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Browse Analog & Mixed Signal
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5594 IP
351
10.0
Low Power Wide Range PLL - GLOBALFOUNDRIES 28 28SLP
Analog Bits Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de-skew and non-integer clock multiplication to prog...
352
10.0
Low Power Wide Range PLL - GLOBALFOUNDRIES 28 28SLPe
Analog Bits’ Low Power Wide Range PLL addresses markets and applications that demand very low power and optimized for area efficiencies. In addition, ...
353
10.0
Low Power Wide Range PLL - GLOBALFOUNDRIES 40 40LP
Analog Bits Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de-skew and non-integer clock multiplication to prog...
354
10.0
Low Power Wide Range PLL - GLOBALFOUNDRIES 65 65LPe
Analog Bits Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de-skew and non-integer clock multiplication to prog...
355
10.0
Low-Power Wide Range PLL - UMC 130 L130EHS
Analog Bits Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de-skew and non-integer clock multiplication to prog...
356
10.0
Power on Reset - GLOBALFOUNDRIES 12LP+
Analog Bits’ Power-On Reset (POR) and Over Current Detection (OCD) macro comprehensively addresses typical SOC start-up power supply monitoring needs ...
357
10.0
Power on Reset - TSMC 12FFC
Analog Bits Power-On Reset (POR) macro comprehensively addresses typical SOC start-up power supply monitoring needs, in a fully integrated easy-to-use...
358
10.0
Power on Reset - TSMC 28 HPC+
Analog Bits unique POR macro helps SoC sequence power between various power domains of the SOC. Additionally we have unique circuits to prevent Brown ...
359
10.0
Power on Reset - TSMC 7FF
Analog Bits’ Power-On Reset (POR) macro comprehensively addresses typical SOC start-up power supply monitoring needs, in a fully integrated easy-to-us...
360
10.0
Power on Reset - TSMC CLN16FFC
Analog Bits Power-On Reset (POR) macro comprehensively addresses typical SOC start-up power supply monitoring needs, in a fully integrated easy-to-use...
361
10.0
Power-On Reset - TSMC CLN4P
Analog Bits’ Power-On Reset (POR) macro comprehensively addresses typical SOC start-up power supply monitoring needs, in a fully integrated easy-to-u...
362
10.0
Power-On Reset - TSMC CLN6FF
Analog Bits’ Power-On Reset (POR) macro comprehensively addresses typical SOC start-up power supply monitoring needs, in a fully integrated easy-to-u...
363
10.0
Power-On Reset - TSMC N5
Analog Bits’ Power-On Reset (POR) macro comprehensively addresses typical SOC start-up power supply monitoring needs, in a fully integrated easy-to-us...
364
10.0
Up to 60GHz Divide By 2 Prescaler with I and Q outputs in GiGe
The PMCC_DIV60G is a high speed (up to 60GHz) fully differential static frequency divider by 2, designed using Jazz SiGe120 (SBC18HX) technology. Diff...
365
10.0
Frac-N PLL - TSMC 22 CLN22ULL/ULP
A programmable on-the-fly Fractional-N PLL is required to lock to an incoming clock source and produce an output clock. The generated clock needs to b...
366
10.0
Frac-N PLL - TSMC 28 CLN28HPC+
The programmable Fractional-N divider allows the PLL to lock to an incoming clock source and produce an output clock with a non-integer multiplication...
367
10.0
Frac-N SSCG PLL - TSMC 6FF
Analog Bits’ low power Fractional-N / SSCG PLL addresses power sensitive designs required for IOT, mobile and other low power applications needing non...
368
10.0
Frac-N SSCG PLL - TSMC N5
Analog Bits’ low power Fractional-N / SSCG PLL addresses power sensitive designs required for IOT, mobile and other low power applications needing non...
369
10.0
FracN/SSCG PLL - TSMC CLN4P
Analog Bits’ low power Fractional-N SSCG PLL addresses power sensitive designs required for IOT, mobile and other low power applications needing non-i...
370
10.0
FracN/SSCG PLL - TSMC CLN5A
Analog Bits’ low power Fractional-N SSCG PLL addresses power sensitive designs required for IOT, mobile and other low power applications needing non-i...
371
10.0
Fractional-N PLL - TSMC 28 CLN28HPC
The programmable Fractional-N divider allows the PLL to lock to an incoming clock source and produce an output clock with a non-integer multiplication...
372
10.0
Fractional-N PLL - TSMC CLN16FFC
The programmable Fractional-N divider allows the PLL to lock to an incoming clock source and produce an output clock with a non-integer multiplication...
373
10.0
Process Detector (For DVFS and monitoring process variation), TSMC 16FFC
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
374
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N3
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
375
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N3EP
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
376
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N4P
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
377
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N5
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
378
10.0
Process Detector (For DVFS and monitoring process variation), TSMC N6
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
379
10.0
Process Detector P/N Skew, TSMC N5
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability on low-geometry CMOS...
380
10.0
Droop Detector - TSMC CLN2P
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
381
10.0
Droop Detector - TSMC CLN3A
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
382
10.0
Droop Detector - TSMC CLN3E
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
383
10.0
Droop Detector - TSMC CLN3P
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
384
10.0
Droop Detector - TSMC CLN4P
Analog Bits’ Droop Detector macro addresses SOC power supply and other voltage droop monitoring needs in a fully integrated easy-to-use macro. The Dro...
385
10.0
Crystal Oscillator - TSMC 6FF
High end consumer and professional applications require crystals with a minimum number of external components. These applications typically operate un...
386
10.0
Crystal Oscillator - TSMC N5
High end consumer and professional applications require crystals with a minimum number of external components. These applications typically operate un...
387
10.0
Crystal Oscillator Pad - TSMC 7FF
High end consumer and professional applications require crystals with a minimum number of external components. These applications typically operate un...
388
10.0
Crystal-less Oscillator - TSMC 12FFC
Analog Bits Crystal-less low power oscillator addresses a variety of applications that include low power consumer and professional applications that r...
389
10.0
Crystal-less Oscillator - TSMC CLN16FFC
Analog Bits Crystal-less low power oscillator addresses a variety of applications that include low power consumer and professional applications that r...
390
10.0
SSCG PLL - TSMC CLN3E
Analog Bits’ PCIe REF PLL addresses stringent performance requirements in high-speed serial link applications that support the PCI Express Gen4 and Ge...
391
10.0
SSCG PLL - TSMC CLN3P
Analog Bits’ PCIe REF PLL addresses stringent performance requirements in high-speed serial link applications that support the PCI Express Gen4 and Ge...
392
10.0
TSMC CLN16FFCLL 16nm Clock Generator PLL - 800MHz-4000MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096. It does not provide any deskew functionality. It cont...
393
10.0
TSMC CLN28HPC 28nm Clock Generator PLL - 175MHz-875MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096. It does not provide any deskew functionality. It cont...
394
10.0
TSMC CLN28HPC 28nm Clock Generator PLL - 350MHz-1750MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096. It does not provide any deskew functionality. It cont...
395
10.0
TSMC CLN28HPC 28nm Clock Generator PLL - 700MHz-3500MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096. It does not provide any deskew functionality. It cont...
396
10.0
TSMC CLN28HPC 28nm DDR DLL - 150MHz-750MHz
The DDR DLL uses a reference clock to establish a time base in order to delay arbitrary (nonperiodic) strobe signals by precise fractions of the clock...
397
10.0
TSMC CLN28HPC 28nm DDR DLL - 200MHz-1000MHz
The DDR DLL uses a reference clock to establish a time base in order to delay arbitrary (nonperiodic) strobe signals by precise fractions of the clock...
398
10.0
TSMC CLN28HPC 28nm DDR DLL - 316MHz-1580MHz
The DDR DLL uses a reference clock to establish a time base in order to delay arbitrary (nonperiodic) strobe signals by precise fractions of the clock...
399
10.0
TSMC CLN28HPC 28nm Deskew PLL - 175MHz-875MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference. The PLL can also multiply the ...
400
10.0
TSMC CLN28HPC 28nm Deskew PLL - 350MHz-1750MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference. The PLL can also multiply the ...
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