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PDF LVT22V10 Data sheet ( Hoja de datos )

Número de pieza LVT22V10
Descripción 3V high speed/ universal PLD device
Fabricantes NXP Semiconductors 
Logotipo NXP Semiconductors Logotipo



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No Preview Available ! LVT22V10 Hoja de datos, Descripción, Manual

INTEGRATED CIRCUITS
LVT22V10
3V high speed, universal PLD device
Product specification
Supersedes data of 1996 Mar 12
IC13 Data Handbook
1998 Feb 10
Philips
Semiconductors

1 page




LVT22V10 pdf
Philips Semiconductors
3V high speed, universal PLD device
Product specification
LVT22V10
DC ELECTRICAL CHARACTERISTICS
Over operating ranges.
SYMBOL
PARAMETER
TEST CONDITIONS1
LIMITS
MIN MAX
UNIT
Input voltage
VIL Low
VIH High
VI Clamp
Output voltage
VCC = MIN
VCC = MAX
VCC = MIN, IIN = –18mA
0.8
2.0
–1.2
V
V
V
VOH High-level output voltage
VOL Low-level output voltage
Input current
VCC = MIN to MAX, VI = VIH or VIL
VCC = MIN, VI = VIH or VIL
VCC = MIN to MAX, VI = VIH or VIL
VCC = MIN, VI = VIH or VIL
IOH = –100 µA
IOH = –16mA
IOH = –5.5 mA
IOL = 100µA
IOL = 32 mA
IOL = 16 mA
VCC–0.2
2.0
2.4
0.2
0.5
0.4
V
V
V
V
V
V
IIL Low
IIH High
II Max input current
II Pin 1 (program)
IBHL Bus hold low sustaining current2
IBHH
Bus hold high sustaining current3
IBHLO
Bus hold low overdrive current4, 9
IBHHO
Bus hold high overdrive current5, 9
Output current
VCC = MAX, VIN = 0.0V
VCC = MAX, VIN = VCC
VCC = MAX, VIN = 5.5V
VCC = MAX, VIN = 5.5V
VCC = 3V, VI = 0.8V
VCC = 3V, VI = 2V
VCC = 3.6V
VCC = 3.6V
75
–75
500
–500
–10
10
10
20
µA
µA
µA
µA
µA
µA
µA
µA
IOFF
Output off current
VCC = 0V, VI or VO = 0 to 4.5V
±10 µA
IEX
Current into an output in high state
when VO > VCC
VO = 5.5V, VCC = 3.0V
±100
µA
IPU/PD
Power-up/down 3-State output
current8
VCC <1.2V; VO = 0.5V to VCC;
VI = GND or VCC; OE/OE = X
100 µA
VCC = MAX
IOZH
Output leakage6
VIN = VIL or VIH, VOUT = 5.5V
10 µA
IOZL Output leakage6
ISC Short circuit7
VIN = VIL or VIH, VOUT =0V
VOUT = 0.5V
–10
–30 –220
µA
mA
ICC VCC supply current
VCC = 3.6V, Outputs enabled, VI = VCC or GND; IO = 0
170 mA
Ground/VCC Bounce
MIN TYP MAX UNIT
VOHV
Maximum dynamic VOH
VCC = 3.0V, 25°C,
CL = 50pF (including jig capacitance)
2.2 2.3
V
VOLP
Maximum dynamic VOL
VCC = 3.3V, 25°C, CL = 50pF
(including jig capacitance)
LVT22V10-7
LVT22V10B7
0.7 1.1
1.0 1.1
V
V
NOTES:
1. These are absolute values with respect to device ground and all overshoots due to system or tester noise are included.
2. The bus hold circuit can sink at least the minimum low sustaining current at VIL MAX. IBHL should be measured after lowering VIN to GND
and then raising it to VIL MAX.
3. The bus hold circuit can source at least the minimum high sustaining current at VIH MIN. IBHL should be measured after raising VIN to VCC
and then lowering it to VIH MIN.
4. An external driver must source at least IBHLO to switch this node from low to high.
5. An external driver must sink at least IBHHO to switch this node from high to low.
6. I/O pin leakage is the worst case of IOZX or IIX (where X = H or L).
7. No more than one output should be tested at a time. Duration of the short-circuit test should not exceed one second. VOUT = 0.5V has been
chosen to avoid test problems caused by tester ground degradation.
8. This parameter is valid for any VCC between 0V and 1.2 V with a transition time up to 10 mS. From VCC = 1.2 to VCC = 3.3V ±0.3V a
transition time of 100 µS is permitted. X = Don’t care.
9. These parameters are not 100% tested, but are evaluated at initial characterization and at any time the design is modified where input
current may be affected.
1998 Feb 10
5

5 Page





LVT22V10 arduino
Philips Semiconductors
3V high speed, universal PLD device
Product specification
LVT22V10
LOGIC DIAGRAM
CLK/I0 1
0 3 4 7 8 11 12 15 16 19 20 23 24 27 28 31 32 35 36 39 40 43
0
1
9
10
20
I1 2
21
I2 3
33
34
I3 4
48
49
I4 5
65
66
I5 6
82
83
I6 7
97
98
110
I7 8
111
121
I8 9
122
130
I9 10
I10 11
131
GND 12
0 3 4 7 8 11 12 15 16 19 20 23 24 27 28 31 32 35 36 39 40 43
NOTE:
Programmable connection.
AR
DAR Q
Q
SP
10
11
00
01
0
1
DAR Q
Q
SP
10
11
00
01
0
1
DAR Q
Q
SP
10
11
00
01
0
1
DAR Q
Q
SP
10
11
00
01
0
1
DAR Q
Q
SP
10
11
00
01
0
1
DAR Q
Q
SP
10
11
00
01
0
1
DAR Q
Q
SP
10
11
00
01
0
1
DAR Q
Q
SP
10
11
00
01
0
1
DAR Q
Q
SP
10
11
00
01
0
1
DAR Q
Q
SP
10
11
00
01
0
SP 1
1998 Feb 10
11
24 VCC
23 F9
22 F8
21 F7
20 F6
19 F5
18 F4
17 F3
16 F2
15 F1
14 F0
13 I11
SP00059

11 Page







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