VND5E025BK-E STMICROELECTRONICS | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 34
Technical content
Datasheet sections
- 1 Block diagram and pin description
- 2 Electrical specification
- 2.1 Absolute maximum ratings
- 2.2 Thermal data
- 2.3 Electrical characteristics
- 2.4 Waveforms
- 2.5 Electrical characteristics curves
- 3 Application information
- 3.1 GND protection network against reverse battery
- 3.1.1 Solution 1: resistor in the ground line (RGND only)
- 3.1.2 Solution 2: diode (DGND) in the ground line
- 3.2 Load dump protection
- 3.3 MCU I/Os protection
- 3.4 Current sense and diagnostic
- 4 Package and thermal data
- 4.1 PowerSSO-24 thermal data
- 5 Package and packing information
- 5.1 ECOPACK ®
- 5.2 Package mechanical data
- 5.3 Packing information
- 6 Order codes
- 7 Revision history
Features
■ General – Inrush current active management by power limitation – Very low standby current – 3.0V CMOS compatible inputs ■ Diagnostic functions – High current sense precision for wide currents range – Current sense ratio drift for single point calibration – Current sense disable – Overload and short to ground (power limitation) indication – Thermal shutdown indication ■ Protections – Undervoltage shutdown – Overvoltage clamp – Load current limitation – Self limiting of fast thermal transients – Protection against loss of ground and loss of V CC – Overtemperature shutdown with auto restart (thermal shutdown) – Reverse battery protected – Electrostatic discharge protection
Applications
■ Especially intended for blinkers ■ All types of resistive, inductive and capacitive loads and suitable as LED driver
Description
The VND5E025BK-E is a double channel high- side driver manufactured in the ST proprietary VIPower™ M0-5 technology and housed in the tiny PowerSSO-24 package. The VND5E025BK-E is designed to drive 12V automotive grounded loads delivering protection, diagnostics and easy 3V and 5V CMOS compatible interface with any microcontroller. The device integrates advanced protective functions such as load current limitation, inrush and overload active management by power limitation, overtemperature shut-off with auto restart and overvoltage active clamp. A dedicated analog current sense pin is associated with every output channel in order to provide Enhanced diagnostic functions including fast detection of overload and short circuit to ground through power limitation indication and overtemperature indication. An improved current sense circuitry and the introduction of a new current sense ratio drift, dK/K(tot), allow the "single-point" calibration and ensure a very high accuracy in case of "double- point" calibration. The current sensing and diagnostic feedback of the whole device can be disabled by pulling the CS_DIS pin high to allow sharing of the external sense resistor with other similar devices. Max transient supply voltage V CC 41 V Operating voltage range V CC 4.5 to 28 V Max on-state resistance (per ch.) R ON 25 mΩ Current limitation (typ) I LIMH 60 A Off-state supply current I S 2µ A(1) 1. Typical value with all loads connected. PowerSSO-24
1 Block diagram and pin description
Figure 1. Block diagram Table 1. Pin functions CS_DIS Active high CMOS compatible pin to disable the current sense pin.
Figure 2. Configuration diagram (top view) Table 2. Suggested connections for unused and not connected pins
2 Electrical specification
Figure 3. Current and voltage conventions
2.1 Absolute maximum ratings
and other relevant quality document. VFn = VOUTn - VCC during reverse battery condition. Table 3. Absolute maximum ratings
2.2 Thermal data
Table 3. Absolute maximum ratings (continued) Table 4. Thermal data
2.3 Electrical characteristics
Table 5. Power section
- PowerMOS leakage included.
Table 6. Switching (V CC = 13V; Tj = 25°C)
Table 7. Logic inputs Table 8. Protections and diagnostics (1)
- To ensure long term reliability under heavy overload or short circuit conditions, protection and related
abnormal conditions, this software must limit the duration and number of activation cycles.
Table 9. Current sense (8V < V CC < 18V)
- Parameter guaranteed by design; it is not tested.
- Analog sense current drift (dK/K) is deviation of factor K for a given device over (-40 °C to 150 °C,
Vbatt: 8 V...16 V) with respect to its value measured at Tj = 25 °C, V CC =1 3V .
- Total current drift over -40 °C to 150 °C, Vbatt: 8 V...16 V and output current variation, respect to a
calibration point measured at Tj = 25 °C and V CC = 13.5 V.
- Fault condition includes: power limitation and overtemperature.
Table 9. Current sense (8V < V CC < 18V) (continued)
Figure 9. Maximum current sense ratio drift vs load current Table 10. Truth table
- If the V CSD is high, the SENSE output is at a high impedance, its potential depends on leakage currents
Parameter guaranteed by design; it is not tested.
Table 11. Electrical transient requirements (part 1/3)
- The above test levels must be considered referred to V CC = 13.5V except for pulse 5b.
- Valid in case of external load dum p clamp: 40V maximum referred to ground.
Table 12. Electrical transient requirements (part 2/3)
- Valid in case of external load dum p clamp: 40V maximum referred to ground.
Table 13. Electrical transient requirements (part 3/3) C All functions of the device performed as designed after exposure to disturbance. disturbance and cannot be returned to proper operation without replacing the device.
2.4 Waveforms
Figure 10. Normal operation Figure 11. Overload or short to GND
2.5 Electrical characteristics curves
Figure 14. Off-state output current Figure 15. High level input current Figure 16. Input clamp voltage Figure 17. Input high level Figure 18. Input low level Figure 19. Input hysteresis voltage
3 Application information
Figure 29. Application schematic
3.1 GND protection network against reverse battery
3.1.1 Solution 1: resistor in the ground line (R GND only)
This can be used with any type of load. The following is an indication on how to dimension the RGND resistor. maximum rating section of the device datasheet. maximum On-state currents of the different devices. Channel 2 has the same internal circuit as channel 1.
values. This shift will vary depending on how many devices are On in the case of several high-side drivers sharing the same RGND. If the calculated power dissipation leads to a large resistor or several devices have to share the same resistor then ST suggests to utilize Solution 2 (see below).
3.1.2 Solution 2: diode (D GND) in the ground line
A resistor (RGND=1 kΩ) should be inserted in parallel to DGND if the device drives an inductive load. This small signal diode can be safely shared amongst several different HSDs. Also in this case, the presence of the ground network will produce a shift (≈600mV) in the input threshold and in the status output values if the microprocessor ground is not common to the device ground. This shift will not vary if more than one HSD shares the same diode/resistor network.
3.2 Load dump protection
Dld is necessary (voltage transient suppressor) if the load dump peak voltage exceeds the VCC max DC rating. The same applies if the device is subject to transients on the VCC line that are greater than the ones shown in the ISO 7637-2: 2004(E) table.
3.3 MCU I/Os protection
If a ground protection network is used and negative transient are present on the V CC line, the control pins will be pulled negative. ST suggests to insert a resistor (Rprot) in line to prevent the MCU I/Os pins to latch-up. The value of these resistors is a compromise between the leakage current of MCU and the current required by the HSD I/Os (Input levels compatibility) with the latch-up limit of MCU I/Os: CCpeak/Ilatchup ≤ Rprot ≤ (VOHμC-VIH-VGND) / IIHmax Calculation example: For VCCpeak = - 100 V and Ilatchup ≥ 20 mA; VOHµC ≥ 4.5 V 5k Ω ≤ Rprot ≤ 180 kΩ Recommended values: Rprot =10 kΩ, CEXT=10 nF.
3.4 Current sense and diagnostic
- Current mirror of the load current in normal operation, delivering a current proportional to the load one according to a known ratio KX. The current ISENSE can be easily converted to a voltage VSENSE by means of an external resistor RSENSE. Linearity between IOUT and VSENSE is ensured up to 5V minimum (see parameter VSENSE in Table 9: Current sense (8V < VCC < 18V)). The current sense accuracy depends on the output current (refer to current sense electrical characteristics Table 9: Current sense (8V < VCC < 18V)).
- Diagnostic flag in fault conditions, delivering a fixed voltage VSENSEH up to a maximum current ISENSEH in case of the following fault conditions (refer to Truth table): – Power limitation activation – Overtemperature A logic level high on CS_DIS pin sets at the same time all the current sense pins of the device in a high impedance state, thus disabling the current monitoring and diagnostic detection. This feature allows multiplexing of the microcontroller analog inputs by sharing of sense resistance and ADC line among different devices.
Figure 30. Current sense and diagnostic
Figure 31. Maximum turn-off current versus inductance (for each channel) Values are generated with RL =0 Ω. specified above for curves A and B.
4 Package and thermal data
4.1 PowerSSO-24 thermal data
Figure 32. PowerSSO-24 PC board Figure 33. R thj-amb vs PCB copper area in open box free air condition (one channel thickness = 1.6mm, Cu thickness = 70µm (front and back side), Copper areas: from minimum pad layout to 8cm 2).
Table 14. Thermal parameters
5 Package and packing information
5.1 ECOPACK ®
specifications, grade definitions and product status are available at: www.st.com. ECOPACK® is an ST trademark.
5.2 Package mechanical data
Figure 36. PowerSSO-24 package dimensions
5.3 Packing information
Figure 37. PowerSSO-24 tube shipment (no suffix) Table 15. PowerSSO-24 mechanical data
Figure 38. PowerSSO-24 tape and reel shipment (suffix “TR”)
6 Order codes
Table 16. Device summary
7 Revision history
Table 17. Document revision history 17-Sep-2009 1 Initial release. 02-Nov-2009 2 Updated Table 5: Power section. 30-Nov-2009 3 Updated Table 9: Current sense (8V < VCC < 18V). 19-Feb-2010 6 Updated Table 6: Switching (VCC = 13V; Tj = 25°C). 11-Oct-2010 7 Changed document status from target specification to datasheet. 19-Sep-2013 8 Updated Disclaimer.