RME HDSP 9652 Руководство по эксплуатации онлайн [34/75] 776288
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User's Guide HDSP System HDSP 9652 © RME
If several digital devices are to be used simultaneously in a system, they not only have to oper-
ate with the same sample frequency but also be synchronous with each other. This is why digi-
tal systems always need a single device defined as ‘master’, which sends the same clock signal
to all the other (‘slave’) devices.
RME’s exclusive SyncCheck technology (first implemented in the Hammerfall) enables an easy
to use check and display of the current clock status. The ‘SyncCheck’ field indicates whether no
signal (‘No Lock’), a valid signal (‘Lock’) or a valid and synchronous signal (‘Sync’) is present at
each of the digital clock source inputs. The AutoSync Reference display shows the current sync
source and the measured frequency.
In practice, SyncCheck provides the user with an easy way of checking whether all digital de-
vices connected to the system are properly configured. With SyncCheck, finally anyone can
master this common source of error, previously one of the most complex issues in the digital
studio world.
An example to illustrate this: The
ADAT1 and ADAT2 inputs are
receiving signals from a digital
mixing desk that has been set to
clock mode 'Internal' or 'Master'.
An ADAT recorder is connected
to the ADAT3 input. The Ham-
merfall DSP is set to AutoSync
mode. As expected, SyncCheck
shows that the ADAT1 and
ADAT2 inputs are in sync (as
they are driven by the same
clock from the mixing desk), but
shows ‘Lock’ instead of 'Sync' for the ADAT3 input. Because the ADAT recorder is not receiving
any signals from HDSP or from the mixer, it will generate its own clock at a rate which is (al-
most) the same as the sample frequency of the mixing desk - but not identical.
Remedy: To drive the ADAT recorder from its digital input, set it to slave mode (DIG), and con-
nect the input to the HDSP’s ADAT3 output. The Hammerfall DSP is already in sync with the
mixing desk, so it will send an identical (synchronous) signal to ADAT3 out. The ADAT recorder
will lock onto this, its output will also be in sync. The signal from the ADAT recorder is now fully
in sync with the signals from the mixing desk.
Thanks to its AutoSync technique and lightning fast PLLs, the HDSP is not only capable of han-
dling standard frequencies, but also any sample rate between 28 and 103 kHz. Even the word
clock input, which most users will use in varispeed operation, allows any frequency between 28
kHz and 103 kHz.
At 88.2 or 96 kHz: If one of the ADAT inputs has been selected in ‘Pref Sync Ref’, the sample
frequency shown in the field SPDIF Freq. differs from the one shown in ‘AutoSync Ref’. The
card automatically switches to S/MUX mode here, because ADAT optical inputs and outputs are
only specified up to 48 kHz. Data from/to a single input/output is spread over two channels, the
internal frequency stays at 44.1 or 48 kHz. In such cases, the ADAT sample frequency is only
half the SPDIF frequency.
Содержание
- Dsp system hdsp 9652 1
- Hammerfal 1
- User s guide 1
- Driver installation and operation windows 2
- General 2
- Connections and totalmix 3
- Driver installation and operation mac os x 3
- Technical reference 4
- General 5
- Hdsp 9652 5
- User s guide 5
- Brief description and characteristics 6
- Introduction 6
- Package contents 6
- System requirements 6
- External connectors 7
- Hardware connectors 7
- Hardware installation 7
- Internal connectors 8
- Accessories 9
- Appendix 9
- Warranty 9
- Ce fcc compliance 10
- Iso 9001 10
- Note on disposal 10
- Driver installation and operation windows 11
- Hdsp 9652 11
- User s guide 11
- Driver and firmware 12
- Driver installation 12
- Driver update 12
- De installing the drivers 13
- Firmware update 13
- Configuring the hdsp 9652 14
- Settings dialog 14
- Clock modes synchronisation 16
- Operation and usage 18
- Playback 18
- Dvd playback ac 3 dts 19
- Channel count under wdm 20
- Notes on wdm 20
- Multi client operation 21
- Digital recording 22
- Channel count under asio 23
- General 23
- Operation under asio 23
- Known problems 24
- Synchronization 24
- Operation under gsif gigasampler interface 25
- Using more than one hammerfall dsp 25
- Digicheck 26
- General 27
- Hotline troubleshooting 27
- Installation 28
- Driver installation and operation mac os x 29
- Hdsp 9652 29
- User s guide 29
- Driver and flash update 30
- Driver installation 30
- Driver update 30
- Flash update 30
- Configuring the hdsp 9652 31
- Settings dialog 31
- Clock modes synchronisation 33
- Mac os x faq 35
- Midi doesn t work 35
- Round about driver installation 35
- Channel count under core audio 36
- Pci card and pci slot compatibility 36
- Repairing disk permissions 36
- Supported sample rates 36
- Hotline troubleshooting 37
- Various information 37
- Connections and totalmix 39
- Hdsp 9652 39
- User s guide 39
- Digital connections 40
- Word clock 41
- Cabling and termination 42
- Technical description and usage 42
- Word clock 42
- Operation 43
- Overview 44
- Totalmix routing and monitoring 44
- The user interface 46
- Elements of a channel 47
- Tour de totalmix 47
- Mute und solo 49
- Submix view 49
- Presets 50
- The quick access panel 50
- Preferences 52
- The monitor panel 52
- Editing the names 53
- Hotkeys 54
- Menu options 55
- Level meter 56
- Elements of the matrix view 57
- Operation 57
- Overview 57
- Totalmix the matrix 57
- Advantages of the matrix 58
- Asio direct monitoring windows only 58
- Totalmix super features 58
- Copy routings to other channels 59
- Delete routings 59
- Selection and group based operation 59
- Recording a subgroup loopback 60
- Using external effects devices 61
- Mapping 62
- Overview 62
- Totalmix midi remote control 62
- Operation 63
- Simple midi control 64
- Loopback detection 65
- Hdsp 9652 67
- Technical reference 67
- User s guide 67
- Tech info 68
- Digital inputs 69
- Digital outputs 69
- Technical specifications 69
- Digital 70
- Lock and synccheck 71
- Technical background 71
- Latency and monitoring 72
- Ds double speed 73
- Aes ebu spdif 74
- Block diagram hdsp 9652 75
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