參數(shù)資料
型號(hào): 514ECCXXXXXXAAGR
廠商: SILICON LABORATORIES
元件分類: XO, clock
英文描述: 125 MHz, OTHER CLOCK GENERATOR, PDSO6
封裝: 5 X 7 MM, ROHS COMPILANT PACKAGE-6
文件頁(yè)數(shù): 2/32頁(yè)
文件大?。?/td> 267K
代理商: 514ECCXXXXXXAAGR
Si514
10
Preliminary Rev. 0.9
LP2 values, in addition to updating the value of M, which requires the VCO to be recalibrated. Refer to section
depiction of the difference between small and large frequency changes.
Figure 2. Small vs Large Frequency Change Illustration
2.2. Programming a Small Frequency Change (sub ±1000 ppm)
The value of the feedback multiplier, M is the only parameter that needs to be updated for output frequency
changes less than ±1000 ppm from the center frequency (recalibrating the VCO is NOT required). This enables
the output to remain continuous during the change. For example, the output frequency can be swept continuously
between 148.5 MHz and 148.352 MHz (i.e., –0.997 ppm) with no output discontinuities or glitches by changing M
in either multiple steps or in a single step. For small frequency changes, each update of M requires 100 s to settle.
Note:
It is not possible to implement a frequency change ≥ ±1000 ppm using multiple small frequency changes
without changing the center frequency and recalibrating the VCO.
Use the following procedure to make small frequency changes:
1. If the current value of M is already known, then skip to step 2; else, using the serial port, read the current M
value (Registers 5-9).
2. Calculate the new value of M as follows (all values are in decimal format):
a. Mcurrent = M_Int + M_Frac/229 (Eq 2.2)
b. Mnew = Mcurrent x Fout_new / Fout_current (Eq 2.3)
c. M_Intnew = INT[Mnew]*
(Eq 2.4)
d. M_Fracnew = (Mnew – INT[Mnew]) x 229
(Eq 2.5)
*Where INT[n] rounds n down to the nearest integer (e.g., INT[3.9] = 3)
3. Using the I2C port, write the new value of M_Frac[23:0] (Not all registers need to be updated.)
(Registers: 5, 6, 7)
4. If necessary, write new value of M_Int[2:0] and M_Frac[28:24] register. (Register 8)
5. Write M_Int[8:3]. (Register 9) Frequency changes take effect when M_Int[8:3] is written.
Example 2.1:
An Si514 generating a 148.5 MHz clock must be reconfigured “on-the-fly” to generate a 148.352 MHz clock. This
represents a change of –0.996.633 ppm which is within the ±1000 ppm window.
1. Read the current value of M:
a. Register 5 = 0xD3 (M_Frac[7:0])
b. Register 6 = 0x65 (M_Frac[15:8])
c. Register 7 = 0x7C (M_Frac[23:16])
d. Register 8 = 0x49 (M_Int[2:0],M_Frac[28:24])
FVCO_MIN
(2080 MHz)
FVCO_MAX
(2500 MHz)
Range of small
frequency change
Programming a new center frequency requires a VCO
calibration and the output should be squelched
FCENTER
F'CENTER
Small Frequency Change
Large Frequency Change
FCENTER
+1000 ppm
FCENTER
-1000 ppm
相關(guān)PDF資料
PDF描述
514KCAXXXXXXBAGR 250 MHz, OTHER CLOCK GENERATOR, PDSO6
514QBCXXXXXXBAGR 125 MHz, OTHER CLOCK GENERATOR, PDSO6
514SCCXXXXXXAAG 125 MHz, OTHER CLOCK GENERATOR, PDSO6
5962-9162303MXC GRAPHICS PROCESSOR, CPGA145
5962H9215308QUX 32K X 8 STANDARD SRAM, 40 ns, DFP36
相關(guān)代理商/技術(shù)參數(shù)
參數(shù)描述
514F 功能描述:風(fēng)扇 50x15mm 24VDC 12CFM 1W 5000RPM 30dBA SB RoHS:否 制造商:Sanyo Denki 產(chǎn)品:Fans 電流類型: 電源電壓:48 V 氣流:636 CFM 軸承類型: 噪聲:83 dBA 速度:6400 RPM 功率額定值:264 W 框架尺寸 (mm):172 mm x 150 mm x 102 mm 外殼材料:Aluminum 端接類型:Wire 系列:
514F 制造商:ebm-papst Inc 功能描述:FAN 50MM 24VDC
514F 制造商:ebm-papst Inc 功能描述:Axial Fan
514FAA000115BAG 功能描述:100kHz ~ 250MHz LVDS XO (Standard) Programmable Oscillator Surface Mount 2.5V 23mA Enable/Disable 制造商:silicon labs 系列:Si514 包裝:托盤(pán) 零件狀態(tài):有效 類型:XO(標(biāo)準(zhǔn)) 可編程類型:空白(須由用戶啟用程序) 可用頻率范圍:100kHz ~ 250MHz 功能:啟用/禁用 輸出:LVDS 電壓 - 電源:2.5V 頻率穩(wěn)定度:±50ppm 頻率穩(wěn)定性(總體):±100ppm 工作溫度:-40°C ~ 85°C 擴(kuò)頻帶寬:- 電流 - 電源(最大值):23mA 等級(jí):- 安裝類型:表面貼裝 封裝/外殼:6-SMD,無(wú)引線(DFN,LCC) 大小/尺寸:0.197" 長(zhǎng) x 0.126" 寬(5.00mm x 3.20mm) 高度:0.050"(1.28mm) 電流 - 電源(禁用)(最大值):18mA 標(biāo)準(zhǔn)包裝:50
514FBA000159AAG 制造商:Silicon Laboratories Inc 功能描述:OSCILLATOR - Trays