DXR SOP

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New York ARTCC
Standard Operating Procedure — Danbury ATCT

Rev. 3 — Revised: 2026-01-12

Area at a glance

KDXR Danbury D
Purpose
This document prescribes the procedures to be utilized for providing air traffic control services at the Danbury Airport Traffic Control Tower (ATCT). The procedures described herein are supplemental to the New York ARTCC Standard Operating Procedures and FAA Order JO 7110.65.
Distribution
This order is distributed to all New York ARTCC personnel.
Procedural Deviations
Exceptional or unusual requirements may dictate procedural deviations or supplementary procedures to this order. A situation may arise that is not adequately covered herein; in such an event use good judgment to adequately resolve the problem.


Operational Positions

Position Callsign Radio Name Frequency Identifier
Ground Control DXR_GND Danbury Ground 128.600
Local Control DXR_TWR Danbury Tower 119.400 14
ATIS KDXR_ATIS 127.750

Sector Callsign Frequency Identifier Combined Sector
LaGuardia Departure LGA_DEP 120.400 1L Primary Departure
HAARP LGA_V_APP 120.800 1V Primary Approach (LGA_APP when combined)
Final Vector LGA_F_APP 134.900 1F 1V
NYACK LGA_Y_DEP 120.550 1Y 1X (1L if NOBBI is not covered)
EMPYR LGA_D_APP 127.300 1D 1V
NOBBI LGA_X_APP 126.400 1X 1V

Sector Callsign Frequency Identifier Combined Sector
Final Vector JFK_A_APP 132.400 2A 2K
CAMRN JFK_G_APP 128.125 2G 2K
Kennedy Departure JFK_DEP 135.900 2J Primary Departure
ROBER JFK_K_APP 125.700 2K Primary Approach (JFK_APP when combined)
Kennedy Satellite JFK_M_APP 118.400 2M 2K

Sector Callsign Frequency Identifier Combined Sector
Calverton ISP_N_APP 120.050 3N Primary TRACON (ISP_APP if combined)
Islip ISP_H_APP 134.550 3H 3N
SEALL ISP_R_APP 133.100 3R 3N
VIKKY ISP_O_APP 128.625 3O 3N
LOVES ISP_Z_APP 124.075 3Z 3N
BEADS Low ISP_I_APP 118.950 3I 3N
BEADS High ISP_B_APP 125.975 3B 3N

Sector Callsign Frequency Identifier Combined Sector
Newark Departure EWR_DEP 119.200 4N Primary Departure
Yardley EWR_P_APP 128.550 4P Primary Approach (EWR_APP when combined)
Final Vector 22 EWR_M_APP 125.500 4M 4P
Final Vector 4 EWR_Q_APP 125.500 4Q 4P
North Arrival EWR_A_APP 120.150 4A 4P
MUGZY EWR_U_APP 127.600 4U 4P
ZEEBO EWR_S_APP 123.775 4S 4U
METRO EWR_H_APP 132.800 4H 4U

Sector Callsign Frequency Identifier Combined Sector
East NY_LE_DEP 126.800 5E 5W
West NY_LW_DEP 120.850 5W Primary TRACON (NY_L_APP when combined and covering Catskill)
North NY_LN_DEP 118.175 5T 5W
South NY_LS_DEP 124.750 5S 5W
Catskill SWF_APP 132.750 5H 5W

ATCT

Clearance Delivery

Exit Gate Exit Radial
North SAX
COATE SAX 311 / HUO 207
NEION LGA 322
HAAYS HUO 145
GAYEL DPK 320
East GREKI CMK 057
MERIT LGA 055
BAAYS BDR 054
CMK
BDR
South DIXIE JFK 221
WHITE JFK 221
SHIPP JFK 139
WAVEY JFK 136
West SBJ
BIGGY SBJ 237
LANNA PTW 059 / SBJ 274
PARKE BWZ 250
ELIOT SAX 252
NEWEL SAX 264
ZIMMZ SAX 250
Position Frequency
NOBBI 126.400
HAARP 120.800
New York Center (Sector 56) 125.325
LGA Departure 120.400

The table on the right lists the common frequencies used as departure frequency. The first available controller in this list should be handling departures.

Note that this table only serves as a guide. The actual departure frequency has to be determined based on coordination with the other online controllers.

If there is no other controller online that would accept departures from DXR, advise the pilot that Departure is offline.
Airway Join
L454/L455/L457/L459 WAVEY OWENZ ..
J6 PARKE J6
J37 GREKI ALB J37
J42 MERIT HFD J42
J48 LANNA J48
J60 NEWEL J60
J63 HAAYS HUO Q812
J64 NEWEL J60 DANNR RAV J64
J70 SAX LVZ J70
J79 East: BDR HOFFI J79
South: WHITE Q409 VILLS J79
J95 GAYEL J95
J106 SAX LVZ J106
J146 PARKE FJC J146
J174 WAVEY EMJAY J174
J222 GREKI J222
J223 NEION J223
J225 BDR RAALF J225
J584 SAX LVZ FQM J584
Q42 ZIMMZ Q42
Q75 North: GREKI Q75
South: BIGGY Q75
Q409 WHITE Q409
Q436 COATE Q436
Q480 ZIMMZ SPOTZ Q480
Filed Exit From KLGA
ARD BIGGY
BOUND WAVEY
CCC DPK
COL WHITE
ETX PARKE
FJC PARKE
GEDIC WAVEY GEDIC
HFD MERIT HFD
HOFFI BDR HOFFI
HTO BDR HOFFI HTO
HUO HAAYS
IGN GREKI
JOANI WHITE
LAURN WHITE
MARIO MERIT
NEWES MERIT
OWENZ WAVEY OWENZ
PACER MERIT
PNE BIGGY PNE
PUT MERIT
RAALF MERIT
RBV West: BIGGY
South: WHITE
STW SAX

The initial altitude for IFR departures is 3,000'. There are no SIDs at DXR.

All DXR IFR departures must be cleared via CMK, regardless of their exit.

  • Runway 8 departures should be instructed to "turn left direct CMK". Runway 26 and 35 departures should be instructed to "proceed direct CMK".
  • Departures joining an airway at CMK should be cleared on their route after reaching CMK.
PHRASEOLOGY
CLEARED TO (DESTINATION). PROCEED DIRECT/TURN LEFT DIRECT (FIX), (ROUTE)...

EXAMPLE
"N825BT, cleared to Caldwell Airport. Turn left direct CMK VOR, then as filed..."

  • Departures routed via another fix/exit after CMK should be told to expect radar vectors to the appropriate exit after reaching CMK.
PHRASEOLOGY
CLEARED TO (DESTINATION). PROCEED DIRECT/TURN LEFT DIRECT (FIX), RADAR VECTORS (EXIT)...

EXAMPLE
"N825BT, cleared to Chicago Executive Airport. Proceed direct CMK VOR, radar vectors COATE, then as filed..."

DXR is located inside the Danbury Class Delta Airspace.

VFR aircraft are NOT required to obtain a clearance before departing, but may request flight following.

Issue the following instructions to aircraft requesting flight following on the ground:

  1. Departure control frequency in use.
  2. Squawk code.

Ground Control

Departure Sequencing

Aircraft should be sequenced to depart in the following order:

  1. By alternating gate.
  2. If not the above, then by alternating exit fix.
  3. If not the above, then by aircraft performance, fastest to slowest.

Intersection Departures

Intersection departures are not authorized at DXR.

Local Control

Releases

Releases from Danbury must be requested for each individual aircraft unless otherwise coordinated with N90.

Radar and Airspace

Danbury ATCT has a TDW but is NOT Limited Radar Approach Control certified.

  1. This tower shall NOT radar identify departing IFR aircraft and shall instruct departing aircraft to contact Departure Control once they appear to be clear of any traffic. It is imperative that Local Control observe departing traffic turning towards the assigned climb, heading, or visual reporting point before handing off.

Runway 17 is the designated calm wind runway when weather conditions permit. The runway must be clear and dry with braking action reported as good prior to use.

Runway 17 may not be used for IFR departures. Runway 35 may only be used for IFR departures being cleared using Visual Climb Over Airport (VCOA).

Use other runways when required for traffic (including at pilot request) and other conditions, or as defined in the Runway Use Program below:

Wind Speed Direction (Magnetic) Depart Land
0-4 Any 17 17
5+ 082-124 17 / 08 17 / 08
124-214 17 17
214-264 17 / 26 17 / 26

Because they are issued "direct CMK" in their IFR clearance, IFR departures should be expected to proceed direct CMK on departure.

No additional phraseology is required for runway 8 or 26 departures.

PHRASEOLOGY
CLEARED FOR TAKEOFF

EXAMPLE
"N825BT, runway 8, cleared for takeoff."

IFR departures from runway 35 should, after coordination with N90, be issued VCOA departure instructions. The published VCOA visibility is 3 miles:

PHRASEOLOGY
DEPART VIA THE (AIRPORT NAME)(RUNWAY NUMBER) OBSTACLE DEPARTURE PROCEDURE. REMAIN WITHIN (NUMBER OF MILES) OF THE (AIRPORT NAME) DURING VISUAL CLIMB

EXAMPLE
"N825BT, depart via the Danbury Runway 35 obstacle departure procedure. Remain within 3 miles of the Danbury Airport during visual climb. Runway 35, cleared for takeoff."

IFR missed approaches should be instructed to fly the published missed approach.

Aircraft cleared on a visual approach, and VFR aircraft, should be instructed to enter the traffic pattern.

PHRASEOLOGY
GO AROUND. MAKE LEFT/RIGHT CLOSED TRAFFIC.

The pattern direction for all runways is left. Use nonstandard pattern directions when operationally beneficial.

TRACON

TRACON services for Danbury Airport are provided by New York TRACON (N90).