Toshiba Releases Automotive Photorelay with Output Withstand Voltage of 900V, Housed in a Small Package

-Suitable for 400V automotive battery systems-

October 24, 2024

Toshiba Electronic Devices & Storage Corporation

Toshiba Releases Automotive Photorelay with Output Withstand Voltage of 900V, Housed in a Small Package

KAWASAKI, Japan–Toshiba Electronic Devices & Storage Corporation ("Toshiba") has launched “TLX9150M,“ an automotive photorelay[1] with an output withstand voltage of 900V (min) that is highly suitable for application in 400V automotive batteries. The new photorelay is housed in a small SO12L-T package. Volume shipments start today.

Electric vehicles (EVs) are using ever higher capacity and higher voltage batteries to improve cruising range and charge time, and battery management systems (BMS) to constantly monitor and manage the battery to maximize life and performance. They also monitor the isolation between the battery and the vehicle body to ensure safety. In BMS that must handle high voltages, electrically isolated photorelays are used.

Photorelays commonly used in battery systems must have a withstand voltage approximately twice that of the system voltage; an output withstand voltage of over 800V is necessary for a 400V system. TLX9150M is suitable for 400V systems as it has an output withstand voltage of 900V. It also uses the new SO12L-T package, which is 25% smaller[2] than Toshiba's SO16L-T package. This helps to miniaturize the battery unit and allows cost reduction. The pin pitch and pin layout are the same (Figure 1) as those of the SO16L-T, enabling a common circuit board pattern design.

Figure 1. SO16L-T and SO12L-T pin assignments and land patterns
Figure 1. SO16L-T and SO12L-T pin assignments and land patterns

Notes:
[1] In photorelays, the primary (control) side and the secondary (switch) side are electrically isolated. Switches connected directly to the AC line and switches between equipment that differ in ground potential can be controlled through insulating barriers.
[2] Comparison of SO16L-T package size (10.3×10.0×2.45 mm) with SO12L-T package size (7.76×10.0×2.45 mm).

Applications

Automotive equipment

  • Battery management systems: battery voltage monitoring, mechanical relay sticking detection, ground fault detection, etc.
  • Replacement of mechanical relays

Features

  •  Output withstand voltage: VOFF=900V (min)
  •  Normally open (1-Form-A) device
  •  Avalanche current rating: IAV=0.6mA
  •  High isolation voltage: 5000Vrms (min)
  •  AEC-Q101 qualified
  • Compliant with IEC 60664-1 International Standard

Main Specifications

(Unless otherwise specified, Ta=25°C)

Part number TLX9150M
Contact 1a
Absolute
maximum
rating
Forward current  IF  (mA) 30
On-state current  ION  (mA) 50
Operating temperature  Topr  (°C) -40 to 125
Avalanche current  IAV  (mA) 0.6
Electrical
characteristics
Off-state current
IOFF  (nA)
VOFF=900V Max 100
Output withstand 
voltage  VOFF  (V)
IOFF=10μA Min 900
Recommended
operating
conditions
Supply voltage  VDD  (V) Max 720
Coupled
electrical
characteristics
Trigger LED current
IFT  (mA)
ION=50mA Max 3
Return LED current
IFC  (mA)
Ta=-40 to 125°C Min 0.05
On-state resistance
RON  (Ω)
ION=50mA,
IF=10mA, t<1s
Max 250
Switching
characteristics
Turn-on time  tON  (ms) Max 1
Turn-off time  tOFF  (ms) Max 1
Isolation
characteristics
Isolation voltage  BVS  (Vrms) Min 5000
Clearance distance  (mm) Min 8
Creepage distance  (mm) Min 8
Package Name SO12L-T
Size  (mm) Typ. 7.76×10.0×2.45
Stock Check & Purchase Buy Online

Follow the link below for more on the new product.

TLX9150M

Follow the link below for more on Toshiba’s isolators and solid state relays.

Isolators/Solid State Relays

Follow the link below for more on Toshiba’s automotive devices.

Automotive Devices

To check availability of the new product at online distributors, visit:

TLX9150M
Buy Online

Customer Inquiries

  Optoelectronic Device Sales & Marketing Dept.

  Tel: +81-44-548-2218

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* Information in this document, including product prices and specifications, content of services and contact information, is current on the date of the announcement but is subject to change without prior notice.

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