- Home
- Siemens
- Siemens 6ES7552-1AA00-0AB0 SIMATIC S7-1500 TM Timer DIDQ 16x24V Time-Stamped I/O Module Siemens 6ES7552-1AA00-0AB0 SIMATIC S7-1500 TM Timer DIDQ 16x24V Time-Stamped I/O Module
Siemens 6ES7552-1AA00-0AB0 SIMATIC S7-1500 TM Timer DIDQ 16x24V Time-Stamped I/O Module
Get Quote
- Description
The Siemens 6ES7552-1AA00-0AB0 is a SIMATIC S7-1500 TM Timer DIDQ 16x24V module providing up to 8 time-stamped digital inputs and 16 digital outputs, up to 16 of which carry a time stamp, at 24 V DC, with integrated counting, PWM, and oversampling functions. It runs on two separate 24 V DC load voltages and mounts directly on the S7-1500 rail.
Technical Specifications
| SKU | 6ES7552-1AA00-0AB0 |
| Brand | Siemens |
| Series | SIMATIC S7-1500 |
| Product Type Designation | TM Timer DIDQ 16x24V |
| Load Voltage 1L+, rated | 24 V DC, 19.2 to 28.8 V range |
| Load Voltage 2L+, rated | 24 V DC, 19.2 to 28.8 V range |
| Current Consumption | 40 mA from 1L+, 30 mA from 2L+, without load |
| Encoder Supply | Up to 8 outputs at 24 V, 1.2 A total, 0.5 A per output, short-circuit protected |
| Power Consumption from Backplane Bus | 1.3 W |
| Power Loss, typ. | 5 W |
| Address Space | 44 byte inputs, 74 byte outputs |
| Digital Inputs | Up to 8, parameterizable, up to 8 with time stamp, up to 4 as counters |
| Digital Input Voltage | 24 V DC rated, signal 1: +11 to +30 V, signal 0: -5 to +5 V |
| Digital Input Functions | Time stamp, counter, counter for incremental encoder, oversampling, HW enable for DI/DQ |
| Digital Input Cable Length | 1 000 m shielded / 600 m unshielded, max. |
| Digital Outputs | Up to 16, in groups of 8, transistor type, current-sinking (high speed) and current-sourcing |
| Digital Output Functions | Time stamp (up to 16), PWM output, oversampling |
| Digital Output Switching Capacity | 0.5 A resistive (standard), 0.1 A resistive (high speed), max. per output |
| Digital Output Rated Current | 0.5 A standard / 0.1 A high speed, signal 1, per output |
| Total Output Current | 4 A per group, 8 A per module, max., observe derating |
| Connectable Encoders | Incremental (asymmetrical), 24 V initiator, 2-wire sensor |
| Incremental Encoder Interface | 24 V input, input frequency 50 kHz max., counting frequency 200 kHz max. with quadruple evaluation, cable length 600 m shielded max. |
| Integrated Counters | 4, up to 200 kHz counting frequency with quadruple evaluation |
| Isochronous Mode | Bus cycle time 250 microseconds min., jitter 1 microsecond max. |
| Diagnostics | Supply voltage monitoring, short-circuit, substitute values connectable |
| Diagnostics Indication LEDs | RUN (green), ERROR (red), MAINT (yellow), PWR (green), channel status (green), channel diagnostics (red) |
| Isolation | 707 V DC (type test), between channels and backplane bus |
| Ambient Temperature, horizontal | 0 to 60 degC |
| Ambient Temperature, vertical | 0 to 40 degC, observe derating |
| Dimensions (W x H x D) | 35 x 147 x 129 mm |
| Weight, approx. | 320 g |
| Mounting | S7-1500 mounting rail |
| Engineering | STEP 7 TIA Portal V13 Update 3 or higher |
| Net Weight (shipping) | 0.436 kg |
| Country of Origin | DE |
Selection Notes
Up to 16 of the digital outputs and up to 8 of the digital inputs can carry a hardware time stamp, so event sequencing on fast machine cycles does not depend on the CPU scan cycle catching the edge. PWM output and oversampling on the DQ side let a single channel generate a pulse train or sample faster than the base cycle time, useful where a standard fixed-sample DI/DQ module would miss short pulses. Four integrated counters, up to 200 kHz with quadruple evaluation on 24 V incremental encoders, cover speed or position feedback from simple 2-wire proximity sensors without a dedicated high-speed counting module. Two separate 24 V load-voltage groups, 1L+ for inputs and 2L+ for the encoder and output side, let a fault on one circuit be cleared without dropping the other.
Applications
Event logging and fast sequencing where the timing of a digital signal edge matters, such as packaging machines correlating a sensor trip with an actuator response, or PWM-driven valve control combined with time-stamped feedback for diagnostics.