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PDF PI6C185-01 Data sheet ( Hoja de datos )

Número de pieza PI6C185-01
Descripción Precision 1-5 Clock Buffer
Fabricantes Pericom Semiconductor 
Logotipo Pericom Semiconductor Logotipo



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No Preview Available ! PI6C185-01 Hoja de datos, Descripción, Manual

PI6C185-01
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Precision 1-5 Clock Buffer
Features
High-speed, low-noise non-inverting 1-5 buffer
Switching speed up to 140 MHz
Supports up to two SODIMMs
Low skew (<250ps) between any two output clocks
I2C Serial Configuration interface
Multiple VDD, VSS pins for noise reduction
3.3V power supply voltage
Packaging (Pb-free & Green available):
-16-pinTSSOP(L)
- 16-pin QSOP (Q)
Description
The PI6C185-01 is a high-speed low-noise 1-5 non-inverting buffer
designed for SDRAM clock buffer applications.
This buffer is intended to be used with the PI6C10X clock generator
for Intel Architecture-based Mobile systems.
At power-up, all SDRAM outputs are enabled and active. The I2C
Serial control may be used to individually activate/deactivate any
of the 5 output drivers.
Note:
Purchase of I2C components from Pericom conveys a license to
use them in an I2C system as defined by Philips®.
Block Diagram
BUF_IN
SDATA
SCLOCK
I2C
I/O
SDRAM0
SDRAM1
SDRAM2
SDRAM3
SDRAM4
Pin Configuration
VDD
SDRAM0
SDRAM1
VSS
BUF_IN
VDD
SDATA
SCLK
1
2
3
4
5
6
7
8
16 VDD
15 SDRAM4
14 VSS
13 VDD
12 SDRAM3
11 SDRAM2
10 VSS
9 VSS
1 PS8318E 10/14/04

1 page




PI6C185-01 pdf
PI6C185-01
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Output
Buffer
Test
Point
Test Load
3.3V
Clocking
Interface
(TTL)
2.4
1.5
0.4
tSDKH
tSDKP
tSDRISE
tSDFALL
tSDKL
Input
Waveform
tplh
Output
Waveform
1.5V
1.5V
1.5V
tphl
1.5V
Figure 1. Clock Waveforms
Minimum and Maximum Expected Capacitive Loads
Clock Min Load Max Load Units
Notes
SDRAM
20
30 pF SDRAM DIMM Specification
Notes:
1. Maximum rise/fall times are guaranteed at maximum specified load.
2. Minimum rise/fall times are guaranteed at minimum specified load.
3. Rise/fall times are specified with pure capacitive load as shown.
Testing is done with an additional 500resistor in parallel.
Design Guidelines to Reduce EMI
1. Place RS series resistors and CI capacitors as close as possible to the respective clock pins. Typical
value for CI is 10 pF. RS Series resistor value can be increased to reduce EMI provided that the rise
and fall time are still within the specified values.
2. Minimize the number of “vias” of the clock traces.
3. Route clock traces over a continuous ground plane or over a continuous power plane. Avoid routing
clock traces from plane to plane (refer to rule #2).
4. Position clock signals away from signals that go to any cables or any external connectors.
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5 PS8318E 10/14/04

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