B0008K5050A00 ANAREN | Alldatasheet

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Technical content

Place Manufacturing. USA/Canada: Toll Free: Europe : (315) 432h8909 (800) 411h6596 +44 2392h232392 B00 08K 5050 A00 Rev Ultra Low Profile 0606 Balun 50Ω to 50Ω Balanced

Description

The B0008K5050A00 is a low profile subhmi niature balanced to unbalanced transformer designed for differential inputs and ou tput locations on next generation broadcast applications including tuner chipsets in an easy to use surface mount package. The B0008K5050A00 is ideal for high volume manufacturing and is higher performance than traditional wire wound balu ns. The B0008K5050A00 has an unbalanced port impedance of 50 Ω and a 50 Ω balanced port impedance. This transformation enables single ended signals to be a pplied to differential ports on modern semiconductors. The output ports have equal amplitude (h3dB) with 180 degree phase differential. NOTE: Currently, only Engineering samples are available for this Part. Detailed Electrical Specifications: Specifications subject to change without notice. ROOM (25 °° °°C) Parameter Min. Typ. Max Unit Frequency 48 870 MHz Unbalanced Port Impedance 50 Ω Balanced Port Impedance 50 Ω Return Loss 11 14 dB Insertion Loss* , 0.9 1.2 dB Amplitude Balance* 3.5 3.8 dB Phase Balance*** 40 41 Degrees CMRR 8 dB Power Handling TBD Watts Features:

  • 48 – 870 MHz
  • DVBMC & DVBMT
  • 0.38 mm Height Profile
  • 50 Ohm to 2 x 25 Ohm
  • Broadcast Bands
  • Low Insertion Loss
  • Surface Mountable
  • RoHS Compliant
  • Halogen Free Operating Temperature h55 +85 ºC * Insertion Loss stated at room temperature (Insert ion Loss is approximately 0.15 dB higher at +85 ºC) . All performances stated for recommended operation with external circuitry. Note that Inse rtion Loss is calculated as the sum of powers, i.e. 10 log[ (S 12)2 + (S13 )2 ] * Phase and amplitude balance can be improved significantly by using an external inductor as described further below on pages 2h5. Outline Drawing Mechanical Outline Dimensions are in Inches [Millimeters] Tolerances are NonhCumulative Bottom View (Farhside) Side View Top View (Nearhside) Unbalanced Port GND Designation Pin 1 2 Balanced Port Balanced Port .062 [1.57] .062 [1.57] .012 [0.30] .012 [0.30] .043 [1.10] .015 [0.39] .015 [0.39] 3 4 .012 [0.30]

USA/Canada: Toll Free: Europe: (315) 432h8909 (800) 411h6596 +44 2392h232392 Available on Tape and Reel for Pick and Place Manufacturing. Model B00 08K 5050 A00 Rev Typical Performance (test/specification condition, basic configuration) Rs R=50 O Rd R=50 O B0008K5050A00 Balanced Pin #3 Balanced Pin #4 Gnd Pin #1 Unbalanced Pin #2 Figure 1 The 1:1 Guanella balun in it’s nominal/test configuration (basic configuration).

Place Manufacturing. USA/Canada: Toll Free: Europe : (315) 432h8909 (800) 411h6596 +44 2392h232392 B00 08K 5050 A00 Rev Typical Performance (Ruthroff configuration using an external 91 nH inductor) Gnd Pin #1 Unbalanced Pin #2 Balanced Pin #4 Balanced Pin #3 B0008K5050A00 Rs R=50 O Rd R=50 O L_Ruthroff L=91 nH Figure 2 The Balun with an external inductor in a Ruthroff implementation with an external 91 nH inductor. Data is compared to the basic Guanella configuration (dashed lines). Other inductor values can be used with different results. Typical Performance (using DC Block to enhance low frequency insertion & return loss)

USA/Canada: Toll Free: Europe: (315) 432h8909 (800) 411h6596 +44 2392h232392 Available on Tape and Reel for Pick and Place Manufacturing. Model B00 08K 5050 A00 Rev L_Ruthroff L=100 nH Cgnd C=2000 pF Gnd Pin #1 Unbalanced Pin #2 Balanced Pin #4 Balanced Pin #3 Rs R=50 O Rd R=50 O B0008K5050A00 Cin C=150 pF Figure 3 The Balun with an external 150 pF capacitor to enhance insertion and return loss. Data is compared to the basic Guanella configuration (dashed lines). Other capacitor values can be used with different results.

Place Manufacturing. USA/Canada: Toll Free: Europe : (315) 432h8909 (800) 411h6596 +44 2392h232392 B00 08K 5050 A00 Rev Distortion Considerations: This balun does NOT contain any ferrite materials and are as such distortion free. Very, very low levels of distortion can arise from dissimilar metals on the contact pads of the part (CuhNihAu) and from interhmetallic contaminations within the part. Power Handling Considerations: TBD.

USA/Canada: Toll Free: Europe: (315) 432h8909 (800) 411h6596 +44 2392h232392 Available on Tape and Reel for Pick and Place Manufacturing. Model B00 08K 5050 A00 Rev Mounting Configuration: In order for Xinger surface mount components to wor k optimally, the proper impedance transmission line s must be used to connect to the RF ports. If this condition is not satisfied, insertion loss, Isolation and VS WR may not meet published specifications. All of the Xinger components are constructed from s oftboard composites which possess excellent electri cal and mechanical stability having X and Y thermal coefficient of expansion (CTE ) of 25 ppm/ oC. An example of the PCB footprint used in the testing of these parts is shown below. In specific designs , the transmission line widths need to be adjusted to the unique dielectric coefficients and thicknesses as well as varying pick and place equipment tolerances. Solder Resist Footprint Pad (s) Circuit Pattern Dimensions are in Inches [Millimeters] Mounting Footprint .043 [1.10] .016 [0.40] SQ. 3X TRANSMISSION LINE Solder Resist Footprint Pad (s) Circuit Pattern Dimensions are in Inches [Millimeters] Mounting Footprint .019 [0.49] SQ. .043 [1.10] .016 [0.40] SQ. 3X TRANSMISSION LINE .019 [0.49] SQ. Top View (Nearhside) Top View (Nearhside) 3 4 3 4 The material used for testing is 8mil Rogers 4003. For a ground plane spacing much larger than this the single via at pin 5 should be replaced with at least 2 via and if possible a coplanar ground.