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TFF1013HN

NXP
Part Number TFF1013HN
Manufacturer NXP
Description Integrated mixer oscillator PLL
Published Jul 9, 2020
Detailed Description TFF1013HN Integrated mixer oscillator PLL for satellite LNB Rev. 1 — 11 September 2013 Product data sheet 1. General...
Datasheet PDF File TFF1013HN PDF File

TFF1013HN
TFF1013HN


Overview
TFF1013HN Integrated mixer oscillator PLL for satellite LNB Rev.
1 — 11 September 2013 Product data sheet 1.
General description The TFF1013HN is an integrated downconverter for use in Low Noise Block (LNB) convertors in a 10.
7 GHz to 12.
75 GHz Ku band satellite receiver system.
2.
Features and benefits  Low current consumption integrated pre-amplifier, mixer, buffer amplifier and PLL synthesizer  Flat gain over frequency  Single 5 V supply pin  Low cost 25 MHz crystal  Crystal controlled LO frequency generation  Switched LO frequency (9.
75 GHz and 10.
6 GHz)  Low phase noise  Low spurious  Low external component count  Alignment-free concept  ESD protection on all pins 3.
Applications  Ku band LNB converters for digital satellite reception (DVB-S / DVB-S2) 4.
Quick reference data Table 1.
Quick reference data VCC = 5 V; Tamb = 25 C; fLO = 9.
75 GHz or 10.
6 GHz; fxtal = 25 MHz; Z0 = 50  unless otherwise specified.
Symbol Parameter Conditions Min Typ Max Unit VCC ICC NFSSB fi(RF) supply voltage supply current single sideband noise figure RF input frequency RF input and IF output AC coupled RF input and IF output AC coupled low band high band [1] 4.
5 5 [1] - 52 -9 10.
7 - 11.
7 - 5.
5 V - mA - dB 11.
7 GHz 12.
75 GHz Gconv conversion gain measured at low band fIF = 1450 MHz and high band fIF = 1625 MHz - 33 - dB NXP Semiconductors TFF1013HN Integrated mixer oscillator PLL for satellite LNB Table 1.
Quick reference data …continued VCC = 5 V; Tamb = 25 C; fLO = 9.
75 GHz or 10.
6 GHz; fxtal = 25 MHz; Z0 = 50  unless otherwise specified.
Symbol Parameter Conditions Min Typ Max s11 input reflection coefficient fi(RF) = 10.
7 GHz to 12.
7 GHz - 10 - s22 output reflection coefficient fo(IF) = 950 MHz to 2150 MHz; Z0 = 75  - 10 - IP3o output third-order intercept point worst case value of the two measurements is [2] - 17 - specified Unit dB dB dBm [1] DC values.
[2] measurement 1: f1 = 1733 MHz; f2 = 1773 MHz; Pi = 4...



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