ALSC ASM5I2309NZG-08-SR Nine output 3.3v buffer Datasheet

ASM2P2309NZ
June 2005
rev 0.2
Nine Output 3.3V Buffer
Features
Functional Description
ƒ
One-input to Nine-Output Buffer/Driver
ƒ
Supports two DIMMs or four SO-DIMMs with one
The ASM2P2309NZ is a low-cost buffer designed to
additional output for feedback to an external or
distribute high-speed clocks in mobile PC systems and
chipset PLL
desktop PC systems with SDRAM support. The part has
Low power consumption for mobile applications
nine outputs, eight of which can be used to drive two
Less than 32 mA at 66.6 MHz with unloaded
DIMMs or four SO-DIMMs, and the remaining can be used
outputs
for external feedback to a PLL. The device operates at
ƒ
1nS Input-Output delay
3.3V and outputs can run up to 133.33 MHz.
ƒ
Buffers all frequencies from DC to 133.33 MHz
ƒ
Output-output skew less than 250pS
The ASM2P2309NZ is designed for low EMI and power
ƒ
Multiple VDD and VSS pins for noise and
optimization. It has multiple VSS and VDD pins for noise
electromagnetic interference (EMI) reduction
optimization and consumes less than 32 mA at 66.6 MHz,
ƒ
Space-saving 16-pin 150-mil SOIC Package
making it ideal for the low-power requirements of mobile
ƒ
3.3V operation
systems. It is available in an ultra-compact 150-mil 16-pin
ƒ
Commercial and Industrial temperature parts are
SOIC package.
ƒ
available
Block Diagram
Alliance Semiconductor
2575, Augustine Drive • Santa Clara, CA • Tel: 408.855.4900 • Fax: 408.855.4999 • www.alsc.com
Notice: The information in this document is subject to change without notice.
ASM2P2309NZ
June 2005
rev 0.2
Pin Configuration for ASM2P2309NZ
Pin Description for ASM2P2309NZ
Pin
Signal
Description
4, 8, 13
VDD
3.3V Digital Voltage Supply
5, 9, 12
GND
Ground
1
BUF_IN
Input Clock
2, 3, 6, 7, 10, 11, 14, 15, 16
OUTPUT [1:9]
Outputs
Nine Output 3.3V Buffer
Notice: The information in this document is subject to change without notice.
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ASM2P2309NZ
June 2005
rev 0.2
Absolute Maximum Ratings
Parameter
Min
Max
Unit
Supply Voltage to Ground Potential
-0.5
7.0
V
DC Input Voltage (Except REF)
-0.5
VDD + 0.5
V
DC Input Voltage (REF)
-0.5
0.7
V
Storage Temperature
-65
+150
°C
150
°C
>2000
V
Junction Temperature
Static Discharge Voltage
(As per JEDEC STD 22- A114-B)
Note: These are stress ratings only and functional usage is not implied. Exposure to absolute maximum ratings for prolonged periods can affect device
reliability.
Operating Conditions
Parameter
VDD
TA
CL
Description
Min
Max
3.0
3.6
V
0
70
°C
–40
85
°C
Load Capacitance, Fout < 100 MHz
-
30
pF
Supply Voltage
(Ambient Operating Temperature), Commercial
(Ambient Operating Temperature), Industrial
Unit
Load Capacitance,100 MHz < Fout < 133.33 MHz
-
15
pF
CIN
Input Capacitance
-
7
pF
BUF_IN, OUTPUT [1:9]
Operating Frequency
DC
133.33
MHz
tPU
Power-up time for all VDD's to reach minimum
specified voltage (power ramps must be monotonic)
0.05
50
mS
Nine Output 3.3V Buffer
Notice: The information in this document is subject to change without notice.
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ASM2P2309NZ
June 2005
rev 0.2
Electrical Characteristics for Commercial and Industrial Temperature Devices
Parameter
Description
VIL
Input LOW Voltage1
Test Conditions
VIH
1
Min.
Max.
Unit
-
0.8
V
2.0
-
V
Input HIGH Voltage
IIL
Input LOW Current
VIN = 0V
-
50.0
µA
IIH
VOL
Input HIGH Current
Output LOW Voltage2
VIN= VDD
IOL= 8 mA
-
100.0
0.4
µA
V
VOH
Output HIGH Voltage2
IOH = –8 mA
2.4
-
V
IDD
Supply Current
Unloaded outputs at 66.66 MHz
-
32
mA
Switching Characteristics for Commercial and Industrial Temperature Devices3
Parameter
Name
Description
Min.
Typ.
Max.
Unit
Measured at 1.4V
40.0
50.0
60.0
%
t3
2
Rise Time
Measured between 0.8V and 2.0V
-
-
1.50
nS
t4
2
Fall Time
Measured between 0.8V and 2.0V
-
-
1.50
nS
t5
Output to Output Skew2
All outputs equally loaded
-
-
250
pS
t6
Propagation Delay,
BUF_IN Rising Edge to
2
OUTPUT Rising Edge
Measured at VDD/2
1
5
9.2
nS
tD
Duty Cycle2= t2 ÷t1
Note:
1. BUF_IN input has a threshold voltage of VDD/2.
2. Parameter is guaranteed by design and characterization. It is not 100% tested in production.
3. All parameters specified with loaded outputs.
Nine Output 3.3V Buffer
Notice: The information in this document is subject to change without notice.
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ASM2P2309NZ
June 2005
rev 0.2
Switching Waveforms
Duty Cycle Timing
All Outputs Rise/Fall Time
Output-Output Skew
Input-Output Propagation Delay
Nine Output 3.3V Buffer
Notice: The information in this document is subject to change without notice.
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ASM2P2309NZ
June 2005
rev 0.2
Test Circuits
Nine Output 3.3V Buffer
Notice: The information in this document is subject to change without notice.
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ASM2P2309NZ
June 2005
rev 0.2
Package Information
16-lead (150 Mil) Molded SOIC Package
PIN 1 ID
1
8
H
E
9
16
D
h
Seating Plane
A2
D
A
e
C
θ
0.004
L
A1
B
Dimensions
Symbol
Inches
Millimeters
Min
Max
Min
Max
A
0.053
0.069
1.35
1.75
A1
0.004
0.010
0.10
0.25
A2
0.049
0.059
1.25
1.50
B
0.013
0.022
0.33
0.53
C
0.008
0.012
0.19
0.27
D
0.386
0.394
9.80
10.01
E
0.150
0.157
3.80
4.00
e
0.050 BSC
1.27 BSC
H
0.228
0.244
5.80
6.20
h
0.010
0.016
0.25
0.41
L
0.016
0.035
0.40
0.89
θ
0°
8°
0°
8°
Nine Output 3.3V Buffer
Notice: The information in this document is subject to change without notice.
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ASM2P2309NZ
June 2005
rev 0.2
Ordering Codes
Part Number
Marking
Package Type
Operating Range
ASM5P2309NZF-08-ST
5P2309NZF
16-pin 150-mil SOIC, Pb Free
Commercial
ASM5P2309NZF-08-SR
5P2309NZF
16-pin 150-mil SOIC, Tape and Reel, Pb Free
Commercial
ASM5I2309NZF-08-ST
5I2309NZF
16-pin 150-mil SOIC, Pb Free
Industrial
ASM5I2309NZF-08-SR
5I2309NZF
16-pin 150-mil SOIC, Tape and Reel, Pb Free
Industrial
ASM5P2309NZG-08-ST
5P2309NZG
16-pin 150-mil SOIC, Green
Commercial
ASM5P2309NZG-08-SR
5P2309NZG
16-pin 150-mil SOIC, Tape and Reel, Green
Commercial
ASM5I2309NZG-08-ST
5I2309NZG
16-pin 150-mil SOIC, Green
Industrial
ASM5I2309NZG-08-SR
5I2309NZG
16-pin 150-mil SOIC ,Tape and Reel, Green
Industrial
Device Ordering Information
A S M 2 P 2 3 0 9 N Z
F - 1 6 - S R
R = Tape & reel, T = Tube or Tray
O = SOT
S = SOIC
T = TSSOP
A = SSOP
V = TVSOP
B = BGA
Q = QFN
U = MSOP
E = TQFP
L = LQFP
U = MSOP
P = PDIP
D = QSOP
X = SC-70
DEVICE PIN COUNT
F = LEAD FREE AND RoHS COMPLIANT PART
G = GREEN PACKAGE
PART NUMBER
X= Automotive
I= Industrial
P or n/c = Commercial
(-40C to +125C) (-40C to +85C)
(0C to +70C)
1 = Reserved
2 = Non PLL based
3 = EMI Reduction
4 = DDR support products
5 = STD Zero Delay Buffer
6 = Power Management
7 = Power Management
8 = Power Management
9 = Hi Performance
0 = Reserved
ALLIANCE SEMICONDUCTOR MIXED SIGNAL PRODUCT
Licensed under US patent #5,488,627, #6,646,463 and #5,631,920.
Nine Output 3.3V Buffer
Notice: The information in this document is subject to change without notice.
8 of 9
ASM2P2309NZ
June 2005
rev 0.2
Alliance Semiconductor Corporation
2575, Augustine Drive,
Santa Clara, CA 95054
Tel# 408-855-4900
Fax: 408-855-4999
www.alsc.com
Copyright © Alliance Semiconductor
All Rights Reserved
Part Number: ASM2P2309NZ
Document Version: 0.2
Note: This product utilizes US Patent # 6,646,463 Impedance Emulator Patent issued to Alliance Semiconductor, dated 11-11-2003
© Copyright 2003 Alliance Semiconductor Corporation. All rights reserved. Our three-point logo, our name and Intelliwatt are
trademarks or registered trademarks of Alliance. All other brand and product names may be the trademarks of their
respective companies. Alliance reserves the right to make changes to this document and its products at any time without
notice. Alliance assumes no responsibility for any errors that may appear in this document. The data contained herein
represents Alliance's best data and/or estimates at the time of issuance. Alliance reserves the right to change or correct this
data at any time, without notice. If the product described herein is under development, significant changes to these
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potential customers and users, and is not intended to operate as, or provide, any guarantee or warrantee to any user or
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Nine Output 3.3V Buffer
Notice: The information in this document is subject to change without notice.
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