sy100ep195v Micrel Semiconductor, sy100ep195v Datasheet - Page 7

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sy100ep195v

Manufacturer Part Number
sy100ep195v
Description
Sy100ep195v 3.3v/5v 2.5ghz Programmable Delay Chip
Manufacturer
Micrel Semiconductor
Datasheet

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V
Notes:
12. AC characteristics are guaranteed by design and characterization.
13. Measured using 750mV source, 50% duty cycle clock source, R
14. Refer to “Typical Operating Characteristics” for output swing performance.
15. The delays of the individual bits are cumulative.
16. Linearity is the deviation from the ideal delay.
17. Duty cycle skew guaranteed only for differential operation measured from the crosspoint of the input edge to the crosspoint of the corresponding
18. Setup time defines the amount of time prior to an edge on IN, /IN that the D[0:9] bits must be set to guarantee the new delay will occur for that edge.
19. Setup time is the minimum that /EN must be asserted prior to the next transition of IN, /IN to prevent an output response greater than ±75mV to that
20. Hold time is the minimum time that /EN must remain asserted after a negative going IN or a positive going /IN to prevent an output response greater
21. Release time is the minimum time that /EN must be deasserted prior to the next IN, /IN transition to ensure an output response that meets the
22. This is the amount of generated jitter added to an otherwise jitter free clock signal, going from IN, /IN to Q, /Q, where the clock may be any frequency
CC
Symbol
f
t
t
∆t
Lin
t
t
t
t
t
V
t
t
MAX
PD
RANGE
SKEW
S
H
R
JIT
r
f
AC ELECTRICAL CHARACTERISTICS
PP
output edge.
IN, /IN transition.
than ±75mV to that IN, /IN transition.
specified IN to Q propagation delay and transition times.
between 0.0 and 2.5GHz.
= 3.0 to 5.5V, V
Maximum Frequency
Propagation Delay
Programmable Range
Step Delay
Linearity
Duty Cycle Skew
Setup Time
Hold Time
Release Time
Cycle-to-Cycle Jitter
Input Voltage Swing (Differential)
Output Rise/Fall Time
20% to 80% (CASCADE)
EE
(16)
Parameter
IN to Q; D[0-10]=1023
= 0V or V
(15)
/EN to Q: D[0-10]=0
IN to Q; D[0-10]=0
D10 to CASCADE
t
PD
SETMAX to LEN
SETMIN to LEN
20% to 80% (Q)
(max)-t
(17)
CC
/EN to IN
IN to /EN
/EN to IN
(22)
(14)
D to IN
D to LEN
LEN to D
= 0V, V
t
PHL
D0 High
D1 High
D2 High
D3 High
D4 High
D5 High
D6 High
D7 High
D8 High
D9 High
PD
(min)
-t
PLH
(18)
(19)
(20)
(21)
EE
= –3.0 to –5.5V; T
1650
9500
1600
7850
Min
300
200
300
300
200
400
400
350
150
T
A
11500
= –40
2000
2150
9450
1080
2100
4250
Typ
420
142
296
532
±10
140
150
250
200
275
800
180
180
2.5
0.2
25
42
75
60
9
0
L
= 50Ω to V
°
A
C
13500
= –40°C to +85°C.
2450
2600
1200
Max
7
500
250
250
< 1
CC
– 2V.
1800
9800
1800
8200
Min
325
200
300
300
200
400
400
350
150
T
A
12200
10000
= +25
(12, 13)
2050
2300
1095
2150
4300
Typ
450
143
300
540
±10
160
170
100
280
500
250
200
800
210
210
2.5
0.2
10
26
42
80
25
0
°
C
14000
2600
2800
1200
Max
550
300
300
< 1
10600
1950
2000
8850
Min
325
200
300
300
200
400
400
350
150
T
A
= +85
13300
10950
2250
2500
1140
2250
4500
Typ
525
150
310
565
±10
180
180
300
300
335
800
230
230
2.5
0.2
10
27
43
81
80
0
°
C
15800
SY100EP195V
2750
3000
1200
Max
625
325
325
< 1
ECL Pro®
%LSB
ps
Unit
GHz
mV
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
ps
RMS

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