首页 > 器件类别 > 存储 > 存储

K4F640812D-JL600

Fast Page DRAM, 8MX8, 60ns, CMOS, PDSO32, 0.400 INCH, PLASTIC, SOJ-32

器件类别:存储    存储   

厂商名称:SAMSUNG(三星)

厂商官网:http://www.samsung.com/Products/Semiconductor/

下载文档
器件参数
参数名称
属性值
是否Rohs认证
不符合
厂商名称
SAMSUNG(三星)
零件包装代码
SOJ
包装说明
SOJ, SOJ32,.44
针数
32
Reach Compliance Code
unknown
ECCN代码
EAR99
访问模式
FAST PAGE
最长访问时间
60 ns
其他特性
RAS ONLY/CAS BEFORE RAS/HIDDEN REFRESH/SELF REFRESH
I/O 类型
COMMON
JESD-30 代码
R-PDSO-J32
长度
20.96 mm
内存密度
67108864 bit
内存集成电路类型
FAST PAGE DRAM
内存宽度
8
湿度敏感等级
1
功能数量
1
端口数量
1
端子数量
32
字数
8388608 words
字数代码
8000000
工作模式
ASYNCHRONOUS
最高工作温度
70 °C
最低工作温度
组织
8MX8
输出特性
3-STATE
封装主体材料
PLASTIC/EPOXY
封装代码
SOJ
封装等效代码
SOJ32,.44
封装形状
RECTANGULAR
封装形式
SMALL OUTLINE
峰值回流温度(摄氏度)
225
电源
3.3 V
认证状态
Not Qualified
刷新周期
4096
座面最大高度
3.76 mm
自我刷新
YES
最大待机电流
0.001 A
最大压摆率
0.1 mA
最大供电电压 (Vsup)
3.6 V
最小供电电压 (Vsup)
3 V
标称供电电压 (Vsup)
3.3 V
表面贴装
YES
技术
CMOS
温度等级
COMMERCIAL
端子形式
J BEND
端子节距
1.27 mm
端子位置
DUAL
处于峰值回流温度下的最长时间
NOT SPECIFIED
宽度
10.16 mm
文档预览
K4F660812D,K4F640812D
8M x 8bit CMOS Dynamic RAM with Fast Page Mode
DESCRIPTION
CMOS DRAM
This is a family of 8,388,608 x 8 bit Fast Page Mode CMOS DRAMs. Fast Page Mode offers high speed random access of memory cells
within the same row. Refresh cycle(4K Ref. or 8K Ref.), access time (-45, -50 or -60), power consumption(Normal or Low power) are
optional features of this family. All of this family have CAS-before-RAS refresh, RAS-only refresh and Hidden refresh capabilities. Fur-
thermore, Self-refresh operation is available in L-version. This 8Mx8 Fast Page Mode DRAM family is fabricated using Samsung′s
advanced CMOS process to realize high band-width, low power consumption and high reliability.
FEATURES
• Part Identification
- K4F660812D-JC/L(3.3V, 8K Ref., SOJ)
- K4F640812D-JC/L(3.3V, 4K Ref., SOJ)
- K4F660812D-TC/L(3.3V, 8K Ref., TSOP)
- K4F640812D-TC/L(3.3V, 4K Ref., TSOP)
• Fast Page Mode operation
• CAS-before-RAS refresh capability
• RAS-only and Hidden refresh capability
• Self-refresh capability (L-ver only)
• Fast parallel test mode capability
• LVTTL(3.3V) compatible inputs and outputs
Active Power Dissipation
Unit : mW
Speed
-45
-50
-60
Refresh Cycles
Part
NO.
K4F660812D*
K4F640812D
Refresh
cycle
8K
4K
Refresh time
Normal
64ms
L-ver
128ms
RAS
CAS
W
Control
Clocks
Vcc
Vss
• Early Write or output enable controlled write
• JEDEC Standard pinout
• Available in Plastic SOJ and TSOP(II) packages
• +3.3V±0.3V power supply
4K
432
396
360
8K
324
288
252
FUNCTIONAL BLOCK DIAGRAM
VBB Generator
Refresh Control
Refresh Counter
Memory Array
8,388,608 x 8
Cells
Sense Amps & I/O
* Access mode & RAS only refresh mode
: 8K cycle/64ms(Normal), 8K cycle/128ms(L-ver.)
CAS-before-RAS & Hidden refresh mode
: 4K cycle/64ms(Normal), 4K cycle/128ms(L-ver.)
Performance Range
Speed
-45
-50
-60
Refresh Timer
Row Decoder
Data in
Buffer
DQ0
to
DQ7
Data out
Buffer
OE
t
RAC
45ns
50ns
60ns
t
CAC
12ns
13ns
15ns
t
RC
80ns
90ns
110ns
t
PC
31ns
35ns
40ns
A0~A12
(A0~A11)*1
A0~A9
(A0~A10)*1
Row Address Buffer
Col. Address Buffer
Column Decoder
Note) *1 : 4K Refresh
SAMSUNG ELECTRONICS CO., LTD.
reserves the right to
change products and specifications without notice.
K4F660812D,K4F640812D
CMOS DRAM
PIN CONFIGURATION
(Top Views)
K4F660812D-J
K4F640812D-J
V
CC
DQ0
DQ1
DQ2
DQ3
N.C
V
CC
W
RAS
A0
A1
A2
A3
A4
A5
V
CC
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
32
31
30
29
28
27
26
25
24
23
22
21
20
19
18
17
V
SS
DQ7
DQ6
DQ5
DQ4
V
SS
CAS
OE
A12(N.C)*
A11
A10
A9
A8
A7
A6
V
SS
V
CC
DQ0
DQ1
DQ2
DQ3
N.C
V
CC
W
RAS
A0
A1
A2
A3
A4
A5
V
CC
K4F660812D-T
K4F640812D-T
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
32
31
30
29
28
27
26
25
24
23
22
21
20
19
18
17
V
SS
DQ7
DQ6
DQ5
DQ4
V
SS
CAS
OE
A12(N.C)*
A11
A10
A9
A8
A7
A6
V
SS
(J : 400mil SOJ)
(T : 400mil TSOP(II))
* (N.C) : N.C for 4K Refresh product
Pin Name
A0 - A12
A0 - A11
DQ0 - 7
V
SS
RAS
CAS
W
OE
V
CC
N.C
Pin Function
Address Inputs(8K Product)
Address Inputs(4K Product)
Data In/Out
Ground
Row Address Strobe
Column Address Strobe
Read/Write Input
Data Output Enable
Power(+3.3V)
No Connection
K4F660812D,K4F640812D
ABSOLUTE MAXIMUM RATINGS
Parameter
Voltage on any pin relative to V
SS
Voltage on V
CC
supply relative to V
SS
Storage Temperature
Power Dissipation
Short Circuit Output Current
Symbol
V
IN,
V
OUT
V
CC
Tstg
P
D
I
OS
Address
Rating
-0.5 to +4.6
-0.5 to +4.6
-55 to +150
1
50
CMOS DRAM
Units
V
V
°C
W
mA
* Permanent device damage may occur if "ABSOLUTE MAXIMUM RATINGS" are exceeded. Functional operation should be restricted to
the conditions as detailed in the operational sections of this data sheet. Exposure to absolute maximum rating conditions for extended
periods may affect device reliability.
RECOMMENDED OPERATING CONDITIONS
(Voltage referenced to Vss, 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
*2
Typ
3.3
0
-
-
Max
3.6
0
Vcc+0.3
*1
0.8
Units
V
V
V
V
*1 : Vcc+1.3V at pulse width≤15ns which is measured at V
CC
*2 : -1.3 at pulse width≤15ns which is measured at V
SS
DC AND OPERATING CHARACTERISTICS
(Recommended operating conditions unless otherwise noted.)
Parameter
Input Leakage Current (Any input 0≤V
IN
≤V
CC
+0.3V,
all other pins not under test=0 Volt)
Output Leakage Current
(Data out is disabled, 0V≤V
OUT
≤V
CC
)
Output High Voltage Level(I
OH
=-2mA)
Output Low Voltage Level(I
OL
=2mA)
Symbol
I
I(L)
I
O(L)
V
OH
V
OL
Min
-5
-5
2.4
-
Max
5
5
-
0.4
Units
uA
uA
V
V
K4F660812D,K4F640812D
DC AND OPERATING CHARACTERISTICS
(Continued)
Symbol
Power
Speed
K4F660812D
I
CC1
Don′t care
-45
-50
-60
Don′t care
-45
-50
-60
-45
-50
-60
Don′t care
-45
-50
-60
Don′t care
Don′t care
90
80
70
1
1
90
80
70
70
60
50
0.5
200
120
110
100
350
350
Max
K4F640812D
120
110
100
1
1
120
110
100
70
60
50
0.5
200
120
110
100
350
350
CMOS DRAM
Units
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
mA
uA
mA
mA
mA
uA
uA
I
CC2
Normal
L
I
CC3
Don′t care
I
CC4
Don′t care
I
CC5
Normal
L
I
CC6
I
CC7
I
CCS
Don′t care
L
L
I
CC1
* : Operating Current (RAS and CAS, Address cycling @
t
RC
=min.)
I
CC2
: Standby Current (RAS=CAS=W=V
IH
)
I
CC3
* : RAS-only Refresh Current (CAS=V
IH
, RAS, Address cycling @
t
RC
=min.)
I
CC4
* : Fast Page Mode Current (RAS=V
IL
, CAS, Address cycling @
t
PC
=min.)
I
CC5
: Standby Current (RAS=CAS=W=V
CC
-0.2V)
I
CC6
* : CAS-Before-RAS Refresh Current (RAS and CAS cycling @
t
RC
=min)
I
CC7
: Battery back-up current, Average power supply current, Battery back-up mode
Input high voltage(V
IH
)=V
CC
-0.2V, Input low voltage(V
IL
)=0.2V, CAS=CAS-before-RAS cycling or 0.2V,
W, OE=V
IH
, Address=Don′t care, DQ=Open, T
RC
=31.25us
I
CCS
: Self Refresh Current
RAS=CAS=0.2V, W=OE=A0 ~ A12(A11)=V
CC
-0.2V or 0.2V, DQ0 ~ DQ7=V
CC
-0.2V, 0.2V or Open
*Note :
I
CC1
, I
CC3
, I
CC4
and I
CC6
are dependent on output loading and cycle rates. Specified values are obtained with the output open.
I
CC
is specified as an average current. In I
CC1
, I
CC3
and I
CC6,
address can be changed maximum once while RAS=V
IL
. In I
CC4
,
address can be changed maximum once within one fast page mode cycle time,
t
PC
.
K4F660812D,K4F640812D
CAPACITANCE
(T
A
=25°C, V
CC
=3.3V, f=1MHz)
Parameter
Input capacitance [A0 ~ A12]
Input capacitance [RAS, CAS, W, OE]
Output capacitance [DQ0 - DQ7]
Symbol
C
IN1
C
IN2
C
DQ
Min
-
-
-
CMOS DRAM
Max
5
7
7
Units
pF
pF
pF
AC CHARACTERISTICS
(0°C≤T
A
≤70°C,
See note 2)
Test condition : V
CC
=3.3V±0.3V, Vih/Vil=2.2/0.7V, Voh/Vol=2.0/0.8V
Parameter
Random read or write cycle time
Read-modify-write cycle time
Access time from RAS
Access time from CAS
Access time from column address
CAS to output in Low-Z
Output buffer turn-off delay
Transition time (rise and fall)
RAS precharge time
RAS pulse width
RAS hold time
CAS hold time
CAS pulse width
RAS to CAS delay time
RAS to column address delay time
CAS to RAS precharge time
Row address set-up time
Row address hold time
Column address set-up time
Column address hold time
Column address to RAS lead time
Read command set-up time
Read command hold time referenced to CAS
Read command hold time referenced to RAS
Write command hold time
Write command pulse width
Write command to RAS lead time
Write command to CAS lead time
Data set-up time
Data hold time
Symbol
Min
-45
Max
Min
90
133
45
12
23
0
0
1
25
45
12
45
12
18
13
5
0
8
0
8
23
0
0
0
8
8
13
12
0
10
10K
33
22
10K
13
50
0
0
1
30
50
13
50
13
20
15
5
0
10
0
10
25
0
0
0
10
10
15
13
0
10
10K
37
25
10K
13
50
50
13
25
0
0
1
40
60
15
60
15
20
15
5
0
10
0
10
30
0
0
0
10
10
15
15
0
10
10K
45
30
10K
13
50
-50
Max
Min
110
153
60
15
30
-60
Max
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
9
9
8
8
4
10
3,4,10
3,4,5
3,10
3
6
2
Units
Note
t
RC
t
RWC
t
RAC
t
CAC
t
AA
t
CLZ
t
OFF
t
T
t
RP
t
RAS
t
RSH
t
CSH
t
CAS
t
RCD
t
RAD
t
CRP
t
ASR
t
RAH
t
ASC
t
CAH
t
RAL
t
RCS
t
RCH
t
RRH
t
WCH
t
WP
t
RWL
t
CWL
t
DS
t
DH
80
115
查看更多>
电机上电瞬间引起单片机复位的问题
驱动信号已经通过光耦隔离,复位电路是低电平复位,vcc接电阻,电容接地,是什么原因呢? 电机上电瞬间...
csallon 嵌入式系统
萌新请教下这个定时器输出问题
P4SEL |= BIT1+BIT2; P4DIR |= BIT1+BIT2; TBCCR0...
x2332 微控制器 MCU
吉时利2510-AT温度控制源表自动调谐算法的测试说明
2510-AT 型自动调谐温度控制源表温度控制环路采用自动调谐方法,而自动调谐算法分别对系统 T...
Jack_ma 测试/测量
为什么增计数模式需要加TA0CCTL0 = CCIE;
在以下一段程序中,为什么要加这句话呢?不是TA0CCTL0 = CCIE;只是用来使比较模块中断允...
ckx提问 微控制器 MCU
想做一个遥控控制定时器的东西,不用太复杂,给推荐个遥控功能的芯片。
好像说的不够专业啊,能明白就好了。我自己找了找,快花眼了,太多了,不知道该用哪个。 想做一个遥控控制...
z229586 嵌入式系统
用20脚2553芯片代替28脚芯片进行DIY的思路
用20脚2553芯片代替28脚芯片进行DIY的思路 在收到板子第一天,就想把板子焊好。 可...
exiao DIY/开源硬件专区
热门器件
热门资源推荐
器件捷径:
L0 L1 L2 L3 L4 L5 L6 L7 L8 L9 LA LB LC LD LE LF LG LH LI LJ LK LL LM LN LO LP LQ LR LS LT LU LV LW LX LY LZ M0 M1 M2 M3 M4 M5 M6 M7 M8 M9 MA MB MC MD ME MF MG MH MI MJ MK ML MM MN MO MP MQ MR MS MT MU MV MW MX MY MZ N0 N1 N2 N3 N4 N5 N6 N7 N8 NA NB NC ND NE NF NG NH NI NJ NK NL NM NN NO NP NQ NR NS NT NU NV NX NZ O0 O1 O2 O3 OA OB OC OD OE OF OG OH OI OJ OK OL OM ON OP OQ OR OS OT OV OX OY OZ P0 P1 P2 P3 P4 P5 P6 P7 P8 P9 PA PB PC PD PE PF PG PH PI PJ PK PL PM PN PO PP PQ PR PS PT PU PV PW PX PY PZ Q1 Q2 Q3 Q4 Q5 Q6 Q8 Q9 QA QB QC QE QF QG QH QK QL QM QP QR QS QT QV QW QX QY R0 R1 R2 R3 R4 R5 R6 R7 R8 R9 RA RB RC RD RE RF RG RH RI RJ RK RL RM RN RO RP RQ RR RS RT RU RV RW RX RY RZ
需要登录后才可以下载。
登录取消