首页 > 器件类别 > 无源元件

532DC000609DG

DUAL FREQUENCY XO, OE PIN 2

器件类别:无源元件   

厂商名称:Silicon Laboratories Inc

下载文档
532DC000609DG 在线购买

供应商:

器件:532DC000609DG

价格:-

最低购买:-

库存:点击查看

点击购买

器件参数
参数名称
属性值
类型
XO(标准)
频率 - 输出 1
644.53125MHz
频率 - 输出 2
698.812331MHz
功能
启用/禁用
输出
CML
电压 - 电源
3.3V
频率稳定度
±7ppm
工作温度
-40°C ~ 85°C
电流 - 电源(最大值)
108mA
大小/尺寸
0.276" 长 x 0.197" 宽(7.00mm x 5.00mm)
高度
0.071"(1.80mm)
封装/外壳
6-SMD,无引线
电流 - 电源(禁用)(最大值)
75mA
文档预览
Si532
R
EVISION
D
D
U A L
F
REQUENCY
C
R Y S TA L
O
SCILLATOR
(X O )
(10 M H
Z TO
1 . 4 G H
Z
)
Features
Available with any-frequency output
frequencies from 10 MHz to 945 MHz
and select frequencies to 1.4 GHz
Two selectable output frequencies
rd
®
3 generation DSPLL with superior
jitter performance
3x better frequency stability than
SAW-based oscillators
Internal fixed crystal frequency
ensures high reliability and low
aging
Available CMOS, LVPECL,
LVDS, and CML outputs
3.3, 2.5, and 1.8 V supply options
Industry-standard 5 x 7 mm
package and pinout
Pb-free/RoHS-compliant
Si5602
Ordering Information:
See page 7.
Applications
SONET/SDH
Networking
SD/HD video
Test and measurement
Clock and data recovery
FPGA/ASIC clock generation
Pin Assignments:
See page 6.
(Top View)
FS
OE
GND
1
2
3
6
5
4
V
DD
Description
The Si532 dual frequency XO utilizes Silicon Laboratories’ advanced
DSPLL
®
circuitry to provide a low jitter clock at high frequencies. The Si532 is
available with any-frequency output frequency from 10 to 945 MHz and select
frequencies to 1400 MHz. Unlike a traditional XO where a different crystal is
required for each output frequency, the Si532 uses one fixed crystal
frequency to provide a wide range of output frequencies. This IC based
approach allows the crystal resonator to provide exceptional frequency
stability and reliability. In addition, DSPLL clock synthesis provides superior
supply noise rejection, simplifying the task of generating low jitter clocks in
noisy environments typically found in communication systems. The Si532 IC
based XO is factory configurable for a wide variety of user specifications
including frequency, supply voltage, output format, and temperature stability.
Specific configurations are factory programmed at time of shipment, thereby
eliminating long lead times associated with custom oscillators.
CLK–
CLK+
(LVDS/LVPECL/CML)
FS
OE
GND
1
2
3
6
5
4
V
DD
Functional Block Diagram
V
DD
CLK– CLK+
NC
CLK
(CMOS)
Fixed
Frequency
XO
Any-frequency
10–1400 MHz
DSPLL
®
Clock
Synthesis
FS
OE
GND
Rev. 1.4 6/18
Copyright © 2018 by Silicon Laboratories
Si532
Si532
1. Electrical Specifications
Table 1. Recommended Operating Conditions
Parameter
Supply Voltage
1
Symbol
V
DD
Test Condition
3.3 V option
2.5 V option
1.8 V option
Supply Current
I
DD
Output enabled
LVPECL
CML
LVDS
CMOS
Tristate mode
Output Enable (OE)
and Frequency Select (FS)
2
Operating Temperature Range
Min
2.97
2.25
1.71
0.75 x V
DD
–40
Typ
3.3
2.5
1.8
111
99
90
81
60
Max
3.63
2.75
1.89
121
108
98
88
75
0.5
85
Units
V
V
V
mA
mA
V
V
ºC
V
IH
V
IL
T
A
Notes:
1.
Selectable parameter specified by part number. See Section 3. "Ordering Information" on page 7 for further details.
2.
OE and FS pins include a 17 k pullup resistor to V
DD
. Pulling OE to ground causes outputs to tristate.
Table 2. CLK± Output Frequency Characteristics
Parameter
Nominal Frequency
1,2
Symbol
f
O
Test Condition
LVPECL/LVDS/CML
CMOS
Min
10
10
–7
–20
–50
Typ
±1.5
Max
945
160
+7
+20
+50
±3
±10
±20
±31.5
±61.5
Units
MHz
MHz
ppm
Initial Accuracy
Temperature Stability
1,3
f
i
Measured at +25 °C at time of
shipping
ppm
ppm
ppm
ppm
ppm
ppm
Aging
f
a
Frequency drift over first year
Frequency drift over 20 year life
Temp stability = ±7 ppm
Temp stability = ±20 ppm
Temp stability = ±50 ppm
Total Stability
Notes:
1.
See Section 3. "Ordering Information" on page 7 for further details.
2.
Specified at time of order by part number. Also available in frequencies from 970 to 1134 MHz and 1213 to 1417 MHz.
3.
Selectable parameter specified by part number.
4.
Time from powerup or tristate mode to f
O
.
2
Rev. 1.4
Si532
Table 2. CLK± Output Frequency Characteristics (Continued)
Parameter
Powerup Time
4
Settling Time After FS Change
Symbol
t
OSC
t
FRQ
Test Condition
Min
Typ
Max
10
10
Units
ms
ms
Notes:
1.
See Section 3. "Ordering Information" on page 7 for further details.
2.
Specified at time of order by part number. Also available in frequencies from 970 to 1134 MHz and 1213 to 1417 MHz.
3.
Selectable parameter specified by part number.
4.
Time from powerup or tristate mode to f
O
.
Table 3. CLK± Output Levels and Symmetry
Parameter
LVPECL Output Option
1
Symbol
V
O
V
OD
V
SE
Test Condition
mid-level
swing (diff)
swing (single-ended)
mid-level
swing (diff)
Min
V
DD
– 1.42
1.1
0.55
1.125
0.5
Typ
Max
V
DD
– 1.25
1.9
0.95
1.275
0.9
Units
V
V
PP
V
PP
V
V
PP
1.20
0.7
LVDS Output Option
2
V
O
V
OD
CML Output Option
2
V
O
2.5/3.3 V option mid-level
1.8 V option mid-level
2.5/3.3 V option swing (diff)
1.8 V option swing (diff)
I
OH
= 32 mA
I
OL
= 32 mA
1.10
0.35
0.8 x V
DD
V
DD
– 1.30
V
DD
– 0.36
1.50
0.425
1
1.90
0.50
V
DD
V
V
V
PP
V
PP
V
V
OD
CMOS Output Option
3
V
OH
V
OL
Rise/Fall time (20/80%)
t
R,
t
F
0.4
350
ps
ns
LVPECL/LVDS/CML
CMOS with C
L
= 15 pF
Symmetry (duty cycle)
SYM
LVPECL:
(diff)
LVDS:
CMOS:
V
DD
– 1.3 V
1.25 V (diff)
V
DD
/2
45
55
%
Notes:
1.
50
to V
DD
– 2.0 V.
2.
R
term
= 100
(differential).
3.
C
L
= 15 pF
Rev. 1.4
3
Si532
Table 4. CLK± Output Phase Jitter
Parameter
Phase Jitter (RMS)
1
for F
OUT
> 500 MHz
Phase Jitter (RMS)
1
for F
OUT
of 125 to 500 MHz
Phase Jitter (RMS)
1
for F
OUT
of 125 and 156.25 MHz Only
Symbol
Test Condition
12 kHz to 20 MHz (OC-48)
50 kHz to 80 MHz (OC-192)
Min
Typ
0.25
0.26
0.36
0.34
0.25
0.62
0.61
Max
0.40
0.37
0.50
0.42
0.40
Units
ps
ps
ps
ps
ps
ps
ps
J
J
J
J
12 kHz to 20 MHz (OC-48)
50 kHz to 80 MHz (OC-192)
2
12 kHz to 20 MHz (Brickwall)
12 kHz to 20 MHz (OC-48)
2
50 kHz to 20 MHz
2
Phase Jitter (RMS)
for F
OUT
of 10 to 160 MHz
CMOS Output Only
Notes:
1.
Refer to AN256 for further information.
2.
Max offset frequencies: 80 MHz for FOUT > 250 MHz, 20 MHz for 50 MHz < FOUT <250 MHz,
2 MHz for 10 MHz < FOUT <50 MHz.
Table 5. CLK± Output Period Jitter
Parameter
Period Jitter*
Symbol
J
PER
Test Condition
RMS
Peak-to-Peak
Min
Typ
2
14
Max
Units
ps
ps
*Note:
Any output mode, including CMOS, LVPECL, LVDS, CML. N = 1000 cycles. Refer to AN279 for further information.
Table 6. CLK± Output Phase Noise (Typical)
Offset Frequency (f)
100 Hz
1 kHz
10 kHz
100 kHz
1 MHz
10 MHz
100 MHz
120.00 MHz
LVDS
–112
–122
–132
–137
–144
–150
n/a
156.25 MHz
LVPECL
–105
–122
–128
–135
–144
–147
n/a
622.08 MHz
LVPECL
–97
–107
–116
–121
–134
–146
–148
Units
dBc/Hz
4
Rev. 1.4
Si532
Table 7. Environmental Compliance
The Si532 meets the following qualification test requirements.
Parameter
Mechanical Shock
Mechanical Vibration
Solderability
Gross & Fine Leak
Resistance to Solder Heat
Moisture Sensitivity Level
Contact Pads
Conditions/Test Method
MIL-STD-883, Method 2002
MIL-STD-883, Method 2007
MIL-STD-883, Method 2003
MIL-STD-883, Method 1014
MIL-STD-883, Method 2036
J-STD_020, MSL1
Gold over Nickel
Table 8. Thermal Characteristics
(Typical values TA = 25 ºC, V
DD
= 3.3 V)
Parameter
Thermal Resistance Junction to Ambient
Thermal Resistance Junction to Case
Ambient Temperature
Junction Temperature
Symbol
JA
JC
T
A
T
J
Test Condition
Still Air
Still Air
Min
–40
Typ
84.6
38.8
Max
85
125
Unit
°C/W
°C/W
°C
°C
Table 9. Absolute Maximum Ratings
1
Parameter
Maximum Operating Temperature
Supply Voltage, 1.8 V Option
Supply Voltage, 2.5/3.3 V Option
Input Voltage (any input pin)
Storage Temperature
ESD Sensitivity (HBM, per JESD22-A114)
Soldering Temperature (Pb-free profile)
2
Soldering Temperature Time @ T
PEAK
(Pb-free profile)
2
Symbol
T
AMAX
V
DD
V
DD
V
I
T
S
ESD
T
PEAK
t
P
Rating
85
–0.5 to +1.9
–0.5 to +3.8
–0.5 to V
DD
+ 0.3
–55 to +125
2500
260
20–40
Units
ºC
V
V
V
ºC
V
ºC
seconds
Notes:
1.
Stresses beyond those listed in Absolute Maximum Ratings may cause permanent damage to the device. Functional
operation or specification compliance is not implied at these conditions.
2.
The device is compliant with JEDEC J-STD-020C. Refer to Si5xx Packaging FAQ available for download at
www.silabs.com/VCXO
for further information, including soldering profiles.
Rev. 1.4
5
查看更多>
Powerint LNK6766E 30W单输出反激电源解决方案
Powerint公司的LinkSwitchTM-HP系列是集成了控制器和高压(650V/725V)...
aipoul 综合技术交流
高效率的强光手电筒驱动方案:有效延长电池寿命
高效率的强光手电筒驱动方案:有效延长电池寿命 点击下面链接观看TI 工程师的精彩讲演 ...
qwqwqw2088 模拟与混合信号
请问我该如何硬件切换电源
我现在驱动电磁阀,需要24V的启动电压,但这个电压的时间不能太长,在启动后马上需要切换到6V来维持...
cgha 电源技术
蓝牙芯片CC2541问题,关于RSSI指标
蓝牙芯片CC2541问题,关于RSSI指标 蓝牙芯片用的是CC2541,人体穿戴产品。测试心率等。...
QWE4562009 分立器件
IM4F232H5QD 板子
IM4F232H5QD 板子 呵呵 ...
shanxiwgq 淘e淘
请问xt1接10m晶振能否工作
如题 请问xt1接10m晶振能否工作 什么系列的什么型号? msp430f4794 datashee...
zzwwjj 微控制器 MCU
热门器件
热门资源推荐
器件捷径:
00 01 02 03 04 05 06 07 08 09 0A 0C 0F 0J 0L 0M 0R 0S 0T 0Z 10 11 12 13 14 15 16 17 18 19 1A 1B 1C 1D 1E 1F 1H 1K 1M 1N 1P 1S 1T 1V 1X 1Z 20 21 22 23 24 25 26 27 28 29 2A 2B 2C 2D 2E 2F 2G 2K 2M 2N 2P 2Q 2R 2S 2T 2W 2Z 30 31 32 33 34 35 36 37 38 39 3A 3B 3C 3D 3E 3F 3G 3H 3J 3K 3L 3M 3N 3P 3R 3S 3T 3V 40 41 42 43 44 45 46 47 48 49 4A 4B 4C 4D 4M 4N 4P 4S 4T 50 51 52 53 54 55 56 57 58 59 5A 5B 5C 5E 5G 5H 5K 5M 5N 5P 5S 5T 5V 60 61 62 63 64 65 66 67 68 69 6A 6C 6E 6F 6M 6N 6P 6R 6S 6T 70 71 72 73 74 75 76 77 78 79 7A 7B 7C 7M 7N 7P 7Q 7V 7W 7X 80 81 82 83 84 85 86 87 88 89 8A 8D 8E 8L 8N 8P 8S 8T 8W 8Y 8Z 90 91 92 93 94 95 96 97 98 99 9A 9B 9C 9D 9F 9G 9H 9L 9S 9T 9W
需要登录后才可以下载。
登录取消