LH28F800BGN-BL12 Sharp Electronics, LH28F800BGN-BL12 Datasheet - Page 23

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LH28F800BGN-BL12

Manufacturer Part Number
LH28F800BGN-BL12
Description
Manufacturer
Sharp Electronics
Datasheet

Specifications of LH28F800BGN-BL12

Cell Type
NOR
Density
8Mb
Interface Type
Parallel
Boot Type
Bottom
Address Bus
19b
Operating Supply Voltage (typ)
3.3/5V
Operating Temp Range
0C to 70C
Package Type
SOP
Program/erase Volt (typ)
2.7/3.3/5/12V
Sync/async
Asynchronous
Operating Temperature Classification
Commercial
Operating Supply Voltage (min)
2.7/4.5V
Operating Supply Voltage (max)
3.6/5.5V
Word Size
16b
Number Of Words
512K
Supply Current
65mA
Mounting
Surface Mount
Pin Count
44
Lead Free Status / Rohs Status
Not Compliant
6.2.1 CAPACITANCE
NOTE :
1. Sampled, not 100% tested.
6.2.2 AC INPUT/OUTPUT TEST CONDITIONS
C
C
SYMBOL
IN
OUT
AC test inputs are driven at 2.7 V for a Logic "1" and 0.0 V for a Logic "0". Input timing begins, and output
timing ends, at 1.35 V. Input rise and fall times (10% to 90%) < 10 ns.
AC test inputs are driven at 3.0 V for a Logic "1" and 0.0 V for a Logic "0". Input timing begins, and output
timing ends, at 1.5 V. Input rise and fall times (10% to 90%) < 10 ns.
AC test inputs are driven at V
begins at V
90%) < 10 ns.
Input Capacitance
Output Capacitance
0.45
2.7
0.0
3.0
0.0
2.4
Fig. 8 Transient Input/Output Reference Waveform for V
IH
Fig. 7 Transient Input/Output Reference Waveform for V
(2.0 V
PARAMETER
INPUT
INPUT
TTL
INPUT
(NOTE 1)
) and V
Fig. 9 Transient Input/Output Reference Waveform for
V
IL
CC
OH
V
(0.8 V
CC
(2.4 V
= 5.0±0.25 V (High Speed Testing Configuration)
= 5.0±0.5 V (Standard Testing Configuration)
1.35
1.5
TTL
2.0
0.8
TTL
). Output timing ends at V
T
) for a Logic "1" and V
A
= +25
TYP.
- 23 -
7
9
TEST POINTS
TEST POINTS
˚
TEST POINTS
C, f = 1 MHz
MAX.
10
12
OL
IH
and V
(0.45 V
IL
. Input rise and fall times (10% to
TTL
CC
CC
UNIT
) for a Logic "0". Input timing
pF
pF
= 3.3±0.3 V and
LH28F800BG-L (FOR SOP)
1.35
1.5
= 2.7 to 3.6 V
0.8
2.0
OUTPUT
OUTPUT
OUTPUT
V
V
IN
OUT
= 0.0 V
= 0.0 V
CONDITION

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