EP9315-CBZ Cirrus Logic Inc, EP9315-CBZ Datasheet - Page 651

IC ARM9 SOC ENH UNIV 352PBGA

EP9315-CBZ

Manufacturer Part Number
EP9315-CBZ
Description
IC ARM9 SOC ENH UNIV 352PBGA
Manufacturer
Cirrus Logic Inc
Series
EP9r
Datasheets

Specifications of EP9315-CBZ

Core Size
16/32-Bit
Core Processor
ARM9
Speed
200MHz
Connectivity
EBI/EMI, EIDE, Ethernet, I²C, IrDA, Keypad/Touchscreen, PCMCIA, SPI, UART/USART, USB
Peripherals
AC'97, DMA, I&sup2:S, LCD, LED, MaverickKey, POR, PWM, WDT
Number Of I /o
16
Program Memory Type
ROMless
Ram Size
32K x 8
Voltage - Supply (vcc/vdd)
1.65 V ~ 3.6 V
Data Converters
A/D 8x12b
Oscillator Type
External
Operating Temperature
0°C ~ 70°C
Package / Case
352-BGA
Controller Family/series
(ARM9)
No. Of I/o's
16
Cpu Speed
200MHz
No. Of Timers
5
Digital Ic Case Style
BGA
Supply Voltage Range
1.65V To 1.94V, 3V To 3.6V
Embedded Interface Type
SPI
Rohs Compliant
Yes
Processor Series
EP93xx
Core
ARM920T
Data Bus Width
32 bit
3rd Party Development Tools
MDK-ARM, RL-ARM, ULINK2
Development Tools By Supplier
EDB9315A-Z
Case
BGA
Dc
06+
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
598-1144 - KIT DEVELOPMENT EP9315 ARM9
Eeprom Size
-
Program Memory Size
-
Lead Free Status / Rohs Status
 Details
Other names
598-1139

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Part Number:
EP9315-CBZ
Manufacturer:
Cirrus Logic Inc
Quantity:
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Component
DS785UM1
20.1.1.4 Example - Measured Value Split Into Integer and Fractional
20.1.1.5 Maximum Error Calculation vs. Real Time Clock Accuracy
20.1.1.6 Real-Time Interrupt
The manufacturing tester measures the oscillator output to be 33,455.870 Hz. For the integer
portion, 33,455 - 32,768 is 687 cycles over the nominal frequency of the crystal. The integer
pre-load value for the counter should always be chosen so that the actual clock frequency is
faster than the value needed to generate a 1 Hz reference. Therefore, the
RTCSWComp.INT[15:0] value is loaded with the binary equivalent of 33,455-1 or 0x82AE.
The fractional component of the oscillator output was measured to be 0.870 Hz. Software
must adjust the clock so that the average number of cycles that are counted before
generating one 1 Hz clock is 33 455-1.
Because the clock frequency is 0.870 Hz faster than the integer value, the 1 Hz clock
generated by just the integer compensation is slightly faster than needed and may be slowed
down by deleting clocks.
The fractional compensation value must be programmed to delete 0.870 Hz on average to
bring the 1 Hz output frequency down to the proper value. Since the compensation procedure
is performed only every 32 seconds, the value must be set to delete (0.870*32) = 27.84
which, when rounded, is 28 clocks every 32 seconds. The rounded 0.16 cycles per
32 seconds (or 0.005 Hz) represents the error in compensation. The RTCSWComp.DEL[4:0]
fractional compensation value should be loaded with the hexadecimal equivalent of
28 - 1 or 0x1B.
The maximum error is 0.5½ clocks per 32 seconds. Therefore at 32.768 kHz, the maximum
error is:
(0.5½ clock / 32 sec) x (1 sec / 32,768 clocks nominal) x
To maintain an accuracy of +/- 5 seconds per month the required interval is calculated to be:
(5 seconds/1 month) x (1 month/2,592,000 seconds) = 1.93E-6
= (1 second/32,768 clocks) x (½clock / X-interval seconds)
X-interval = 7.9 seconds
Therefore to maintain a 5-second-per-month accuracy the compensation circuit only has to
adjust within ½ of a 32.768 KHZ clock every 7.9 seconds. This could be done with a 3 bit
clock delete value and an 8 second (3 bits clocked by 1 Hz) counter. However, the
1.24 second per month number is better and has been implemented in this device.
To allow a Real Time Interrupt to be generated, VIC2 INT[10] has been connected to the 1 Hz
clock. This interrupt should be configured as edge-triggered.
(2592000 sec/1month) = 1.24 seconds/month maximum error
Copyright 2007 Cirrus Logic
Real Time Clock With Software Trim
EP93xx User’s Guide
20-3
20

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