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Apollo 16 Hardware Manual.pdf - Universal Audio

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METER<br />

METER<br />

METER<br />

HOST<br />

CLOCK<br />

INT<br />

EXT<br />

METER<br />

IN<br />

OUT<br />

RATE<br />

44.1<br />

48<br />

88.2<br />

96<br />

176.4<br />

192<br />

HOST RATE<br />

CLOCK 44.1<br />

INT 48<br />

EXT 88.2<br />

METER 96<br />

IN 176.4<br />

OUT 192<br />

HOST RATE<br />

CLOCK 44.1<br />

INT 48<br />

EXT 88.2<br />

METER 96<br />

IN 176.4<br />

OUT 192<br />

1 2 3 4 5 6 7 8<br />

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9 10 11 12 13 14 15 <strong>16</strong><br />

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9 10 11 12 13 14 15 <strong>16</strong><br />

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9 10 11 12 13 14 15 <strong>16</strong><br />

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HOST RATE<br />

CLOCK 44.1<br />

INT 48<br />

EXT 88.2<br />

METER 96<br />

IN 176.4<br />

OUT 192<br />

HOST<br />

CLOCK<br />

INT<br />

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METER<br />

IN<br />

OUT<br />

RATE<br />

44.1<br />

48<br />

88.2<br />

96<br />

176.4<br />

192<br />

HOST RATE<br />

CLOCK 44.1<br />

INT 48<br />

EXT 88.2<br />

METER 96<br />

IN 176.4<br />

OUT 192<br />

METER<br />

1 2 3 4 5 6 7 8<br />

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CLOCK 44.1<br />

INT 48<br />

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METER 96<br />

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METER<br />

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HOST RATE<br />

CLOCK 44.1<br />

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EXT 88.2<br />

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HOST RATE<br />

CLOCK 44.1<br />

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OUT 192<br />

HOST RATE<br />

CLOCK 44.1<br />

INT 48<br />

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IN 176.4<br />

OUT 192<br />

9 10 11 12 13 14 15 <strong>16</strong><br />

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HOST RATE<br />

CLOCK 44.1<br />

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OUT 192<br />

9 10 11 12 13 14 15 <strong>16</strong><br />

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METER I/O<br />

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1 2 3 4 5 6 7 8<br />

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HOST RATE<br />

CLOCK 44.1<br />

METER<br />

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9 10 11 12 13 14 15 <strong>16</strong><br />

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HOST RATE<br />

CLOCK 44.1<br />

INT 48<br />

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METER 96<br />

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MONITOR<br />

9 10 11 12 13 14 15 <strong>16</strong><br />

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MONITOR<br />

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POWER<br />

METER I/O<br />

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POWER<br />

METER I/O<br />

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MONITOR<br />

POWER<br />

METER I/O<br />

OFF<br />

MONITOR<br />

MONITOR<br />

1 2<br />

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POWER<br />

METER I/O<br />

OFF<br />

9 10 11 12 13 14 15 <strong>16</strong><br />

C<br />

0<br />

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MONITOR<br />

POWER<br />

METER I/O<br />

OFF<br />

METER I/O<br />

POWER<br />

OFF<br />

9 10 11 12 13 14 15 <strong>16</strong><br />

C<br />

0<br />

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-21<br />

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MONITOR<br />

POWER<br />

METER I/O<br />

OFF<br />

POWER<br />

METER I/O<br />

OFF<br />

POWER<br />

METER I/O<br />

OFF<br />

1 2<br />

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0<br />

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MONITOR<br />

MONITOR<br />

POWER<br />

METER I/O<br />

OFF<br />

POWER<br />

METER I/O<br />

OFF<br />

Computer<br />

Computer<br />

FW Repeater<br />

FW Repeater<br />

Computer<br />

FireWire bus connections via repeater<br />

FireWire bus connections via daisy chain<br />

FW Repeater<br />

Hard Drive<br />

<strong>Apollo</strong> <strong>16</strong><br />

<strong>Apollo</strong> <strong>16</strong><br />

<strong>Apollo</strong> <strong>16</strong><br />

Hard Drive<br />

FireWire bus connections<br />

FireWire<br />

via<br />

bus<br />

repeater<br />

connections<br />

and daisy<br />

via repeater<br />

chain in a “tree chain”<br />

Hard Drive<br />

Hard Drive<br />

Hard Drive<br />

Hard Drive<br />

FireWire bus connections via repeater<br />

Computer<br />

Mixing FireWire Speeds FW Repeater<br />

<strong>Apollo</strong> <strong>16</strong><br />

Hard Drive<br />

Although<br />

FW400<br />

FireWire 400 and FireWire 800 devices can be connected to the same FireWire bus via a repeater or<br />

daisy Computer chain, special precautions must be observed to maximize bandwidth in these situations.<br />

FW Repeater<br />

FireWire 800 devices on a FireWire 400 bus<br />

FW800<br />

<strong>Apollo</strong> <strong>16</strong><br />

Hard<br />

FW800<br />

Drive<br />

This FireWire bus runs @ 400 MB because host computer is FW400<br />

FireWire 800 devices are backwards-compatible and can be connected to a FireWire 400 bus using a 9-pin to<br />

FireWire bus connections via repeater and daisy chain in a “tree chain”<br />

6-pin FireWire cable or adapter. However in this scenario any 800 megabit-capable devices on the Hard bus Drive (including<br />

<strong>Apollo</strong> <strong>16</strong>) will operate at a maximum of 400 megabits because FireWire bandwidth cannot exceed the<br />

maximum bus speed of the host computer.<br />

FireWire bus connections via repeater and daisy chain in a “tree chain”<br />

FW400<br />

FW bus @ 400 MB<br />

FW800<br />

FW800<br />

FW400 This FireWire FW400bus runs @ 400 MB because FW800 host computer is FW400<br />

This FireWire bus runs @ 400 MB because 1st device in chain is FW400<br />

FW800<br />

FireWire 400 devices This on FireWire a FireWire bus runs 800 @ bus 400 MB because host computer is FW400<br />

FW800<br />

FW800<br />

FW800<br />

FireWire 400 devices can be connected to a FireWire 800 bus using a 6-pin to 9-pin FireWire cable or adapter.<br />

However, if the FireWire 800 devices are located after the FireWire 400 devices in the daisy chain, all FireWire<br />

devices will operate at a maximum of FW 400 bus megabits @ FW 800 bus because MB@ 400 the MB FireWire 400 devices FW force bus @ all 400 subsequent MB<br />

devices FW800 to run at FireWire 400 speeds.<br />

FW800<br />

FW400 FW800 bus @ 400 FW800 MB FW800 FW800 FW400<br />

FW800 This FireWire This FireWire bus runs bus @ runs 400 MB @ both because 800 MB 1st and device 400 in MB chain because is FW400 the<br />

FW400 device is located AFTER the FW800 devices in the chain<br />

FW400<br />

FW800<br />

FW800<br />

This FireWire bus runs @ 400 MB because 1st device in chain is FW400<br />

FW bus @ 800 MB<br />

FW bus @ 400 MB<br />

FW800<br />

FW800<br />

<strong>Apollo</strong> <strong>16</strong> <strong>Hardware</strong> <strong>Manual</strong><br />

FW bus FW800 @ MB<br />

FW800 bus @ 400 FW400 MB<br />

This FireWire bus runs @ both 800 MB and 400 MB because the<br />

FW400 device is located AFTER the FW800 devices in the chain<br />

FW800 FW800 FW400<br />

This FireWire bus runs @ both 800 MB and 400 MB because the<br />

FW400 device is located AFTER the FW800 devices in the chain<br />

25<br />

FireWire Basics

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