VCC
參數(shù)資料
型號(hào): SY100E111JC
廠商: Micrel Inc
文件頁(yè)數(shù): 4/4頁(yè)
文件大?。?/td> 0K
描述: IC CLK FANOUT BUFFER 1:9 28-PLCC
標(biāo)準(zhǔn)包裝: 38
系列: 100E, ECLinPS™
類型: 扇出緩沖器(分配)
電路數(shù): 1
比率 - 輸入:輸出: 1:9
差分 - 輸入:輸出: 是/是
輸入: PECL
輸出: PECL
電源電壓: 4.2 V ~ 5.5 V
工作溫度: 0°C ~ 85°C
安裝類型: 表面貼裝
封裝/外殼: 28-LCC(J 形引線)
供應(yīng)商設(shè)備封裝: 28-PLCC
包裝: 管件
4
SuperLite
SY55857L
Micrel, Inc.
M9999-082306
hbwhelp@micrel.com or (408) 955-1690
VCC = 3.3V ±10%; TA= –40°C to +85°C; RL = 50 to VCC –2V, unless otherwise stated.
Symbol
Parameter
Condition
Min
Typ
Max
Units
fMAX
Maximum Operating Frequency
VIN < 2.4V
NRZ Data
2.5
Gbps
Note 6
VIN < 2.4V
Clock
2.5
GHz
VIN < VCC +0.3V
NRZ Data
1.25
Gbps
VIN < VCC +0.3V
Clock
1.25
GHz
tPD
Propagation Delay
D-to-Q
400
ps
tSKEW
Within-Device-Skew (Differential)
Note 7
50
ps
Part-to-Part Skew (Differential)
Note 8
200
ps
tJITTER
Random Jitter (RJ)
Note 9
1psRMS
Deterministic Jitter (DJ)
Note 10
10
psPP
Total Jitter (TJ)
Note 11
110
psPP
tr, tf
Output Rise/Fall Time
20% to 80%
At full output swing
200
ps
Notes:
6. Clock frequency is defined as the maximum toggle frequency, and guaranteed for functionality only. Measured with a 750mV signal, 50% duty cycle
and VOUT swing ≥ 400mV. High -frequency AC-parameters are guaranteed by design and characterization.
7. Within-device skew is measured between two different outputs under identical transitions.
8. Part-to-part skew is defined for two parts with identical power supply voltages at the same temperature and with no skew of the edges at the
respective inputs.
9. Random jitter is measured with a K28.7 comma detect character pattern, measured at 2.5Gbps.
10. Deterministic jitter is measured at 2.5Gbps with both K28.5 and 223–1 PRBS pattern.
11. Total jitter definition: with an ideal differential clock input of frequency
≤ f
MAX, no more than one output edge in 10
12 output edges will deviate by
more than the specified peak-to-peak jitter value.
AC ELECTRICAL CHARACTERISTICS
SINGLE-ENDED AND DIFFERENTIAL SWINGS
VID,
VOUT 800mV (Typ.)
Figure 1a. Single-Ended Voltage Swing
VDIFF_IN,
VDIFF_OUT 1600mV (Typ.)
Figure 1b. Differential Voltage Swing
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