IDT2308-1DC IDT, Integrated Device Technology Inc, IDT2308-1DC Datasheet - Page 11

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IDT2308-1DC

Manufacturer Part Number
IDT2308-1DC
Description
IC CLK MLTPLR ZDB 1:4 16SOIC
Manufacturer
IDT, Integrated Device Technology Inc
Type
Multiplier, Zero Delay Bufferr
Datasheet

Specifications of IDT2308-1DC

Pll
Yes with Bypass
Input
LVTTL
Output
LVTTL
Number Of Circuits
1
Ratio - Input:output
1:8
Differential - Input:output
No/No
Frequency - Max
133.3MHz
Divider/multiplier
No/No
Voltage - Supply
3 V ~ 3.6 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
16-SOIC
Frequency-max
133.3MHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
2308-1DC

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IDT2308-1DCG
Manufacturer:
IDT
Quantity:
20 000
Part Number:
IDT2308-1DCGI8
Manufacturer:
IDT
Quantity:
8 000
Part Number:
IDT2308-1DCI
Manufacturer:
IDT
Quantity:
20 000
TYPICAL DUTY CYCLE
NOTES:
1. Duty Cycle is taken from typical chip measured at 1.4V.
2. I
IDT2308
3.3V ZERO DELAY CLOCK MULTIPLIER
140
120
160
100
f = Frequency (Hz).
DD
44
42
40
44
40
60
56
52
46
42
40
80
60
20
58
54
50
48
60
58
56
54
52
50
48
46
0
data is calculated from I
3
0
20
(for 30pf loads over frequency - 3.3V, 25C)
(for 30pf loads over frequency - 3.3V, 25C)
(for 30pf loads over temperature - 3.3V)
3.1
40
Number of Loaded Outputs
I
DD
vs Number of Loaded Outputs
Duty Cycle vs Frequency
2
3.2
60
Duty Cycle vs V
Frequency (MHz)
DD
= ICORE + nCVf, where ICORE is the Unloaded Current (n = Number of Outputs; C = Capacitance Load per Output (F); V = Voltage Supply(V);
V
3.3
80
DD
4
(V)
DD
3.4
100
6
(1)
3.5
120
AND I
140
3.6
8
DD
33MHz
33MHz
-40C
66MHz
100MHz
66MHz
100MHz
0C
25C
70C
85C
TRENDS
11
(2)
160
140
120
100
44
44
42
40
40
42
40
60
58
56
54
52
50
48
46
80
60
20
60
58
56
54
52
50
48
46
COMMERCIAL AND INDUSTRIAL TEMPERATURE RANGES
FOR IDT2308-1H, -2H, AND -5H
0
20
3
0
(for 15pF loads over temperature - 3.3V)
(for 15pF loads over frequency - 3.3V, 25C)
3.1
40
(for 15pF loads over frequency - 3.3V, 25C)
Number of Loaded Outputs
I
DD
Duty Cycle vs Frequency
2
vs Number of Loaded Outputs
Frequency (MHz)
60
3.2
Duty Cycle vs V
V
DD
80
3.3
4
(V)
DD
3.4
100
6
120
3.5
140
3.6
8
-40C
33MHz
33MHz
0C
25C
70C
85C
66MHz
100MHz
66MHz
100MHz
133MHz

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