W238 Cypress Semiconductor Corporation., W238 Datasheet

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W238

Manufacturer Part Number
W238
Description
W238FTG for Integrated Core Logic with 133-MHz FSB
Manufacturer
Cypress Semiconductor Corporation.
Datasheet

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W238-02H
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Features
Key Specifications
CPU, SDRAM Outputs Cycle-to-Cycle Jitter:.............. 250 ps
APIC, 48-MHz, 3V66, PCI Outputs
Cycle-to-Cycle Jitter:................................................... 500 ps
Cypress Semiconductor Corporation
PWRDWN#/TRISTATE#
• Maximized EMI suppression using Cypress’s Spread
• Low jitter and tightly controlled clock skew
• Highly integrated device providing clocks required for
• Two copies of CPU clock at 66/100/133 MHz
• Thirteen copies of SDRAM clocks at 100/133 MHz
• Five copies of PCI clock compliant to PCI spec 2-1 and
• One copy of synchronous APIC clock
• Two copies of 48-MHz clock (non-spread spectrum) op-
• Three copies of 66-MHz fixed clock
• One copy of 14.31818-MHz reference clock
• Power down control
• I
Block Diagram
Spectrum technology
CPU, core logic, and SDRAM
capable of driving a maximum load of 40 pF
timized for USB reference input and video dot clock
2
C™ interface for turning off unused clocks
FSEL0:1
SDATA
SCLK
X1
X2
PLL 1
Logic
PLL2
XTAL
I
OSC
2
C
FTG for Integrated Core Logic with 133-MHz FSB
PLL REF FREQ
'LYLGHU
&RQWURO
'HOD\
3KDVH
/RJLF
DQG
2
2
2
4
13
VDDQ2
VDDQ3
VDDQ3
3901 North First Street
CPU0:1
3V66_AGP
PCI0_ICH
PRELIMINARY
REF/FSEL1
APIC0:1
3V66_0:1
PCI1:4
SDRAM0:12
VDDQ3
USB
DOT
APIC, 48-MHz, SDRAM Output Skew: ........................ 250 ps
CPU, 3V66 Output Skew: ............................................175 ps
PCI Output Skew: ........................................................500 ps
CPU to SDRAM Skew (@ 133 MHz):.........................±0.5 ns
CPU to SDRAM Skew (@ 100 MHz):................. 4.5 to 5.5 ns
CPU to 3V66 Skew (@ 66 MHz): ....................... 7.0 to 8.0 ns
3V66 to PCI Skew (3V66 lead): .......................... 1.5 to 3.5 ns
PCI to APIC Skew: .....................................................±0.5 ns
Table 1. Pin Selectable Functions
Tristate# FSEL1
Pin Configuration
0
0
1
1
1
1
Note:
1.
REF/FSEL1
3V66_AGP
PCI_ICH
Internal pull-down resistors present on input marked with *.
Design should not solely rely on internal pull-down resister to
set I/O pin LOW.
VDDQ2
VDDQ3
VDDQ3
3V66_0
3V66_1
VDDQ3
VDDQ3
SDATA
FSEL0
GNDA
VDDA
SCLK
San Jose
APIC
GND
GND
GND
PCI1
PCI2
GND
PCI3
PCI4
GND
USB
X1
X2
X
X
0
0
1
1
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
FSEL0
0
1
0
1
0
1
[1]
CA 95134
32
56
55
54
53
52
51
50
49
48
47
46
45
44
43
42
41
40
39
38
37
36
35
34
33
31
30
29
Three-state
November 29, 1999, rev. **
Function
100 MHz
133 MHz
133 MHz
66 MHz
Test
GND
VDDQ2
CPU0
CPU1
GND
SDRAM0
SDRAM1
VDDQ3
GND
SDRAM2
SDRAM3
SDRAM4
SDRAM5
VDDQ3
GND
SDRAM6
SDRAM7
SDRAM8
SDRAM9
VDDQ3
GND
SDRAM10
SDRAM11
VDDQ3
GND
SDRAM12
PWRDWN#/TRISTATE#
DOT
408-943-2600
Three-state
100 MHz
100 MHz
133 MHz
100 MHz
SRAM
W238
Test

Related parts for W238

W238 Summary of contents

Page 1

... VDDQ3 USB Note: 1. Internal pull-down resistors present on input marked with *. DOT Design should not solely rely on internal pull-down resister to set I/O pin LOW. • 3901 North First Street • San Jose W238 FSEL0 Function SRAM 0 Three-state Three-state 1 Test Test 0 66 MHz 100 MHz ...

Page 2

... trademark of Phillips Corporation. Intel is a registered trademark of Intel Corporation. PRELIMINARY 2 W238 ...

Page 3

... Power Connection: Power supply for core logic, PLL circuitry. Connect to 3.3V. 2.5V Power Connection: Power supply for IOAPIC and CPU output buffers. Con- nect to 2.5V or 3.3V. Ground Connections: Ground for core logic, PLL circuitry. Ground Connections: Connect all ground pins to the common system ground plane. 3 W238 . DDQ2 . DDQ2 ...

Page 4

... Output Three-state Reset Timer Figure 1. Input Logic Selection Through Resistor Load Option Overview The W238 is a highly integrated frequency timing generator, supplying all the required clock sources for an Intel® architec- ture platform using graphics integrated core logic. Functional Description I/O Pin Operation REF/SEL1 is a dual-purpose l/O pin ...

Page 5

... Offsets Among Clock Signal Groups Figure 2 and Figure 3 represent the phase relationship among the different groups of clock outputs from W238 when it is pro- viding a 66-MHz CPU clock and a 100-MHz CPU clock, re- Figure 2. Group Offset Waveforms (66-MHz CPU/100-MHz SDRAM CPU 100 Period ...

Page 6

... Figure 4. Group Offset Waveforms (133-MHz CPU/100-MHz SDRAM CPU 100-MHz SDRAM 133-MHz 3V66 66-MHz PCI 33-MHz APIC 33-MHz REF 14.318-MHz REF 14.318-MHz USB 48-MHz DOT 48-MHz Figure 5. Group Offset Waveform (133-MHz CPU/133-MHz SDRAM) PRELIMINARY 20 ns Cycle Repeats Cycle Repeat 6 W238 ...

Page 7

... Power Down Control W238 provides one PWRDWN# signal to place the device in low-power mode. In low-power mode, the PLLs are turned off and all clock outputs are driven LOW. Figure 6. W238 PWRDWN# Timing Diagram Table 3. W238 Maximum Allowed Current W238 Condition Powerdown Mode ...

Page 8

... Cypress does offer options with more spread and greater EMI reduction. Contact your local Sales representative for details on these devices. Spread Spectrum clocking is activated or deactivated by se- lecting the appropriate value for bit 3 in data byte 0 of the I data stream. Refer to page 10 for more details. Figure 8. Typical Modulation Profile 8 W238 2 C ...

Page 9

... Figure 9. An Example of a Block Write fer a maximum of 32 data bytes. The slave receiver address for W238 is 11010010. Figure 9 shows an example of a block write. The command code and the byte count bytes are required as the first two bytes of any transfer. W238 expects a command code of 0000 0000 ...

Page 10

... W238 Serial Configuration Map 1. The serial bits will be read by the clock driver in the following order: Byte 0 - Bits Byte 1 - Bits Byte N - Bits Byte 0: Control Register (1 = Enable Disable) Bit Pin# Bit 7 ...

Page 11

... Reserved Reserved 0 Reserved Reserved 0 Reserved Name Default Reserved 0 Reserved Reserved 0 Reserved Reserved 0 Reserved Reserved 0 Reserved Reserved 0 Reserved Reserved 0 Reserved Reserved 0 Reserved Reserved 0 Reserved 11 W238 Pin Description Reserved Reserved Reserved Reserved Reserved Reserved 1 = PWRDWN TRISTATE# (Disabled/Enabled) Pin Function Pin Description Pin Description ...

Page 12

... Condition 3.3V±5% 3.3V±5% 2.5V±5% V DD3 [16] 0<V <V in DD3 I =(–1 mA =(1 mA =(–1 mA =(1 mA =(–1 mA =(1 mA Airflow 12 W238 Min. Max. Unit –0.5 4.6 V –0.5 3.6 V –0.5 4.6 V –65 150 °C Min. Max. Unit –0.5 4.6 V –0.5 V 2000 V Min. Max. Unit 3.135 3.465 V 3 ...

Page 13

... Host 100-MHz Host Min. Max. Min. 15.0 15.5 10.0 5.2 N/A 3.0 5.0 N/A 2.8 0.4 1.6 0.4 0.4 1.6 0.4 10.0 10.5 10.0 3.0 N/A 3.0 2.8 N/A 2.8 0.4 1.6 0.4 0.4 1.6 0.4 30.0 N/A 30.0 12.0 N/A 12.0 12.0 N/A 12.0 0.4 1.6 0.4 0.4 1.6 0.4 15.0 16.0 15.0 5.25 N/A 5.25 5.05 N/A 5.05 0.5 2.0 0.5 0.5 2.0 0.5 30.0 N/A 30.0 12.0 N/A 12.0 12.0 N/A 12.0 0.5 2.0 0.5 0.5 2.0 0.5 1.0 10.0 1.0 1.0 10.0 1.0 3 achieves its nominal operating level (typical condition V = 0.4V and V = 2.0V (1 mA) JEDEC specification W238 133-MHz Host Max. Min. Max. Unit 10.5 7.5 8 N/A 1.87 N N/A 1.67 N 1.6 0.4 1.6 ns 1.6 0.4 1.6 ns 10.5 10.0 10 N/A 3.0 N N/A 2.8 N 1.6 0.4 1.6 ns 1.6 0.4 1.6 ns N/A 30.0 N N/A 12.0 N N/A 12.0 N 1.6 0.4 1.6 ns 1.6 0.4 1.6 ns 16.0 15.0 16.0 ns 17, 19 N/A 5.25 N N/A 5.05 N 2.0 0.5 2 ...

Page 14

... Output Test Point Buffer Test Load T PERIOD Duty Cycle T HIGH T LOW T FALL T PERIOD Duty Cycle T HIGH T LOW T T RISE FALL Figure 10. Output Buffer Package Type 56-pin SSOP (300 mils) W238 Skew, Jitter Nom Vdd Measure Point 2.5V 1.25V 3.3V 1.5V 2.5V 1.25V 3.3V 1.5V 3.3V 1.5V 3.3V 1.5V 3.3V 1.5V ...

Page 15

... Package Diagram 56-Pin Shrink Small Outline Package (SSOP, 300 mils) Summary of nominal dimensions in inches: Body Width: 0.296 Lead Pitch: 0.025 Body Length: 0.625 Body Height: 0.102 PRELIMINARY 15 W238 ...

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