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NLSX4401 Datasheet, PDF (7/13 Pages) ON Semiconductor – Dual-Supply Level Translator
NLSX4401
TIMING CHARACTERISTICS − RAIL−TO−RAIL DRIVING CONFIGURATIONS (continued)
(I/O test circuit of Figures 3 and 4, CLOAD = 15 pF, driver output impedance ≤ 50 W, RLOAD = 1 MW)
−405C to +855C
(Notes 3 & 4)
Symbol
Parameter
VL = 5.5 V, VCC = 1.5 V
tRVL
I/O VL Rise Time
tFVL
I/O VL Fall Time
tPDVL−VCC Propagation Delay (Driving I/O VL, VL to VCC)
tPDVCC−VL Propagation Delay (Driving I/O VCC, VCC to VL)
tEN
Enable Time
tDIS
Disable Time
tPPSKEW Part−to−Part Skew
MDR Maximum Data Rate
Test Conditions
Min
Typ
Max
Unit
8
10
ns
20
27
ns
5
8
ns
14
24
ns
ns
ns
2
ns
20
Mbps
VL = 5.5 V, VCC = 5.5 V
tRVCC I/O VCC Rise Time
tFVCC I/O VCC Fall Time
tRVL
I/O VL Rise Time
tFVL
I/O VL Fall Time
tPDVL−VCC Propagation Delay (Driving I/O VL, VL to VCC)
tPDVCC−VL Propagation Delay (Driving I/O VCC, VCC to VL)
tEN
Enable Time
tDIS
Disable Time
tPPSKEW Part−to−Part Skew
MDR Maximum Data Rate
5
7
ns
6
8
ns
5
7
ns
4
7
ns
4
6
ns
4
6
ns
30
ns
225
ns
2
ns
24
Mbps
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
3. Typical values are for the specified VL and VCC at TA = +25°C. All units are production tested at TA = +25°C.
4. Limits over the operating temperature range are guaranteed by design.
5. Skew is the variation of propagation delay between output signals and applies only to output signals on the same port (I/O_VLn or I/O_VCCn)
and switching with the same polarity (LOW−to−HIGH or HIGH−to−LOW). Skew is defined by applying a single input to the two input channels
and measuring the difference in propagation delays between the output channels.
TIMING CHARACTERISTICS − OPEN DRAIN DRIVING CONFIGURATIONS
(I/O test circuit of Figures 5 and 6, CLOAD = 15 pF, driver output impedance ≤ 50 W, RLOAD = 1 MW)
−405C to +855C
(Notes 6 & 7)
Symbol
Parameter
Test Conditions
Min
Typ
Max Unit
VL = 1.5 V, VCC = 1.5 V
tRVCC I/O VCC Rise Time
55
70
ns
tFVCC I/O VCC Fall Time
7
14
ns
tRVL
I/O VL Rise Time
50
65
ns
tFVL
I/O VL Fall Time
7
12
ns
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
6. Typical values are for the specified VL and VCC at TA = +25°C. All units are production tested at TA = +25°C.
7. Limits over the operating temperature range are guaranteed by design.
8. Skew is the variation of propagation delay between output signals and applies only to output signals on the same port (I/O_VLn or I/O_VCCn)
and switching with the same polarity (LOW−to−HIGH or HIGH−to−LOW). Skew is defined by applying a single input to the two input channels
and measuring the difference in propagation delays between the output channels.
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