Peavey ICA 800V manual

1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64

Ir para a página of

Bom manual de uso

As regras impõem ao revendedor a obrigação de fornecer ao comprador o manual com o produto Peavey ICA 800V. A falta de manual ou informações incorretas fornecidas ao consumidor são a base de uma queixa por não conformidade do produto com o contrato. De acordo com a lei, pode anexar o manual em uma outra forma de que em papel, o que é frequentemente utilizado, anexando uma forma gráfica ou manual electrónicoPeavey ICA 800V vídeos instrutivos para os usuários. A condição é uma forma legível e compreensível.

O que é a instrução?

A palavra vem do latim "Instructio" ou instruir. Portanto, no manual Peavey ICA 800V você pode encontrar uma descrição das fases do processo. O objetivo do manual é instruir, facilitar o arranque, a utilização do equipamento ou a execução de determinadas tarefas. O manual é uma coleção de informações sobre o objeto / serviço, um guia.

Infelizmente, pequenos usuários tomam o tempo para ler o manual Peavey ICA 800V, e um bom manual não só permite conhecer uma série de funcionalidades adicionais do dispositivo, mas evita a formação da maioria das falhas.

Então, o que deve conter o manual perfeito?

Primeiro, o manual Peavey ICA 800V deve conte:
- dados técnicos do dispositivo Peavey ICA 800V
- nome do fabricante e ano de fabricação do dispositivo Peavey ICA 800V
- instruções de utilização, regulação e manutenção do dispositivo Peavey ICA 800V
- sinais de segurança e certificados que comprovam a conformidade com as normas pertinentes

Por que você não ler manuais?

Normalmente, isso é devido à falta de tempo e à certeza quanto à funcionalidade específica do dispositivo adquirido. Infelizmente, a mesma ligação e o arranque Peavey ICA 800V não são suficientes. O manual contém uma série de orientações sobre funcionalidades específicas, a segurança, os métodos de manutenção (mesmo sobre produtos que devem ser usados), possíveis defeitos Peavey ICA 800V e formas de resolver problemas comuns durante o uso. No final, no manual podemos encontrar as coordenadas do serviço Peavey na ausência da eficácia das soluções propostas. Atualmente, muito apreciados são manuais na forma de animações interessantes e vídeos de instrução que de uma forma melhor do que o o folheto falam ao usuário. Este tipo de manual é a chance que o usuário percorrer todo o vídeo instrutivo, sem ignorar especificações e descrições técnicas complicadas Peavey ICA 800V, como para a versão papel.

Por que ler manuais?

Primeiro de tudo, contem a resposta sobre a construção, as possibilidades do dispositivo Peavey ICA 800V, uso dos acessórios individuais e uma gama de informações para desfrutar plenamente todos os recursos e facilidades.

Após a compra bem sucedida de um equipamento / dispositivo, é bom ter um momento para se familiarizar com cada parte do manual Peavey ICA 800V. Atualmente, são cuidadosamente preparados e traduzidos para sejam não só compreensíveis para os usuários, mas para cumprir a sua função básica de informação

Índice do manual

  • Página 1

    ICA ™ SERIES INDUSTRIAL CONTRACTOR AMPLIFIERS OPERA TING GUIDE[...]

  • Página 2

    2 Intended to alert the user to the presence of uninsulated “dangerous voltage” within the product’s enclosure that may be of sufficient magnitude to constitute a risk of electric shock to persons. Intended to alert the user of the presence of important operating and maintenance (servicing) instructions in the literature accompanying the prod[...]

  • Página 3

    T ABLE OF CONTENTS Page INTRODUCTION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4 UNP ACKING . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 4 INST ALLA TION AND MOUNTING . . . . . . . . . . . . . . . . . . . . . . . . . . . . [...]

  • Página 4

    INTRODUCTION Congratulations on your purchase of an Architectural Acoustics ICA ™ (Industrial Contractor Amplifier) from Peavey Electronics. Please read this manual carefully , especially the IMPORT ANT SAFETY INSTRUCTIONS on page 18. It contains information vital to safe operation of the power amplifier . Also, please fill out and return the enc[...]

  • Página 5

    FRONT P ANEL FEA TURES 1. RACK MOUNTING EARS These mounting holes are provided on each front mounting ear . 2. 3-POSITION AC POWER SWITCH A 3-position switch is on the front panel. Sequential remote turn-on capability is a standard feature. With the switch pushed towards the outside position, the amplifier is ON. The middle position is OFF , and th[...]

  • Página 6

    BACK P ANEL FEA TURES 8. INPUT SECTION The ICA ™ Series comes standard with plugable input connectors and individual channel rotary attenuators. Connections at the input connector permit the audio signal ground to be connected or lifted from the chassis ground. 9. OUTPUT BARRIER STRIP A barrier strip is provided for connection of loudspeakers wit[...]

  • Página 7

    connecting the ENABLE OUT to the ENABLE IN of the next amplifier . A mating connector is shipped with the amplifier . 13. F AN GRILL A continuously variable-speed DC fan supplies cool air into the amplifier . Do not block this intake! The fan operates only when the amplifier heat sinks require cooling. OPERA TION AC MAINS CIRCUIT SIZE REQUIREMENTS [...]

  • Página 8

    SIGNAL MODE CONFIGURA TION ICA ™ Series amplifiers are configured for Stereo (2-channel), Bridged Mode, or Parallel Mode operation at the input connector . T o send the same signal to both channels (Parallel Mode), connect the input signal to CHANNEL A via the input connector . Run jumpers from the positive and negative terminals of the CHANNEL A[...]

  • Página 9

    BRIDGED MODE DIAGRAM SPEAKER OUTPUT CONNECTIONS Speakers are connected using the output barrier strip connectors. Spade lugs, ring tongues or bare wire may be connected to the output barrier strip elements. The barrier strip can accommodate up to two 10-guage wires per terminal. Make sure the amplifier is turned off before you change any output con[...]

  • Página 10

    F ADE-IN PROTECTION This feature operates every time the amplifier is turned on, or after a protect condition. During turn on, the amplifier goes into protect mode and leaves the speaker load disconnected until the amplifier determines that the operating status is normal. The Fade-In circuit attenuates the signal during the initial turn on or prote[...]

  • Página 11

    WIRE GAUGE CHART Stranded Power Power Power Cable Wire Loss Loss Loss Length Gauge Into Into Into (Feet) (A WG) 8 ohms 4 ohms 2 ohms ______________________________________________________ 5' 18 AWG .79% 1.58% 3.16% 16 .5 1.0 2.0 14 .31 .62 1.24 12 .20 .40 .80 10 .125 .25 .50 10' 18 AWG 1.58% 3.16% 6.32% 16 1.0 2.0 4.00 14 .62 1.25 2.50 12[...]

  • Página 12

    12 Rated Power (2 X 4 ohms): 300 watts @ 20 Hz - 20 kHz, both channels driven at < 0.1% THD Rated Power (2 x 8 ohms): 200 watts @ 20 Hz - 20 kHz at < 0.05% THD Rated Power (1 x 4 ohms): 360 watts @ 1 kHz at < 0.015% THD Rated Power (1 x 8 ohms): 275 watts @ 1 kHz at < 0.005% THD Minimum Load Impedance: 4 ohms Maximum RMS V oltage Swing:[...]

  • Página 13

    13 Rated Power (2 X 4 ohms): 600 watts @ 20 Hz - 20 kHz, both channels driven at < 0.1% THD Rated Power (2 X 8 ohms): 400 watts @ 20 Hz - 20 kHz, both channels driven at < 0.05% THD Rated Power (1 X 4 ohms): 700 watts @ 1 kHz at < 0.008% THD Rated Power (1 X 8 ohms): 425 watts @ 1 kHz at < 0.005% THD Minimum Load Impedance: 4 ohms Maxim[...]

  • Página 14

    14 Rated Power (2 x 4 ohms): 1200 watts @ 20 Hz - 20 kHz both channels driven at < 0.1% THD Rated Power (2 x 8 ohms): 800 watts @ 20 Hz – 20 kHz both channels driven at < 0.08% THD Rated Power (1 x 4 ohms): 1325 watts @ 1 kHz at < 0.08% THD Rated Power (1 x 8 ohms): 830 watts @ 1 kHz at < 0.08% THD T opology: Class H Minimum Load Impe[...]

  • Página 15

    15 Rated Power (two channels): 200 watts @ 20 Hz - 20 kHz both channels driven at <0.1% THD Rated Power (one channel): 215 watts @ 1 kHz at <0.0075% THD Minimum Load Impedance: ICA 400V -70: 25 ohms ICA 400V -100: 50 ohms Maximum RMS V oltage Swing: ICA 400V -70: 86 volts ICA 400V -100: 1 16 volts Frequency Response: 10 Hz - 25 kHz; +0, -.3 d[...]

  • Página 16

    16 Rated Power (two channels): 400 watts @ 20 Hz - 20 kHz both channels driven at < 0.1% THD Rated Power (one channel): 415 watts @ 1 kHz at < 0.01% THD Minimum Load Impedance: ICA 800V -70: 12.5 ohms ICA 800V -100: 25 ohms Maximum RMS V oltage Swing: ICA 800V -70: 85 volts ICA 800V -100: 1 10 volts Frequency Response: 10 Hz - 25 kHz; +0, -.3[...]

  • Página 17

    Rated Power (2 x 4 ohms): 1200 watts @ 20 Hz - 20 kHz both channels driven at < 0.1% THD Rated Power (2 x 8 ohms): 800 watts @ 20 Hz – 20 kHz both channels driven at < 0.08% THD Rated Power (1 x 4 ohms): 1325 watts @ 1 kHz at < 0.08% THD Rated Power (1 x 8 ohms): 830 watts @ 1 kHz at < 0.08% THD T opology: Class H Minimum Load Impedan[...]

  • Página 18

    INTRODUCCIÓN Felicidades en su compra de un amplificador de Acústica Arquitectónica ICA ™ (Amplificador de Contratistas Acústicos por sus siglas en Inglés) de Peavey Electronics. Por favor lea este manual con atención, especialmente la seccione de SEGURIDAD en la página 18. Esta contiene información vital para la operación segura del amp[...]

  • Página 19

    4. Lleve a cabo las conexiones de poder , cubriendo las necesidades del amplificador . V ea las secciones CONECTOR IEC y Requisitos de los circuitos de CA para más información. 5. Gire el interruptor de poder (AC POWER) de tres posiciones a la posición ON y suba los atenuadores de ganancia (LEVEL) en el panel trasero a los niveles deseados. CARA[...]

  • Página 20

    CARACTERÍSTICAS DEL P ANEL TRASERO 8. SECCIÓN DE ENTRADA La serie ICA cuenta con conectores de entrada y atenuadores rotativos individuales para cada canal como equipamiento estándar . Las conexiones en los conectores de entrada permiten que la tierra de la señal de audio sea conectada o levantada de la tierra del chasis. 9. CONECTORES DE SALID[...]

  • Página 21

    OPERACIÓN REQUISITOS DE T AMAÑO DE CIRCUITO DE CA Los requisitos de poder para los amplificadores ICA ™ han sido calculados en estado “Idle”, a 1/8 de poder (condiciones de música ‘típicas’), 1/3 de poder y poder máximo. El máximo de poder requerido es limitado por el interruptor (breaker) del circuito. Consulte las fichas de especi[...]

  • Página 22

    Ahora los dos canales comparten la señal del CANAL A, pero operarán independientemente. Las bocinas son conectadas en modo estéreo. El Modo “Puenteado” (Bridged) convierte el amplificador en una unidad de un solo canal con una capacidad de poder igual a la suma de los dos canales, y con una carga del doble que la de un solo canal. En Modo Pu[...]

  • Página 23

    DIAGRAMA DE MODO PUENTEADO CONEXIONES DE SALIDA DE BOCINAS Las bocinas son conectadas usando la barra de conexiones de salida. Se puede usar diferentes tipos de cable para hacer estas conexiones. La barra de conexiones proporciona conexiones de hasta dos cables de medida 10 por terminal. Asegúrese que el amplificador esta apagado (posición off) a[...]

  • Página 24

    PROTECCIÓN DE F ADE-IN Esta función se activa cada vez que el amplificador es encendido, o después de una condición de protección. Al encenderlo, el amplificador automáticamente se encuentra en modo de protección y mantiene las cargas a las bocinas desconectadas hasta que el amplificador determina que el modo de operación es normal. La prot[...]

  • Página 25

    25 FICHA DE MEDIDAS DE CABLES Medida Poder Poder Poder Longitud de cables Perdido Perdido Perdido De cable Aislados a a a (pies) (A WG) 8 ohmios 4 ohmios 2 ohmios ______________________________________________________ 5' 18 AWG .79% 1.58% 3.16% 16 .5 1.0 2.0 14 .31 .62 1.24 12 .20 .40 .80 10 .125 .25 .50 10' 18 AWG 1.58% 3.16% 6.32% 16 1.[...]

  • Página 26

    Poder Medido (2 X 4 ohmios): 300 watts @ 20 Hz - 20 kHz, Los dos canales a < 0.1% THD (Distorsión T otal Armónica) Poder Medido (2 x 8 ohmios): 200 watts @ 20 Hz - 20 kHz a < 0.05% THD Poder Medido (1 x 4 ohmios): 360 watts @ 1 kHz at < 0.015% THD Poder Medido (1 x 8 ohmios): 275 watts @ 1 kHz at < 0.005% THD Impedancia de Carga Míni[...]

  • Página 27

    Poder Medido (2 X 4 ohmios): 600 watts @ 20 Hz - 20 kHz, Los dos canales a < 0.1% THD (Distorsión T otal Armónica) Poder Medido (2 x 8 ohmios): 400 watts @ 20 Hz - 20 kHz a < 0.05% THD Poder Medido (1 x 4 ohmios): 70 watts @ 1 kHz at < 0.015% THD Poder Medido (1 x 8 ohmios): 425 watts @ 1 kHz at < 0.005% THD Impedancia de Carga Mínim[...]

  • Página 28

    Poder Medido (2 X 4 ohmios): 1200 Watts @ 20 Hz - 20 kHz, Los dos canales a < 0.1% THD (Distorsión T otal Armónica) Poder Medido (2 x 8 ohmios): 800 Watts @ 20 Hz - 20 kHz a < 0.08% THD Poder Medido (1 x 4 ohmios): 1325 Watts @ 1 kHz at < 0.08% THD Poder Medido (1 x 8 ohmios): 830 Watts @ 1 kHz at < 0.08% THD T opología: Clase H Impe[...]

  • Página 29

    Poder Medido (dos canales): 200 watts @ 20 Hz - 20 kHz, Los dos canales a < 0.1% THD (Distorsión T otal Armónica) Poder Medido (un canal): 215 watts @ 1 kHz a < 0.0075% THD Impedancia de Carga Mínima: ICA 400V -70: 25 Ohmios ICA 400V -100: 50 Ohmios Máximo swing de voltaje RMS: ICA 400V -70: 86 voltios ICA 400V -100: 1 16 voltios Respuest[...]

  • Página 30

    Poder Medido (dos canales): 400 W atts @ 20 Hz - 20 kHz, Los dos canales a < 0.1% THD (Distorsión T otal Armónica) Poder Medido (un canal): 415 W atts @ 1 kHz a < 0.01% THD Impedancia de Carga Mínima: ICA 800V -70: 12.5 ohmios ICA 800V -100: 25 ohmios Máximo swing de voltaje RMS: ICA 800V -70: 85 voltios ICA 800V -100: 1 10 voltios Respue[...]

  • Página 31

    Poder Medido (dos canales): 1200 watts @ 20 Hz - 20 kHz, Los dos canales a < 0.1% THD (Distorsión T otal Armónica) Poder Medido (un canal): Esperando Resultados T opología: Clase H Impedancia de Carga Mínima: @ 70.7 volts 6.3 Ohms Máximo swing de voltaje RMS: 95 voltios Respuesta de Frecuencias: 10 Hz - 25 kHz; +0, -3 dB a 1 W att Banda de [...]

  • Página 32

    32 FRANÇAIS INTRODUCTION Félicitations d’avoir choisi un Architectural Acoustics ICA ™ (Industrial Contractor Amplifier) de Peavey Electronics. V euillez lire attentivement ce manuel, surtout les CONSIGNES DE SECURITE à la page 18, qui contiennent des informations essentielles pour le bon fonctionnement de votre amplificateur . De plus, veui[...]

  • Página 33

    P ANNEAU A V ANT 1. P A TTES DE FIXA TION RACK Chaque unité possède un panneau avant au format Rack. 2. INTERRUPTEUR 3-POSITIONS D’ALIMENT A TION La “Mise en Route-Arrêt séquentiel contrôlable à distance” est disponible sur tous les modèles. Le sélecteur est sur ON en position extérieure (droite), sur OFF dans la position intermédia[...]

  • Página 34

    P ANNEAU ARRIERE 8. ENTREES Les Amplificateurs ICA ™ sont équipés d’un bloc d’entrée permettant d’y insérer une prise 4- connecteurs Phenix par canal. Il vous est possible de relier la masse du signal audio à celle de votre unité grâce à ces connections. 9. SORTIES Ce bloc est prévu pour recevoir les connexions des enceintes. Il es[...]

  • Página 35

    OPERA TION ALIMENT A TION ELECTRIQUE La consommation électrique des unités ICA ™ est noté: “idle”(en veille), 1/8 puissance maximale (condition typique musicale), 1/3 puissance maximale, et puissance maximale. Cette dernière est limitée par la présence d’un disjoncteur . Consultez la feuille de spécificité pour connaître les besoin[...]

  • Página 36

    des charges minimales de chaque canal. Chaque canal agit en inversion par rapport à l’autre, en connectant la pin (-) du canal A à la pin (+) du canal B et la pin (+) du canal A à la pin (-) du canal B. Le signal d’entrée est connecté normalement aux pin (+) et (-) du canal A. Les 2 contrôles de gain agiront sur la puissance du signal, et[...]

  • Página 37

    BRIDGED MODE DIAGRAM CONNEXIONS HAUTS-P ARLEUR Les hauts-parleurs sont à connecter au bloc de sortie (Output). V ous pouvez y connecter des cosses à fourches ou des fils dénudés, avec un maximum de 2 câbles de 6mm 2 par teminal. Assurez-vous que votre unité est déconnectée de l’alimentation avant de toucher les connecteurs de sortie. Cons[...]

  • Página 38

    PROTECTION DE MISE EN ROUTE A chaque fois que l’unité est mise sous tension, ou après une restauration d’état de protection, celle-ci passera en mode protégé et laisse les hauts-parleurs déconnectés jusqu’à vérification des systèmes de protection. Une fois la vérification terminée, l’unité fermera le relai du signal, mais en at[...]

  • Página 39

    WIRE GAUGE CHART Stranded Power Power Power Cable Wire Loss Loss Loss Length Gauge Into Into Into (Feet) (mm 2 ) 8 ohms 4 ohms 2 o ______________________________________________________ 5' 1 .79% 1.58% 3.16% 1,5 .5 1.0 2.0 2,5 .31 .62 1.24 4 .20 .40 .80 6 .125 .25 .50 10' 1 1.58% 3.16% 6.32% 1,5 1.0 2.0 4.00 2,5 .62 1.25 2.50 4 .40 .80 1.[...]

  • Página 40

    40 Rated Power (2 X 4 ohms): 300 watts @ 20 Hz - 20 kHz, both channels driven at < 0.1% THD Rated Power (2 x 8 ohms): 200 watts @ 20 Hz - 20 kHz at < 0.05% THD Rated Power (1 x 4 ohms): 360 watts @ 1 kHz at < 0.015% THD Rated Power (1 x 8 ohms): 275 watts @ 1 kHz at < 0.005% THD Minimum Load Impedance: 4 ohms Maximum RMS V oltage Swing:[...]

  • Página 41

    41 Rated Power (2 X 4 ohms): 600 watts @ 20 Hz - 20 kHz, both channels driven at < 0.1% THD Rated Power (2 X 8 ohms): 400 watts @ 20 Hz - 20 kHz, both channels driven at < 0.05% THD Rated Power (1 X 4 ohms): 70 watts @ 1 kHz at < 0.008% THD Rated Power (1 X 8 ohms): 425 watts @ 1 kHz at < 0.005% THD Minimum Load Impedance: 4 ohms Maximu[...]

  • Página 42

    42 Rated Power (2 x 4 ohms): 1200 watts @ 20 Hz - 20 kHz both channels driven at < 0.1% THD Rated Power (2 x 8 ohms): 800 watts @ 20 Hz – 20 kHz both channels driven at < 0.08% THD Rated Power (1 x 4 ohms): 1325 watts @ 1 kHz at < 0.08% THD Rated Power (1 x 8 ohms): 830 watts @ 1 kHz at < 0.08% THD T opology: Class H Minimum Load Impe[...]

  • Página 43

    43 Rated Power (two channels): 200 watts @ 20 Hz - 20 kHz both channels driven at <0.1% THD Rated Power (one channel): 215 watts @ 1 kHz at <0.0075% THD Minimum Load Impedance: ICA 400V -70: 25 ohms ICA 400V -100: 50 ohms Maximum RMS V oltage Swing: ICA 400V -70: 86 volts ICA 400V -100: 1 16 volts Frequency Response: 10 Hz - 25 kHz; +0, -.3 d[...]

  • Página 44

    44 Rated Power (two channels): 400 watts @ 20 Hz - 20 kHz both channels driven at < 0.1% THD Rated Power (one channel): 415 watts @ 1 kHz at < 0.01% THD Minimum Load Impedance: ICA 800V -70: 12.5 ohms ICA 800V -100: 25 ohms Maximum RMS V oltage Swing: ICA 800V -70: 85 volts ICA 800V -100: 1 10 volts Frequency Response: 10 Hz - 25 kHz; +0, -.3[...]

  • Página 45

    45 Rated Power (two channels): 1200 watts @ 20 Hz to 20 kHz both channels driven at < 0.1% THD Rated Power (one channel): Awaiting test results T opology: Class H Minimum Load Impedance: @ 70.7 volts 6.3 ohms Maximum RMS V oltage Swing: 95 volts Frequency Response: 10 Hz – 25 kHz; +0, -.3 dB at 1 watt Power Bandwidth: 10 Hz – 50 kHz; +0, -3 [...]

  • Página 46

    EINLEITUNG Wir freuen uns, dass Sie sich für den Architectural Acoustics ICA (Industrial Contractor Amplifier) von Peavey Electronics entschieden haben. Bitte lesen Sie vor Inbetriebnahme des Geräts unbedingt die Bedienungsanleitung, insbesondere die SICHERHEITSHINWEISE auf der vorderen Umschlaginnenseite. Sie enthalten wichtige Hinweise zum Betr[...]

  • Página 47

    3. Schließen Sie die Lautsprecher an die Ausgangs-Schraubklemmleiste an und beachten Sie dabei die unterschiedlichen Betriebsarten stereo, parallel und bridged mono. Weitere Informationen hierzu finden Sie im Kapitel LAUTSPRECHERANSCHLUSS. 4. Schließen Sie den V erstärker unter Beachtung der korrekten Spannung an das Stromnetz an. Weitere Inform[...]

  • Página 48

    6. LFC-LED Jeder Kanal ist mit einer LFC-(Load Fault Correction-)LED ausgestattet, die aufleuchtet, sobald der V erstärker ausgangsseitig eine nicht korrekte Last erkennt. Über die interne Schutzschaltung wird in diesem Fall sofort der Wert für die Eingangsverstärkung (Channel Gain) reduziert, so dass der V erstärker mit einem bei der jeweilig[...]

  • Página 49

    12. SEQUENTIELLE EIN/AUSSCHAL T -FUNKTION V erstärker der ICA-Serie sind serienmäßig mit einer fernsteuerbaren, sequentiellen Ein/Ausschaltfunktion ausgestattet, die durch das Schalten des Netzschalters in den ST ANDBY -Modus aktiviert wird. Wird an der rückwärtigen, 4-poligen steckbaren Reihenklemme eine Spannung von 12 - 24 V DC erkannt, sch[...]

  • Página 50

    WÄRMEENTWICKLUNG Die speziellen Kühlungsanforderungen Ihres Systems sollte der jeweils zuständige T echniker am besten beurteilen können. Die Wärmewerte für Ihr(e) V erstärkermodell(e) finden Sie in den T echnischen Daten hinten in dieser Bedienungsanleitung. EINGANGSMODUL Das Eingangsmodul ist auf symmetrische und unsymmetrische V erbindung[...]

  • Página 51

    P ARALLEL-BETRIEB BRÜCKENBETRIEB LAUTSPRECHERANSCHLUSS Der Lautsprecheranschluss erfolgt über Schraubklemmleisten, die sich für den Anschluss von offenen oder geschlossenen Kabelschuhen sowie die Aufnahme von Einzelleitern (bis zu zwei Leiter à max. 2,5883 mm pro T erminal) eignen. V ergewissern Sie sich stets, dass der V erstärker ausgeschalt[...]

  • Página 52

    CLIP-LIMITER Wird der V erstärker unter V olllast – d.h. kurz vor dem Clipping (Übersteuern) – gefahren, sorgt der integrierte Clip-Limiter für eine automatische Reduktion der Eingangsverstärkung und schützt die Lautsprecher so gegen Überlastung und das kontinuierliche Auftreten schädigender Rechteckwellen. Angezeigt wird dies durch die [...]

  • Página 53

    nächsten V erstärkers. V erstärker der ICA-Serie lassen sich parallel schalten (“durchschleifen”) und – durch V erbindung aller 24 V DC+- und COMMON-Anschlüsse miteinander – an die Steuerspannung anbinden. Beachten Sie, dass zur Initiierung des Einschaltvorgangs des ersten und sämtlicher nachfolgender V erstärker zwischen dem 24 V DC+[...]

  • Página 54

    54 WIRE GAUGE CHART Stranded Power Power Power Cable Wire Loss Loss Loss Length Gauge Into Into Into (Feet) (A WG) 8 ohms 4 ohms 2 ohms ______________________________________________________ 5' 18 AWG .79% 1.58% 3.16% 16 .5 1.0 2.0 14 .31 .62 1.24 12 .20 .40 .80 10 .125 .25 .50 10' 18 AWG 1.58% 3.16% 6.32% 16 1.0 2.0 4.00 14 .62 1.25 2.50[...]

  • Página 55

    55 Rated Power (2 X 4 ohms): 300 watts @ 20 Hz - 20 kHz, both channels driven at < 0.1% THD Rated Power (2 x 8 ohms): 200 watts @ 20 Hz - 20 kHz at < 0.05% THD Rated Power (1 x 4 ohms): 360 watts @ 1 kHz at < 0.015% THD Rated Power (1 x 8 ohms): 275 watts @ 1 kHz at < 0.005% THD Minimum Load Impedance: 4 ohms Maximum RMS V oltage Swing:[...]

  • Página 56

    56 Rated Power (2 X 4 ohms): 600 watts @ 20 Hz - 20 kHz, both channels driven at < 0.1% THD Rated Power (2 X 8 ohms): 400 watts @ 20 Hz - 20 kHz, both channels driven at < 0.05% THD Rated Power (1 X 4 ohms): 700 watts @ 1 kHz at < 0.008% THD Rated Power (1 X 8 ohms): 425 watts @ 1 kHz at < 0.005% THD Minimum Load Impedance: 4 ohms Maxim[...]

  • Página 57

    57 Due to our efforts for constant improvements, features and specifications are subject to change without notice. Rated Power (2 x 4 ohms): 1200 watts @ 20 Hz - 20 kHz both channels driven at < 0.1% THD Rated Power (2 x 8 ohms): 800 watts @ 20 Hz – 20 kHz both channels driven at < 0.08% THD Rated Power (1 x 4 ohms): 1325 watts @ 1 kHz at &[...]

  • Página 58

    58 Rated Power (two channels): 200 watts @ 20 Hz - 20 kHz both channels driven at <0.1% THD Rated Power (one channel): 215 watts @ 1 kHz at <0.0075% THD Minimum Load Impedance: ICA 400V -70: 25 ohms ICA 400V -100: 50 ohms Maximum RMS V oltage Swing: ICA 400V -70: 86 volts ICA 400V -100: 1 16 volts Frequency Response: 10 Hz - 25 kHz; +0, -.3 d[...]

  • Página 59

    59 Rated Power (two channels): 400 watts @ 20 Hz - 20 kHz both channels driven at < 0.1% THD Rated Power (one channel): 415 watts @ 1 kHz at < 0.01% THD Minimum Load Impedance: ICA 800V -70: 12.5 ohms ICA 800V -100: 25 ohms Maximum RMS V oltage Swing: ICA 800V -70: 85 volts ICA 800V -100: 1 10 volts Frequency Response: 10 Hz - 25 kHz; +0, -.3[...]

  • Página 60

    60 Rated Power (2 x 4 ohms): 1200 watts @ 20 Hz - 20 kHz both channels driven at < 0.1% THD Rated Power (2 x 8 ohms): 800 watts @ 20 Hz – 20 kHz both channels driven at < 0.08% THD Rated Power (1 x 4 ohms): 1325 watts @ 1 kHz at < 0.08% THD Rated Power (1 x 8 ohms): 830 watts @ 1 kHz at < 0.08% THD T opology: Class H Minimum Load Impe[...]

  • Página 61

    Notes: 61[...]

  • Página 62

    62 PEA VEY ELECTRONICS CORPORA TION LIMITED W ARRANTY Effective Date: July 1, 1998 What This W arranty Covers Y our Peavey Warranty covers defects in material and workmanship in Peavey products purchased and serviced in the U.S.A. and Canada. What This W arranty Does Not Cover The W arranty does not cover: (1) damage caused by accident, misuse, abu[...]

  • Página 63

    63 IMPOR T ANT SAFETY INSTRUCTIONS W ARNING: When using electric products, basic cautions should always be followed, including the following: 1. Read all safety and operating instructions before using this product. 2. All safety and operating instructions should be retained for future reference. 3. Obey all cautions in the operating instructions an[...]

  • Página 64

    80304800 Features and specifications subject to change without notice. Peavey Electronics Corporation • 71 1 A Street • Meridian • MS • 39301 (601) 483-5376 • F AX (601) 486-1678 • http://aa.peavey .com ©2001 Printed in the U.S.A. 5/01[...]