PNX1502E/G,557 NXP Semiconductors, PNX1502E/G,557 Datasheet - Page 536
PNX1502E/G,557
Manufacturer Part Number
PNX1502E/G,557
Description
IC MEDIA PROC 300MHZ 456-BGA
Manufacturer
NXP Semiconductors
Specifications of PNX1502E/G,557
Applications
Multimedia
Core Processor
TriMedia
Controller Series
Nexperia
Interface
I²C, 2-Wire Serial
Number Of I /o
61
Voltage - Supply
1.23 V ~ 1.37 V
Operating Temperature
0°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
456-BGA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Program Memory Type
-
Ram Size
-
Lead Free Status / Rohs Status
Compliant
Other names
568-1298
935277748557
PNX1502E/G
935277748557
PNX1502E/G
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Philips Semiconductors
Volume 1 of 1
Table 5: Operating Modes and Memory Formats
Table 6: Endian Ordering of Audio Data in Main Memory
PNX15XX_SER_3
Product data sheet
NR_CHAN MODE
00
00
01
01
10
10
11
11
Operating
Modes
16-bit mono -
little endian
16-bit mono -
big endian
16-bit stereo
- little endian
Figure 6:
16 bit, stereo,
NR_CHAN=00
16 bit, stereo,
NR_CHAN=10
32 bit, mono,
NR_CHAN=00
32 bit, stereo,
NR_CHAN=10
32 bit, stereo,
NR_CHAN=00
Audio In Memory DMA Formats
mono (one channel)
stereo (one channel)
mono (two channels)
stereo (two channels)
mono (three channels)
stereo (three channels)
mono (four channels)
stereo (four channels)
m[adr]
left
left
left
n
n
n
[7:0]
[15:8]
[7:0]
SD0.left
SD0.left
SD0.left
3.5.1 Endian Control
3.5 Memory Data Formats
adr
adr
adr
SD0.left
n
n
SD0.left
n
m[adr+1]
left
left
left
adr
adr
The Audio In unit autonomously writes samples to memory in mono and stereo 16
and 32-bit per sample formats, as shown in
stored at increasing memory address locations.
The following table illustrates exactly how the Audio Inout block writes data in
memory (byte) locations precisely after the correct endian swapping done at the
adapter depending on the polarity of the big-endian bit in the Global Registers
Module.
n
n
n
SD0.right
SD0.right
SD0.right
[15:8]
[7:0]
[15:8]
adr+2
adr+2
n
n
adr+4
n
Source of Successive Samples
SD0.left
SD0.left, SD0.right
SD0.left, SD1.left
SD0.left, SD0.right, SD1.left, SD1.right
SD0.left, SD1.left, SD2.left
SD0.left, SD0.right, SD1.left, SD1.right, SD2.left, SD2.right
SD0.left, SD1.left, SD2.left, SD3.left
SD0.left, SD0.right, SD1.left, SD1.right, SD2.left, SD2.right, SD3.left, SD3.right.
n
n
m[adr+2]
left
left
]
right
n+1
n+1
SD0.left
SD1.left
SD1.left
n
adr+4
adr+4
[7:0]
[7:0]
[15:8
adr+8
SD0.left
SD0.right
Rev. 3 — 17 March 2006
n+1
adr+4
n
adr+4
n
m[adr+3]
left
]
left
right
SD0.right
n+1
n+1
SD1.right
n+1
SD1.right
n
adr+6
n
adr+6
[15:8] left
adr+12
[15:8
[7:0]
n+1
n
n
m[adr+4]
left
left
n+2
n+2
n+1
SD0.left
SD2.left
SD2.left
adr+8
adr+8
adr+16
[7:0]
[15:8]
[7:0]
SD0.left
SD0.left
n+2
adr+8
n
adr+8
n
Figure
m[adr+5]
left
left
left
SD0.right
n+2
n+1
SD2.right
SD2.right
adr+10
adr+10
n+2
n+2
n+1
adr+20
6. Successive samples are always
[15:8]
[7:0]
[15:8]
© Koninklijke Philips Electronics N.V. 2006. All rights reserved.
n+2
n
n
PNX15xx Series
SD0.left
m[adr+6]
left
left
right
SD0.left
Chapter 16: Audio Input
SD0.left
adr+12
adr+12
adr+24
n+3
n+3
SD0.left
n+1
SD0.right
[7:0]
[15:8]
adr+12
adr+12
n+1
n+3
[7:0]
n+1
SD0.right
SD0.right
n+2
SD0.right
n+1
adr+14
adr+14
adr+28
m[adr+7]
left
left
right
]
n+3
n+3
n+1
n+3
n+1
n+1
[15:8]
[7:0]
[15:8
16-10
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