IDT7210L25J IDT, Integrated Device Technology Inc, IDT7210L25J Datasheet - Page 5

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IDT7210L25J

Manufacturer Part Number
IDT7210L25J
Description
Manufacturer
IDT, Integrated Device Technology Inc
Datasheet

Specifications of IDT7210L25J

Package Type
LCC
Mounting
Surface Mount
Operating Temperature Classification
Commercial
Lead Free Status / RoHS Status
Not Compliant

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AC ELECTRICAL CHARACTERISTICS COMMERCIAL
IDT7210L
16 x 16 PARALLEL CMOS MULTIPLIER-ACCUMULATOR
DC ELECTRICAL CHARACTERISTICS
(Commercial: V
NOTES:
1. Typical implies V
2. I
3. For frequencies greater than 10MHz, guaranteed by design, not production tested.
4. I
5. For conditions shown as Max. or Min., use appropriate value specified under electrical characteristics.
NOTES:
1. Transition is measured 500mV from steady state voltage.
2. Minimum delays guaranteed but not tested
AC ELECTRICAL CHARACTERISTICS MILITARY
NOTES:
1. Transition is measured 500mV from steady state voltage.
2. Minimum delays guaranteed but not tested
Symbol
V
V
|I
|I
V
V
I
I
I
I
I
OS
CC (2)
CCQ1
CCQ2
CC
LI
LO
IH
IL
OH
OL (4)
Symbol
Symbol
I
|
CC
CC
OL
t
t
t
t
t
t
t
t
t
t
t
t
t
t
t
t
/f
MA
D
ENA
DIS
S
H
PW
HCL
MA
D
ENA
DIS
S
H
PW
HCL
|
(2,3)
= 4mA for t
is measured at 10MHz and V
= 90+ 6(f –10)mA, where f = operating frequency in MHz. For the military range, I
Input High Voltage
Input Low Voltage
Input Leakage Current
Output Leakage Current
Output HIGH Voltage
Output LOW Voltage
Output Short Circuit Current
Operating Power Supply Current
Quiescent Power Supply Current
Quiescent Power Supply Current
Increase in Power Supply
Current MHz
Multiply-Accumulate Time
Output Delay
3-State Enable Time
3-State Disable Time
Input Register Set-up Time
Input Register Hold Time
Clock Pulse Width
Relative Hold Time
Multiply-Accumulate Time
Output Delay
3-State Enable Time
3-State Disable Time
Input Register Set-up Time
Input Register Hold Time
Clock Pulse Width
Relative Hold Time
MA
CC
CC
> 55ns.
= 5V and T
= 5.0V
Parameter
(2)
(2)
Parameter
Parameter
A
10%, T
= +25 C.
IN
= 0 to 3V. For frequencies greater than 10MHz, the following equation is used for the commercial range:
(1)
(1)
A
(2)
(2)
= 0 C to +70 C; Military: V
Guaranteed Logic HIGH Level
Guaranteed Logic LOW Level
V
V
V
V
V
V
V
f= 10MHz
C
V
V
V
CC
CC
OUT
CC
CC
CC
CC
IN
IN
CC
L
= 50 pF
Test Conditions
= Max., V
= Max., Outputs Disabled
= Min., I
= Min., I
= Max., V
= Max., Outputs Enabled
= Max., Outputs Disabled
= 0 to
V
V
IH
CC
, V
Min. Max. Min. Max. Min. Max. Min. Max. Min. Max. Min. Max. Unit
Min. Max. Min. Max. Min. Max. Min. Max. Min. Max. Min. Max. Unit
(2)
7210L20
2.0
2.0
7210L25
2.0
2.0
–0.2V, V
10
12
10
3
9
0
3
0
IN
V
OH
OL
CC
IN
0
= 4mA
GND
= –2.0mA
V
20
18
18
18
25
20
20
20
= 0V to
IL
11.2
IN
(5)
7210L25
2.0
2.0
7210L30
2.0
2.0
12
10
12
10
(V
3
0
3
0
0.2V
V
CC
CC
CC
= 5V
25
20
20
20
30
20
20
20
= 5V
(V
CC
CC
Min.
2.0
2.4
-20
= 110 + 8(f –10). f = operating frequency in MHz, f = 1/t
7210L35
2.0
2.0
7210L40
2.0
2.0
12
10
15
15
MILITARY AND COMMERCIAL TEMPERATURE RANGES
= 5V
3
0
3
0
10%, T
10%, T
Commercial
Typ.
35
25
25
25
40
25
25
25
45
20
4
10%, T
A
(1)
A
= –55 C to +125 C)
7210L45
2.0
2.0
= –55 to +125 C)
7210L55
2.0
2.0
15
15
20
20
3
0
3
0
Max.
-100
0.8
0.4
10
10
90
30
10
6
A
45
25
25
25
55
30
30
25
= 0 to +70 C)
Min.
2.0
2.4
-20
7210L55
2.0
2.0
7210L65
2.0
2.0
20
20
25
25
3
0
3
0
Military
Typ.
55
30
30
30
65
35
30
30
45
20
4
(1)
7210L65
2.0
2.0
7210L75
2.0
2.0
25
25
25
25
3
0
3
0
Max.
-100
110
0.8
0.4
10
10
30
12
8
65
35
30
30
75
35
35
30
2577 tbl 05
2577 tbl 06
2577 tbl 07
Unit
MHz
mA/
mA
mA
mA
mA
MA
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
ns
V
V
V
V
A
A
5
.

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