Electrical Characteristics

PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS
Electrical Characteristics

(Operation at +25°C, A/DVDD18 = 1.85V, A/DVDD33 = 3.3V, A/DVDD18 = 1.85V, and 20MHz external clock, unless otherwise specified.)

Operating Rating
Operating Case Temperature -40 105 ºC
DC Electrical Characteristics
Supply Voltage (A/VDD33 to GND) 3.1 3.3 3.5 V
Supply Voltage (A/VDD18 to GND) 1.75 1.85 1.95 V
Average Power Dissipation (Note 1) (Note 2) (Note 5) 1280 1700 mW
Supply Peak Current (A/VDD33 to GND) (Note 1) (Note 2) (Note 5) 95 120 mA
Supply Peak Current (A/VDD18 to GND) (Note 1) (Note 2) (Note 5) 942 1100 mA
Radio Frequency Signals
Operating Frequency 698 - 3800 MHz
Input Signal Bandwidth (Note 3) (Note 4) 5 - 100 MHz
Noise Power Referred to 0dBm at PA input -140 dBm/Hz
RF Input Range for Maximum Correction—700MHz to 2700MHz
Minimum Peak RFIN_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) -2 dBm
Peak RFIN_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) +4 dBm
Maximum Peak RFIN_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) +6 dBm
Minimum Peak RFFB_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) -12 dBm
Peak RFFB_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) -4 dBm
Maximum Peak RFFB_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) -2 dBm
RFIN_BLN Operating Range Average power, over PA output power range -49 to -4 dBm
RFFB_BLN Operating Range Average power, over PA output power range -52 to -12 dBm
RF Input Range for Maximum Correction—2700MHz to 3300MHz
Peak RFIN_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) +6 dBm
Peak RFFB_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) -4 dBm
RFIN_BLN Operating Range Average power, over PA output power range -44 to -4 dBm
RFFB_BLN Operating Range Average power, over PA output power range -54 to -14 dBm
RF Input Range for Maximum Correction—3300MHz to 3800MHz
Minimum Peak RFIN_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) +3 dBm
Peak RFIN_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) +9 dBm
Maximum Peak RFIN_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) +11 dBm
Minimum Peak RFFB_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) -12 dBm
Peak RFFB_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) -4 dBm
Maximum Peak RFFB_BLN Level When PA operates at maximum output power. (Note 6) (Note 7) -2 dBm
RFIN_BLN Operating Range Average power, over PA output power range -41 to +1 dBm
RFFB_BLN Operating Range Average power, over PA output power range -52 to -12 dBm
Digital I/O - DC Characteristics
Minimum CMOS Input Logic-Low VIL -0.3 V
Maximum CMOS Input Logic-Low VIL +0.8 V
Minimum CMOS Input Logic-High VIH VDD = 3.3V 2.0 V
Maximum CMOS Output Logic-Low VOL 0.4 V
Minimum CMOS Output Logic-High VOH VDD = 3.3V 2.4 V
EEPROM Endurance
Minimum EEPROM write/erase cycles Page mode, +25°C 1M E/W Cycles
Note 1: Continuous adaptation, tracking.
Note 2: Power dissipation may be FW dependent. Refer to the FW release notes for any changes to values listed above.
Note 3: In the case where the carrier configuration is NON-fully occupied, then the average power delta between the two outermost carriers must be ≤ 20dB, the carrier configuration must be static (no hopping), the outermost carriers must be ≥ 5MHz and the center frequency must be stored in EEPROM.
Note 4: Correction performance across range of input signal BWs also depends on PA output power and carrier configuration.
Note 5: Characterized at typical voltages, +25°C operating case temperature, and 100MHz input signal bandwidth.
Note 6: Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal.
Note 7: Referred to 50Ω impedance into a 1:2 balun.

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{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 1\u003c/strong\u003e","data-html":true,"data-content":"Continuous adaptation, tracking."}

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{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 3\u003c/strong\u003e","data-html":true,"data-content":"In the case where the carrier configuration is NON-fully occupied, then the average power delta between the two outermost carriers must be ≤ 20dB, the carrier configuration must be static (no hopping), the outermost carriers must be ≥ 5MHz and the center frequency must be stored in EEPROM."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 4\u003c/strong\u003e","data-html":true,"data-content":"Correction performance across range of input signal BWs also depends on PA output power and carrier configuration."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 7\u003c/strong\u003e","data-html":true,"data-content":"Referred to 50Ω impedance into a 1:2 balun."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

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{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

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{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

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{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 7\u003c/strong\u003e","data-html":true,"data-content":"Referred to 50Ω impedance into a 1:2 balun."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 7\u003c/strong\u003e","data-html":true,"data-content":"Referred to 50Ω impedance into a 1:2 balun."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 7\u003c/strong\u003e","data-html":true,"data-content":"Referred to 50Ω impedance into a 1:2 balun."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 7\u003c/strong\u003e","data-html":true,"data-content":"Referred to 50Ω impedance into a 1:2 balun."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 7\u003c/strong\u003e","data-html":true,"data-content":"Referred to 50Ω impedance into a 1:2 balun."}

{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

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{"data-trigger":"hover","data-placement":"right","data-toggle":"popover","data-original-title":"\u003cstrong\u003eNote 6\u003c/strong\u003e","data-html":true,"data-content":"Peak power is defined as the 10-4 point on the CCDF (complementary cumulative distribution function) of the signal."}

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