 -IOLL SEG25 33 81 SEG 23 P7.1 56 I 30 6 X2 11 R338 B SEG26 34 80 SEG 24 P7.2 57 7 k D X3 1k 5 + SEG27 35 79 SEG 25 P7.3 1 CLK V c 8 3 2 S 1 SM D TLC272 36 SEG 26 58 R AGN D Y 0 A
in „*Netzteil die ZWEITE*“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Marantz_PM7000PM8000_Service.pdf
+31 - 40 - 2732241 PHONE : 0800 - 123123Discagem Direta Gratuita) FAX : +31 - 40 - 2735578 FAX : +55 11 534. 8988 FAX : 630 - 307 - 2687 AMERICAS CANADA LENBROOK INDUSTRIES LIMITED SUPERSCOPE TECHNOLOGIES, INC. MARANTZ PROFESSIONAL PRODUCTS 633 GRANITE COURT, 2640 WHITE OAK CIRCLE, SUITE A PICKERING
in „Marantz Verstärker defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
E3634ser.pdf
rcsndlS.5rsltsvrgS upgtsvrgmShlshSs5v.S,rcsndlScl,lcmSngwStcln5hSs8lSr,l5,rcsndlStrgwvsvrg1 3 vps5tD55sgiou5ristikrgoys4SSSbgniclhSr5SwvhniclhSs8lSr,l5tp55lgsS.5rsltsvrgS upgtsvrgmShlshSs5v.Stp55lgsScl,lcmSngwStcln5hSs8lSr,l5tp55lgsStrgwvsvrg1 7 mklucn4ock6kioys4SSe8rfhS,rcsndlSngwStp55lgsScvyvsS,ncplhSrgSs8lSwvh.cnkSngwS
in „0-30V 25A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BBK-29LEM-5093T2C_MSD308C-1.pdf
AGND PGND 470pF/400VAC-X1Y1 3 O HV GND O 3 8 RP14 CP13 +5V_STANDBY HVV 5V 1nF50V O 47R/1206 +5V1 5V 6 BZX84C27(27V) CP11 CP12 1 LP2 ZP2 0.1uF50V RP13 RP15 FB Φ3.5 4.7nF400V O CP15 68K/1W 10 47R/1206 GND 9 0.1uF50V CP16 CP14 470uF25V 4 9 1000uF10V M OS GNDC AGND DP9 SS56 DP10 AGND AGND DP11 SS56 RL207 UP1
in „Datenblatt zu MSH9010-lf gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pm2519ocr.pdf
4822 130 30613, 9203 Bawe2 48213030613 v9301 BC557B 4822 130 44568 ve4aor D140 48213040824 va94o3 BZX79-C3V9 48213031981 9 5 0 1 C 3 6 9 5322 130 44593 9 5 0 2 BAWe2 4822 130 30613 v9504 BAWe2-C24 48213030613 9505 BAWe2 48213030613 9507 BAX12A 53213034605 6.2.3.Capacitors 9 1 0 1 1000UF — — 1 0 # 5
in „Pjilips PM2519“ · Markt ·
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PDF
VHF-COMM.1984.2--b.pdf
than 0.1 V up to collector currents of switching diodes apprcx. 250 mAo 4 pes. BZ 102-2V1 (TFK), or BZX 751C2V1 (Phi Due to the linear increase or decrease of the lips) stabilizer-diodes. Instal so Ihat the mar voltage at the output of the integrators aner actuating the transmit-receive button, the four
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PDF
VHF-COMM.1984.2.pdf
than 0.1 V up to collector currents of switching diodes apprcx. 250 mAo 4 pes. BZ 102-2V1 (TFK), or BZX 751C2V1 (Phi Due to the linear increase or decrease of the lips) stabilizer-diodes. Instal so Ihat the mar voltage at the output of the integrators aner actuating the transmit-receive button, the four
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PDF
pm2534ocr.pdf
i i r ov bccn E = External Start (ORefer to specification 9.4 O = Zero Signal "EXINT-" 6 — _ =100p55e457 6 - 1 2 B u i l t -tests The ROM, RAM and display of the PM2534 and PM2535 can be tested by the standard software of the instrument. These tests only indicate a failure (ERROR on display); they do
in „Pjilips PM2519“ · Markt ·