参数资料
型号: MAX3873AETP+T
厂商: Maxim Integrated Products
文件页数: 9/10页
文件大小: 0K
描述: IC RECOV/RETIME 2.5GBPS 20TQFN
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
类型: 时钟和数据恢复(CDR)
PLL:
主要目的: SONET/SDH
输入: CML
输出: CML
电路数: 1
比率 - 输入:输出: 1:2
差分 - 输入:输出: 是/是
频率 - 最大: 2.67Gbps
电源电压: 3 V ~ 3.6 V
工作温度: -40°C ~ 85°C
安装类型: 表面贴装
封装/外壳: 20-WFQFN 裸露焊盘
供应商设备封装: 20-TQFN-EP(4x4)
包装: 带卷 (TR)
MAX3873A
Low-Power, Compact 2.5Gbps or 2.7Gbps
Clock-Recovery and Data-Retiming IC
8
_______________________________________________________________________________________
The loop filter output controls the on-chip LC VCO run-
ning at either 2.488GHz or 2.67GHz. The VCO provides
low phase noise and is trimmed to the correct
frequency. Clock jitter generation is typically 2psRMS
within a jitter band of 12kHz to 20MHz.
Loss-of-Lock Monitor
A loss-of-lock (LOL) monitor is incorporated in the
MAX3873A to indicate either a loss of frequency lock or
the absence of incoming data. Under loss-of-lock con-
ditions, LOL may momentarily assert high due to noise.
Design Procedure
Setting the Loop Filter
The MAX3873A is designed for both regenerator and
receiver applications. Its fully integrated PLL is a classic
second-order feedback system, with a loop bandwidth
(JBW) below 2.0MHz. The external capacitor, CF, can be
adjusted to set the loop damping. Figures 6 and 7 show
the open-loop and closed-loop transfer functions. The
PLL zero frequency, fZ, is a function of external capacitor
CF and can be approximated according to:
with CF expressed in F.
For an overdamped system, the jitter peaking (JP) of a
second-order system can be approximated by:
For example, using CF = 2000pF results in jitter peaking
of 0.2dB. Reducing CF below 500pF might result in PLL
instability. The recommended value is CF = 0.022F to
guarantee a maximum jitter peaking of less than 0.1dB.
CF must be a low TC, high-quality capacitor of type X7R
or better.
FASTRACK Mode
The MAX3873A has a PLL fast-track (FASTRACK) mode
to decrease locking time in switched data applications.
In applications where the input data is switched from one
source to another, there is a brief period in which there is
no valid data input to the MAX3873A. In the absence of
input data, the PLL phase slowly drifts from the ideal
position. By enabling FASTRACK during reacquisition,
the time required to regain phase alignment is reduced.
This is accomplished by increasing the loop bandwidth
by approximately 50%.
The bandwidth of the MAX3873A is also linearly depen-
dent upon the transition density of the input data. By using
a preamble of 1200 bits of a 1–0 pattern during switching,
the loop bandwidth is increased by a factor of approxi-
mately 2 (Figure 3). Thus, by using a 1–0 pattern pream-
ble and enabling FASTRACK, the PLL bandwidth is
increased by a factor of approximately 3, resulting in the
fastest possible reacquisition of phase lock.
FASTRACK increases the rate at which the MAX3873A
acquires the proper phase, assuming that the VCO is
already running at the proper frequency. On startup con-
ditions, however, the VCO frequency is significantly differ-
ent from the input data, and the time required to lock to
the incoming data is increased to approximately 1.0ms.
J
f
J
P
z
BW
log
=+
20
1
f
C
z
F
()
=
Ω
1
2
3000
π
Figure 6. Open-Loop Transfer Function
Figure 7. Closed-Loop Transfer Function
CF = 0.022
μF
fZ = 2.4kHz
CF = 2000pF
fZ = 26kHz
HO(j2
πf) (dB)
OPEN-LOOP
GAIN
1000
f (kHz)
100
10
1
CF = 0.022
μF
H(j2
πf) (dB)
1000
100
10
1
f (kHz)
-3
0
CLOSED-LOOP
GAIN
CF = 2000pF
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