參數(shù)資料
型號: GTL2014
廠商: NXP Semiconductors N.V.
英文描述: 4-bit LVTTL to GTL transceiver
中文描述: 4位LVTTL差動的GTL收發(fā)器
文件頁數(shù): 6/15頁
文件大?。?/td> 85K
代理商: GTL2014
9397 750 13534
Koninklijke Philips Electronics N.V. 2005. All rights reserved.
Product data sheet
Rev. 01 — 19 May 2005
6 of 15
Philips Semiconductors
GTL2014
4-bit LVTTL to GTL transceiver
10. Static characteristics
[1]
All typical values are measured at V
CC
= 3.3 V and T
amb
= 25
°
C.
The input and output voltage ratings may be exceeded if the input and output current ratings are observed.
[2]
[3]
This is the increase in supply current for each input that is at the specified TTL voltage level rather than V
CC
or GND.
Table 8:
Recommended operating conditions; voltages are referenced to GND (ground = 0 V). T
amb
=
40
°
C to +85
°
C
Symbol
Parameter
Conditions
V
OH
HIGH-level output
voltage
A port; V
CC
= 3.0 V; I
OH
=
16 mA
V
OL
LOW-level output
voltage
A port; V
CC
= 3.0 V; I
OL
= 8 mA
A port; V
CC
= 3.0 V; I
OL
= 12 mA
A port; V
CC
= 3.0 V; I
OL
= 16 mA
I
I
input current
control inputs; V
CC
= 3.6 V;
V
I
= V
CC
or GND
B port; V
CC
= 3.6 V; V
I
= V
TT
or GND
A port; V
CC
= 0 V or 3.6 V; V
I
= 5.5 V
A port; V
CC
= 3.6 V; V
I
= V
CC
A port; V
CC
= 3.6 V; V
I
= 0 V
I
OZ
off-state output
current
I
CC
quiescent supply
current
I
O
= 0 mA
B port; V
CC
= 3.6 V; V
I
= V
TT
or GND;
I
O
= 0 mA
I
CC
[3]
additional quiescent
current (per input)
V
I
= V
CC
0.6 V
C
i
input capacitance
control inputs; V
I
= 3.0 Vor 0 V
C
io
input/output
capacitance
B port; V
O
= V
TT
or 0 V
Static characteristics
Min
Typ
[1]
-
-
0.23
0.28
0.40
0.55
-
Max
-
-
0.4
0.4
0.55
0.8
±
1
Unit
V
V
V
V
V
V
μ
A
A port; V
CC
= 3.0 V to 3.6 V; I
OH
=
100
μ
A
[2]
V
CC
0.2
[2]
2.0
B port; V
CC
= 3.0 V; I
OL
= 40 mA
[2]
-
[2]
-
[2]
-
[2]
-
-
-
-
-
-
-
-
-
-
-
-
±
1
10
±
1
5
±
100
μ
A
μ
A
μ
A
μ
A
μ
A
A port; V
CC
= 0 V; V
I
or V
O
= 0 V to 3.6 V
A port; V
CC
= 3.6 V; V
I
= V
CC
or GND;
-
4
10
mA
-
4
10
mA
A port or control inputs; V
CC
= 3.6 V;
-
-
500
μ
A
-
-
-
2
4.6
3.4
2.5
6
4.3
pF
pF
pF
A port; V
O
= 3.0 Vor 0 V
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