參數(shù)資料
型號: GTL2010BS
廠商: NXP SEMICONDUCTORS
元件分類: 其它接口
英文描述: 10-bit bidirectional low voltage translator
中文描述: SPECIALTY INTERFACE CIRCUIT, DSO24
封裝: 4 X 4 MM, 0.85 MM HEIGHT, PLASTIC, MO-220, SOT-616-1, HVQFN-24
文件頁數(shù): 7/20頁
文件大?。?/td> 117K
代理商: GTL2010BS
GTL2010_6
NXP B.V. 2008. All rights reserved.
Product data sheet
Rev. 06 — 3 March 2008
7 of 20
NXP Semiconductors
GTL2010
10-bit bidirectional low voltage translator
8.4 Sizing pull-up resistor
The pull-up resistor value needs to limit the current through the pass transistor when it is
in the ‘on’ state to about 15 mA. This will guarantee a pass voltage of 260 mV to 350 mV.
If the current through the pass transistor is higher than 15 mA, the pass voltage will also
be higher in the ‘on’ state. To set the current through each pass transistor at 15 mA, the
pull-up resistor value is calculated as shown in
Equation 1
:
(1)
Table 6
summarizes resistor values for various reference voltages and currents at 15 mA
and also at 10 mA and 3 mA. The resistor value shown in the + 10 % column or a larger
value should be used to ensure that the pass voltage of the transistor would be 350 mV or
less. The external driver must be able to sink the total current from the resistors on both
sides of the GTL-TVC device at 0.175 V, although the 15 mA only applies to current
flowing through the GTL-TVC device. See application note AN10145, “Bi-directional low
voltage translators”for more information.
[1]
Calculated for V
OL
= 0.35 V.
Assumes output driver V
OL
= 0.175 V at stated current.
+ 10 % to compensate for V
CC
range and resistor tolerance.
[2]
[3]
Table 6.
Voltage
Pull-up resistor values
Pull-up resistor value (
)
[1]
10 mA
[2]
Nominal
465
295
215
145
115
85
15 mA
[2]
3 mA
[2]
Nominal
310
197
143
97
77
57
+ 10 %
[3]
341
217
158
106
85
63
+ 10 %
[3]
512
325
237
160
127
94
Nominal
1550
983
717
483
383
283
+ 10 %
[3]
1705
1082
788
532
422
312
5.0 V
3.3 V
2.5 V
1.8 V
1.5 V
1.2 V
resistor value
(
)
pull
-
up voltage V
-------------------------------------------------------------------------------
0.35 V
0.015 A
=
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