NJU3151
PRELIMINARY
4-BIT SINGLE CHIP OTP TINY CONTROLLER
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GENERAL DESCRIPTION
The
NJU3151
is the C-MOS 4-bit Single Chip OTP type
Micro Controller with programmable Flash Memory.
It is completely compatible with the
NJU3101
in function
and the pin configuration. Therefore, the
NJU3151
is
suitable for the final evaluation before
NJU3101
mask
generation, the small quantity production and short lead-
time.
*
In this data sheet, only OTP programming and the
difference between
NJU3151
and
NJU3101
are
mentioned mainly.
Therefore the detail function and specification should
be referred on the
NJU3101
data sheet.
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PACKAGE OUTLINE
NJU3151D
NJU3151M
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FEATURES
q
q
q
q
q
Internal One Time Programmable ROM 512 X 8bits
Internal Data RAM
16 X 4bits
Wide operating voltage range
2.7V ~ 5.5V
Package outline
DIP16 / DMP16
ROM programmer “SUPERPRO/L” by XELTEK co,.
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PIN CONFIGURATION IN OTP PROGRAMMING MODE
D0
D1
D2
D3
PROM
CLK
REQ
V
SS
1
2
3
4
5
6
7
8
16
15
14
13
12
11
10
9
V
DD
CNT2
CNT1
D7
D6
D5
D4
RESET
Note) The pin configuration in Normal operating mode is the same as
NJU3101.
-1-
NJU3151
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BLOCK DIAGRAM
CPU CORE
STACK
TLUaddr
MUX
OTP ROM
512 x 8 bit
IR
RAM
16 x 4 bit
ID
STANDBY
CONTROLLER
ALU
CPU
TIMING
GENERATOR
OSC
TEST
RESET
OSC1
OSC2
PC
X’-Reg
Y’-Reg
X-Reg
Y-Reg
AC
V
DD
V
SS
PORT_A
PORT_B
PORT_C
PORT_D
PORT_E
PC0
PD0
PD1
PB0
PE0
-2-
PE1
PA0
PA1
PA2
PA3
NJU3151
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TERMINAL DESCRIPTION IN OTP PROGRAMMING MODE
No.
9
1 - 4,
10 - 13,
14,
15
7
6
5
16
8
Note 1)
2)
SYMBOL
RESET
D0 - D7
CNT1
CNT2
REQ
CLK
PROM
V
DD
V
SS
INPUT/OUTPUT
INPUT
FUNCTION
RESET terminal.
When the low-level input-signal, the system is initialized.
INPUT/OUTPUT Data bus
INPUT
INPUT
OUTPUT
INPUT
INPUT
-
-
OTP control input terminal
Request output terminal
Clock input terminal
OTP programming enable terminal
Power Source (5V)
Power Source (0V)
Use at V
DD
=5V in OTP programming mode.
Non connect anything to the other terminals.
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Difference between NJU3151 (OTP version) and NJU3101 (MASK version)
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Operating mode
One is ”Normal operating mode” and the other is “OTP programming
NJU3151
has two operating modes.
mode”.
•
Normal operating mode
The ”TEST” terminal is set to low level. (The terminal is recommended to connect to GND.)
Operating voltage range; 2.7V ~ 5.5V.
OTP Programming mode
User program is read out from or written into the OTP by the universal programmer “SUPERPRO/L” and
converting adapter made by XELTEK co,.(USA).
•
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Option information set in the initialization
When the initialization is performed(RESET terminal is “L”), the operation information stored in option area is
set as shown in the following timing chart . The option information is set in the term of
1 / f
OSC
x 256clock
after
RESET releasing and oscillation stability time. After information set, the program counter is set to 0000H and
the
NJU3151
operates in normal.
[ TIMING CHART ]
Oscillation
Stability
Time
Oscillator
Clock
Option information setting
1/f
OSC
x256clock
Normal
Operation
Oscillation
Start
PC=0000H
RESET
f
OSC
=4MHz
about 64
µ
sec
-3-
NJU3151
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ABSOLUTE MAXIMUM RATINGS
(Ta=25°C)
PARAMETER
Supply Voltage
Input Voltage
Output Voltage
Operating Temperature
Storage Temperature
SYMBOL
V
DD
V
IN
V
OUT
T
opr
T
stg
RATINGS
-0.3 ~ +7.0
-0.3 ~ V
DD
+ 0.3
-0.3 ~ V
DD
+ 0.3
-20 ~ +75
-55 ~ +125
UNIT
V
V
V
°C
°C
Note)
The difference of electrical characteristics between
NJU3151
(OTP version) and
NJU3101
(MASK version)
NJU3101
•
NJU3151
→
→
→
→
→
→
→
2.7V
Supply Voltage (V
DD
) MIN.
Supply Current
5V (I
DD1
) Max.
(I
DD2
) Max.
(I
DD3
) Max.
(I
DD4
) Max.
3V
(I
DD1
) Max.
(I
DD2
) Max.
(I
DD3
) Max.
(I
DD4
) Max.
2.4V
•
4.0mA
4.0mA
3.8mA
4.0
µ
A
2.0mA
2.0mA
1.8mA
2.0
µ
A
30mA
30mA
30mA
20
µ
A
20mA
20mA
20mA
20
µ
A
-4-
NJU3151
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ELECTRICAL CHARACTERISTICS
SYM
BOL
V
DD
I
DD1
DC CHARACTERISTICS 1
(V
DD
=3.6~5.5V, V
SS
=0V, Ta=-20~75°C)
NOT
MIN
TYP
MAX
UNIT
E
3.6
5.5
V
30
mA
*3
PARAMETER
Supply Voltage
CONDITIONS
V
DD
V
DD
V
DD
=5V, f
OSC
=2MHz
X’tal Oscillation in Reset
V
DD
V
DD
=5V, f
OSC
=2MHz
Ceramic Oscillation in Reset
V
DD
V
DD
=5V, f
OSC
=2MHz
CR Oscillation in Reset
V
DD
V
DD
=5V, STANDBY Mode
V
DD
V
DD
=5V, f
OSC
=4MHz, Operating
PA0~PA3, PB0, PC0,
PD0, PD1
PE0, PE1, RESET
OSC1
PA0~PA3, PB0, PC0,
PD0, PD1
PE0, PE1, RESET
OSC1
V
DD
=5.5V, V
IN
=5.5V
PA0~PA3, PB0, PC0,
PD0, PD1, PE0, PE1, RESET
V
DD
=5.5V, V
IN
=0V
Without pull-up resistance
PA0~PA3, PB0, PC0,
PD0, PD1, PE0, PE1, RESET
V
DD
=5.5V, V
IN
=0V
With pull-up resistance
PA0~PA3, PB0, PC0,
PD0, PD1, PE0, PE1
I
OH
=-100µA
PA0~PA3, PD0, PD1, PE0, PE1
I
OL1
=400µA
PA0~PA3, PD0, PD1, PE0, PE1
I
OL2
=15mA
PB0, PC0
V
DD
=5.5V, V
OH
=5.5V
PB0, PC0
I
DD2
Supply Current
I
DD3
I
DD4
I
DD5
High-Level
Input Voltage
V
IH1
V
IH2
V
IH3
V
IL1
V
IL2
V
IL3
I
IH
30
mA
*3
30
20
30
0.7V
DD
0.8V
DD
V
DD
-1.0
0
0
0
V
DD
V
DD
V
DD
0.3V
DD
0.2V
DD
1.0
10
mA
µA
mA
V
V
V
V
V
V
µA
*3
*3
*3
*1
*1
*1
*1
Low-level
Input Voltage
High-Level
Input Current
*1
I
IL1
Low-Level
Input Current
I
IL2
High-Level
Output Voltage
Low-Level
Output Voltage
Output
Leakage
Current
-10
µA
*1
-100
µA
*1
V
OH
V
OL1
V
OL2
I
OD
V
DD
-0.5
0.5
2.0
10
V
V
V
µA
pF
*2
*2
*2
*2
Except V
DD
, V
SS
terminals
Input Capacitance C
IN
f
OSC
=1MHz
Other terminals : 0V
*1 Input/output port is set as an Input terminal.
*2 Input/output port is set as an Output terminal.
*3 Except the current through Pull-up resister.
10
20
-5-