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CY2309NZSC-1H 参数 Datasheet PDF下载

CY2309NZSC-1H图片预览
型号: CY2309NZSC-1H
PDF下载: 下载PDF文件 查看货源
内容描述: 九3.3V输出缓冲 [Nine-Output 3.3V Buffer]
分类和应用: 逻辑集成电路光电二极管驱动
文件页数/大小: 5 页 / 117 K
品牌: CYPRESS [ CYPRESS SEMICONDUCTOR ]
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CY2309NZ
Nine-Output 3.3V Buffer
Features
• One-input to nine-output buffer/driver
• Supports two DIMMs or four SO-DIMMs with one
additional output for feedback to an external or chipset
PLL
• Low power consumption for mobile applications
— Less than 32 mA at 66.6 MHz with unloaded outputs
• 8.7-ns Input-Output delay
• Buffers all frequencies from DC to 133.33 MHz
• Output-output skew less than 250 ps
• Multiple V
DD
and V
SS
pins for noise and electromag-
netic interference (EMI) reduction
• Space-saving 16-pin 150-mil SOIC package
• 3.3V operation
• Industrial temperature available
Functional Description
The CY2309NZ is a low-cost buffer designed to distribute
high-speed clocks in mobile PC systems and desktop PC
systems with SDRAM support. The part has nine outputs,
eight of which can be used to drive 2 DIMMs or 4 SO-DIMMs,
and the remaining can be used for external feedback to a PLL.
The device operates at 3.3V and outputs can run up to
133.33 MHz.
The CY2309NZ is designed for low EMI and power optimi-
zation. It has multiple V
SS
and V
DD
pins for noise optimization
and consumes less than 32 mA at 66.6 MHz, making it ideal
for the low-power requirements of mobile systems. It is
available in an ultra-compact 150-mil 16-pin SOIC package.
Block Diagram
BUF_IN
OUTPUT1
OUTPUT2
OUTPUT3
OUTPUT4
OUTPUT5
OUTPUT6
OUTPUT7
OUTPUT8
OUTPUT9
Pin Configuration
16 SOIC
Top View
BUF_IN
OUTPUT1
OUTPUT2
V
DD
GND
OUTPUT3
OUTPUT4
V
DD
1
2
3
4
5
6
7
8
16
15
14
13
12
11
10
9
OUTPUT9
OUTPUT8
OUTPUT7
V
DD
GND
OUTPUT6
OUTPUT5
GND
Pin Description for CY2309NZ
Pin
4, 8, 13
5, 9, 12
1
V
DD
GND
BUF_IN
Signal
3.3V Digital Voltage Supply
Ground
Input Clock
Outputs
Description
2, 3, 6, 7, 10, 11, OUTPUT [1:9]
14, 15, 16
Cypress Semiconductor Corporation
Document #: 38-07182 Rev. *C
3901 North First Street
San Jose
,
CA 95134
408-943-2600
Revised February 24, 2004