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TLC2933PWLE Datasheet(PDF) 6 Page - Texas Instruments

Part # TLC2933PWLE
Description  HIGH-PERFORMANCE PHASE-LOCKED LOOP
PDF  21 Pages
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Manufacturer  TI [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI - Texas Instruments

TLC2933PWLE Datasheet(HTML) 6 Page - Texas Instruments

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TLC2933
HIGH-PERFORMANCE PHASE-LOCKED LOOP
SLAS136A – APRIL 1996 – REVISED JUNE 1997
6
POST OFFICE BOX 655303
• DALLAS, TEXAS 75265
operating characteristics over recommended operating free-air temperature range, VDD = 3 V
(unless otherwise noted)
VCO section
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
fosc
Operating oscillation frequency
RBIAS = 2.4 kΩ, VCO IN = 1/2 VDD
38
48
55
MHz
ts(fosc)
Time to stable oscillation (see Note 8)
Measured from VCO INHIBIT
↓
10
µs
tr
Rise time, VCO OUT
↑
CL = 15 pF,
See Figure 3
3.3
10
ns
tf
Fall time, VCO OUT
↓
CL = 15 pF,
See Figure 3
2
8
ns
Duty cycle at VCO OUT
RBIAS = 2.4 kΩ, VCO IN = 1/2 VDD
45%
50%
55%
α(fosc)
Temperature coefficient of oscillation frequency
RBIAS = 2.4 kΩ, VCO IN = 1/2 VDD,
TA = –20°C to 75°C
0.03
%/
°C
kSVS(fosc)
Supply voltage coefficient of oscillation frequency
RBIAS = 2.4 kΩ, VCO IN = 1.5 V,
VDD = 2.85 V to 3.15 V
0.04
%/mV
Jitter absolute (see Note 9)
RBIAS = 2.4 kΩ
100
ps
NOTES:
8. The time period to stabilize the VCO oscillation frequency after the VCO INHIBIT terminal is changed to a low level.
9. Jitter performance is highly dependent on circuit layout and external device characteristics. The jitter specification was made with
a carefully designed printed circuit board (PCB) with no device socket.
PFD section
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNIT
fmax
Maximum operating frequency
30
MHz
tPLZ
Disable time, PFD INHIBIT
↑ to PFD OUT Hi-Z
20
40
ns
tPHZ
Disable time, PFD INHIBIT
↑ to PFD OUT Hi-Z
See Figures 4 and 5 and Table 3
18
40
ns
tPZL
Enable time, PFD INHIBIT
↓ to PFD OUT low
See Figures 4 and 5 and Table 3
4.1
18
ns
tPZH
Enable time, PFD INHIBIT
↓ to PFD OUT high
4.8
18
ns
tr
Rise time, PFD OUT
↑
CL =15 pF
See Figure 4
3.1
9
ns
tf
Fall time, PFD OUT
↓
CL = 15 pF,
See Figure 4
1.5
9
ns



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