3.3V 1 Megabit (128K x 8-Bit)
EEPROM
V
CC
V
SS
RES
OE
CE
WE
RES
A0
A6
Address
Buffer and
Latch
A7
A16
Data Latch
Y Decoder
Y Gating
I/O Buffer and
Input Latch
Control Logic Timing
High Voltage
Generator
I/O0
I/O7
RDY/Busy
28LV010
X Decoder
Memory Array
Logic Diagram
Memory
F
EATURES
:
• 3.3V low voltage operation 128K x 8 Bit EEPROM
• R
AD
-P
AK
® radiation-hardened against natural space
radiation
• Total dose hardness:
- > 100 krad (Si), depending upon space mission
• Excellent Single Event Effects:
- SEL
TH
> 84 MeV/mg/cm
2
- SEU
TH
> 26 Mev/mg/cm
2
(read mode)
- SEU saturated cross section = 2E
-12
cm
2/
Bit (read mode)
- SEU
TH
= 11 Mev/mg/cm
2
(write mode)
- SEU saturated cross section = 6E
-9
cm
2
/Bit (write mode)
• Package:
- 32 Pin R
AD
-P
AK
® flat pack
- 32 Pin R
AD
-P
AK
® DIP
- JEDEC-approved byte-wide pinout
• Address Access Time:
- 200, 250 ns maximum access times available
• High endurance:
- 10,000 erase/write (in Page Mode), 10-year data
retention
• Page write mode:
- 1 to 128 bytes
• Automatic programming
- 15 ms automatic page/byte write
• Low power dissipation
- 20 mW/MHz active current (typ.)
- 72 µW standby (maximum)
D
ESCRIPTION
:
Maxwell Technologies’ 28LV010 high density, 3.3V, 1 Megabit
EEPROM microcircuit features a greater than 100 krad (Si)
total dose tolerance, depending upon space mission. The
28LV010 is capable of in-system electrical Byte and Page pro-
grammability. It has a 128-Byte Page Programming function to
make its erase and write operations faster. It also features
Data Polling and a Ready/Busy signal to indicate the comple-
tion of erase and programming operations. In the 28LV010,
hardware data protection is provided with the RES pin, in addi-
tion to noise protection on the WE signal and write inhibit on
power on and off. Meanwhile, software data protection is
implemented using the JEDEC-optional Standard algorithm.
The 28LV010 is designed for high reliability in the most
demanding space applications.
Maxwell Technologies' patented R
AD
-P
AK
® packaging technol-
ogy incorporates radiation shielding in the microcircuit pack-
age. It eliminates the need for box shielding while providing
the required radiation shielding for a lifetime in orbit or space
mission. In a GEO orbit, R
AD
-P
AK
provides greater than 100
krad (Si) radiation dose tolerance. This product is available
with screening up to Class S.
09.05.2012 Rev 8
All data sheets are subject to change without notice
1
(858) 503-3300 - Fax: (858) 503-3301- www.maxwell.com
©2012 Maxwell Technologies
All rights reserved.
3.3V 1 Megabit (128K x 8-Bit) EEPROM
T
ABLE
1. 28LV010 P
INOUT
D
ESCRIPTION
P
IN
S
YMBOL
D
ESCRIPTION
Address
Input/Output
Output Enable
Chip Enable
Write Enable
Power Supply
Ground
Ready/Busy
Reset
12-5, 27, 26, 23, 25, A0-A16
4, 28, 3, 31, 2
13-15, 17-21
24
22
29
32
16
1
30
I/O0 - I/O7
OE
CE
WE
V
CC
V
SS
RDY/BUSY
RES
28LV010
Memory
T
ABLE
2. 28LV010 A
BSOLUTE
M
AXIMUM
R
ATINGS
P
ARAMETER
Supply Voltage (Relative to Vss)
Input Voltage (Relative to Vss)
Package Weight
S
YMBOL
V
CC
V
IN
RP
RT
RD
Thermal Impedence
Operating Temperature Range
Storage Temperature Range
1. V
IN
min = -3.0 V for pulse width < 50 ns.
F
JC
T
OPR
T
STG
-55
-65
M
IN
-0.6
-0.5
1
7.38
2.69
10.97
2.17
125
150
°C/W
°C
°C
T
YP
M
AX
7.0
7.0
U
NIT
V
V
Grams
T
ABLE
3. D
ELTA
L
IMITS1
P
ARAMETER
I
CC1
I
CC2
I
CC3A
V
ARIATION2
±10%
±10%
±10%
I
CC3B
±10%
1. Parameters are measured and recorded as Deltas per
MIL-STD-883 for Class S Devices
2. Specified in Table 6
09.05.2012 Rev 8
All data sheets are subject to change without notice
2
©2012 Maxwell Technologies
All rights reserved.
3.3V 1 Megabit (128K x 8-Bit) EEPROM
T
ABLE
7. 28LV010 AC C
HARACTERISTICS FOR
R
EAD
O
PERATION1
(V
CC
= 3.3V ± 10%, T
A
= -55
TO
+125 °C
UNLESS OTHERWISE SPECIFIED
)
P
ARAMETER
Address Access Time
-200
-250
Chip Enable Access Time
-200
-250
Output Enable Access Time
-200
-250
T
EST
C
ONDITIONS
CE = OE = V
IL
, WE = V
IH
S
YMBOL
t
ACC
S
UBGROUPS
9, 10, 11
--
--
9, 10, 11
--
--
9, 10, 11
0
0
9, 10, 11
0
0
9, 10, 11
0
0
9, 10, 11
0
0
9, 10, 11
0
0
M
IN
28LV010
M
AX
200
250
U
NIT
ns
OE = V
IL
, WE = V
IH
t
CE
ns
200
250
ns
110
120
ns
--
--
ns
50
50
ns
300
350
ns
525
600
CE = V
IL
, WE = V
IH
t
OE
Output Hold to Address Change
-200
CE = OE = V
IL
, WE = V
IH
-250
Output Disable to High-Z
2
-200
-250
Output Disable to High-Z
-200
-250
RES to Output Delay
3
-200
-250
CE = V
IL
, WE = V
IH
t
OH
t
DF
Memory
CE =OE= V
IL
, WE = V
IH
t
DFR
CE = OE = V
IL
WE = V
IH
t
RR
1. Test conditions: Input pulse levels - 0.4V to 2.4V; input rise and fall times < 20 ns; output load - 1 TTL gate + 100 pF (including
scope and jig); reference levels for measuring timing - 0.8V/1.8V.
2.
t
DF
and t
DFR
is defined as the time at which the output becomes an open circuit and data is no longer driven.
3. Guaranteed by design.
09.05.2012 Rev 8
All data sheets are subject to change without notice
4
©2012 Maxwell Technologies
All rights reserved.
3.3V 1 Megabit (128K x 8-Bit) EEPROM
28LV010
T
ABLE
8. 28LV010 AC E
LECTRICAL
C
HARACTERISTICS FOR
E
RASE AND
W
RITE
O
PERATIONS
(V
CC
= 3.3V ± 10%, T
A
= -55
TO
+125 °C
UNLESS OTHERWISE SPECIFIED
)
P
ARAMETER
Address Setup Time
-200
-250
Chip Enable to Write Setup Time (WE controlled)
-200
-250
Write Pulse Width (CE controlled)
-200
-250
Write Pulse Width (WE controlled)
-200
-250
Address Hold Time
-200
-250
Data Setup Time
-200
-250
Data Hold Time
-200
-250
Chip Enable Hold Time (WE controlled)
-200
-250
Write Enable to Write Setup Time (CE controlled)
-200
-250
Write Enable Hold Time (CE controlled)
-200
-250
Output Enable to Write Setup Tim
-200
-250
Output Enable Hold Time
-200
-250
Write Cycle Time
1,2
-200
-250
S
YMBOL
t
AS
S
UBGROUPS
9, 10, 11
0
0
9, 10, 11
0
0
9, 10, 11
200
250
9, 10, 11
200
250
9, 10, 11
125
150
9, 10, 11
100
100
9, 10, 11
10
10
9, 10, 11
0
0
9, 10, 11
0
0
9, 10, 11
0
0
9, 10, 11
0
0
9, 10, 11
0
0
9, 10, 11
--
--
15
15
--
--
ms
--
--
ns
--
--
ns
--
--
ns
--
--
ns
--
--
ns
--
--
ns
--
--
ns
--
--
ns
--
--
ns
--
--
ns
--
--
ns
M
IN
M
AX
U
NIT
ns
t
CS
t
CW
t
WP
t
AH
Memory
t
DS
t
DH
t
CH
t
WS
t
WH
t
OES
t
OEH
t
WC
09.05.2012 Rev 8
All data sheets are subject to change without notice
5
©2012 Maxwell Technologies
All rights reserved.