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IZ1242M

型号:

IZ1242M

描述:

科学的10位LCD计算器[ Scientific 10 Digits LCD Calculator ]

品牌:

INTEGRAL[ INTEGRAL CORP. ]

页数:

18 页

PDF大小:

353 K

IZ1242M  
Scientific 10 Digits LCD Calculator  
IZ1242M  
The IZ1242M is the CMOS LSI for 10-digit display and the complete single chip for scientific  
calculator with 56 programmed functions.  
FUNCTIONS  
FEATURES  
Six operations  
Display  
-10 display digits plus negative code digit  
- scientific and engineering displays  
- 8 mantissa digits plus 2 exponent digits plus 2  
negative code digits  
- four standard functions (+, -, ×, ÷ )  
- yx  
- y  
- auto-constant  
14 kinds of special display  
- parenthesis  
- percentage  
Memory calculation  
Memory  
Minus  
Error  
Gradient  
M
-
E
2ndF  
HYP  
DEG  
GRAD  
- independent single memory (× → M, RM, M+)  
Four operations complex number calculation  
1-variable functions  
- trigonometric and arctrigonometric function  
- hyperbolic and archyperbolic function  
- factorial  
- reciprocal and square  
- square root and cube root  
- time conversions  
Parenthesis  
Binary mode  
Octal mode  
Hexadecimal  
mode  
Complex number  
mode  
Statistic  
(
)
BIN  
OCT  
HEX  
2nd  
Function  
Hyperbolic  
Degree  
CPLX  
RAD  
STAT  
Radian  
calculation mode  
The minus sign of the mantissa is floating minus  
The arithmetic key operation has the same  
sequence  
as the mathematical equation, 6 pending  
operations  
are allowed and ( ) are up to continuous 15  
levels  
Mutual conversion and calculation in arithmetic  
among binary, octal, decimal and hexadecimal  
numbers  
One independent accumulating memory  
It is possible to convert and fix the display  
number  
system by the F E key  
It is possible to specify decimal part digits by the  
TAB key  
- angular mode conversion  
2-variable functions  
- polar-rectangular coordinate conversion  
Statistics calculations  
- number of sample (n)  
- average (×)  
- total of all data (Σ ×)  
- total of square of all data (Σ x2)  
- 2 kinds of the standard deviation (S, σ)  
Binary, octal, decimal and hexadecimal  
number  
calculations  
- mutual conversions and calculations of binary,  
octal,  
decimal, and hexadecimal numbers  
Display conversion  
Direct drive for LCD (1/3 prebias, 1/4 duty)  
Automatic power off (about 7.5 minutes)  
Low power consumption  
- conversion and setting of floating and  
engineering displays  
VDD = 3.0V single power supply  
Bare chip available  
Mirror type  
ABSOLUTE MAXIMUM RATINGS (Ta = 25oC)  
Characteristic  
Symbol  
Value  
- 0.3 ~ + 3.3  
- 0.3 ~ VDD + 0.3  
0 ~ + 40  
Unit  
V
VDD  
VIN  
Topr  
Tstg  
Terminal Voltage  
V
Operating Temperature  
Storage Temperature  
oC  
oC  
- 55 ~ + 125  
* Voltage greater than above may damage the circuit  
1
IZ1242M  
ELECTRICAL CHARACTERISTICS (Ta = 25oC, VDD = 3.0V, VSS = 0V unless otherwise specified)  
Characteristic  
Symbol  
Test  
Min  
Typ  
Max  
Unit  
Condition  
Operating Voltage  
VDD  
VIH  
VIL  
2.5  
VDD - 0.5  
VSS  
3
3.4  
VDD  
VSS+0.5  
VDD  
V
V
V
Input Voltage (K18 ~ K11)  
High Output Voltage  
(K18, K14, K12)  
VOH  
VDD - 0.2  
VDD  
Output Voltage (LCD,  
COM)  
Low Output Voltage (K11)  
Middle Output Voltage  
(LCD, COM)  
VOH  
VOL  
VOL  
VDD -0.2  
VSS  
VDD  
VSS  
VSS  
VDD  
VSS +0.2  
0.2  
V
V
V
VSS  
2/3VDD -0.2  
1/3VDD -0.2  
30  
2/3VDD 2/3VDD +0.2  
1/3VDD 1/3VDD +0.2  
VOM  
Rpd  
Key Pull Down  
Vout = 0V  
Vout VDD  
50  
50  
45  
200  
180  
1
70  
KΩ  
KΩ  
Resistance (K11)  
Key Pull Up Resistance  
(K18, K14, K12)  
Rpu  
Fdis  
Fopr  
Ff  
30  
30  
70  
Stand-by  
VDD = 3V  
Operating  
VDD = 3V  
Stand-by  
VDD = 3V  
Display is off  
VDD = 3V  
Stand-by  
VDD = 3V  
Operation  
VDD = 3V  
OSC Frequency  
KHz  
Hz  
280  
Frame Frequency  
110  
IOFF  
IDIS  
IOPR  
3
20  
70  
35  
Supply Current  
µA  
120  
BASIC SPECIFICATION  
Number of display digits  
10-digit display and 14 kinds of special displays  
Engineering display  
Max mantissa 8 digits plus exponent 2 digits plus each negative code digit  
Normal display  
Max 10 mantissa digits plus 1 negative code 6 digit.  
It is possible to specify the number of 0 to 9 digits below the decimal place by assignment of the  
decimal digit.  
Classification of operating mode  
The following 6 types of operation mode are set by the 2ndF key and below keys:  
2ndF  
2ndF  
STAT : Statistic calculation mode set  
CLPX : Complex number calculation  
mode set  
2ndF  
2ndF  
2ndF  
2ndF  
- BIN  
: Binary mode set  
- OCT : Octal mode set  
- HEX : Hexadecimal mode set  
- DEC : Decimal mode set  
2
IZ1242M  
Kinds of keys and classification of the multi-functions for all touch keys  
θ
The condition during calculation  
No key input is allowed and no data is displayed during calculation.  
Display method  
a.  
b.  
Set number and result of operation are displayed in the right margin, minus floating.  
Display of decimal number operation results.  
Display is made according to the display format that has been set by the F E key.  
Floating mode  
1010 ≤ | x | ≤ 10100  
: Exponent display  
: Exponent display  
: Floating display  
10-99 ≤ | x | ≤ 10-9  
0 and 10-9 ≤ | x | ≤  
1010  
Engineering mode  
0 and 10-99 ≤ | x | ≤ 10100 (all ranges); Exponent display.  
The F E key also converts the display format of a displayed numerical value simultaneously  
with the display format setting.  
At the same time, the number of digits below the decimal point of the above modes follows the  
display format assigned by the 2ndF and F E keys.  
Further, in the same manner as the F E key, the conversion is also takes place simultaneously  
with the display format setting.  
3
IZ1242M  
When the number of digits is specified, the last digit displayed is a rounded number, and when  
there is no specification of the number of digits, the last digit displayed is a cut number.  
Example:  
c.  
d.  
Negative numbers are not displayed with the minus symbol “-” but are displayed in  
hexadecimal, octal, and binary two’s complements.  
Display style and special display  
Display style  
Special display  
M
e.  
Examples of display  
Floating of –6000 1/x; TAB=7  
Same as above, engineering display  
Error display  
DEG  
E
Protection  
a.  
b.  
Memory overflow protection  
If the overflow occurs in the memory calculation, the data before the calculation is retained.  
Statistical overflow protection  
If the overflow occurs in the statistical calculation, the data before the calculation is retained.  
The number of digits of the internal retained data.  
4
IZ1242M  
The number of digits of the mantissa of the displayed data is a maximum of 10 digits, but the  
available data for successive calculations is the retained data.  
The number of digits of the mantissa of the internally retained data is as follows:  
Data input  
Arithmetic  
Maximum  
Maximum  
10 digits  
10 digits  
Engineering function.  
Statistical function  
Complex number  
function  
Memory calculation.  
Number of random  
Maximum  
3 digits  
Auto clear  
When the power supply is suddenly turned on an auto clear routine is executed to initialize as  
DEC mode, no TAB, floating and DEG modes.  
Power off function  
a.  
b.  
c.  
Auto power off  
About 7.5 minutes after operation is ended by pressing the key, the power supply is turned off.  
OFF  
Pressing this key will stop the oscillator (Memory safe guard).  
ON  
Pressing this key will wake the oscillator and initialize  
OPERATION MODE  
Operational mode  
BIN  
Mode  
DEC  
OCT HEX  
STAT  
CPLX  
Operation  
0
0
0
0
0
x
x
0
0
0
0
x
0
0
0
0
0
0
0
x
0
0
x
x
x
x
0
x
x
x
x
0
0
0
0
x
0
x
0
0
x
x
x
x
0
0
x
x
x
0
0
0
0
x
0
x
0
0
x
x
x
x
0
0
0
0
x
0
0
0
0
x
0
0
x
0
0
0
x
x
0
0
0
x
0
0
0
0
0
x
0
x
x
x
x
x
0
0
0
0
0
x
0
0
0
0
0
x
4 Operation +, -, ×, ÷, =  
Power yx, xy  
6 Operation  
Parenthesis ( )  
Constant calculation  
Percentage calculation  
Statistical calculation  
CLPX calculation  
Input a, b  
Numeric input 0, 1  
Numeric input (2 – 7)  
Numeric input 8, 9  
Hex input A – F  
, Exp  
STAT  
CLPX  
DATA setting  
+/-  
Shift key  
CE  
Memory  
Display  
Memory calculation  
F E, TAB  
conversion  
P – R conversion  
0
x
x
x
x
0
P →  
R P  
Random  
Function  
Angular  
RND  
1 variable function  
DRG, DRG  
0
0
0
x
x
x
x
x
x
x
x
x
0
0
0
0
0
0
conversion  
5
IZ1242M  
The calculation is always shifted to a specified mode by mode keys  
A Mode B Mode  
A
DEC  
BIN  
OCT  
HEX  
STAT  
CPLX  
B
DEC  
NOP  
DEC  
Conversion  
DEC  
Conversion  
DEC  
Conversion  
DEC  
Conversion  
State clear  
BIN  
Conversion  
State clear  
OCT  
Conversion  
State clear  
HEX  
DEC  
Conversion  
State clear  
BIN  
Conversion  
State clear  
OCT  
Conversion  
State clear  
HEX  
BIN  
OCT  
HEX  
BIN  
Conversion  
NOP  
BIN  
Conversion  
BIN  
Conversion  
OCT  
OCT  
NOP  
OCT  
Conversion  
Conversion Conversion  
HEX  
HEX  
HEX  
NOP  
Conversion Conversion  
Conversion  
Conversion  
State clear  
NOP  
Conversion  
State clear  
Display  
STAT  
CPLX  
Display  
Clear  
Display  
Clear  
Display  
Clear  
Display  
Clear  
Clear  
Display  
Clear  
Display  
Clear  
Display  
Clear  
Display  
Clear  
Display  
Clear  
NOP  
State clear  
NOP: No operation  
KEY DEFINITIONS  
1. 2ndF  
This is the key for specifying the second function.  
When this key is pressed, the special display «2ndF» lights. When this key is pressed twice the  
second function mode is released.  
2.  
DRG DRG  
a. Pressing this key will change the mode of angle sequentially  
and display it.  
DE  
RA  
GRAD  
b. Pressing this key after 2ndF key will change the mode of the angle and will convert the  
displayed data.  
DEG RAD : RAD = DEG × π/180  
RAD  
: GRAD = RAD × 200/π  
GRAD  
GRAD DEG : DEG = GRAD × 0.9  
3.  
0 – 9  
a.  
In setting data in the mantissa section, it is set at the right margin, and the data in more  
than 11 digits cannot be input.  
b. At the data input against the exponent, the last two numbers are efficients.  
4.  
RND  
6
IZ1242M  
a. The position first pressed has preference, and no input is made to data set in the exponent  
section.  
b. When pressed as the first set number, it is regarded as 0 and keys are pressed.  
c. Random as a 2ndF.  
Pressing this key shall display the random numbers.  
The range of random numbers is 0.000 – 0.999.  
5. +/-  
a. In setting data in the mantissa section, this key reverses the code in the mantissa section.  
Similarly, for the exponent section, it reverses the code in the exponent section.  
b. For the operation result, this key reverse codes in the mantissa section.  
6. + , - , ×, ÷, =, ( )  
a.  
When the key operations are performed by these keys according to a numerical  
expression, a result of the operation is obtained according to mathematical priorities, priorities  
discriminated are:  
1) 1 Variable function  
2) Expression in ( ): (The most inner expression has priority in case of multiple parentheses)  
3) yx , xy  
4) ×, ÷  
5) +, -  
b.  
Whenever the key is operated, the calculator discriminates the above priorities and holds  
the data and operation keys pending as required.  
This pending action is possible up to 6 times and 7 or more pending become error.  
c.  
(Key is accepted only immediately after CE, +, -, ×, ÷, yx, xy, =, (keys and not  
accepted in all other cases.  
When this key is accepted, the displayed data is cleared to 0.  
When ( key is first accepted, the special display « ( ) » illuminates.  
When a parenthesis expression is completed ) and = keys or when it is cleared by the ON/C key,  
etc, or when errors are generated, the special display « ( ) » goes out.  
d.  
If it is within the allowable range of pending. ( can be input into any place in an  
expression as many times as desired. However, if the key is pressed continuously 16 times or  
more, it be comes error.  
e.  
From a viewpoint of numerical expression, even when the corresponding C key is not  
pressed, the operation is not executed if the «)» key is pressed. On the other hand, when the «(«  
key is pressed and the «=» key is pressed without pressing the corresponding «)» key, the  
operation is also completed according to the priority.  
7. Memory calculation ( x M, RM, M+ )  
a.  
The memory register «M» used by these keys is a completely independent single  
memory.  
b.  
Display data is added to «M» (memory register) by M+ key.  
If data overflows at this time, the processing data is held.  
c.  
d.  
e.  
Display data is stored in «M» by x M key.  
Contents of «M» is displayed by MR key.  
When any data except for 0 is stored in «M», the special display «M» illuminates.  
8.  
π
a.  
This key displays a rounded value (3.141592654) of a 12-digit value (3.14159265359)  
according to the set display format.  
b.  
A value that is used in a subsequent operation is the above the 12-digit value.  
7
IZ1242M  
c.  
The display is cleared by the following 1-st numeric key and new data is set.  
9. % Calculation.  
a.  
When any arithmetic functions or constant mode has/not been set, the displayed number  
is converted from a percentage to a decimal.  
Example) 61.5%  
Display  
6
1 . 5  
%
0.615  
b.  
When = key is pressed after % with any arithmetic function  
Add-on  
a + b  
yx, xy  
a yx b  
at (t = b/100)  
ta (t =  
% =  
% =  
% =  
% =  
% =  
% =  
a + (a  
b)/100  
x
Discount  
a - b  
a
xy  
a  
-
(a x b  
b/100)  
b)/100  
Percentag  
e
a x b  
(a x b)/100  
a/b x 100  
a ÷ b  
10. Trigonometric and arctrigonometric functions (1 Variable).  
(sin, cos, tan, sin-1, cos-1, tan-1 )  
These functions are calculated according to respective defined areas and accuracy show in (6),  
and displayed result of operation can become operators.  
11. Hyperbolic and archiperbolic function.  
(hyp sin cos tan, archyp sin cos tan)  
Same as trigonometric function.  
12. Exponential and logarithmic functions.  
(ex 10x In log)  
Same as trigonometric functions.  
13. Reciprocal, square, square root and cube root.  
(1/x x2  
3)  
Same as trigonometric functions.  
14. Factorial functions (n!).  
n! = n x (n-1) x (n-2) x … x 2 x 1  
Same as trigonometric functions.  
15. DEG DMS  
a.  
degrees into degree minutes and seconds.  
b. On the DMS format, the integer part of display data is regarded as degrees, 2 digits below  
the decimal point as minutes and the 3rd digit and below as seconds.  
These keys convert degrees, minutes and seconds into decimal degrees and decimal  
8
IZ1242M  
1
59  
5999  
1.999999999 -DMS  
degree  
minute  
second  
16.  
Coordinate conversion ( a b r θ → xy).  
These keys convert the rectangular coordinates into the polar coordinates and the polar  
a.  
coordinates into the rectangular coordinates. The angle units that have been set by the DRG key  
follows.  
b.  
Respective defined areas and accuracy are as shown in (6), however, the range of θ  
obtained by RP in degree is as follows:  
1st  
2nd  
3rd  
Quadrant  
Quadrant  
Quadrant  
0o ≤ θ ≤ 90o  
90o ≤ θ ≤180o  
-180o ≤ θ ≤ -  
90o  
4th  
Quadrant  
-90o ≤ θ ≤ 0o  
c.  
Input of 2 variables is performed by setting  
X or R by pressing a key and  
Y or θ by pressing b key  
d.  
The operation result of X or R is obtained in the display register or by pressing a key and  
Y or θ by pressing b key.  
Input Data  
a
Result  
b
a
b
RP  
(RectangularPolar)  
PR  
x
r
y
r
θ
x
y
θ
(PolarRectangular)  
( r, θ ) r = (x2 + y2), θ =tan-1 y/x  
(x, y ) x = r cosθ, y = r sinθ  
e.  
( R P Conversion) ([ x, y ] [ r, θ] )  
f.  
( P R Conversion) ( [ r, θ] [ x, y ] )  
Key operation  
Display  
Key operation  
Display  
x
a
y
b
r θ  
b
x
x
y
y
r
θ
b
r
a
xy  
b
θ
θ
r
r
x
y
θ
17. Binary Mode (2ndF , BIN, 0, 1).  
a.  
b.  
c.  
Data input and output are both binary integers in a maximum of 10 digits.  
A negative number is expressed in the binary number of two’s complement.  
The range of internal operation is as show below and if the result of the operation exceed  
the range, it becomes an error (overflow).  
9
IZ1242M  
Binary Number  
Decimal Number  
Outside the operation range  
-
512 DATA  
1 1 1 1 1 1 1 1 1  
511  
1 1 1 1 1 1 1 1 0  
510  
Binary  
Positive  
Integer  
1 1 1 1 1 1 1 0 1  
:
:
509  
:
:
10  
2
1
1
0
0
1 1 1 1 1 1 1 1 1  
1 1 1 1 1 1 1 1 0  
1 1 1 1 1 1 1 0 1  
-1  
-2  
-3  
Binary  
Positive  
Integer  
(Complement)  
:
:
:
:
:
:
-511  
-512  
1 0 0 0 0 0 0 0 0 1  
1 0 0 0 0 0 0 0 0 0  
Outside the operation range  
-512 DATA  
18. Octal Mode (2ndF , OCT, 0 - 7)  
a.  
b.  
c.  
Data input and output are both octal integers with a maximum of 10 digits.  
A negative number is expressed in the octal number of two’s complement.  
The range of internal operation is as show below and if the result of the operation exceed  
the range, it becomes an error (overflow).  
Octal Number  
Decimal Number  
Outside the operation range  
-
5 3 6 8 7 0 9 1 2 DATA  
3 7 7 7 7 7 7 7 7 7  
3 7 7 7 7 7 7 7 7 6  
:
:
5 3 6 8 7 0 9 1 1  
5 3 6 8 7 0 9 1 0  
Binary  
Positive  
Integer  
:
:
1
0
1
0
7 7 7 7 7 7 7 7 7  
7 7 7 7 7 7 7 7 6  
-1  
-2  
Octal  
Negative  
1 1 1 1 1 1 1 0 1  
Integer  
(Complement)  
:
:
:
:
:
:
4 0 0 0 0 0 0 0 0 1  
4 0 0 0 0 0 0 0 0 0  
-5 3 6 8 7 0 9 1 1  
-5 3 6 8 7 0 9 1 2  
-5 3 6 8 7 0 9 1 3 DATA  
Outside the operation range  
19. Hexadecimal Mode (2ndF , HEX, 0 – 9, A - F).  
a.  
b.  
c.  
Data input and output are both hexadecimal integers with a maximum of 10 digits.  
A negative number is expressed in the hexadecimal number of two’s complement.  
The range of internal operation is as show below and if the result of the operation exceed  
the range, it becomes an error (overflow).  
10  
IZ1242M  
Hexadecimal Number  
Decimal Number  
1 x 1010 DATA  
Outside the operation range  
-
2 5 4 0 B E 3 F F  
9 9 9 9 9 9 9 9 9 9  
Hexadecimal  
Positive  
2 5 4 0 B E 3 F E  
:
:
9 9 9 9 9 9 9 9 9 8  
:
:
Integer  
1
0
1
0
F F F F F F F F F F  
F F F F F F F F F E  
-1  
-2  
Hexadecimal  
Negative  
:
:
:
:
Integer  
(Complement)  
F D A B F 4 1 C 0 2  
F D A B F 4 1 C 0 1  
-9 9 9 9 9 9 9 9 9 8  
-9 9 9 9 9 9 9 9 9 9  
-1 x 1010 DATA  
Outside the operation range  
20. Complex number Mode (2ndF , CPLX).  
a.  
b.  
Pressing these keys shall set the complex number mode.  
Input of 2 parts is performed by setting the real part (X; Pressing a key) and the imaginary  
part (Y; pressing b key).  
c.  
The operation result of the real part is obtained by pressing = or a key and the imaginary  
part by pressing b key.  
Input Data 1  
Input Data 2  
Result  
Real  
Characteristic  
Function  
Real  
a
Imaginary  
Real  
a
Imaginary  
Imaginary  
b
b
b
a
Addition  
Subtraction  
Multiplication  
X1  
X1  
X1  
Y1  
Y1  
Y1  
+
-
×
X2  
X2  
X2  
Y2  
Y2  
Y2  
X1+X2  
X1-X2  
Y1+Y2  
Y1-Y2  
X1X2-Y1Y2 Y1X2+X1Y2  
X1X2+Y1Y2 Y1X2-X1Y2  
Division  
X1  
Y1  
X2  
Y2  
÷
X22+Y22  
X22+Y22  
21. Static calculation Mode (2ndF , STAT).  
a.  
Pressing these keys shall set the static calculation mode.  
b.  
The available number of data is a positive integer, such as 0 n 9999999999, and when  
the number of data exceeds this integer, it becomes an error.  
c.  
The input range of the data is as follows: 0 data 1 × 1050.  
This data exceeds the ranges, it becomes an error.  
d.  
Σx Σx2  
These keys display the number of data (sample), each sum total of x and sum total of x2.  
n
Σ
Σ
Σ
Σ
Σ
Σ
Σ
Σ
δ
The standard deviation of the  
The standard deviation of the population  
sample  
11  
IZ1242M  
ERROR CONDITIONS  
1. The result of operation is exponent parts exceed + 99  
2. Entering more than the calculation range (6) of each function.  
3. Dividing be zero.  
4. In statistical calculation.  
a.  
b.  
x, s, σ when n=0  
s when n=1  
5. The number of pending operations exceeds 3.  
6. The number of the parenthesis in the one level exceeds 15.  
OPERATION RANGE AND ACCURACY  
Function  
sin x  
Angle  
Unit  
DEG  
RAD  
GRAD  
DEG  
RAD  
GRAD  
DEG  
RAD  
GRAD  
DEG  
RAD  
GRAD  
DEG  
RAD  
GRAD  
DEG  
Normal  
Accuracy  
Operation Range  
Under Flow Area  
0 x 4.499999999 × 1010  
0 x 7853981633  
0 x 4.999999999 × 1010  
0 x 4.500000008 × 1010  
0 x 7853981649  
0 x 5.000000009 × 1010  
0 x 4.499999999 × 1010  
0 x 7853981633  
0 x 4.999999999 × 1010  
0 x 1  
0x 5.729577951 × 10-98  
0x 6.366197723 × 10-98  
cos x  
0x 5.729577951 × 10-98  
tan x  
0x 6.366197723 × 10-98  
0x 1.570796326 × 10-99  
sin-1x  
10 digits  
± 1  
0 x 1  
0 x 1  
0 x 1  
0 x 1  
0x 1.570796326 × 10-99  
cos-1x  
tan-1x  
0 x 1  
0 x 9.999999999 × 1099  
0 x 9.999999999 × 1099  
0 x 9.999999999 × 1099  
0 x  
0x 1.570796326 × 10-99  
0x 1.570796326 × 10-99  
RAD  
GRAD  
ln x  
log x  
ex  
0 x  
-9.999999999 × 1099 x ≤  
230.2585092  
-9.999999999 × 1099 x ≤  
227.9559243  
12  
IZ1242M  
OPERATION RANGE AND ACCURACY (Continued)  
Normal  
Accuracy  
Function  
Operation Range  
Under Flow Area  
10x  
-9.999999999 × 1099 x ≤  
99.99999999  
-9.999999999 × 1099 x ≤  
99.00000001  
x!  
1/x  
0 x 69 (integer)  
1 × 10-99 x 9.999999999 × 1.000000001 × 1099x  
1099  
9.999999999 × 1099  
x2  
x  
0 x 9.999999999 × 1049  
0 x 9.999999999 × 1099  
0 x 9.999999999 × 1099  
0 x 9.999999999 × 109  
0 x 9.999999999 × 109  
0 x 230.2585092  
0 x 3.162277660 × 10-50  
3x  
DMSDEG  
DEGDMS  
sinh x  
0 x 2.777777777 × 10-99  
cosh x  
tanh x  
0 x 230.2585092  
0 x 9.999999999 × 1099  
0 x 4.999999999 × 1099  
1x 4.999999999 × 1099  
0 x 9.999999999 × 10-1  
x , y 9.999999999 × 1049  
(x2 + y2) 9.999999999 × 1099  
0r 9.999999999 × 1099  
θ correspond to the under flow  
area of sin x, cos x  
sinh-1 x  
cosh-1 x  
tanh-1 x  
RP  
correspond to the under flow  
area of tan x  
(x, y) (r, θ)  
PR  
(r, θ) (x, y)  
10 digits  
± 1  
θ correspond to the under flow  
area of sin x, cos x  
DEGRAD  
RADGRAD  
GRADDEG  
0 x 9.999999999 × 1099  
0 x 1.570796326 × 1098  
0 x 9.999999999 × 1099  
-9.999999999 × 1099 x, ln y  
230.2585092  
0 x 5.729577951 × 1098  
0 x 1.111111111 × 10-99  
-9.999999999 × 1099 x, ln y  
-227.9559243  
yx  
y > 0; The above – mentioned operation range  
< 0; x (integer) or 1/x (x = odd, x = 0)  
The above – mentioned operation range  
y = 0; x > 0.  
-9.999999999 × 1099 1/x, ln  
-9.999999999 × 1099 1/x, ln  
y
y
230.2585092  
-227.9559243  
xy  
y > 0; The above – mentioned operation range  
< 0; x (odd) or 1/x (integer, x 0)  
The above – mentioned operation range  
y = 0; x > 0.  
The following operation range after the conversion.  
0 x 9999999999  
DEC  
BIN  
The following operation range after the conversion.  
1000000000 x 1111111111, 0 x 1111111111  
The following operation range after the conversion.  
4000000000 x 7777777777, 0 x 3777777777  
The following operation range after the conversion.  
FDABF41C01x FFFFFFFFFF, 0x 2540BE3FF  
OCT  
HEX  
13  
IZ1242M  
OPERATION RANGE AND ACCURACY (Continued)  
Normal  
Accuracy  
Function  
Operation Range  
Under Flow Area  
(X1+Y1i) +, -, ×, ÷ (X2+Y2i)  
Addition and subtraction  
X1+X2 9.999999999 × 1099  
Y1+Y2 9.999999999 × 1099  
Multiplication  
X1X2-Y1Y2 9.999999999 × 1099  
Y1X2+X1Y2 9.999999999 × 1099  
X1X2 , Y1Y2 , Y1X2 , X1Y2 9.999999999 × 1099  
Division  
Complex number  
calculation  
10 digits  
± 1  
X1X2+Y1Y2  
Y1X2-X1Y2 9.999999999 × 1099  
X22+Y22  
,
X22+Y22  
X1X2 , Y1Y2 , Y1X2 , X1Y2 , X22+Y22 , X22 , Y22  
X1X2+Y1Y2 , Y1X2-X1Y2 9.999999999 × 1099  
Data; x 9.999999999 × 10  
x 9.999999999 × 10  
,
x2 9.999999999 × 10  
x; n = 0  
s; n = 1, n = 0  
10 digits  
± 1  
Statistic calculation  
0 ( x2- ( x )2/n)/ n-1 9.999999999 × 10  
σ; n 0  
0 ( x2- ( x )2/n)/ n 9.999999999 × 10  
LCD CONNECTION  
a
. Segment  
b. Common  
14  
IZ1242M  
WAVEFORM OF COMMON SIGNALS  
EXTERNAL CONNECTION  
Pad description  
Pad Pad  
No. name  
TST  
I/O  
Description  
Pad Pad  
No. name  
I/O  
Description  
I/O  
Test  
24  
25  
26  
27  
28  
29  
30  
31  
32  
33  
34  
35  
36  
37  
38  
39  
40  
41  
42  
43  
44  
45  
46  
b7  
a7  
VDD  
Vss  
O
O
LCD  
LCD  
VDD  
Vss  
KITEN  
EXTNL  
FODIS  
KI8  
T
KI4  
COM2  
COM3  
b13  
a13  
b12  
a12  
b11  
a11  
b10  
a10  
b9  
VDD Power (+ 3V)  
Vss Power (GND)  
Key in test enable  
External clock  
Fosc disable  
Key input 8  
Test  
Key input 4  
Common Signal 2  
Common Signal 3  
LCD  
VDD Power (+ 3V)  
Vss Power (GND)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
LCD (Key Output)  
Common Signal 4  
Common Signal 1  
Key input 2  
I
I
I
I
I
I
O
O
O
O
O
O
O
O
O
O
O
O
O
O
b6 (KO)  
a6 (KO)  
b5 (KO)  
a5 (KO)  
b4 (KO)  
a4 (KO)  
b3 (KO)  
a3 (KO)  
b2 (KO)  
a2 (KO)  
b1 (KO)  
a1 (KO)  
b0 (KO)  
a0 (KO)  
COM4  
COM1  
KI2  
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
O
I
LCD  
No Connection  
No Connection  
LCD  
LCD  
LCD  
LCD  
LCD  
LCD  
LCD  
LCD  
a9  
b8  
a8  
KI1  
DEN  
I
I
Key input 1  
Dump Enable  
15  
IZ1242M  
KEY CONNECTIONS  
σ
θ
16  
IZ1242M  
APPLICATION CIRCUIT  
θ
π
σ
Σ
Σ
NOTE:  
2ndF/HEX  
1st F  
2nd F  
1st F  
The chip substrate is electrically connected to VSS  
17  
IZ1242M  
PAD DIAGRAM  
18  
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