Operated at Commercial and Industrial Temperature Ranges.
CMOS SRAM
Revision History
Rev No.
Rev. 0.0
Rev. 1.0
History
Initial release with Preliminary.
1.1 Removed Low power Version.
1.2 Removed Data Retention Characteristics.
1.3 Changed I
SB1
to 20mA
Relax D.C parameters.
Item
I
CC
12ns
15ns
20ns
Previous
160mA
155mA
150mA
Current
195mA
190mA
185mA
Final
Draft Data
Feb. 12. 1999
Mar. 29. 1999
Remark
Preliminary
Preliminary
Rev. 2.0
Aug. 19. 1999
Preliminary
Rev. 3.0
3.1 Delete Preliminary
3.2 Update D.C parameters and 10ns part.
I
CC
-
195mA
190mA
185mA
Previous
I
sb
70mA
I
sb1
20mA
I
CC
155mA
145mA
135mA
125mA
Current
I
sb
60mA
I
sb1
10mA
Mar. 27. 2000
10ns
12ns
15ns
20ns
Rev. 4.0
Rev. 5.0
Add Low Power-Ver.
Delete 20ns speed bin
Apr. 24. 2000
Sep. 24. 2001
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-
Rev 5.0
September 2001
PRELIMINARY
K6R4008V1C-C/C-L, K6R4008V1C-I/C-P
512K x 8 Bit High-Speed CMOS Static RAM
FEATURES
• Fast Access Time 10,12,15ns(Max.)
• Low Power Dissipation
Standby (TTL)
: 60mA(Max.)
(CMOS) : 10mA(Max.)
1.2mA(Max.) L-Ver. only
Operating
K6R4008V1C-10 : 155mA(Max.)
K6R4008V1C-12 : 145mA(Max.)
K6R4008V1C-15 : 135mA(Max.)
• Single 3.3±0.3V Power Supply
• TTL Compatible Inputs and Outputs
• Fully Static Operation
- No Clock or Refresh required
• Three State Outputs
• 2V Minimum Data Retention : L-Ver. only
• Center Power/Ground Pin Configuration
• Standard Pin Configuration
K6R4008V1C-J : 36-SOJ-400
K6R4008V1C-T : 44-TSOP2-400BF
CMOS SRAM
GENERAL DESCRIPTION
The K6R4008V1C is a 4,194,304-bit high-speed Static Random
Access Memory organized as 524,288 words by 8 bits. The
K6R4008V1C 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 K6R4008V1C is packaged
in a 400 mil 36-pin plastic SOJ and 44-pin plastic TSOP type II.
FUNCTIONAL BLOCK DIAGRAM
Clk Gen.
A
0
A
1
A
2
A
3
A
4
A
5
A
6
A
7
A
8
A
9
I/O
1
~I/O
8
ORDERING INFORMATION
K6R4008V1C-C10/C12/C15
Commercial Temp.
Industrial Temp.
K6R4008V1C-I10/I12/I15
Pre-Charge Circuit
Row Select
Memory Array
1024 Rows
512 x 8 Columns
Data
Cont.
CLK
Gen.
I/O Circuit
Column Select
A
10
A
11
A
12
A
13
A
14
A
15
A
16
A
17
A
18
CS
WE
OE
-2-
Rev 5.0
September 2001
PRELIMINARY
K6R4008V1C-C/C-L, K6R4008V1C-I/C-P
PIN CONFIGURATION
(Top View)
A
0
A
1
A
2
A
3
A
4
CS
I/O
1
I/O
2
Vcc
Vss
1
2
3
4
5
6
7
8
9
10
36 N.C
35 A
18
34 A
17
33 A
16
32 A
15
31
OE
N.C
N.C
A
0
A
1
A
2
A
3
A
4
CS
I/O
1
1
2
3
4
5
6
7
8
9
44 N.C
43 N.C
42 N.C
41
40
39
38
37
A
18
A
17
A
16
A
15
OE
CMOS SRAM
30 I/O
8
29 I/O
7
36 I/O
8
35 I/O
7
36-SOJ
I/O
2
10
Vcc 11
Vss 12
I/O
3
13
I/O
4
14
WE
A
5
A
6
A
7
A
8
A
9
15
16
17
18
19
20
28 Vss
27 Vcc
26 I/O
6
25 I/O
5
24 A
14
23 A
13
22 A
12
21 A
11
20 A
10
19 N.C
44-TSOP2
34 Vss
33 Vcc
32 I/O
6
31 I/O
5
30
29
28
27
26
A
14
A
13
A
12
A
11
A
10
I/O
3
11
I/O
4
12
WE
A
5
A
6
A
7
A
8
A
9
13
14
15
16
17
18
25 N.C
24 N.C
23 N.C
N.C 21
N.C 22
PIN FUNCTION
Pin Name
A
0
- A
18
WE
CS
OE
I/O
1
~ I/O
8
V
CC
V
SS
N.C
Pin Function
Address Inputs
Write Enable
Chip Select
Output Enable
Data Inputs/Outputs
Power(+3.3V)
Ground
No Connection
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 4.6
-0.5 to 4.6
1.0
-65 to 150
0 to 70
-40 to 85
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.
-3-
Rev 5.0
September 2001
PRELIMINARY
K6R4008V1C-C/C-L, K6R4008V1C-I/C-P
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
3.0
0
2.0
-0.3**
Typ
3.3
0
-
-
Max
3.6
0
V
CC
+0.3***
0.8
Unit
V
V
V
V
CMOS SRAM
* The above parameters are also guaranteed at industrial temperature range.
** V
IL
(Min) = -2.0V a.c(Pulse Width
≤
8ns) for I
≤
20mA.
*** V
IH
(Max) = V
CC
+ 2.0V a.c (Pulse Width
≤
8ns) for I
≤
20mA
DC AND OPERATING CHARACTERISTICS*
(T
A
=0 to 70°C, Vcc=3.3±0.3V, unless otherwise specified)
Parameter
Input Leakage Current
Output Leakage Current
Operating Current
Symbol
I
LI
I
LO
I
CC
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
Com.
10ns
12ns
15ns
Ind.
10ns
12ns
15ns
Standby Current
I
SB
I
SB1
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
Norrmal
L-Ver.
Test Conditions
Min
-2
-2
-
-
-
-
-
-
-
-
-
-
2.4
Max
2
2
155
145
135
170
160
150
60
10
1.2
0.4
-
V
V
mA
Unit
µA
µA
mA
Output Low Voltage Level
Output High Voltage Level
V
OL
V
OH
* The above parameters are also guaranteed at industrial temperature range.
CAPACITANCE*
(T
A
=25°C, f=1.0MHz)
Item
Input/Output Capacitance
Input Capacitance
* Capacitance is sampled and not 100% tested.
Symbol
C
I/O
C
IN
Test Conditions
V
I/O
=0V
V
IN
=0V
MIN
-
-
Max
8
7
Unit
pF
pF
-4-
Rev 5.0
September 2001
PRELIMINARY
K6R4008V1C-C/C-L, K6R4008V1C-I/C-P
AC CHARACTERISTICS
(T
A
=0 to 70°C, V
CC
=3.3±0.3V, 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.
CMOS SRAM
Value
0V to 3V
3ns
1.5V
See below
Output Loads(A)
Output Loads(B)
for t
HZ
, t
LZ
, t
WHZ
, t
OW
, t
OLZ
& t
OHZ
R
L
= 50Ω
+3.3V
D
OUT
V
L
= 1.5V
Z
O
= 50Ω
30pF*
D
OUT
353Ω
319Ω
5pF*
* Capacitive Load consists of all components of the
test environment.
* Including Scope and Jig Capacitance
READ CYCLE*
K6R4008V1C-10
K6R4008V1C-12
K6R4008V1C-15
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
Min
10
-
-
-
3
0
0
0
3
0
-
Max
-
10
10
5
-
-
5
5
-
-
10
Min
12
-
-
-
3
0
0
0
3
0
-
Max
-
12
12
6
-
-
6
6
-
-
12
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.
Have you ever encountered this question: "If you are asked to choose between production efficiency and product quality, which one would you choose?" The reality is that we are often asked to prioritiz...
The Mid-Autumn Festival is coming soon, and I would like to recommend an activity for you to guess the number and win a Mid-Autumn Festival mooncake gift box!Now, just scan the QR code with your mobil...
[i=s]This post was last edited by freeelectron on 2022-4-13 19:35[/i]0. Implementation ideas
This article uses the serial port receive interrupt and idle interrupt to realize the serial port variable ...
Teledyne Technologies Incorporated and FLIR Systems, Inc. today jointly announced that they have entered into a definitive agreement for Teledyne to acquire FLIR in a cash and stock transaction value...[Details]
1. USART for asynchronous communication 1.1 USART asynchronous working mode In asynchronous mode, the USART uses the standard non-return-to-zero (NRZ) encoding format: one start bit, 8 or 9 data bi...[Details]
What if I change the parameter configuration? Then compile again to package errors As follows In fact, we are close to here. In the article "Transplanting s3c2440 ads program to keil (Part 2)"...[Details]
(Image source: LESC official website) According to foreign media reports, researchers from the University of California, San Diego (UCSD) and the University of Texas at Austin, together with colle...[Details]
Apple's new iPhone this year has entered the countdown stage of stocking. The supply chain has reported that this year's new phone will be named iPhone 13. In the distribution of assembly orders, Fox...[Details]
introduction
The MSP430 series microcontroller is a 16-bit ultra-low power microcontroller launched by Texas Instruments (TI). It can operate at 1.8~3.6V voltage and 1MHz frequency, and the power co...[Details]
In the prior art, after the steel needles are produced, the quality of the steel needles is mainly inspected manually. However, there are two problems in the manual inspection of steel needles: first...[Details]
According to TrendForce's survey, the third quarter PC DRAM contract price has been largely agreed upon. Benefiting from the low inventory of DRAM suppliers and the peak season effect, the contract p...[Details]
At present, the main oil pumping units at home and abroad are oil beam type oil pumping units, which have the following disadvantages: long transmission chain, poor controllability, low system effici...[Details]
All oscilloscopes have a limited amount of acquisition memory, and the oscilloscope's memory depth determines the waveform time and the number of serial packets captured at a specific sampling rate. ...[Details]
On July 21, Yanfeng, a global auto parts supplier, released breakthrough seat-integrated safety technology for future mobility. This technology brings together a package of seat-integrated safety sol...[Details]
There are two most common ways to achieve LED dimming: pulse width modulation dimming (PWM Dimming) and analog dimming (Analog Dimming). Analog dimming adjusts the brightness of the light by changing...[Details]
October 18, 2024, Tessenderlo, Belgium -
Melexis, a global microelectronics engineering company, announced the launch of the 24V/60W sensorless single-coil BLDC driver chip MLX90416, which is d...[Details]
2.2.1 Determination of emitter E Set the multimeter to the R × 100 range or the R × 1k range, connect the black probe to the assumed emitter, and the red probe to the other two poles. When two low re...[Details]
CNC (Computer Numerical Control) system is a kind of automation equipment controlled by computer, which is widely used in mechanical processing, mold manufacturing, aerospace and other fields. CNC ...[Details]