Small Format Embedded Switching Cards - SIMRC

Our small format embedded switching cards or SIM relay cards (SIMRC) offer a choice of switching configurations using low cost industry standard SIM connectors. They are ideal for placing switching systems in fixtures close to the unit under test.

  • Low cost embedded switching
  • Uncommitted relay, multiplexer and matrix configurations
  • With I2C and RS-232 interfaces
  • Simple ASCII instruction set
  • Use high quality Pickering Reed Relays
  • For building high density switching networks
  • Standard 72 pin SIM connector
  • Special models available

These small format embedded switching cards free the designer from the detail of routing complex switching circuits, you may select from a wide range of cards using the built in RS-232 and I2C interfaces. SIM relay cards are intended to be mounted on to a simple motherboard and may be used to construct very high density switching networks and also allow for very simple in-field maintenance.

Untitled Button
Max I (A)
Max V DC
Poles
Banks
X Size
Y Size
Price

1030-R-8-2-1-5/1D

SIMRC - 8 x 2 Matrix 1-Pole

Low cost embedded switching matrix

Max I (A)
1
Max V DC
100
Poles
1
Banks
1
X Size
8
Y Size
2
Platform
SIMRC
Switch Type
Reed
€335

1030-R-8-2-2-5/1D

SIMRC - 8 x 2 Matrix 2-Pole

Low cost embedded switching matrix

Max I (A)
1
Max V DC
100
Poles
2
Banks
1
X Size
8
Y Size
2
Platform
SIMRC
Switch Type
Reed
€415
Max I (A)
1
Max V DC
100
Poles
1
Banks
1
X Size
8
Y Size
2
Platform
SIMRC
Switch Type
Reed
€415

1030-R-8-4-1-5/1D

SIMRC - 8 x 4 Matrix 1-Pole

Low cost embedded switching matrix

Max I (A)
1
Max V DC
100
Poles
1
Banks
1
X Size
8
Y Size
4
Platform
SIMRC
Switch Type
Reed
€485
Max I (A)
1
Max V DC
100
Poles
1
Banks
1
X Size
8
Y Size
4
Platform
SIMRC
Switch Type
Reed
€595

1030-R-8-4-2-5/1D

SIMRC - 8 x 4 Matrix 2-Pole

Low cost embedded switching matrix

Max I (A)
1
Max V DC
100
Poles
2
Banks
1
X Size
8
Y Size
4
Platform
SIMRC
Switch Type
Reed
€630

Filter

Max I (A)

Maximum continuous current each switch can carry.

Max V DC

The maximum voltage that may be applied to each switch.

Poles

The number of common terminals simultaneously switched by a single operation. … more

Banks

The number of independent switch topologies on a single module.

X Size

The number of matrix columns, used with Y Size to specify the size of a cross-point matrix.

Y Size

The number of matrix rows, used with X Size to specify the size of a cross-point matrix.

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