Renesas DAC1658D1G25NLGA

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  • Part Number:

    DAC1658D1G25NLGA

  • Manufacturer:

    Renesas

  • Category:

    Digital to Analog Converters (DAC)

  • RoHs:

    rohs RoHS Compliant

  • Datasheet:

    pdf DAC1658D1G25NLGA_Datesheet

  • Description:

    IC DAC 16BIT A-OUT 56VFQFPN

  • In stock 0
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Specifications
Type
Paramete
Type
Paramete
Qualification
-
Grade
-
Architecture
Oversampling Interpolating DAC
Operating Temperature
-40°C ~ 85°C
Number of D/A Converters
2
Package / Case
56-VFQFN Exposed Pad
Settling Time
20µs (Typ)
Output Type
Current - Unbuffered
Mounting Type
Surface Mount
Number of Bits
16
Supplier Device Package
56-VFQFPN (8x8)
Voltage - Supply, Analog
1.14V ~ 1.26V, 2.7V ~ 3.45V
INL/DNL (LSB)
-
Reference Type
External, Internal
Voltage - Supply, Digital
1.14V ~ 1.26V
Data Interface
JESD204B
Differential Output
Yes
Overview

DESCRIPTION

· DAC1653D and DAC1658D are high-speed, high-performance 16-bit dual channel Digital-to-Analog Converters (DACs).
· They support sample rates up to 2 Gsps with selectable ×2, ×4, and ×8 interpolation filters.
· These devices are optimized for multi-carrier and broadband wireless transmitters.
· They feature a JESD204B compatible high-speed serial input data interface running up to 10 Gbps.
· The DAC165xD integrates a 40-bit Numerically Controlled Oscillator (NCO) for precise frequency placement.
· Available in a VFQFP-N 56 package (8 mm × 8 mm).



FEATURES

· Easier PCB layout with lower radiated noise and pin count.
· Self-synchronous link with skew compensation and deterministic latency.
· Supports Multiple Device Synchronization (MDS) and harmonic clocking.
· Assured FPGA interoperability.
· Internal regulator adjusts full-scale output current between 10 mA and 30 mA.
· 13-bit phase adjustment, 12-bit digital gain, and 16-bit digital offset for full control of analog output signals.



APPLICATIONS

· Multi-carrier and broadband wireless transmitters.
· LTE and LTE-A MIMO transceiver applications.
· Systems requiring deterministic and repeatable interface latency.
· Applications needing harmonic clocking to reduce system-level clock synthesis challenges.



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