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SN65CML100 데이터시트(PDF) 3 Page - Texas Instruments

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부품명 SN65CML100
상세설명  1.5-Gbps LVDS/LVPECL/CML-TO-CML TRANSLATOR/REPEATER
PDF  15 Pages
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제조업체  TI [Texas Instruments]
홈페이지  http://www.ti.com
Logo TI - Texas Instruments

SN65CML100 데이터시트(HTML) 3 Page - Texas Instruments

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SN65CML100
SLLS547 – NOVEMBER 2002
www.ti.com
3
PACKAGE DISSIPATION RATINGS
PACKAGE
TA ≤ 25°C
POWER RATING
DERATING FACTOR(1)
ABOVE TA = 25°C
TA = 85°C
POWER RATING
DGK
425 mW
3.4 mW/
°C
221 mW
D
725 mW
5.8 mW/
°C
377 mW
(1) This is the inverse of the junction-to-ambient thermal resistance when board-mounted and with no air flow.
DEVICE CHARACTERISTICS
PARAMETER
MIN
NOM
MAX
UNIT
ICC
Supply current, device only
9
12
mA
VBB
Switching reference voltage(1)
1890
1950
2010
mV
(1) VBB parameter varies 1:1 with VCC
INPUT ELECTRICAL CHARACTERISTICS
over recommended operating conditions (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP(1)
MAX
UNIT
VIT+
Positive-going differential input voltage
threshold
See Figure 1 and Table 1
100
mV
VIT–
Negative-goingdifferential input voltage
threshold
See Figure 1 and Table 1
–100
mV
VID(HYS)
Differential input voltage hysteresis,
VIT+ – VIT–
25
mV
I
Input current (A or B inputs)
VI = 0 V or 2.4 V, Second input at 1.2 V
–20
20
A
II
Input current (A or B inputs)
VI = 4 V, Second input at 1.2 V
33
µA
II(OFF)
Power off input current (A or B inputs)
VCC = 1.5 V, VI = 0 V or 2.4 V,
Second input at 1.2 V
–20
20
µA
II(OFF)
Power off in ut current (A or B in uts)
VCC = 1.5 V, VI = 4 V, Second input at 1.2 V
33
µA
IIO
Input offset current (|IIA – IIB|)
VIA = VIB, 0 ≤ VIA ≤ 4 V
–6
6
µA
C
Differential input capacitance
VI = 0.4 sin (4E6πt) + 0.5 V
3
pF
Ci
Differential input capacitance
VCC = 0 V
3
pF
(1) All typical values are at 25
°C and with a 3.3-V supply.
OUTPUT ELECTRICAL CHARACTERISTICS
over recommended operating conditions (unless otherwise noted)
PARAMETER
TEST CONDITIONS
MIN
TYP(1)
MAX
UNIT
VOH
Output high voltage(2)
RT =50 Ω VTT =3V to 3 6Vor
VTT–60
VTT–10
VTT
mV
VOL
Output low voltage(2)
RT = 50 Ω, VTT = 3 V to 3.6 V or
VTT = 2.5 V ±5%,
SFi
2
VTT–1100
VTT–800
VTT–640
mV
|VOD|
Differential output voltage magnitude
VTT 2.5 V ±5%,
See Figure 2
640
780
1000
mV
VOH
Output high voltage(3)
RT =25 Ω VTT =3V to 3 6Vor
VTT–60
VTT–10
VTT
mV
VOL
Output low voltage(3)
RT = 25 Ω, VTT = 3 V to 3.6 V or
VTT = 2.5 V ±5%,
SFi
2
VTT–550
VTT–400
VTT–320
mV
|VOD|
Differential output voltage magnitude
VTT 2.5 V ±5%,
See Figure 2
320
390
500
mV
VOH
Output high voltage(2)
VTT–170
VTT–10
VTT
mV
VOL
Output low voltage(2)
RT = 50 Ω, VTT = 1.8 V ±5%,
See Figure 2
VTT–1100
VTT–800
VTT–640
mV
|VOD|
Differential output voltage magnitude
See Figure 2
570
780
1000
mV
VOH
Output high voltage(3)
VTT–85
VTT–10
VTT
mV
VOL
Output low voltage(3)
RT = 25 Ω, VTT = 1.8 V ±5%,
See Figure 2
VTT–500
VTT–400
VTT–320
mV
|VOD|
Differential output voltage magnitude
See Figure 2
285
390
500
mV
C
Differential output capacitance
VI = 0.4 sin (4E6πt) + 0.5 V
3
pF
Co
Differential output capacitance
VCC = 0 V
3
pF
(1) All typical values are at 25
°C and with a 3.3-V supply.
(2) Outputs are terminated through 50-
Ω resistors to VTT, CML level specifications are referenced to VTT and tracks 1:1 with variation of VTT.
(3) Outputs are terminated through 25-
Ω resistors to VTT; CML level specifications are referenced to VTT and tracks 1:1 with variation of VTT.



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