32Kx8 Bit High-Speed CMOS Static RAM(5V Operating).
Operated at Commercial and Industrial Temperature Ranges.
For Cisco
CMOS SRAM
Revision History
Rev .No.
Rev. 0.0
Rev. 1.0
Rev. 2.0
History
Initial release with Preliminary.
Release to Final Data Sheet.
2.1. Add Low Power Version.
2.2. Add data retention charactoristic.
Draft Data
Aug. 1. 1998
Nov. 2. 1998
Feb. 25. 1999
Remark
Preliminary
Final
Final
The attached data sheets are prepared and approved by SAMSUNG Electronics. SAMSUNG Electronics CO., LTD. reserve the right to change the
specifications. SAMSUNG Electronics will evaluate and reply to your requests and questions on the parameters of this device. If you have any ques-
tions, please contact the SAMSUNG branch office near your office, call or contact Headquarters.
-1-
Revision 2.0
Feburary 1999
K6E0808C1E-C/E-L, K6E0808C1E-I/E-P
32K x 8 Bit High-Speed CMOS Static RAM
FEATURES
• Fast Access Time 10, 12, 15ns(Max.)
• Low Power Dissipation
Standby (TTL)
: 20mA(Max.)
(CMOS) : 2mA(Max.)
0.6mA(Max.) L-ver. Only
Operating K6E0808C1E-10 : 80mA(Max.)
K6E0808C1E-12 : 80mA(Max.)
K6E0808C1E-15 : 80mA(Max.)
• Single 5.0V±10% Power Supply
• TTL Compatible Inputs and Outputs
• I/O Compatible with 3.3V Device
• Fully Static Operation
- No Clock or Refresh required
• Three State Outputs
• 2V Minimum Data Retention : L-Ver. only
• Standard Pin Configuration
K6E0808C1E-J : 28-SOJ-300
K6E0808C1E-T : 28-TSOP1-0813. 4F
For Cisco
CMOS SRAM
GENERAL DESCRIPTION
The K6E0808C1E is a 262,144-bit high-speed Static Random
Access Memory organized as 32,768 words by 8 bits. The
K6E0808C1E uses 8 common input and output lines and has
an output enable pin which operates faster than address access
time at read cycle. The device is fabricated using SAMSUNG′s
advanced CMOS process and designed for high-speed circuit
technology. It is particularly well suited for use in high-density
high-speed system applications. The K6E0808C1E is packaged
in a 300mil 28-pin plastic SOJ or TSOP1 forward.
PIN CONFIGURATION
(Top View)
OE
A
11
A
9
A
8
A
13
WE
Vcc
A
14
A
12
A
7
A
6
A
5
A
4
A
3
1
2
3
4
5
6
7
8
9
10
11
12
13
14
28
27
26
25
24
23
22
21
20
19
18
17
16
15
A
10
CS
I/O
8
I/O
7
I/O
6
I/O
5
I/O
4
Vss
I/O
3
I/O
2
I/O
1
A
0
A
1
A
2
TSOP1
ORDERING INFORMATION
K6E0808C1E-C10/C12/C15
K6E0808C1E-I10/I12/I15
Commercial Temp.
Industrial Temp.
FUNCTIONAL BLOCK DIAGRAM
A
14
1
A
12
2
28 Vcc
27 WE
26 A
13
25 A
8
24 A
9
23 A
11
Clk Gen.
A
0
A
1
A
2
A
3
A
4
A
5
A
6
A
7
A
8
Pre-Charge-Circuit
A
7
3
A
6
4
A
5
5
Row Select
A
4
6
Memory Array
512 Rows
64x8 Columns
A
3
7
A
2
8
A
1
9
A
0
10
I/O
1
11
SOJ
22 OE
21 A
10
20 CS
19 I/O
8
18 I/O
7
17 I/O
6
16 I/O
5
15 I/O
4
I/O
1
~I/O
8
Data
Cont.
CLK
Gen.
I/O Circuit
Column Select
I/O
2
12
I/O
3
13
Vss 14
PIN FUNCTION
A
9
A
10
A
11
A
12
A
13
A
14
Pin Name
CS
WE
OE
A
0
- A
14
WE
CS
OE
I/O
1
~ I/O
8
V
CC
V
SS
Pin Function
Address Inputs
Write Enable
Chip Select
Output Enable
Data Inputs/Outputs
Power(+5.0V)
Ground
-2-
Revision 2.0
Feburary 1999
K6E0808C1E-C/E-L, K6E0808C1E-I/E-P
ABSOLUTE MAXIMUM RATINGS*
Parameter
Voltage on Any Pin Relative to V
SS
Voltage on V
CC
Supply Relative to V
SS
Power Dissipation
Storage Temperature
Operating Temperature
Commercial
Industrial
Symbol
V
IN
, V
OUT
V
CC
P
D
T
STG
T
A
T
A
Rating
-0.5 to 7.0
-0.5 to 7.0
1.0
-65 to 150
0 to 70
-40 to 85
For Cisco
CMOS SRAM
Unit
V
V
W
°C
°C
°C
*
Stresses greater than those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress rating only and
functional operation of the device at these or any other conditions above those indicated in the operating sections of this specification is not implied.
Exposure to absolute maximum rating conditions for extended periods may affect reliability.
RECOMMENDED DC OPERATING CONDITIONS*
(T
A
=0 to 70°C)
Parameter
Supply Voltage
Ground
Input High Voltage
Input Low Voltage
Symbol
V
CC
V
SS
V
IH
V
IL
Min
4.5
0
2.2
-0.5**
Typ
5.0
0
-
-
Max
5.5
0
V
CC
+0.5***
0.8
Unit
V
V
V
V
* The above parameters are also guaranteed at industrial temperature range.
** V
IL
(Min) = -2.0(Pulse Width≤7ns) for I≤20mA.
***
V
IH
(Max) = V
CC
+2.0V(Pulse Width≤7ns) for I≤20mA.
DC AND OPERATING CHARACTERISTICS*
(T
A
=0 to 70°C,V
CC
=5.0V±10% unless otherwise specified)
Parameter
Input Leakage Current
Output Leakage Current
Operating Current
Symbol
I
LI
I
LO
I
CC
Test Conditions
V
IN
= V
SS
to V
CC
CS=V
IH
or OE=V
IH
or WE=V
IL
V
OUT
= V
SS
to V
CC
Min. Cycle, 100% Duty
CS=V
IL,
V
IN
= V
IH
or V
IL,
I
OUT
=0mA
Min. Cycle, CS=V
IH
f=0MHz, CS≥V
CC
-0.2V,
V
IN
≥V
CC
-0.2V or V
IN
≤0.2V
I
OL
=8mA
I
OH
=-4mA
I
OH1
=0.1mA
Normal
L-Ver
10ns
12ns
15ns
Standby Current
I
SB
I
SB1
Min
-2
-2
-
-
-
-
-
-
-
2.4
-
Max
2
2
80
80
80
20
2
0.6
0.4
-
3.95
V
V
V
mA
mA
Unit
µA
µA
mA
Output Low Voltage Level
Output High Voltage Level
V
OL
V
OH
V
OH1**
* The above parameters are also guaranteed at industrial temperature range.
** V
CC
=5.0V±5%, Temp.=25°C.
CAPACITANCE*
(T
A
=25°C, f=1.0MHz)
Item
Input/Output Capacitance
Input Capacitance
Symbol
C
I/O
C
IN
Test Conditions
V
I/O
=0V
V
IN
=0V
MIN
-
-
Max
8
7
Unit
pF
pF
* Capacitance is sampled and not 100% tested.
-3-
Revision 2.0
Feburary 1999
K6E0808C1E-C/E-L, K6E0808C1E-I/E-P
AC CHARACTERISTICS
(T
A
=0 to 70°C, V
CC
=5.0V±10%, unless otherwise noted.)
TEST CONDITIONS
Parameter
Input Pulse Levels
Input Rise and Fall Times
Input and Output timing Reference Levels
Output Loads
* The above test conditions are also applied at industrial temperature range.
For Cisco
CMOS SRAM
Value
0V to 3V
3ns
1.5V
See below
Output Loads(A)
+5V
480Ω
D
OUT
255Ω
30pF*
Output Loads(B)
for t
HZ
, t
LZ
, t
WHZ
, t
OW
, t
OLZ
& t
OHZ
+5.0V
480Ω
D
OUT
255Ω
5pF*
* Including Scope and Jig Capacitance
READ CYCLE*
Parameter
Read Cycle Time
Address Access Time
Chip Select to Output
Output Enable to Valid Output
Chip Enable to Low-Z Output
Output Enable to Low-Z Output
Chip Disable to High-Z Output
Output Disable to High-Z Output
Output Hold from Address Change
Chip Selection to Power Up Time
Chip Selection to Power DownTime
Symbol
t
RC
t
AA
t
CO
t
OE
t
LZ
t
OLZ
t
HZ
t
OHZ
t
OH
t
PU
t
PD
K6E0808C1E-10
Min
10
-
-
-
3
0
0
0
3
0
-
Max
-
10
10
5
-
-
5
5
-
-
10
K6E0808C1E-12
Min
12
-
-
-
3
0
0
0
3
0
-
Max
-
12
12
6
-
-
6
6
-
-
12
K6E0808C1E-15
Min
15
-
-
-
3
0
0
0
3
0
-
Max
-
15
15
7
-
-
7
7
-
-
15
Unit
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
* The above parameters are also guaranteed at industrial temperature range
.
-4-
Revision 2.0
Feburary 1999
K6E0808C1E-C/E-L, K6E0808C1E-I/E-P
WRITE CYCLE*
Parameter
Write Cycle Time
Chip Select to End of Write
Address Setup Time
Address Valid to End of Write
Write Pulse Width(OE High)
Write Pulse Width(OE Low)
Write Recovery Time
Write to Output High-Z
Data to Write Time Overlap
Data Hold from Write Time
End Write to Output Low-Z
Symbol
t
WC
t
CW
t
AS
t
AW
t
WP
t
WP1
t
WR
t
WHZ
t
DW
t
DH
t
OW
K6E0808C1E-10
Min
10
8
0
8
8
10
0
0
5
0
0
Max
-
-
-
-
-
-
-
5
-
-
-
K6E0808C1E-12
Min
12
9
0
9
9
12
0
0
6
0
0
Max
-
-
-
-
-
-
-
6
-
-
-
For Cisco
CMOS SRAM
K6E0808C1E-15
Min
15
10
0
10
10
15
0
0
7
0
0
Max
-
-
-
-
-
-
-
7
-
-
-
Unit
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
* The above parameters are also guaranteed at industrial temperature range
[i=s]This post was last edited by Aguilera on 2019-12-15 18:20[/i]In some projects made with Arduino, we often use lithium battery packs. In order to prevent lithium batteries from being damaged by ov...
I recently started learning Linux. Many of my classmates have installed VMWARE virtual machines and Ubuntu systems, but I don’t know how to set up Internet access. Most of the tutorials I found online...
Hello everyone: I am a novice and have questions about the following program; mDelay(uint Delay) {unit i; for(;Delay>0;Delay--) {for(i=0;i{;}}} The above program is under 12M crystal. Why is it a 1ms ...
High efficiency and low standby power consumption are two major challenges in today's switching power supply design. Resonant topology or LLC topology is becoming increasingly popular because it ca...[Details]
When the WDP500-2A plane grating monochromator is used to test the emission wavelength of a high-power laser diode at different currents, the matching of the laser diode has the disadvantages of lo...[Details]
No matter which processor you are learning, the first thing you need to understand is the registers and working mode of the processor.
ARM has 37 registers, including 31 general registers and ...[Details]
When choosing a laptop battery, you should consider several factors, such as power, appearance, and quality.
Regarding power, we often see that a manufacturer uses values such as the number ...[Details]
As cellular phones become more advanced, the power consumption of the system during operation and the power consumption during standby are also increasing. Therefore, the power management design of...[Details]
With the development and widespread application of computer technology, especially in the field of industrial control, computer communication is particularly important. Although serial communication g...[Details]
1. System Structure
This system is a simulation system of indoor air-conditioning temperature/humidity control system. The data acquisition and control center collects temperature/humidity...[Details]
0 Introduction
With the rise and continuous improvement of the solid-state lighting industry, light-emitting diodes (LEDs) have become an alternative lighting technology and are gr...[Details]
LED guardrail lights use fluorescent tubes or LEDs as light sources and continuous guardrails as carriers to form an approximately linear guardrail light strip. This article mainly introduces...[Details]
Introduction
Nowadays, people pay more and more attention to the security alarm system, and people have higher and higher requirements for the functions and performance of the alarm. This paper prop...[Details]
0 Introduction
In order to improve the automation control of shortwave transmitters, so that they can automatically process from far to near, the technicians here use the ICS system to complete the ...[Details]
Against the backdrop of global warming, energy conservation and emission reduction have become a global hotspot and focus, which has also sounded the clarion call for the take-off of the LED lighti...[Details]
Every time I go home and walk up the stairs, I am always scared. The corridor lights are often broken, and no one changes the bulbs, or they are not smart enough and need to be operated manually. E...[Details]
The capacity of a battery depends on the amount of charge and discharge, in addition to some factors of the battery itself. Obviously, if the charge and discharge of the battery can be recorded all...[Details]