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"FRACTIONAL INTERPOLATOR"

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Abstract: CURRENT SETTING RDIV NDIV RFCP3 RFCP2 RFCP1 N-COUNTER THIRD ORDER FRACTIONAL INTERPOLATOR CLK , N-COUNTER N = INT + FRAC/MOD TO PFD THIRD-ORDER FRACTIONAL INTERPOLATOR INT REG MOD REG FRAC , 11047-015 N DIVIDER REG (R0) FASTLOCK 9-BIT INTEGER VALUE (INT) 12-BIT FRACTIONAL VALUE (FRAC , ) PRESCALER RESERVED LOAD CONTROL MUXOUT 4-BIT R COUNTER 12-BIT INTERPOLATOR MODULUS VALUE (MOD , -BIT FRACTIONAL VALUE (FRAC) CONTROL BITS DB23 FL1 DB22 N9 DB21 DB20 DB19 DB18 N6 N5 DB17 N4 Analog Devices
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DB10 ADF4153A 24-BIT ADSP-21 VCO190-902T 08-16-2010-B MO-220-WGGD-1
Abstract: DECLVCO THIRD ORDER FRACTIONAL INTERPOLATOR N COUNTER 21 to 123 26 RFIN VCO CORE 5000-5800 MHz , INTERFACE FRACTION REG MODULUS INTEGER REG DIV BY 2,1 40 DECLVCO THIRD ORDER FRACTIONAL INTERPOLATOR N COUNTER 21 to 123 26 RFIN VCO CORE 5000-5800 MHz PRESCALER REFIN 6 :2 29 IP3SET Analog Devices
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Abstract: VDD VDD VDD VDD VDD VDD NC NC 1 10 17 22 27 34 32 33 LOSEL 36 2 LON 37 BUFFER LOP 38 PL EN 16 DATA 12 CLK 13 LE 14 BUFFER DECL3P3 9 DECL2P5 2:1 MUX SPI INTERFACE FRACTION REG MODULUS INTEGER REG DIV BY 2,1 40 DECLVCO THIRD ORDER FRACTIONAL INTERPOLATOR N COUNTER 21 to 123 26 RFIN VCO CORE 3100-4300 MHz PRESCALER , FRACTIONAL INTERPOLATOR N COUNTER 21 to 123 26 RFIN VCO CORE 3100-4300 MHz PRESCALER REFIN 6 :2 Analog Devices
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SPI 21-74 100KH
Abstract: a programmable reference divider. There is a - based fractional interpolator to allow programmable , RFCP3 RFCP2 RFCP1 NDIV N-COUNTER RFINA RFINB THIRD ORDER FRACTIONAL INTERPOLATOR CLOCK , ORDER FRACTIONAL INTERPOLATOR 03685-015 AGND N = INT + FRAC/MOD INT REG MOD REG , fractional interpolator. This is part of what determines the overall feedback division factor. It is also , GHz 2.7 V to 3.3 V power supply Separate VP allows extended tuning voltage Programmable fractional Analog Devices
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ADF4153 ADF4106 E5500 EVAL-ADF4153EB1 varil vco190 VCO190-1750T ADF4110/ADF4111/ADF4112/ADF4113 RU-16 CP-20-1 C03685-0-8/05
Abstract: a programmable reference divider. There is a - based fractional interpolator to allow programmable , RFCP2 RFCP1 NDIV N-COUNTER RFINA RFINB THIRD ORDER FRACTIONAL INTERPOLATOR CLK DATA , 12. RF Input Stage N = INT + FRAC/MOD TO PFD N-COUNTER THIRD-ORDER FRACTIONAL INTERPOLATOR , value into the fractional interpolator. This is part of what determines the overall feedback division , Spurs The fractional interpolator in the ADF4153 is a third-order - modulator (SDM) with a modulus Analog Devices
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circuit diagram of MOD 64 counter circuit diagram of MOD 100 counter NXP 4093 ADF4153 data sheet ADF4153BRUZ EVAL-ADF4153EBZ1 ADF4153W D03685-0-8/10
Abstract: charge pump, and a programmable reference divider. A sigma-delta (-) based fractional interpolator allows , RDIV NDIV N-COUNTER THIRD ORDER FRACTIONAL INTERPOLATOR CLK DATA LE RFCP3 RFCP2 RFCP1 RFINA RFINB , N-COUNTER THIRD-ORDER FRACTIONAL INTERPOLATOR INT REG MOD REG FRAC VALUE 11047-013 Figure 12 , FRAC value into the fractional interpolator. This is part of what determines the overall feedback , is 0. 12-Bit Interpolator MOD Value These programmable bits set the fractional modulus. This is Analog Devices
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mod 16 binary down counter ADF4110/ADF4111/ ADF4112/ADF4113 CP-20-6 ADF4153ABCPZ ADF4153ABCPZ-RL7 EV-ADF4153ASD1Z
Abstract: VDD VDD VDD VDD VDD VDD NC NC 1 10 17 22 27 34 32 33 LOSEL 36 2 LON 37 BUFFER LOP 38 PL EN 16 DATA 12 CLK 13 BUFFER DECL3P3 9 DECL2P5 2:1 MUX LE 14 SPI INTERFACE FRACTION REG MODULUS INTEGER REG DIV BY 4,2,1 40 DECLVCO THIRD ORDER FRACTIONAL INTERPOLATOR N COUNTER 21 to 123 26 RFIN VCO CORE 3000-4600 , THIRD ORDER FRACTIONAL INTERPOLATOR N COUNTER 21 to 123 26 RFIN VCO CORE 3000-4600 MHz PRESCALER Analog Devices
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Abstract: ORDER FRACTIONAL INTERPOLATOR N COUNTER 21 to 123 26 RFIN VCO CORE 4200-5200 MHz PRESCALER , DIV BY 2,1 DECL3P3 9 DECL2P5 40 DECLVCO SPI INTERFACE THIRD ORDER FRACTIONAL INTERPOLATOR N COUNTER 21 to 123 26 RFIN VCO CORE 4200-5200 MHz PRESCALER REFIN 6 :2 29 IP3SET Analog Devices
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Abstract: fractional interpolator to allow programmable fractional-N division. The INT, FRAC, and MOD registers define , LOCK DETECT MUXOUT OUTPUT MUX VDD RDIV NDIV N-COUNTER THIRD ORDER FRACTIONAL INTERPOLATOR CLK DATA LE , FRACTIONAL INTERPOLATOR INT REG MOD REG FRAC VALUE 03685-016 Figure 13. RF N Divider Rev. E , bits control what is loaded as the FRAC value into the fractional interpolator. This is part of what , impedance when this bit is 0. 12-Bit Interpolator MOD Value These programmable bits set the fractional Analog Devices
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D03685-0-7/12
Abstract: a programmable reference divider. There is a Σ-Î" based fractional interpolator to allow , N = INT + FRAC/MOD TO PFD N-COUNTER THIRD-ORDER FRACTIONAL INTERPOLATOR MOD REG FRAC , Value These 12 bits control what is loaded as the FRAC value into the fractional interpolator. This is , . 12-Bit Interpolator MOD Value These programmable bits set the fractional modulus. This is the ratio , and how to minimize them in the ADF4153. Fractional Spurs The fractional interpolator in the Analog Devices
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ADF4153WYRUZ-RL7 D03685-0-11/13
Abstract: a programmable reference divider. There is a Σ-Î" based fractional interpolator to allow , N = INT + FRAC/MOD TO PFD N-COUNTER THIRD-ORDER FRACTIONAL INTERPOLATOR MOD REG FRAC , Value These 12 bits control what is loaded as the FRAC value into the fractional interpolator. This is , . 12-Bit Interpolator MOD Value These programmable bits set the fractional modulus. This is the ratio , and how to minimize them in the ADF4153. Fractional Spurs The fractional interpolator in the Analog Devices
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Abstract: . There is a - based fractional interpolator to allow programmable fractional-N division. The INT, FRAC , NDIV N-COUNTER RFINA RFINB THIRD ORDER FRACTIONAL INTERPOLATOR CLK DATA MODULUS REG , 12. RF Input Stage N = INT + FRAC/MOD TO PFD N-COUNTER THIRD-ORDER FRACTIONAL INTERPOLATOR , value into the fractional interpolator. This is part of what determines the overall feedback division , and how to minimize them in the ADF4153. Fractional Spurs The fractional interpolator in the Analog Devices
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D03685-0-10/08
Abstract: a programmable reference divider. There is a Σ-Î" based fractional interpolator to allow , N = INT + FRAC/MOD TO PFD N-COUNTER THIRD-ORDER FRACTIONAL INTERPOLATOR MOD REG FRAC , Value These 12 bits control what is loaded as the FRAC value into the fractional interpolator. This is , . 12-Bit Interpolator MOD Value These programmable bits set the fractional modulus. This is the ratio , available: â'40°C to +125°C Programmable fractional modulus Programmable charge pump currents 3 Analog Devices
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Abstract: programmable reference divider. There is a - based fractional interpolator to allow programmable fractional-N , FRACTIONAL INTERPOLATOR FAST-LOCK SWITCH CURRENT SETTING RFCP3 RFCP2 RFCP1 N COUNTER RFINA RFINB , THIRD ORDER FRACTIONAL INTERPOLATOR 04833-015 DELAY U3 CHARGE PUMP CP 04833-016 ­IN , Value These 12 bits control what is loaded as the FRAC value into the fractional interpolator. This , ). FRAC is the preset fractional ratio of binary 12-bit programmable FRAC counter (0 to MOD-1). Analog Devices
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ADF4106 design example VCO190-1750 Vari-L Company ADF4154 ADF4154BRU ADF4154BRU-REEL ADF4154BRU-REEL7 ADF4154BRUZ ADF4154BRUZ-RL
Abstract: based fractional interpolator to allow programmable fractional-N division. The INT, FRAC, and MOD , FRACTIONAL INTERPOLATOR CLOCK DATA MODULUS REG INTEGER REG 03685-A-001 LE FRACTION REG , Stage TO PFD N-COUNTER THIRD ORDER FRACTIONAL INTERPOLATOR RF INT DIVIDER INT REG MOD , loaded as the FRAC value into the fractional interpolator. This is part of what determines the overall , equal to the RFOUT channel step resolution (fRES). The third-order fractional interpolator engine of Analog Devices
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cmos 4093 with truth table MO-220-VGGD-1 CP-20 ADF4153BRU ADF4153BRU-REEL ADF4153BRU-REEL7 ADF4153BCP
Abstract: charge pump, and a programmable reference divider. There is a Σ-Î" based fractional interpolator to , THIRD ORDER FRACTIONAL INTERPOLATOR CLOCK DATA LE CP VDD FRACTION REG 24-BIT DATA , CHARGE PUMP CP THIRD ORDER FRACTIONAL INTERPOLATOR HI FRAC VALUE CLR2 DOWN D2 Q2 U2 , fractional interpolator. This value helps determine the overall feedback division factor (see Equation 1). , counter (2 to 4095). FRAC is the preset fractional ratio of binary 12-bit programmable FRAC counter (0 Analog Devices
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ADF4154BRUZ-RL7 ADF4154BCPZ ADF4154BCPZ-RL ADF4154BCPZ-RL7 EVAL-ADF4154EBZ1 D04833-0-9/11
Abstract: charge pump, and a programmable reference divider. There is a - based fractional interpolator to allow , NDIV N COUNTER THIRD ORDER FRACTIONAL INTERPOLATOR DATA LE FRACTION REG 24-BIT DATA , fractional interpolator. This value helps determine the overall feedback division factor (see Equation 1). , written to in the following sequence: 1. R2 CP The fractional interpolator in the ADF4154 is a , preset fractional ratio of binary 12-bit programmable FRAC counter (0 to MOD-1). R-COUNTER 2k Analog Devices
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land pattern for TSSOP digital code lock schematic diagram digital code lock system cmos 4093 PIN DIAGRAM land pattern for TSsOP 16 applications of aduc812 D04833-0-12/06
Abstract: programmable reference divider. There is a - based fractional interpolator to allow programmable fractional-N , the FRAC value into the fractional interpolator. This value helps determine the overall feedback , Sequences section. Fractional Spurs The fractional interpolator in the ADF4154 is a third-order - , RDIV NDIV CURRENT SETTING RFCP3 RFCP2 RFCP1 N COUNTER RFINA RFINB THIRD ORDER FRACTIONAL INTERPOLATOR FRACTION REG MODULUS REG CLOCK DATA LE 24-BIT DATA REGISTER INTEGER REG AGND DGND Analog Devices
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154BRU-REEL 012508-B
Abstract: charge pump, and a programmable reference divider. A sigma-delta (-) based fractional interpolator allows , RDIV NDIV N-COUNTER THIRD ORDER FRACTIONAL INTERPOLATOR CLK DATA LE RFCP3 RFCP2 RFCP1 RFINA RFINB , STAGE N-COUNTER THIRD-ORDER FRACTIONAL INTERPOLATOR INT REG MOD REG FRAC VALUE 11047-013 , FRAC value into the fractional interpolator. This is part of what determines the overall feedback , is 0. 12-Bit Interpolator MOD Value These programmable bits set the fractional modulus. This is Analog Devices
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8051-B ADF4153ABRUZ ADF4153ABRUZ-RL7 D11047-0-1/13
Abstract: charge pump, and a programmable reference divider. There is a - based fractional interpolator to allow , RFCP2 RFCP1 N-COUNTER THIRD ORDER FRACTIONAL INTERPOLATOR RFINA RFINB + INTEGER REG CLOCK DATA LE , DIVIDER FROM RF INPUT STAGE N = INT + FRAC/MOD TO PFD N-COUNTER THIRD ORDER FRACTIONAL INTERPOLATOR , fractional interpolator. This is part of what determines the overall feedback division factor. It is used in , interpolator engine of the ADF4153 may also introduce subfractional spurs. If the fractional denominator (MOD Analog Devices
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ADF4110/ADF4111/ADF4112/ ADF4113 MS-153AB C03685
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