Part Number: LMX2582 Hi,
Good Day.
The customer's shared concern is for LMX2582 TI indicates a generic current need of 250mA without distinction between Analog and digital Vcc. How this 250mA is between analog (Vbuffer) and the others?
Please advise…
Part Number: LMX2582 Hi Folks,
Looking for timing related parameters which we could not find in the datasheet.
R31 register: Power down to Power up time delay for the RF power to settle . Typical and Max
R46 register: Power down to Power up time…
Part Number: ADC12DL3200EVM Other Parts Discussed in Thread: LMK04828 , LMX2582 , ADC12DL3200 I am able to read/write ADC registers using the 8510.ADC12DL3200EVM.zip I downloaded from a previous thread.
I also would like to configure the clock chips so I…
Part Number: LMX2582 HI,
I'm Currently using LMX2582 (Our Custom Designed Board) for PLL, and I'm using microchip controller ATSAME54P20A for connecting to LMX2582 Board using SPI Interface.For generating various frequencies, i am using Texas instruments…
Part Number: LMX2582 We now have a project that uses LMX2582. There are such application scenarios:
Two LMX2582 are configured with different frequency points (for example, No. 1 is configured with 3G, and No. 2 is configured with 3.1G)
The two are powered…
Part Number: LMX2582 Hi Team,
Our customer would like to know the 3rd order loop filter section of the LMX2582RHAT and LMX2541SQ2690E. He wants the capacitors and resistors values not from the datasheet but from the PLLatinum tool.
Regards,
Danilo
Part Number: LMX2582 Hi Experts,
One of our customers work on PLL LMX2582. He wants to power down the PLL or sleep the PLL.
He needs a lock time around 200us afer power-up. it's possible?
He have programmed the PLL in full-assist mode.
I hope you…
Part Number: LMX2582 Other Parts Discussed in Thread: USB2ANY , LMX2594 I have a 2594 EVM and the TICS Pro control board that loads the registers and it is working fine. I am considering a custom design with an LMX2582. Here are my questions:
1) Can I use…
Part Number: LMX2582LMX2582 specifies nominal output power in section 6.5 and provides Figure 13 for Single-ended output. How is this translated to differential output usage?