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Home Products Power Dividers 4-Way Dividers
UMCC

 

4-Way Dividers
Frequencies from DC to 20GHz
Narrow Bands to Multi-Octave Bands
Lumped Element, Microstrip, or Stripline Constructions
Excellent Phase and Amplitude Tracking
 
- Specifications are subject to change without notice
- Click on  the product model number  for Specifications-Sheet in PDF
- Click on  "" to see the actual response curves (subject to availability)

Low Frequency Wide Band 4-Way Dividers

Model
Number
Freq.
Range
(MHz)
Insertion
Loss
(1)
(dB) Max
Isolation
(dB) Min
VSWR
Max
Amplitude
Balance
(dB) Max
Phase
Balance
() Max
Power (2) cw/avg
Load VSWR
Outline
Drawing
S Out <2:1
PS-003A-4S
PS-003A-4B
PS-003A-4N

Response Curves in PDF
0.01 - 30 0.9 21 1.35 1.35 0.05 0.25 4 W 10 W

(-4S) with 
SMA(f)


(-4B) with 
BNC(f)


(-4N) with
 N(f)

PD-0100-4S
PD-0100-4B
PD-0100-4N

High Isolation
0.5 - 100 0.6 40 1.35 1.35 0.05 1 2 W 8 W

(-4S) with 
SMA(f)


(-4B) with 
BNC(f)


(-4N) with
 N(f)

PD-0500-4S
PD-0500-4B
PD-0500-4N
Response Curves in PDF
(3)
1 - 500 1.5 20 1.4 1.35 0.1 1 2 W 8 W
PD-1000-4S
PD-1000-4B
PD-1000-4N
Response Curves in PDF
(3)
10 - 1000 1.2 24 1.35 1.35 0.05 1 4 W 10 W
PS-3000-4S
PS-3000-4N
Response Curves in PDF
20 - 2000 1.5 18 1.50 1.50
(4)
0.1 1 2 W 8 W (-4S) with 
SMA(f)


(-4N) with
 N(f)
2000- 3000 2.2 0.2 1.5

1) Loss due to division is 6.02 dB
2) Power at SUM port
3) Also available with 75 ohm BNC(f) / ( Consult factory )
4) 1.65:1 over 20-30 MHz

 

Narrow-Band 4-Way Dividers

Model
Number
Freq.
Range
(GHz)
Insertion
Loss
(1)
(dB) Max
Isolation
(dB) Min
VSWR
Max
Amplitude
Balance
(dB) Max
Phase
Balance
() Max
Power (2) cw/avg
Load VSWR
Outline
Drawing
S Out <2:1
PS-C000-4S
Response Curves in PDF
0.9 - 2.2 0.4 22 1.25 1.25 0.1 1.5 2 W 20 W Fig.3
PS-D000-4S
Response Curves in PDF
1.9 - 4.5 0.5 22 1.30 1.30 0.1 1.5 2 W 20 W Fig.8
PS-3800-4S 2.8 - 5.2 0.5 22 1.25 1.25 0.1 1.5 1 W 10 W Fig.7
PS-3800-4N
All N(f)
3.4 - 4.2 0.5 22 1.30 1.30 0.1 1.5 1 W 10 W Fig.13
PD-E000-4S
4 - 8 0.8 20 1.30 1.30 0.1 2 1 W 10 W Fig.5
PD-F000-4S
8 - 12.4 0.7 18 1.45 1.40 0.1 2.5 1 W 10 W Fig.10
PD-P000-4S
Response Curves in PDF
10 - 20 1.2 17 1.45 1.45 0.15 2.5 1 W 10 W Fig.10

1) Loss due to division is 6.02 dB
2) Power at Sum Port

 

Wide-Band 4-Way Dividers

Model
Number
Freq.
Range
(GHz)
Insertion
Loss
(1)
(dB) Max
Isolation
(dB) Min
VSWR
Max
Amplitude
Balance
(dB) Max
Phase
Balance
() Max
Power(2) cw/avg
Load VSWR
Outline
Drawing
S Out <2:1
PS-K000-4S
Response Curves in PDF
0.85 - 4 1.0 20 1.30 1.30 0.15 2 1 W 10 W Fig.9

PD-LS00-4S
Slimline Pkg.
1.9 - 8.5 0.7 21 1.35 1.35 0.2 4 1 W 10 W Fig.15
PD-M000-4S
Response Curves in PDF
4 - 12.4 1.0 20 1.55 1.55 0.25 4 1 W 10 W Fig.5
PD-N000-4S
Response Curves in PDF
6 - 18 1.3 17 1.60 1.60 0.25 4 1 W 10 W Fig.11

1) Loss due to division is 6.02 dB  
2) Power at Sum Port

 

Multi-Octave-Band 4-Way Dividers

Model
Number
Freq.
Range
(GHz)
Insertion
Loss
(1)
(dB) Max
Isolation
(dB) Min
VSWR
Max
Amplitude
Balance
(dB) Max
Phase
Balance
() Max
Power (2) cw/avg
Load VSWR
Outline
Drawing
S Out <2:1

PD-RS00-4S
Slimline Pkg.
Response Curves in PDF
1 - 12.4 1.5 17 1.55 1.50 0.15 4 1 W 10 W Fig.16
PD-S000-4S
Response Curves in PDF
2 - 18 2.2 17 1.60 1.55 0.25 5 1 W 10 W Fig.14

1) Loss due to division is 6.02 dB
2) Power at Sum Port

 

Resistive 4-Way Divider

Model
Number
Freq.
Range
(GHz)
Insertion
Loss
(1)
(dB) Max
Isolation
(dB)
Nominal
VSWR
Max
Amplitude
Balance
(dB) Max
Phase
Balance
() Max
Power (2) cw/avg
Load VSWR
Outline
Drawing
S Out <2:1
PD-Z000-4S
Response Curves in PDF
DC - 12 1.2 12 1.40 1.40 0.2 3 0.5 W 1 W Fig.6

1) Loss due to division is 12.04 dB, %75 power is dissipated internally
2) Power at Sum Port

 

All Models:
 Impedance: 50 W
 Connectors: SMA(f) , ("unless otherwise specifies")

Environmental Ratings:
 Temperature:
- Operating -55 C to +95C
- Storage -60 C to +110C
 Humidity: Mil-STD-202F, Method 103B Condition B
 Shock: Mil-STD-202F, Method 213B Condition B
 Vibration: Mil-STD-202F, Method 204D Condition B
 Altitude: Mil-STD-202F, Method 105C Condition B
 Temp. Cycle: Mil-STD-202F, Method 107D Condition B
 
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